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Control of translation of globin mRNA in embryonic cells

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Abstract

WHEN mouse or rabbit globin mRNA is injected into oocytes of Xenopus laevis both α and β mRNAs are translated but only about one fifth as much α globin is synthesised as β globin1–3. On the other hand, the same message sample results in about equal amounts of α and β globin synthesis in a reticulocyte cell-free system and is believed to contain roughly equal amounts of α and β globin mRNA. Giglioni et al.3 have shown that if haemin is injected into oocytes at the same time as globin mRNA, there is an equal ratio of α:β globin synthesis, and their experiments strongly suggest that this is achieved by increasing the efficiency of translation of α globin mRNA. These experiments thus identified a factor which has a different effect on two kinds of mRNA, and further demonstrated that the microinjection of living cells can reveal regulatory effects not readily seen in the cell-free systems used so far. The experiments reported here were also carried out by injecting mRNA into frog cells. They show that during development a component is formed that alters the ratio of α: β rabbit globin synthesis, a change not seen when mouse globin mRNA is injected. This is therefore a second example of a translational factor revealed by a living cell assay system. This component shows an even higher degree of selectivity in its action than haemin.

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References

  1. Lane, C. D., Marbax, G., and Gurdon, J. B., J. molec. Biol., 61, 73–91 (1971).

    Article  CAS  Google Scholar 

  2. Gurdon, J. B., Lingrel, J. B., and Marbaix, G., J. molec. Biol., 80, 539–551 (1973).

    Article  CAS  Google Scholar 

  3. Giglioni, G., Gianni, A. M., Comi, P., Ottolenghi, S., and Rungger, D., Nature new Biol., 246, 99–102 (1973).

    Article  CAS  Google Scholar 

  4. Brachet, J., Huez, G., and Hubert, E., Proc. natn. Acad. Sci., U.S.A., 70, 543–547 (1973).

    Article  ADS  CAS  Google Scholar 

  5. Gurdon, J. B., Woodland, H. R., and Lingrel, J. B., Devl Biol. (in the press).

  6. Woodland, H. R., Gurdon, J. B., and Lingrel, J. B., Dev. Biol. (in the press).

  7. Lingrel, J. B., and Woodland, H. R., J. molec. Biol. (in the press).

  8. White, J. M., Brain, M. C., and Ali, M. A. M., Br. J. Haemat., 20, 263–275 (1971).

    Article  CAS  Google Scholar 

  9. White, J. M., and Ali, M. A. M., Br. J. Haemat., 24, 481–489 (1973).

    Article  CAS  Google Scholar 

  10. Zucker, W. V., and Schulman, H. M., Biochim. biophys. Acta, 138, 400–410.

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LANE, C., GURDON, J. & WOODLAND, H. Control of translation of globin mRNA in embryonic cells. Nature 251, 436–437 (1974). https://doi.org/10.1038/251436a0

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  • DOI: https://doi.org/10.1038/251436a0

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