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The lens proteins in adult and embryos of the periodic albino mutant ofXenopus laevis

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Summary

The crystallins of normal and ap mutants ofX. laevis have been studied using biochemical (electrophoresis in agar and polyacrylamide gels, isoelectric focusing) and immunochemical methods (immunoelectrophoresis, immunodiffusion, immunoabsorption, immunofluorescence, isoelectrofocusing with immunoidentification). The immunochemical analysis was carried out with rabbit antisera prepared against electrophoretic fractions of the mutant lens.

Crystallins of adultX. laevis (ap/ap; ++/++) are heterogenous as judged by electrophoretic mobility, isoelectric point, antigenic and species specificity.

No qualitative nor quantitative differences were found between crystallins of normal and mutant animals at the level of the protein subunits. These conclusions, however, are valid only for those crystallins, which are solubilized at pH 9.0.

Immunofluorescence studies showed that crystallins appear in the normal and mutant embryos at practically the same time. No significant differences in the appearance of specific immunofluorescence between the normal and mutant embryos were found.

Some of the gamma and, perhaps, beta-crystallins appear first; alpha-crystallins appear later. It has been shown for the first time that some gamma-crystallins are formed at advanced developmental stages.

The periodic albino mutation does not affect the function of genes coding for crystallins either in embryos or in the adultX. laevis.

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References

  • Avrameas S, Ternynck T (1969) The cross-linking of proteins with glutaraldehyde and its use for the preparation of immunoadsorbents. Immunochemistry 6:53–66

    PubMed  Google Scholar 

  • Axelsen NH, Krøll J, Weeke B (1973) A manual of quantitative immunoelectrophoresis. Methods and application. Universitetsforlaget, Oslo Bergen Tromsø, pp 25–26

    Google Scholar 

  • Bloemendal H (1977) The vertebrate eye lens. Science 197:127–138

    PubMed  Google Scholar 

  • Bluemink JG, Hoperskaya OA (1975) Ultrastructural evidence for the absence of premelanosomes in eggs of the albino mutant (ap) ofXenopus laevis. Wilhelm Roux's Archives 177:75–79

    Google Scholar 

  • Bours J (1974) Isoelectric focusing and immunochemistry of lens crystallins. Thesis, Utrecht, pp 11–20

  • Brahma SK, Doorenmaalen van WJ (1969) Study of the soluble lens proteins from different amphibian species. Exp Eye Res 8:168–171

    PubMed  Google Scholar 

  • Brahma SK, Bours J (1972) Thin layer isoelectric focusing of the soluble lens extracts from larval stages and adultXenopus laevis. Exp Eye Res 13:309–314

    Google Scholar 

  • Brahma SK, Starre H (1976) Studies on biosynthesis of soluble lens crystallin antigens in the chick by isoelectric focusing in thin-layer polyacrylamide gel. Exp Cell Res 97:175–183

    PubMed  Google Scholar 

  • Campbell JC, Clayton RM, Truman DES (1968) Antigens of the lens ofXenopus laevis. Exp Eye Res 7:4–10

    PubMed  Google Scholar 

  • Clayton RM (1970) Problems of differentiation in the vertebrate lens. Curr Top Dey Biol 5:115–180

    Google Scholar 

  • Clayton RM (1974) Comparative aspects of lens proteins. In: Davson H, Graham LT (eds) The eye vol 5. Academic Press, New York London, pp 399–494

    Google Scholar 

  • Clayton RM (1978) Divergence and convergence in lens cell differentiation: regulation of the formation and specific content of lens fibre cells. In: Lord BI, Potten CS, Cole PJ (eds) Stem cells and tissue homeostasis. Cambridge Univ Press, Cambridge, pp 115–138

    Google Scholar 

  • Clayton RM, Campbell JC, Truman DES (1968) A re-examination of the organ specificity of lens antigens. Exp Eye Res 7:11–29

    PubMed  Google Scholar 

  • Engelhardt NV, Goussev AI, Shipova LYa, Abelev GI (1971) Immunofluorescent study of alpha-fetoprotein (αfp) in liver and tumors. I. Technique of αfp localization in tissue sections. Int J Cancer 7:198–206

    PubMed  Google Scholar 

  • Gorgolyuk NA, Mikhailov AT, Barabanov VM (1978) Immunochemical markers of embryonic lens differentiation inRana temporaria. II. Immunohistochemical analysis of appearance and localization of individual classes of lens proteins. Ontogenez (USSR) 9:449–456

    Google Scholar 

  • Goussev AI (1968) Micromodification of precipitation in agar gel. In: Zilber L (ed) Immunochemical analysis. Meditzina, Moscow, pp 120–142

    Google Scholar 

  • Hoperskaya OA (1975) The development of animals homozygous for a mutation causing periodic albinism (ap) inXenopus laevis. J Embryol Exp Morphol 34:253–264

    PubMed  Google Scholar 

  • Hoperskaya OA (1977) Normalization of the melanin synthesis in the pigmented epithelium of ap albino embryos inXenopus laevis. CR Dokl Acad Sci URSS 236:998–1000

    Google Scholar 

  • Hoperskaya OA (1978) Melanin synthesis activation dependent on inductive influences. Wilhelm Roux's Archives 184:15–28

    Google Scholar 

  • Hoperskaya OA, Golubeva ON (1979) Time pattern and the irreversibility of melanoprotein induction in amphibian retina pigmented epithelium. CR Dokl Acad Sci URSS 249:726–729

    Google Scholar 

  • Lowry OH, Rosebrough HJ, Farr AL, Rendall RJ (1951) Protein measurement with the folin phenol reagent. J Biol Chem 193:256–276

    Google Scholar 

  • McDevitt DS (1972) Sequential appearance of α-, β-, and γ-crystallins in embryonic and metamorphicRana pipiens. Experientia 28:1215–1217

    PubMed  Google Scholar 

  • McDevitt DS, Brahma SK (1978) Ontogeny and localization of the crystallins during embryonic lens development inXenopus laevis. J Exp Zool 186:127–139

    Google Scholar 

  • McDevitt DS, Brahma SK (1974) Ontogeny and localization of the lens crystallins inXenopus laevis lens regeneration. J Embryol Exp Morphol 32:783–794

    PubMed  Google Scholar 

  • McDevitt DS, Brahma SK (1979) Embryonic appearance of α-, β-, and γ-crystallins in the periodical albinism (ap) mutant ofXenopus laevis. Differentiation 14:107–112

    PubMed  Google Scholar 

  • Mikhailov AT (1973) Immunochemical analysis of antigenic differentiation of chick retina during embryogenesis. Thesis, Moscow

  • Mikhailov AT (1978a) Immunochemical markers of embryonic lens differentiation inRana temporaria. I. Composition and properties of water soluble lens antigens. Ontogenez (USSR) 9:439–448

    Google Scholar 

  • Mikhailov AT (1978b) Experimental and biochemical aspects of the lens induction in embryogenesis. Ontogenez (USSR) 9:211–227

    Google Scholar 

  • Mikhailov AT (1979) Immunochemical markers of embryonic lens differentiation inRana temporaria. III. Lens induction and differentiation in the process of cultivation in vitro. Ontogenez (USSR) 10:130–136

    Google Scholar 

  • Mikhailov AT, Gorgolyuk NA (1979) Immunohistochemical identification of specific antigens in stained and embedded in balsam eye lens sections. Bull Exp Biol Med (USSR), N 9:367–369

    Google Scholar 

  • Mikhailov AT, Korneev AYa (1978) Lens proteins of albino periodical mutants ofXenopus laevis. CR Dokl Acad Sci URSS 243:548–550

    Google Scholar 

  • Mikhailov AT, Korneev AYa (1979) An immunochemical study of the lens water soluble proteins in the albino periodical mutants ofXenopus laevis. Ontogenez (USSR) 10:220–230

    Google Scholar 

  • Nieuwkoop PD, Faber J (1956) Normal Table ofXenopus laevis (Daudin). North-Holland Publ Co, Amsterdam

    Google Scholar 

  • Reyer RW (1977) The amphibian eye, development and regeneration. In: Crescitelli F (ed) Handbook of sensory physiology VII/5. Springer, Berlin Heidelberg New York

    Google Scholar 

  • Righetti J, Drysdale JW (1979) Isoelectric Focusing. North Holland Publ Co, Amsterdam New York Oxford

    Google Scholar 

  • Winter A, Ek K, Anderson U-B (1977) Analytical electrofocusing in thin layers of polyacrylamide gels. LKB-Application Note 250 (methodological): 1–13

    Google Scholar 

  • Yamada T (1977) Control mechanisms in cell-type conversion in newt lens regeneration. Karger, Basel, pp 1–20

    Google Scholar 

  • Zwaan J (1963) Immunochemical analysis of the eye lens during development. Thesis, Amsterdam, pp 14–16

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Mikhailov, A.T., Korneev, A.Y. The lens proteins in adult and embryos of the periodic albino mutant ofXenopus laevis . Wilhelm Roux' Archiv 189, 155–163 (1980). https://doi.org/10.1007/BF00868673

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