Fly and frog homoeo domains show homologies with yeast mating type regulatory proteins (original) (raw)
- Letter
- Published: 05 July 1984
- William McGinnis1,
- Andrés E. Carrasco1,
- Eddy M. De Robertis1 &
- …
- Walter J. Gehring1
Nature volume 310, pages 70–71 (1984)Cite this article
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Abstract
Homoeotic genes in the bithorax and Antennapedia complexes of Drosophila melanogaster appear to specify the developmental fate of segments of the fly. Some of these genes (Ultrabithorax, Antennapedia and fushi tarazu) share homology due to their conservation of a ‘homoeo domain’1,2 consisting of 60 amino acids. Cross-hybridization and cloning experiments show that the homoeo domain is conserved in a frog (Xenopus laevis) gene expressed in early development3 and may also be present in earthworm, beetle, chicken, mouse and human genomes2. The extreme conservation found in the amino acid sequences between the Drosophila and Xenopus domains suggests that the domain has a vital function in the control of early development. Here we report the results of a search made in the Dayhoff sequence bank, which reveals a lesser but apparently significant homology between the homoeo domain and the amino acids coded from parts of the _a_1 and _α_2 mating type genes of the yeast _Saccharomyces cerevisiae_4,5.
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References
- McGinnis, W., Levine, M. S., Hafen, E., Kuroiwa, A. & Gehring, W. J. Nature 308, 428–433 (1984).
Article ADS CAS Google Scholar - McGinnis, W., Garber, R. L., Wirz, J., Kuroiwa, A. & Gehring, W. J. Cell (in the press).
- Carrasco, A. E., McGinnis, W., Gehring, W. J. & De Robertis, E. M. Cell (in the press).
- Astell, C. R. et al. Cell 27, 15–23 (1981).
Article CAS Google Scholar - Tatchell, K., Nasmyth, K. A., Hall, B. J., Astelle, C. & Smith, M. Cell 27, 25–35 (1981).
Article CAS Google Scholar - Kabsch, W. & Sander, C. Proc. natn. Acad. Sci. U.S.A. 81, 1075–1078 (1984).
Article ADS CAS Google Scholar - Herskowitz, I. & Oshima, Y. in The Molecular Biology of the Yeast Saccharomyces (eds Strathern, J. N., Jones, E. W. & Broach, J. R.) 181–209 (Cold Spring Harbor Laboratory, New York, 1981).
Google Scholar - Nasmyth, K. A. A. Rev. Genet. 16, 439–500 (1982).
Article CAS Google Scholar - Matthews, B. W., Ohlendorf, D. H., Anderson, W. F., Fisher, R. G. & Takeda, Y. Cold Spring Harb. Symp. quant. Biol. 47, 427–432 (1982).
Article CAS Google Scholar - Ohlendorf, D. H., Anderson, W. F. & Matthews, B. W. J. molec. Evol. 19, 109–114 (1983).
Article ADS CAS Google Scholar - Miller, A. M. EMBO J. 3, 1061–1065 (1984).
Article CAS Google Scholar
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Authors and Affiliations
- Biocentre of the University of Basel, Klingelbergstrasse 70, CH-4056, Basel, Switzerland
John C. W. Shepherd, William McGinnis, Andrés E. Carrasco, Eddy M. De Robertis & Walter J. Gehring
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- John C. W. Shepherd
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Shepherd, J., McGinnis, W., Carrasco, A. et al. Fly and frog homoeo domains show homologies with yeast mating type regulatory proteins.Nature 310, 70–71 (1984). https://doi.org/10.1038/310070a0
- Received: 03 May 1984
- Accepted: 30 May 1984
- Issue Date: 05 July 1984
- DOI: https://doi.org/10.1038/310070a0