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The single active X in human cells: evolutionary tinkering personified

机译:人类细胞中的单个活性X:拟态进化

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All mammals compensate for sex differences in numbers of X chromosomes by transcribing only a single X chromosome in cells of both sexes; however, they differ from one another in the details of the compensatory mechanisms. These species variations result from chance mutations, species differences in the staging of developmental events, and interactions between events that occur concurrently. Such variations, which have only recently been appreciated, do not interfere with the strategy of establishing a single active X, but they influence how it is carried out. In an overview of X dosage compensation in human cells, I point out the evolutionary variations. I also argue that it is the single active X that is chosen, rather than inactive ones. Further, I suggest that the initial events in the process—those that precede silencing of future inactive X chromosomes—include randomly choosing the future active X, most likely by repressing its XIST locus.
机译:所有哺乳动物都通过在两个性别的细胞中仅转录单个X染色体来弥补X染色体数目上的性别差异。但是,它们在补偿机制的细节上彼此不同。这些物种变异是由偶然突变,发育事件的阶段中的物种差异以及同时发生的事件之间的相互作用引起的。直到最近才意识到这种变化不会干扰建立单个活动X的策略,但会影响其执行方式。在对人类细胞中X剂量补偿的概述中,我指出了进化的变化。我还认为,选择的是单个活动X,而不是非活动X。此外,我建议该过程中的初始事件(那些沉默未来的非活跃X染色体之前的事件)包括随机选择未来的活跃X,最有可能通过抑制其XIST基因座来进行。

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  • 来源
    《Human Genetics》 |2011年第2期|p.281-293|共13页
  • 作者

    Barbara R. Migeon;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 01:50:21

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