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Hierarchical Inactivation of a Synthetic Human Kinetochore by a Chromatin Modifier

机译:染色质修饰剂对人类合成线粒体的层次灭活作用

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We previously used a human artificial chromosome (HAC) with a synthetic kinetochore that could be targeted with chromatin modifiers fused to tetracycline repressor to show that targeting of the transcriptional repressor tTS within kinetochore chromatin disrupts kinetochore structure and function. Here we show that the transcriptional corepressor KAP1, a downstream effector of the tTS, can also inactivate the kinetochore. The disruption of kinetochore structure by KAP1 subdomains does not simply result from loss of centromeric CENP-A nucleosomes. Instead it reflects a hierarchical disruption of the outer kinetochore, with CENP-C levels falling before CENP-A levels and, in certain instances, CENP-H being lost more readily than CENP-C. These results suggest that this novel approach to kinetochore dissection may reveal new patterns of protein interactions within the kinetochore.
机译:我们以前使用的人类人工染色体(HAC)具有合成的动线粒体,可以将其与融合到四环素阻遏物上的染色质修饰剂一起靶向,以显示在动线粒体染色质内靶向转录阻遏物tTS会破坏线粒体的结构和功能。在这里,我们显示了转录共加压因子KAP1,tTS的下游效应子,也可以使动粒体失活。 KAP1亚结构域对线粒体结构的破坏不仅仅是由着丝粒CENP-A核小体的损失引起的。相反,它反映了外部动粒的分级破坏,其中CENP-C的水平低于CENP-A的水平,在某些情况下,CENP-H的丢失比CENP-C更容易。这些结果表明,这种新颖的方法对动线虫进行解剖可能会揭示动线虫内蛋白质相互作用的新模式。

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