Repair, recombination and rearrangement of DNA

  • Roger L. P. Adams
  • John T. Knowler
  • David P. Leader
Chapter

Abstract

This chapter is concerned with alterations in the structure of DNA, and considers several different facets of this topic.

Keywords

Transposable Element Direct Repeat Globin Gene RecA Protein Variant Surface Glycoprotein 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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References

  1. 1.
    Singer, B. and Kusmievek, J. T. (1982) Annu. Rev. Biochem., 51, 655.PubMedGoogle Scholar
  2. 2.
    Kennard, O. (1987) in Nucleic Acids and Molecular Biology, Vol 1 (eds F. Eckstein and D. J. M. Lilley), Springer-Verlag, p. 25.Google Scholar
  3. 3.
    Friedberg, E. C. (1985) DNA Repair, W. H. Freeman and Co., San Francisco.Google Scholar
  4. 4.
    Tannenbaum, S. R., Weisman, M. and Fett, D. (1976) Food Cosmet. Toxicol., 114, 549.Google Scholar
  5. 5.
    Stock, J. A. (1975) Biology of Cancer (2nd edn) (eds E. J. Ambrose and F. S. C. Roe), Ellis Horwood, Chichester, p. 279.Google Scholar
  6. 6.
    Zarbl, H., Sukumar, S., Arthur, A. V., Martin-Zanka, D. and Barbacid, M. (1985) Nature (London), 315, 382.Google Scholar
  7. 7.
    Sobell, H. M. (1973) Prog. Nuceic Acid Res. Mol. Biol., 13, 153.Google Scholar
  8. 8.
    Walker, R. T., De Clercq, E. and Eckstein, F. (1979) Nucleoside Analogues, Plenum Press, New York.Google Scholar
  9. 9.
    Kersten, H. and Kersten, W. (1974) Inhibitors of Nucleic Acid Synthesis, Chapman and Hall, London.Google Scholar
  10. 10.
    Heinrich, M. and Krauss, G. (1989) J. Biol. Chem., 264, 119.PubMedGoogle Scholar
  11. 11.
    Lasnitski, J., Matthews, R. E. F. and Smith, J. D. (1954) Nature (London), 173, 346.Google Scholar
  12. 12.
    Adams, R. L. P. (1990) Cell Culture for Biochemists, 2nd edn (eds R. H. Burdon and P. H. van Knippenberg), Elsevier, Amsterdam.Google Scholar
  13. 13.
    Matthews, R. E. F. (1953) Nature (London), 171, 1065.Google Scholar
  14. 14.
    Hilmoe, R. J. and Heppell, L. A. (1957) J. Am. Chem. Soc., 79, 4810.Google Scholar
  15. 15.
    Zain, B. S., Adams, R. L. P. and Imrie, R. C. (1973) Cancer Res., 33, 40.PubMedGoogle Scholar
  16. 16.
    Adams, R. L. P. and Burdon, R. H. (1985) The Molecular Biology of DNA Methylation, Springer-Verlag, New York.Google Scholar
  17. 17.
    Taylor, S. M. and Jones, P. A. (1979) Cell, 17, 771.PubMedGoogle Scholar
  18. 18.
    Roy-Bowman, P. (1970) Analogues of Nucleic Acid Components, Springer-Verlag, New York.Google Scholar
  19. 19.
    Kaufman, E. R. and Davidson, R. L. (1978) Proc. Natl. Acad. Sci. USA, 75, 4982.PubMedGoogle Scholar
  20. 20.
    Hopkins, R. L. and Goodman, M. F. (1980) Proc. Natl. Acad. Sci. USA, 77, 1801.PubMedGoogle Scholar
  21. 21.
    Hunter, T. and Francke, B. (1975) J. Virol., 15, 759.PubMedGoogle Scholar
  22. 22.
    Lawley, P. D. and Brookes, P. (1961) Nature (London), 92, 1081.Google Scholar
  23. 23.
    Roberts, J. J. (1975) Biology of Cancer (eds E. J. Ambrose and F. J. C. Roe) Ellis Horwood, Chichester.Google Scholar
  24. 24.
    Lijinsky, W. (1976) Prog. Nucleic Acid Res. Mol. Biol., 17, 247.PubMedGoogle Scholar
  25. 25.
    Lindahl, T. (1981) Chromosome Damage and Repair (eds E. Seeberg and K. Kleppe), Plenum Press, New York, p. 207.Google Scholar
  26. 26.
    Eadie, J. S., Conrad, M., Toorchen, D. and Topal, M. D. (1984) Nature (London), 308, 201.Google Scholar
  27. 27.
    Iyer, V. N. and Szybalski, W. (1963) Proc. Natl. Acad. Sci. USA, 50, 355.PubMedGoogle Scholar
  28. 28.
    Goldberg, I. H. and Friedman, P. A. (1971) Annu. Rev. Biochem., 40, 775.PubMedGoogle Scholar
  29. 29.
    Stern, R., Rose, J. A. and Friedman, R. M. (1974) Biochemistry, 13, 307.PubMedGoogle Scholar
  30. 30.
    Neidle, S. and Abraham, Z. (1985) CRC Crit. Rev. Biochem., 17, 73.Google Scholar
  31. 31.
    Radloff, R., Bawer, W. and Vinograd, J. (1967) Proc. Natl. Acad. Sci. USA, 57, 1514.PubMedGoogle Scholar
  32. 32.
    Reich, E. and Goldberg, I. H. (1964) Prog. Nucleic Acid Res., 3, 184.Google Scholar
  33. 33.
    Hurwitz, J. and August, J. T. (1963) Prog. Nucleic Acid Res., 1, 59.Google Scholar
  34. 34.
    Penman, S., Vesco, C. and Penman, M. (1968) J. Mol. Biol., 34, 49.PubMedGoogle Scholar
  35. 35.
    Fuchs, R. P. P., Freund, A-M., Bichara, M. and Koffel-Schwartz, N. (1988) in DNA Replication and Mutagenesis (eds R. E. Moses and W. C. Summers), American Society for Microbiology, Washington, p. 263.Google Scholar
  36. 36.
    Okada, Y., Shreisinger, G., Owen, J. E., Newton, J., Tsugita, A. and Inouye, M. (1972) Nature (London), 236, 338.Google Scholar
  37. 37.
    deBoer, J. G. and Ripley, L. S. (1984) Proc. Natl. Acad. Sci. USA, 81, 5528.Google Scholar
  38. 38.
    Hampsey, D. M., Koski, R. A. and Sherman, F. (1986) Mol. Cell. Biol., 6, 4425.PubMedGoogle Scholar
  39. 39.
    Hutchinson, F. (1985) Prog. Nucleic Acid Res. Mol. Biol., 32, 115.PubMedGoogle Scholar
  40. 40.
    Henner, W. D., Grunberg, S. M. and Haseltine, W. A. (1983) J. Biol. Chem., 258, 15198.PubMedGoogle Scholar
  41. 41.
    Lilley, D. J. M. (1990) Curr. Opinion Cell Biol., 2, 464.PubMedGoogle Scholar
  42. 42.
    Hanawalt, P. C. (1972) Endeavour, 31, 83.PubMedGoogle Scholar
  43. 43.
    Haseltine, W. A. (1983) Cell, 33, 13.PubMedGoogle Scholar
  44. 44.
    Sutherland, B. M., Chamberlin, M. J. and Sutherland, J. C. (1973) J. Biol. Chem., 248, 4200.PubMedGoogle Scholar
  45. 45.
    Sancar, A., Franklin, K. A. and Sancar, G. B. (1984) Proc. Natl. Acad. Sci. USA, 81, 7397.PubMedGoogle Scholar
  46. 46.
    Lehman, A. R. and Bridges, B. A. (1977) Essays Biochem., 13, 71.Google Scholar
  47. 47.
    Hanawalt, P. C., Cooper, P. K., Ganesan, A. K. and Smith, C. A. (1979) Annu. Rev. Biochem., 48, 783.PubMedGoogle Scholar
  48. 48.
    Olsson, M. and Lindahl, T. (1980) J. Biol. Chem., 255, 10569.PubMedGoogle Scholar
  49. 49.
    Warner, H. (1983) in Enzymes of Nucleic Acid Synthesis and Modification (ed. S. T. Jacob), CRC Press, Cleveland, vol. 1, p. 145.Google Scholar
  50. 50.
    Pegg, A. E. and Bennett, R. A. (1983) in Enzymes of Nucleic Acid Synthesis and Modifcation (ed. S. T. Jacob), CRC Press, Cleveland, vol. 1, p. 79.Google Scholar
  51. 51.
    Livneh, Z., Elad, D. and Sperling, J. (1979) Proc. Natl. Acad. Sci. USA, 76, 1089.PubMedGoogle Scholar
  52. 52.
    Deutsch, W. A. and Linn, S. (1979) J. Biol. Chem., 254, 12099.PubMedGoogle Scholar
  53. 53.
    Kushner, S. R., Kaplan, J. C., Ono, H. and Grossman, L. (1971) Biochemistry, 10, 3325.PubMedGoogle Scholar
  54. 54.
    Setlow, R. B. and Canier, W. L. (1964) Proc. Natl. Acad. Sci. USA, 51, 226.PubMedGoogle Scholar
  55. 55.
    Monk, M., Peacey, M. and Gross, J. D. (1971) J. Mol. Biol., 58, 623.PubMedGoogle Scholar
  56. 56.
    Kato, T. and Kondo, S. (1970) J. Bacteriol., 104, 871.PubMedGoogle Scholar
  57. 57.
    Cooper, P. K. and Hanawalt, P. C. (1972) J. Mol. Biol., 67, 1.PubMedGoogle Scholar
  58. 58.
    Cooper, P. (1977) Mol. Gen. Genet., 150, 1.PubMedGoogle Scholar
  59. 59.
    Dorson, J. W., Deutsch, W. A. and Moses, R. E. (1978) J. Biol. Chem., 253, 660.PubMedGoogle Scholar
  60. 60.
    Talpaert-parle, M., Clerici, L. and Campagnari, F. (1979) J. Biol. Chem., 254, 6387.Google Scholar
  61. 61.
    Wist, E., Uhjem, O. and Krokan, H. (1978) Biochim. Biophys. Acta, 520, 253.PubMedGoogle Scholar
  62. 62.
    Tamanoi, F. and Okazaki, T. (1978) Proc. Natl. Acad. Sci. USA, 75, 2195.PubMedGoogle Scholar
  63. 63.
    Karran, P. and Lindahl, T. (1978) J. Biol. Chem., 253, 5877.PubMedGoogle Scholar
  64. 64.
    Kirtikar, D. M., Dipple, A. and Goldthwait, D. A. (1975) Biochemistry, 14, 5548.PubMedGoogle Scholar
  65. 65.
    Lindahl, T. (1979) Prog. Nucleic Acid Res. Mol. Biol., 22, 135.PubMedGoogle Scholar
  66. 66.
    Demple, B. and Linn, S. (1980) Nature (London), 287, 203.Google Scholar
  67. 67.
    Breimer, L. H. and Lindahl, T. (1984) J. Biol. Chem., 259, 5543.PubMedGoogle Scholar
  68. 68.
    Haines, J. A., Reese, C. B. and Lord Todd (1962) J. Chem. Soc. 5281.Google Scholar
  69. 69.
    Bailly, V., Verly, W. G., O’Connor, T. and Laval, J. (1989) Biochem. J. 262, 581.PubMedGoogle Scholar
  70. 70.
    O’Connor, T. R. and Laval, J. (1989) Proc. Natl. Acad. Sci. USA, 86, 5222.PubMedGoogle Scholar
  71. 71.
    Bailly, V. and Verly, W. G. (1987) Bichem. J., 242, 565.Google Scholar
  72. 72.
    Boiteux, S., O’Connor, T. R., Lederer, F., Gouyeffe, A. and Laval, J. (1990) J. Biol. Chem., 265, 3916.PubMedGoogle Scholar
  73. 73.
    Seeberg, E. (1981) Prog. Nucleic Acid Res. Mol. Biol., 26, 217.PubMedGoogle Scholar
  74. 74.
    Sancar, A. and Rupp, W. D. (1983) Cell, 33, 249.PubMedGoogle Scholar
  75. 75.
    Seeberg, E. and Steinum, A-L. (1983) in Cellular Responses to DNA Damage (eds E. D. Friedberg and B. A. Bridges), Alan R. Liss, New York, p. 39.Google Scholar
  76. 76.
    Yeung, A. T., Mattes, W. B., Oh, E. Y. and Grossman, L. (1983) Proc. Natl. Acad. Sci. USA, 80, 6157.PubMedGoogle Scholar
  77. 77.
    Orren, D. K. and Sancar, A. (1989) Proc. Natl. Acad. Sci. USA, 86, 5237.PubMedGoogle Scholar
  78. 78.
    Caron, P. R., Kushner, S. R. and Grossman, L. (1985) Proc. Natl. Acad. Sci. USA, 82, 4925.PubMedGoogle Scholar
  79. 79.
    Husain, I., van Houten, B., Thomas, D. C., Abdel-Monem, M. and Sancar, A. (1985) Proc. Natl. Acad. Sci. USA, 82, 6774.PubMedGoogle Scholar
  80. 80.
    Pu, W. T., Kahn, R., Munn, M. M. and Rupp, W. D. (1989) J. Biol. Chem., 264, 20697.PubMedGoogle Scholar
  81. 81.
    Matsumoto, Y. and Bogenhagen, D. F. (1989) Mol. Cell. Biol., 9, 3750.PubMedGoogle Scholar
  82. 82.
    Hanawalt, P. C. and Sarasix, A. (1986) Trends Genet., 2, 124.Google Scholar
  83. 83.
    Tanaka, K., Miura, N., Satokata, I., Miyamoto, I., Yoshida, M. C. et al. (1990) Nature (London), 348, 73.Google Scholar
  84. 84.
    Smith, C. A. and Hanawalt, P. C. (1978) Proc. Natl. Acad. Sci. USA, 75, 2598.PubMedGoogle Scholar
  85. 85.
    Marx, J. L. (1978) Science, 200, 518.PubMedGoogle Scholar
  86. 86.
    Park, S. D. and Cleaver, J. E. (1979) Nucleic Acids Res., 7, 1151.Google Scholar
  87. 87.
    Glickman, B. W. and Radman, M. (1980) Proc. Natl. Acad. Sci. USA, 77, 1063.PubMedGoogle Scholar
  88. 88.
    Lu, A-L., Clark, S. and Modrich, P. (1983) Proc. Natl. Acad. Sci. USA, 80, 4639.PubMedGoogle Scholar
  89. 89.
    Modrich, P. (1987) Annu. Rev. Biochem., 56, 435.PubMedGoogle Scholar
  90. 90.
    Modrich, P. (1989) J. Biol. Chem., 264, 6597.PubMedGoogle Scholar
  91. 91.
    Radman, M. and Wagner, R. (1988) Sci. Am., 259 (2), 24.Google Scholar
  92. 92.
    Welsh, K. M., Lu, A-L., Clark, S. and Modrich, P. (1987) J. Biol. Chem., 262, 15624.PubMedGoogle Scholar
  93. 93.
    Lu, A-L. and Chang, D-Y. (1988) Cell, 54, 805.PubMedGoogle Scholar
  94. 94.
    Su, S-S., Lahue, R. S., Au, K. G. and Modrich, P. (1988) J. Biol. Chem., 263, 6829.PubMedGoogle Scholar
  95. 95.
    Schaaper, R. M. and Dunn, R. L. (1987) J. Biol. Chem., 262, 16267.PubMedGoogle Scholar
  96. 96.
    Akiyama, H., Maki, H., Sekiguchi, M. and Horiuchi, T. (1989) Proc. Natl. Acad. Sci. USA, 86, 3949.PubMedGoogle Scholar
  97. 97.
    Lahue, R. S., Su, S-S and Modrich, P. (1987) Proc. Natl. Acad. Sci. USA, 84, 1482.PubMedGoogle Scholar
  98. 98.
    Hare, J. T. and Taylor, J. H. (1985) Proc. Natl. Acad. Sci. USA, 82, 7350.PubMedGoogle Scholar
  99. 99.
    Coulondre, C., Miller, J. H., Farabaugh, P. J. and Gilbert, W. (1978) Nature (London), 274, 775.Google Scholar
  100. 100.
    Zell, R. and Fritz, H-J. (1987) EMBO J., 6, 1809.PubMedGoogle Scholar
  101. 101.
    Wiebauer, K. and Jiricny, J. (1989) Nature (London), 339, 234.Google Scholar
  102. 102.
    Green, P. M., Montandon, A. J., Bentley, D. R., Ljung, R., Nilsson, I. M. and Giannelli, F. (1990) Nucleic Acids Res., 18, 3227.PubMedGoogle Scholar
  103. 103.
    Salser, W. (1977) Cold Spring Harbor Symp. Quant. Biol., 42, 985.Google Scholar
  104. 104.
    Bird, A. P., Taggart, M. H. and Smith, B. A. (1979) Cell, 17, 889.PubMedGoogle Scholar
  105. 105.
    Adams, R. L. P. and Eason, R. (1984) Nucleic Acids Res., 12, 5869.PubMedGoogle Scholar
  106. 106.
    Livneh, Z., Schwartz, H., Hevroni, D., Shavitt, O., Tadmor, Y. and Cohen, O. (1988) in DNA Replication and Mutagenesis (eds R. E. Moses and W. C. Summers), American Society for Microbiology, Washington, p. 296.Google Scholar
  107. 107.
    Lackey, D., Krauss, S. W. and Linn, S. (1985) J. Biol. Chem., 260, 3178.PubMedGoogle Scholar
  108. 108.
    Witkin, E. M. and Kogoma, T. (1984) Proc. Natl. Acad. Sci. USA, 81, 7539.PubMedGoogle Scholar
  109. 109.
    Shinagawa, H., Iwasaki, H., Kato, T. and Nakata, A. (1988) Proc. Natl. Acad. Sci. USA, 85, 1806.PubMedGoogle Scholar
  110. 110.
    Burckhart, S. E., Woodgate, R., Scheuermann, R. H. and Echols, H. (1988) Proc. Natl. Acad. Sci. USA, 85, 1811.Google Scholar
  111. 111.
    Shwartz, H., Shavitt, O. and Livneh, Z. (1988) J. Biol. Chem., 263, 18277.PubMedGoogle Scholar
  112. 112.
    Shavitt, O. and Livneh, Z. (1989) J. Biol. Chem., 264, 11275.PubMedGoogle Scholar
  113. 113.
    Goodman, M. F., Petruska, J., Boosalis, M. S., Randall, S. K., Sowers, L. C. and Mendelman, L. (1988) in DNA Replication and Mutagenesis (eds R. E. Moses and W. C. Summers), American Society for Microbiology, Washington, p. 284.Google Scholar
  114. 114.
    Bryan, S., Hagensee, M. E. and Moses, R. E. (1988) in DNA Replication and Mutagenesis (eds R. E. Moses and W. C. Summers), American Society for Microbiology, Washington, p. 305.Google Scholar
  115. 115.
    Maenhaut-Michel, G. (1988) in DNA Replication and Mutagenesis (eds R. E. Moses and W. C. Summers), American Society for Microbiology, Washington, p. 332.Google Scholar
  116. 116.
    Eisenstadt, E. (1988) in DNA Replication and Mutagenesis (eds R. E. Moses and W. C. Summers), American Society for Microbiology, Washington, p. 403.Google Scholar
  117. 117.
    Rayssiguier, C., Thaler, D. S. and Radman, M. (1989) Nature (London), 342, 396.Google Scholar
  118. 118.
    Holliday, R. (1964) Genet. Res., 5, 282.Google Scholar
  119. 119.
    Dressler, D. and Potter, H. (1982) Annu. Rev. Biochem., 51, 727.PubMedGoogle Scholar
  120. 120.
    Potter, H. and Dressler, D. (1976) Proc. Natl. Acad. Sci. USA, 73, 3000.PubMedGoogle Scholar
  121. 121.
    Thompson, B. J., Camien, M. N. and Warner, R. C. (1976) Proc. Natl. Acad. Sci. USA, 73, 2299.PubMedGoogle Scholar
  122. 122.
    Meselson, M. S. and Radding, C. M. (1975) Proc. Natl. Acad. Sci. USA, 72, 358.PubMedGoogle Scholar
  123. 123.
    Potter, H. and Dressler, D. (1979) Cold Spring Harbor Symp. Quant. Biol., 43, 969.PubMedGoogle Scholar
  124. 124.
    Szostak, J. W., Orr-Weaver, T. L. and Rothstein, R. J. (1983) Cell, 33, 25.PubMedGoogle Scholar
  125. 125.
    Whitehouse, H. L. K. (1983) Nature (London), 306, 645.Google Scholar
  126. 126.
    Smith, G. R. (1989) Cell, 58, 807.PubMedGoogle Scholar
  127. 127.
    Nicholas, A., Treco, D., Schultes, N. P. and Szostak, J. W. (1989) Nature (London), 338, 35.Google Scholar
  128. 128.
    Sun, H., Treco, D., Schultes, N. P. and Szostak, J. W. (1989) Nature (London), 338, 87.Google Scholar
  129. 129.
    Fincham, J. R. S. and Oliver, P. (1989) Nature (London), 338, 14.Google Scholar
  130. 130.
    Radding, C. M. (1978) Annu. Rev. Biochem., 47, 847.PubMedGoogle Scholar
  131. 131.
    Telander-Muskavitch and Linn, S. (1981) in The Enzymes (ed. P. D. Boyer) Academic Press, New York, vol. 14, p. 233.Google Scholar
  132. 132.
    Chaudhury, A. M. and Smith, G. R. (1984) Proc. Natl. Acad. Sci. USA, 81, 7850.PubMedGoogle Scholar
  133. 133.
    Ponticelli, A. S., Schultz, D. W., Taylor, A. F. and Smith, G. R. (1985) Cell, 41, 145.PubMedGoogle Scholar
  134. 134.
    Taylor, A. F., Schultz, D. W., Ponticelli, A. S. and Smith G. R. (1985) Cell, 41, 153.PubMedGoogle Scholar
  135. 135.
    Smith, G. R. (1983) Cell, 34, 709.PubMedGoogle Scholar
  136. 136.
    Cassuto, E. and Radding, C. (1971) Nature (London) New Biol., 229, 13.Google Scholar
  137. 137.
    Boon, T. and Zinder, N. D. (1971) J. Mol. Biol., 58, 133.PubMedGoogle Scholar
  138. 138.
    Müller, B., Jones, C., Kemper, B. and West, S. C. (1990) Cell, 60, 329.PubMedGoogle Scholar
  139. 139.
    West, S. C. (1989) in Nucleic Acids and Molecular Biology, vol 3 (eds F. Eckstein and D. M. J. Lilley), Springer-Verlag, Berlin, p. 44.Google Scholar
  140. 140.
    Craig, N. L. (1984) Nature (London), 311, 706.Google Scholar
  141. 141.
    Lilley, D. M. J. and Kemper, B. (1984) Cell, 36, 413.PubMedGoogle Scholar
  142. 142.
    Griffith, J. D. and Harris, L. D. (1988) CRC Crit. Rev. Biochem., 23, Suppl. 1, 543.Google Scholar
  143. 143.
    Radding, C. M. (1989) Biochim. Biophys, Acta, 1008, 131.Google Scholar
  144. 144.
    Dicapua, E. and Koller, Th. (1987) In Nucleic Acids and Molecular Biology, vol 1 (eds F. Eckstein and D. M. J. Lilley) Springer-Verlag, Berlin, p. 174.Google Scholar
  145. 145.
    Register, J. C. and Griffith, J. (1988) J. Biol. Chem., 263, 11029.PubMedGoogle Scholar
  146. 146.
    Honigberg, S. M. and Radding, C. M. (1988) Cell, 54, 525.PubMedGoogle Scholar
  147. 147.
    West, S. C., Cassuto, E. and Howard Flanders, P. (1981) Proc. Natl. Acad. Sci. USA, 78, 6149.PubMedGoogle Scholar
  148. 148.
    Kahn, R., Cunningham, R. P., Das-Gupta, C. and Radding, C. M. (1981) Proc. Natl. Acad. Sci. USA, 78, 4786.PubMedGoogle Scholar
  149. 149.
    Cox, M. M. and Lehman, I. R. (1981) Proc. Natl. Acad. Sci. USA, 78, 6018.PubMedGoogle Scholar
  150. 150.
    Cox, M. M. and Lehman, I. R. (1981) Proc. Natl. Acad. Sci. USA, 78, 3433.PubMedGoogle Scholar
  151. 151.
    West, S. C., Cassuto, E. and Howard Flanders, P. (1981) Proc. Natl. Acad. Sci. USA, 78, 2100.PubMedGoogle Scholar
  152. 152.
    Conley, E. C. and West, S. C. (1989) Cell, 56, 987.PubMedGoogle Scholar
  153. 153.
    Linsley, J. E. and Cox, M. M. (1990) J. Biol. Chem., 265, 10164.Google Scholar
  154. 154.
    Campbell, A. (1969) Episomes, Harper and Row, New York.Google Scholar
  155. 155.
    Hsu, P-L, Ross, W. and Landy, A. (1980) Nature (London), 285, 85.Google Scholar
  156. 156.
    Mizuuchi, K. (1981) Cold Spring Harbor Symp. Quant. Biol., 45, 429.PubMedGoogle Scholar
  157. 157.
    Ross, W. and Landy, A. (1983) Cell, 33, 261.PubMedGoogle Scholar
  158. 158.
    Hsu, P. L. and Landy, A. (1984) Nature (London), 311, 721.Google Scholar
  159. 159.
    Craig, N. L. and Nash, H. A. (1983) Cell, 35, 795.PubMedGoogle Scholar
  160. 160.
    Nash, H. A. (1990) Trends Bichem. Sci., 15, 222.Google Scholar
  161. 161.
    Goodman, S. D. and Nash, H. A. (1989) Nature (London), 341, 251.Google Scholar
  162. 162.
    Snyder, U. K., Thompson, J. F. and Landy, A. (1989) Nature (London), 341, 255.Google Scholar
  163. 163.
    Travers, A. (1989) Nature (London), 341, 184.Google Scholar
  164. 164.
    Yin, S., Bushman, W. and Landy, A. (1985) Proc. Natl. Acad. Sci. USA, 82, 1040.PubMedGoogle Scholar
  165. 165.
    Segal, E., Billyard, E., So, M., Starzbach, S. and Meyer, T. F. (1985) Cell, 40, 293.PubMedGoogle Scholar
  166. 166.
    Seifert, H. S., Ajioka, R. S., Marchal, C., Sparling, R. F. and So, M. (1989) Nature (London), 336, 392.Google Scholar
  167. 167.
    Gibbs, C. P., Reimann, B-Y, Schultz, E, Kaufmann, A., Haas, R. and Meyer, T. F. (1989) Nature (London), 338, 655.Google Scholar
  168. 168.
    Saunders, J. R. (1989) Nature (London), 338, 622.Google Scholar
  169. 169.
    Murphy, G. L., Connal, T. D., Barritt, D. S., Koomey, M. and Cannon, J. G. (1989) Cell, 56, 539.PubMedGoogle Scholar
  170. 170.
    Stibitz, S., Aaronson, W., Monack, D. and Falkow, S. (1989) Nature (London), 338, 266.Google Scholar
  171. 171.
    Golden, J. W. and Wiest, D. R. (1988) Science, 242, 1421.PubMedGoogle Scholar
  172. 172.
    Golden, J. W., Robinson, S. J. and Haselkorn, R. (1985) Nature (London), 314, 419.Google Scholar
  173. 173.
    Mulligan, M. E. and Haselkorn, R. (1989) J. Biol. Chem., 264, 19200.PubMedGoogle Scholar
  174. 174.
    Silverman, M. and Simon, M. (1983) in Mobile Genetic Elements (ed. J. A. Shapiro), Academic Press, New York, p. 622.Google Scholar
  175. 175.
    Abraham, J. M., Freitag, C. S., Clements, J. R. and Eisenstein, B. I. (1985) Proc. Natl. Acad. Sci. USA, 82, 5724.PubMedGoogle Scholar
  176. 176.
    Chou, J. and Roizman, B. (1985) Cell, 41, 803.PubMedGoogle Scholar
  177. 177.
    Craig, N. L. (1985) Cell, 41, 649.PubMedGoogle Scholar
  178. 178.
    Baltimore, D. (1986) Nature (London), 319, 12.Google Scholar
  179. 179.
    Herskovitz, I. (1988) Microbiol. Rev., 52, 536.Google Scholar
  180. 180.
    Nasmyth, K. and Shore, D. (1987) Science, 237, 1162.PubMedGoogle Scholar
  181. 181.
    Nasmyth, K. (1985) Cell, 42, 213.PubMedGoogle Scholar
  182. 182.
    Kostriken, R., Strathern, J. N., Klar, A. J. S., Hicks, J. B. and Heffron, F. (1983) Cell, 35, 167.PubMedGoogle Scholar
  183. 183.
    Donelson, J. E. and Rice-Ficht, A. C. (1985) Microbiol. Rev., 49, 107.PubMedGoogle Scholar
  184. 184.
    Bernards, A. (1984) Biochim. Biophys. Acta, 824, 1.Google Scholar
  185. 185.
    Donelson, J. E. and Turner, M. J. (1985) Sci. Am., 252 (2), 32.Google Scholar
  186. 186.
    Borst, P., Bernards, A., Van der Ploeg, L. H. T., Michels, P. A. M., Lin, A. Y. C. et al. (1983) Eur. J. Biochem., 137, 383.PubMedGoogle Scholar
  187. 187.
    Pays, E. (1989) Trends Genet., 5, 389.PubMedGoogle Scholar
  188. 188.
    Borst, P. and Cross, G. A. M. (1982) Cell, 29, 291.PubMedGoogle Scholar
  189. 189.
    Pays, E. (1985) Prog. Nucleic Acid Res. Mol. Biol., 32, 1.PubMedGoogle Scholar
  190. 190.
    Pays, E., Guyaux, M., Aerts, D., Van Meirvenne, N. and Steinert, M. (1985) Nature (London), 316, 562.Google Scholar
  191. 191.
    Foote, S. J. and Kemp, D. J. (1989) Trends Genet., 5, 337.PubMedGoogle Scholar
  192. 192.
    Meier, J. T., Simon, M. I. and Barbour, A. G. (1985) Cell, 41, 403.PubMedGoogle Scholar
  193. 193.
    Yao, M-C. (1989) in Mobile DNA (eds D. E. Berg and M. M. Howe), American Society for Microbiology, Washington, p. 715.Google Scholar
  194. 194.
    Roth, M. and Prescott, D. M. (1985) Cell, 41, 411.PubMedGoogle Scholar
  195. 195.
    Yao, M-C., Zhu, S-G. and Yao, C-H. (1985) Mol. Cell. Biol., 5, 1260.PubMedGoogle Scholar
  196. 196.
    Robinson, E. K., Cohen, P. D. and Blackburn, E. H. (1989) Cell, 58, 887.PubMedGoogle Scholar
  197. 197.
    Tausta, S. L. and Klobutcher, L. A. (1989) Cell, 59, 1019.PubMedGoogle Scholar
  198. 198.
    Jahn, C. L., Krikau, M. F. and Shyman, S. (1989) Cell, 59, 1009.PubMedGoogle Scholar
  199. 199.
    Godiska, R. and Yao, M-C. (1990) Cell, 61, 1237.PubMedGoogle Scholar
  200. 200.
    Lindahl, T., Sedwick, B., Sekiguchi, M. and Nakabeppu, Y. (1988) Annu. Rev. Biochem., 57, 133.PubMedGoogle Scholar
  201. 201.
    Teo, I., Sedwick, B., Kilpatrick, M. W., McCarthy, T. V. and Lindahl, T. (1986) Cell, 45, 315.PubMedGoogle Scholar
  202. 202.
    Roit, I. (1988) Essential Immunology (6th edn), Blackwell, Oxford.Google Scholar
  203. 203.
    Tonegawa, S. (1985) Sci. Am., 253 (4), 104.Google Scholar
  204. 204.
    Dreyer, W. J. and Bennett, J. C. (1965) Proc. Natl. Acad. Sci. USA, 54, 864.PubMedGoogle Scholar
  205. 205.
    Tonegawa, S. (1983) Nature (London), 302, 575.Google Scholar
  206. 206.
    Blackwell, T. K. and Alt, F. W. (1988) in Molecular Immunology (eds B. D. Hames and D. M. Glover), IRL Press, Oxford.Google Scholar
  207. 207.
    Yancopoulos, G. D. and Alt, F. W. (1986) Anna. Rev. Immunol., 4, 339.Google Scholar
  208. 208.
    Sakano, H., Rogers, J. H., Huppi, K., Brack, C., Trannecker, A. et al. (1979) Nature (London), 277, 627.Google Scholar
  209. 209.
    Cushley, W. (1986) in Multidomain Protein Structure and Function (eds D. G. Hardie and J. R. Coggins), Elsevier, Amsterdam.Google Scholar
  210. 210.
    Early, P. and Hood, L. (1981) Cell, 24, 1.PubMedGoogle Scholar
  211. 211.
    Gascoigne, N. R. J., Chien, Y.-H., Becker, D. M., Kavaler, J. and Davis, M. M. (1984) Nature (London), 310, 387.Google Scholar
  212. 212.
    Sims, J. C., Tunnacliffe, A., Smith, W. J. and Rabbitts, T. H. (1984) Nature (London), 312, 541.Google Scholar
  213. 213.
    Arden, N., Klotz, K. L., Siu, G. and Hood, L. E. (1985) Nature (London), 316, 783.Google Scholar
  214. 214.
    Yoshikai, Y., Clark, S. P., Taylor, S., Sohn, U., Wilson, B. I. et al. (1985) Nature (London), 316, 837.Google Scholar
  215. 215.
    Winoto, A., Mjolsness, S. and Hood, L. (1985) Nature (London), 316, 832.Google Scholar
  216. 216.
    Hayday, A. C., Diamond, D. J., Tanigawa, G., Heilig, J. S., Folsan, V. et al. (1985) Nature (London), 316, 828.Google Scholar
  217. 217.
    Heilig, J. S., Glimcher, L. H., Kranz, D. M., Clayton, L. K., Greenstein, J. L. et al. (1985) Nature (London), 317, 68.Google Scholar
  218. 218.
    Seidman, J. G., Max, E. E. and Leder, P. (1979) Nature (London), 280, 370.Google Scholar
  219. 219.
    Hesse, J. E., Lieber, M. R., Gellert, M. and Mizuuchi, K. (1987) Cell, 49, 775.PubMedGoogle Scholar
  220. 220.
    Schatz, D. G., Oettiger, M. A. and Baltimore, D. (1989) Cell, 59, 1035.PubMedGoogle Scholar
  221. 221.
    Alt, F. W. and Baltimore, D. (1982) Proc. Natl. Acad. Sci. USA, 79, 4118.PubMedGoogle Scholar
  222. 222.
    Inouye, S., Sunshine, M. G., Six, E. W. and Inouye, M. (1991) Science, 252, 969.PubMedGoogle Scholar
  223. 223.
    Rideout, W. M., Coetzee, G. A., Olumi, A. F. and Jones, P. A. (1990) Science, 249, 1288.PubMedGoogle Scholar
  224. 224.
    Sakano, H., Maki, R., Kurosawa, Y., Roeder, W. and Tonegawa, S. (1980) Nature (London), 282, 676.Google Scholar
  225. 225.
    Kataoka, T., Miyata, T. and Honjo, T. (1981) Cell, 23, 357.PubMedGoogle Scholar
  226. 226.
    Shimizu, A. and Honjo, T. (1984) Cell, 36, 801.PubMedGoogle Scholar
  227. 227.
    Obata, M., Kataoka, T., Nakai, S., Yamagishi, H., Takahashi, N. et al. (1981) Proc. Natl. Acad. Sci. USA, 78, 2437.PubMedGoogle Scholar
  228. 228.
    Jäck, H-M., McDowell, M., Steinberg, C. M. and Wabl, M. (1988) Proc. Natl. Acad. Sci. USA, 85, 1581.PubMedGoogle Scholar
  229. 229.
    Schwedler, U. von, Jäck, H-M. and Wabl, M. (1990) Nature (London), 345, 452.Google Scholar
  230. 230.
    Liu, C-P., Tucker, P. W., Mushinski, J. F. and Blattner, F. R. (1980) Science, 209, 1348.PubMedGoogle Scholar
  231. 231.
    Knapp, M. R., Liu, C-P, Newell, N., Ward, R. B., Tucker, P. W. et al. (1982) Proc. Natl. Acad. Sci. USA, 79, 2996.PubMedGoogle Scholar
  232. 232.
    Yaoita, Y., Kumagai, Y., Okumura, K. and Honjo, T. (1982) Nature (London), 297, 697.Google Scholar
  233. 233.
    Dunnick, W., Wilson, M. and Stavnezer, J. (1989) Mol. Cell. Biol., 9, 1850.PubMedGoogle Scholar
  234. 234.
    Dunnick, W. and Stavnezer, J. (1990) Mol. Cell. Biol., 10, 397.PubMedGoogle Scholar
  235. 235.
    Baltimore, D. (1981) Cell, 26, 295.PubMedGoogle Scholar
  236. 236.
    Burnet, F. M. (1959) The Clonal Selection Theory of Acquired Immunity, Vanderbilt University Press, Nashville.Google Scholar
  237. 237.
    LeFrank, M. P. and Rabbitts, T. H. (1989) Trends Biochem. Sci., 14, 214.Google Scholar
  238. 238.
    Blackman, M., Kappler, J. and Marrack, P. (1990) Science, 248, 1335.PubMedGoogle Scholar
  239. 239.
    Adams, J. M. (1985) Nature (London), 315, 542.Google Scholar
  240. 240.
    von Lindern, M., Poustka, A., Lehrach, H. and Grosveld, G. (1990) Mol. Cell Biol., 10, 4016.Google Scholar
  241. 241.
    Lewis, W. H., Michalopoulos, E. E., Williams, D. L., Minden, M. D. and Mak, T. W. (1985) Nature (London), 317, 544.Google Scholar
  242. 242.
    Rabbitts, T. H. (1984) in Molecular Biology and Human Disease (eds A. Macleod and K. Sikora), Blackwell, Oxford, p. 164.Google Scholar
  243. 243.
    Croce, C. M. and Klein, G. (1985) Sci. Am., 252 (3), 44.Google Scholar
  244. 244.
    Ray, P. N., Belfall, B., Duff, C., Logan, C., Kean, V. et al. (1985) Nature (London), 318, 672.Google Scholar
  245. 245.
    Yeu, P. H., Li, X-M., Tsai, S-P., Johnson, C., Mohandas, T. and Shapiro, L. J. (1990) Cell, 61, 603.Google Scholar
  246. 246.
    Blackwell, T. K. and Alt, F. W. (1989) J. Biol. Chem., 264, 10327.PubMedGoogle Scholar
  247. 247.
    Hsieh, P. and Camerini-Otero, R. W. (1989) J. Biol. Chem., 264, 5089.PubMedGoogle Scholar
  248. 248.
    Brunier, D., Michel, B. and Ehrlich, S. D. (1988) Cell, 52, 883.PubMedGoogle Scholar
  249. 249.
    Amstutz, H., Munz, P., Heyer, W-D., Leupold, U. and Kohli, J. (1985) Cell, 40, 879.PubMedGoogle Scholar
  250. 250.
    Berg, D. E. (1990) in Gene Rearrangement (eds B. D. Harnes and D. M. Glover), Oxford University Press, Oxford, p. 1.Google Scholar
  251. 251.
    Van der Ploeg, L. H. T. (1990) in Gene Rearrangement (eds B.D. Hames and D.M. Glover) Oxford University Press, Oxford, p. 51.Google Scholar
  252. 252.
    Weichhold, G. M., Klobeck, H-G., Ohnheiser, R., Combriato, G. and Zachau, H. G. (1990) Nature (London), 347, 90.Google Scholar
  253. 253.
    de Thé, H., Chomienne, C., Lanotte, M., Degos, L. and Dejean, A. (1990) Nature (London), 347, 558.Google Scholar
  254. 254.
    Buckingham, M. E. (1985) Essays Biochem., 20, 77.PubMedGoogle Scholar
  255. 255.
    Pfeffer, S. and Ullrich, A. (1985) Nature (London), 313, 184.Google Scholar
  256. 256.
    Efstratiadis, A., Posakony, J. W., Maniatis, T., Lawn, R. M., O’Connell, C. et al. (1981) Cell, 26, 653.Google Scholar
  257. 257.
    Proudfoot, N. J., Gil, A. and Maniatis, T. (1982) Cell, 31, 553.PubMedGoogle Scholar
  258. 258.
    Jeffreys, A. J., Harris, S., Barrie, P. A., Wood, D., Blanchetot, A. et al. (1983) in Evolution from Molecules to Man (ed. D. S. Bendall), Cambridge University Press, Cambridge, p. 175.Google Scholar
  259. 259.
    Jeffreys, A. J., Wilson, V., Wood, D., Simons, J. P., Kay, R. M. et al. (1980) Cell, 21, 555.PubMedGoogle Scholar
  260. 260.
    Lang, A. and Lorkin, P. A. (1976) Br. Med. Bull., 32, 239.PubMedGoogle Scholar
  261. 261.
    Goodman, M., Koop, B. F., Czelusniak, J., Weiss, M. L. and Slightom, J. L. (1984) J. Mol. Biol., 180, 803.PubMedGoogle Scholar
  262. 262.
    Lauer, J., Shen, C-K. S. and Maniatis, T. (1980) Cell, 20, 119.PubMedGoogle Scholar
  263. 263.
    Shen, S., Slightom, J. L. and Smithies, O. (1981) Cell, 26, 191.PubMedGoogle Scholar
  264. 264.
    Martin, S. L., Vincent, K. A. and Wilson, A. C. (1983) J. Mol. Biol., 164, 513.PubMedGoogle Scholar
  265. 265.
    Proudfoot, N. J. and Maniatis, T. (1980) Cell, 21, 537.PubMedGoogle Scholar
  266. 266.
    Maeda, N. (1985) J. Biol. Chem., 260, 6698.PubMedGoogle Scholar
  267. 267.
    Smith, G. P. (1976) Science, 191, 528.PubMedGoogle Scholar
  268. 268.
    Jeffreys, A. J. and Harris, S. (1984) Bio-Essays, 1, 253.Google Scholar
  269. 269.
    Little, P. F. R. (1982) Cell, 28, 683.PubMedGoogle Scholar
  270. 270.
    Ford, P. (1978) Nature (London), 271, 205.Google Scholar
  271. 271.
    Zimmer, E. A., Martin, S. L., Beverley, S. M., Kan, Y. and Wilson, A. C. (1980) Proc. Natl. Acad. Sci. USA, 77, 2158.PubMedGoogle Scholar
  272. 272.
    Tartof, K. D. (1974) Proc. Natl. Acad. Sci. USA, 71, 1272.PubMedGoogle Scholar
  273. 273.
    Petes, T. D. (1980) Cell, 19, 765.PubMedGoogle Scholar
  274. 274.
    Baltimore, D. (1981) Cell, 24, 592.PubMedGoogle Scholar
  275. 275.
    Slightom, J. L., Biechi, A. E. and Smithies, O. (1980) Cell, 21, 627.PubMedGoogle Scholar
  276. 276.
    Hess, J. F., Fox, M., Schmid, C. and Shen, C-K. J. (1983) Proc. Natl. Acad. Sci. USA, 80, 5970.PubMedGoogle Scholar
  277. 277.
    McClintock, B. (1984) Science, 226, 792.PubMedGoogle Scholar
  278. 278.
    Jordan, E., Saedler, H. and Starlinger, P. (1968) Mol. Gen. Genet., 102, 353.PubMedGoogle Scholar
  279. 279.
    Shapiro, J. A. (1969) J. Mol. Biol., 40, 93.PubMedGoogle Scholar
  280. 280.
    Reznikoff, W. S. (1983) in Gene Function in Prokaryotes (eds J. Beckwith, J. Davies and J. A. Gallant), Cold Spring Harbor Monograph Series, p. 229.Google Scholar
  281. 281.
    Syvanen, M. (1984) Annu. Rev. Genet., 18, 271.PubMedGoogle Scholar
  282. 282.
    Shapiro, J. A. (1983) Mobile Genetic Elements, Academic Press, New York.Google Scholar
  283. 283.
    Grindley, N. D. F. and Reed, R. R. (1985) Annu. Rev. Biochem., 54, 863.PubMedGoogle Scholar
  284. 284.
    Berg, D. E. and Howe, M. (1989) Mobile DNA, American Society for Microbiology, Washington.Google Scholar
  285. 285.
    Galas, D. J. and Chandler, M. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 109.Google Scholar
  286. 286.
    Berg, D. E. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 185.Google Scholar
  287. 287.
    Kleckner, N. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 227.Google Scholar
  288. 288.
    Sherratt, D. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 163.Google Scholar
  289. 289.
    Pato, M. L. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 23.Google Scholar
  290. 290.
    Mizuuchi, K. and Craigie, R. (1986) Annu. Rev. Genet., 20, 385.PubMedGoogle Scholar
  291. 291.
    Shapiro, J. A. (1979) Proc. Natl. Acad. Sci. USA, 76, 1933.PubMedGoogle Scholar
  292. 292.
    Ohtsubo, E., Zenilman, M., Ohtsubo, H., McCormick, M., Machida, C. and Machida, Y. (1981) Cold Spring Harbor Symp. Quant. Biol., 45, 283.PubMedGoogle Scholar
  293. 293.
    Grindley, N. D. F. and Sherratt, D. (1979) Cold Spring Harbor Symp. Quant. Biol., 43, 1257.PubMedGoogle Scholar
  294. 294.
    Mizuuchi, K. (1984) Cell, 39, 395.PubMedGoogle Scholar
  295. 295.
    Craigie, R. and Mizuuchi, K. (1985) Cell, 41, 867.PubMedGoogle Scholar
  296. 296.
    Finegan, D. J. (1989) Trends Genet., 5, 103.Google Scholar
  297. 297.
    Craig, N. L. (1990) Cell, 62, 399.PubMedGoogle Scholar
  298. 298.
    Engels, W. R. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 437.Google Scholar
  299. 299.
    Fedoroff, N. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 375.Google Scholar
  300. 300.
    Varmus, H. and Brown, P. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 53.Google Scholar
  301. 301.
    Grandgenett, D. P. and Mumm, S. (1990) Cell, 60, 3.PubMedGoogle Scholar
  302. 302.
    Plasterk, R. H. A. (1990) New Biologist, 2, 787.PubMedGoogle Scholar
  303. 303.
    Rubin, G. M. (1983) in Mobile Genetic Elements (ed. J. A. Shapiro), Academic Press, New York, p. 329.Google Scholar
  304. 304.
    Bingham, P. M. and Zachar, Z. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 485.Google Scholar
  305. 305.
    Saigo, K., Kugimiya, W., Matsuo, Y., Inouye, S., Yoshioka, K. and Yuki, S. (1984) Nature (London), 312, 659.Google Scholar
  306. 306.
    Mount, S. M. and Rubin, G. M. (1985) Mol Cell. Biol., 5, 1630.PubMedGoogle Scholar
  307. 307.
    Adams, S. E., Kingsman, S. M. and Kingsman, A. J. (1987) BioEssays, 7, 3.PubMedGoogle Scholar
  308. 308.
    Boeke, J. D. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 335.Google Scholar
  309. 309.
    Boeke, J. D., Garfinkel, D. J., Styles, C. A. and Fink, G. R. (1985) Cell, 40, 491.PubMedGoogle Scholar
  310. 310.
    Jaenisch, R. (1983) Cell, 32, 5.PubMedGoogle Scholar
  311. 311.
    Jenkins, N. A., Copeland, N. G., Taylor, B. A. and Lee, B. K. (1981) Nature (London), 293, 370.Google Scholar
  312. 312.
    Ono, M., Toh, H., Miyata, T. and Awaya, T. (1985) J. Virol., 55, 387.PubMedGoogle Scholar
  313. 313.
    Fanning, T. G. and Singer, M. F. (1987) Biochim. Biophys. Acta, 910, 203.PubMedGoogle Scholar
  314. 314.
    Hutchison, C. A., Hardies, S. C., Loeb, D. D., Shehee, W. R. and Edgell, M. H. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 593.Google Scholar
  315. 315.
    Di Nocera, P. P. and Sakaki, Y. (1990) Trends Genet., 6, 29.PubMedGoogle Scholar
  316. 316.
    Finnegan, D. J. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 503.Google Scholar
  317. 317.
    Bucheton, A. (1990) Trends Genet., 6, 16.PubMedGoogle Scholar
  318. 318.
    Varmus, H. E. (1989) Cell, 56, 721.PubMedGoogle Scholar
  319. 319.
    Deininger, P. (1989) in Mobile DNA (eds D. E. Berg and M. Howe), American Society for Microbiology, Washington, p. 619.Google Scholar
  320. 320.
    Vanin, E. F. (1985) Annu. Rev. Genet., 19, 253.PubMedGoogle Scholar
  321. 321.
    Wagner, M. (1986) Trends Genet, 2, 134.Google Scholar
  322. 322.
    Stein, J. P., Munjaal, R. P., Lagace, L., Lai, E. C., O’Malley, B. W. et al. (1983) Proc. Natl. Acad. Sci. USA, 80, 6485.PubMedGoogle Scholar
  323. 323.
    Soares, M. B., Schon, E., Henderson, A., Karathanasis, S. K., Cate, R. et al. (1985) Mol. Cell. Biol., 5, 2090.PubMedGoogle Scholar
  324. 324.
    Baltimore, D. (1985) Cell, 40, 481.PubMedGoogle Scholar
  325. 325.
    Boeke, J. D. (1990) Cell, 61, 193.PubMedGoogle Scholar
  326. 326.
    Van Ardsall, S. W., Denison, R. A., Bernstein, L. B., Weiner, A. M., Manser, T. et al. (1981) Cell, 26, 11.Google Scholar
  327. 327.
    Bernstein, L. B., Mount, S. M. and Weiner, A. M. (1983) Cell, 32, 461.PubMedGoogle Scholar
  328. 328.
    Ullu, E. and Weiner, A. M. (1984) EMBO J., 3, 3303.PubMedGoogle Scholar
  329. 329.
    Hsu, M.-Y., Inouye, M. and Inouye, S. (1991) Proc. Natl. Acad. Sci. USA, 87, 9454.Google Scholar
  330. 330.
    Stark, W. M., Sherratt, D. J. and Boocock, M. R. (1989) Cell, 58, 779.PubMedGoogle Scholar
  331. 331.
    Sanderson, M. R., Freemont, P. S., Rice, P. A., Goldman, A., Hatfull, G. F. et al. (1990) Cell, 63, 1323.PubMedGoogle Scholar
  332. 332.
    Egel, R., Nielsen, O. and Weilguny, D. (1990) Trends Genet., 6, 369.PubMedGoogle Scholar
  333. 333.
    Murchie, A. I. H., Clegg, R. M., von Kitzing, E., Duckett, D. R., Diekmann, S. et al. (1989) Nature (London), 341, 763.Google Scholar
  334. 334.
    Holmes, J., Clarke, S. and Modrich, P. (1990) Proc. Natl. Acad. Sci. USA, 87, 5837.PubMedGoogle Scholar
  335. 335.
    Wiebauer, K. and Jiricny, J. (1990) Proc. Natl. Acad. Sci. USA, 87, 5842.PubMedGoogle Scholar
  336. 336.
    Heywood, L. A. and Burke, J. F. (1990) BioEssays, 12, 473.PubMedGoogle Scholar
  337. 337.
    Croce, C. M. (1987) Cell, 49, 155.PubMedGoogle Scholar
  338. 338.
    Kleckner, N. (1990) Annu. Rev. Cell Biol., 6, 297.PubMedGoogle Scholar
  339. 339.
    Leibold, D. M., Swergold, G. D., Singer, M. F., Thayer, R.E., Dombroski, B. A. et al. (1990) Proc. Natl. Acad. Sci. USA, 87, 6990.PubMedGoogle Scholar

Copyright information

© Roger L. P. Adams, John T. Knowler and David P. Leader 1992

Authors and Affiliations

  • Roger L. P. Adams
    • 1
  • John T. Knowler
    • 2
  • David P. Leader
    • 1
  1. 1.Department of BiochemistryUniversity of GlasgowUK
  2. 2.Department of Biological SciencesGlasgow PolytechnicUK

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