Sex chromosome-encoded protein homologs: current progress and open questions
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Springer Science and Business Media LLC
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https://www.nature.com/articles/s41594-024-01362-y.pdf
Reference147 articles.
1. Cortez, D. et al. Origins and functional evolution of Y chromosomes across mammals. Nature 508, 488–493 (2014). Together with Bellot et al. (2014), this study traces the evolution of the Y chromosome (and sexually dimorphic proteins) in mammals.
2. Wallis, M. C., Waters, P. D. & Graves, J. A. M. Sex determination in mammals—before and after the evolution of SRY. Cell. Mol. Life Sci. 65, 3182–3195 (2008).
3. Mueller, J. L. et al. Independent specialization of the human and mouse X chromosomes for the male germ line. Nat. Genet. 45, 1083–1087 (2013).
4. Bellott, D. W. et al. Convergent evolution of chicken Z and human X chromosomes by expansion and gene acquisition. Nature 466, 612–616 (2010).
5. Bellott, D. W. et al. Mammalian Y chromosomes retain widely expressed dosage-sensitive regulators. Nature 508, 494–499 (2014). Together with Cortez et al., this study traces the evolution of the Y chromosome (and sexually dimorphic proteins) in mammals.
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1. Comparing the roles of sex chromosome-encoded protein homologs in gene regulation;Genes & Development;2024-07-24
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