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A tDNA establishes cohesion of a neighboring silent chromatin domain.

机译:tDNA建立相邻沉默染色质域的凝聚力。

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摘要

DNA replication generates sister chromatid pairs that are bound to one another until anaphase onset. The process, termed sister chromatid cohesion, requires the multisubunit cohesin complex that resides at centromeres and sites where genes converge. At the HMR mating-type locus of budding yeast, cohesin associates with a heterochromatin-like structure known as silent chromatin. In this report, we show that silent chromatin is necessary but not sufficient for cohesion of the replicating locus. A tRNA gene (tDNA) that delimits the silent chromatin domain is also required, as are subunits of the TFIIIB and RSC complexes that bind the gene. Non-tDNA boundary elements do not substitute for tDNAs in cohesion, suggesting that barrier activity is not responsible for the phenomenon. The results reveal an unexpected role for tDNAs and RNA polymerase III-associated proteins in establishment of sister chromatid cohesion.
机译:DNA复制产生姐妹染色单体对,它们彼此结合直到后期开始。该过程称为姐妹染色单体凝聚,需要多亚基凝聚素复合物,该复合物位于着丝粒和基因会聚的位点。在发芽酵母的HMR交配型基因座上,粘着素与称为异染色质的异染色质样结构缔合。在此报告中,我们表明沉默染色质对于复制基因座的内聚是必要的,但还不足以。还需要界定沉默染色质结构域的tRNA基因(tDNA),以及与该基因结合的TFIIIB和RSC复合物的亚基。非tDNA边界元素在凝聚力方面不能替代tDNA,这表明屏障活性与现象无关。结果揭示了tDNA和RNA聚合酶III相关蛋白在建立姐妹染色单体内聚力中的出乎意料的作用。

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