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首页> 外文期刊>Physical review letters >Symmetry-Breaking Model for X-Chromosome Inactivation
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Symmetry-Breaking Model for X-Chromosome Inactivation

机译:X染色体失活的对称突破模型

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In mammals, dosage compensation of X linked genes in female cells is achieved by inactivation of one of their two X chromosomes which is randomly chosen. The earliest steps in X-chromosome inactivation (XCI), namely, the mechanism whereby cells count their X chromosomes and choose between two equivalent X chromosomes, remain mysterious. Starting from the recent discovery of X chromosome colocalization at the onset of X-chromosome inactivation, we propose a statistical mechanics model of XCI, which is investigated by computer simulations and checked against experimental data. Our model describes how a "blocking factor" complex is self-assembled and why only one is formed out of many diffusible molecules, resulting in a spontaneous symmetry breaking in the binding to two identical chromosomes. These results are used to derive a scenario of biological implications.
机译:在哺乳动物中,雌性细胞中X连锁基因的剂量补偿是通过使两个随机选择的X染色体之一失活来实现的。 X染色体灭活(XCI)的最早步骤,即细胞计数其X染色体并在两个相等的X染色体之间进行选择的机制,仍然是未知的。从X染色体失活开始时X染色体共定位的最新发现开始,我们提出了XCI的统计力学模型,该模型通过计算机模拟进行了研究,并与实验数据进行了比较。我们的模型描述了“阻断因子”复合物是如何自组装的,以及为什么许多可扩散分子中仅形成一个,导致自发对称性破坏了与两个相同染色体的结合。这些结果用于推导生物学意义的场景。

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