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Heterochromatin establishment at pericentromeres depends on nuclear position

机译:着丝粒中心异染色质的建立取决于核位置

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摘要

Mammalian development begins with fertilization of an oocyte by the sperm followed by genome-wide epigenetic reprogramming. This involves de novo establishment of chromatin domains, including the formation of pericentric heterochromatin. We dissected the spatiotemporal kinetics of the first acquisition of heterochromatic signatures of pericentromeric chromatin and found that the heterochromatic marks follow a temporal order that depends on a specific nuclear localization. We addressed whether nuclear localization of pericentric chromatin is required for silencing by tethering it to the nuclear periphery and show that this results in defective silencing and impaired development. Our results indicate that reprogramming of pericentromeric heterochromatin is functionally linked to its nuclear localization.
机译:哺乳动物的发育始于精子对卵母细胞的受精,然后是全基因组的表观遗传重编程。这涉及从头建立染色质结构域,包括形成周缘异染色质。我们解剖了第一个获取pericentromeric染色质的异色标记的时空动力学,并发现异色标记遵循取决于特定核定位的时间顺序。我们通过将其束缚到核外围解决了是否需要将周围核染色质进行核定位,并表明这会导致有缺陷的沉默和发育受损。我们的结果表明,着重于着丝粒的异染色质重编程与其核定位功能相关。

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