Lessons from comparative analysis of X-chromosome inactivation in mammals.

Ikuhiro Okamoto, Edith Heard
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引用次数: 64

Abstract

In most mammals, X-chromosome inactivation is used as the strategy to achieve dosage compensation between XX females and XY males. This process is developmentally regulated, resulting in the differential treatment of the two X chromosomes in the same nucleus and mitotic heritability of the silent state. A lack of dosage compensation in an XX embryo is believed to result in early lethality, at least in eutherians. Given its fundamental importance, X-chromosome inactivation would be predicted to be a highly conserved process in mammals. However, recent studies have revealed major mechanistic differences in X inactivation between eutherians and marsupials, suggesting that the evolution of the X chromosome as well as developmental differences between mammals have led to diverse evolutionary strategies for dosage compensation.

哺乳动物x染色体失活比较分析的启示。
在大多数哺乳动物中,x染色体失活是实现XX雌性和XY雄性之间剂量补偿的策略。这一过程受到发育调控,导致两个X染色体在同一细胞核中的差异处理和沉默状态的有丝分裂遗传性。在XX胚胎中缺乏剂量补偿被认为会导致早期死亡,至少在真胚胎中是这样。考虑到它的基本重要性,x染色体失活在哺乳动物中被认为是一个高度保守的过程。然而,最近的研究揭示了真动物和有袋动物在X失活机制上的主要差异,这表明X染色体的进化以及哺乳动物之间的发育差异导致了不同的剂量补偿进化策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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