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The worm solution: a chromosome-full of condensin helps gene expression go down.

机译:蠕虫病毒的解决方案:充满凝聚素的染色体有助于基因表达下降。

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摘要

Dosage compensation in the nematode Caenorhabditis elegans is achieved by the binding of a condensin-like dosage compensation complex (DCC) to both X chromosomes in hermaphrodites to downregulate gene expression two-fold. Condensin I(DC), a sub-part of the DCC, differs from the mitotic condensin I complex by a single subunit, strengthening the connection between dosage compensation and mitotic chromosome condensation. The DCC is targeted to X chromosomes by initial binding to a number of recruiting elements, followed by dispersal or spreading to secondary sites. While the complex is greatly enriched on the X chromosomes, many sites on autosomes also bind the complex. DCC binding does not correlate with DCC-mediated repression, suggesting that the complex acts in a chromosome-wide manner, rather than on a gene-by-gene basis. Worm dosage compensation represents an excellent model system to study how condensin-mediated changes in higher order chromatin organization affect gene expression.
机译:线虫秀丽隐杆线虫的剂量补偿是通过将凝缩蛋白样剂量补偿复合物(DCC)与雌雄同体的两个X染色体结合,从而将基因表达下调两倍而实现的。 DCC的一个组成部分-Condensin I(DC)与有丝分裂的condensin I复合物只有一个亚基,从而加强了剂量补偿和有丝分裂染色体凝聚之间的联系。 DCC通过最初与许多募集元素结合,然后分散或扩散到二级位点而靶向X染色体。尽管复合物在X染色体上大量富集,常染色体上的许多位点也结合了复合物。 DCC结合与DCC介导的抑制作用不相关,表明复合物以全染色体方式起作用,而不是逐个基因地起作用。蠕虫剂量补偿代表了一个优秀的模型系统,可研究凝集素介导的高级染色质组织变化如何影响基因表达。

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