首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >When the Lyon(ized chromosome) roars: ongoing expression from an inactive X chromosome
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When the Lyon(ized chromosome) roars: ongoing expression from an inactive X chromosome

机译:当里昂(Ized染色体)咆哮:来自无活性X染色体的持续表达

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摘要

A tribute to Mary Lyon was held in October 2016. Many remarked about Lyon's foresight regarding many intricacies of the X-chromosome inactivation process. One such example is that a year after her original 1961 hypothesis she proposed that genes with Y homologues should escape from X inactivation to achieve dosage compensation between males and females. Fifty-five years later we have learned many details about these escapees that we attempt to summarize in this review, with a particular focus on recent findings. We now know that escapees are not rare, particularly on the human X, and that most lack functionally equivalent Y homologues, leading to their increasingly recognized role in sexually dimorphic traits. Newer sequencing technologies have expanded profiling of primary tissues that will better enable connections to sex-biased disorders as well as provide additional insights into the X-inactivation process. Chromosome organization, nuclear location and chromatin environments distinguish escapees from other X-inactivated genes. Nevertheless, several big questions remain, including what dictates their distinct epigenetic environment, the underlying basis of species differences in escapee regulation, how different classes of escapees are distinguished, and the roles that local sequences and chromosome ultrastructure play in escapee regulation.
机译:致玛丽利昂的致敬于2016年10月举行。许多人关于里昂的远见关于X-染色体灭活过程的许多复杂性。一个这样的例子是在她原来的1961年假设之后一年,她提出与y同源物的基因应该逃离x失活,以达到男性和女性之间的剂量补偿。五十五年后,我们已经学会了有关这些逃避的许多细节,我们试图在本综述中总结,特别关注最近的发现。我们现在知道逃亡者并不罕见,特别是在人类X上,并且大多数缺乏功能相同的y同源物,导致他们在性二态性状中越来越识别的作用。较新的测序技术扩展了主要组织的分析,使得能够更好地实现与性偏见的疾病的联系,并为X-Onactivation过程提供额外的见解。染色体组织,核定位和染色质环境区分逃亡者从其他X-inactivated基因。然而,仍然存在几个大问题,包括决定了他们独特的表观遗传环境,物种差异的潜在差异的潜在基础,如何区分不同类别的逃生,以及局部序列和染色体超微结构在​​逃犯调节中发挥的作用。

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