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首页> 外文期刊>The FEBS journal >The formation and sequestration of heterochromatin during development: delivered on 7 September 2012 at the 37th FEBS Congress in Sevilla, Spain.
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The formation and sequestration of heterochromatin during development: delivered on 7 September 2012 at the 37th FEBS Congress in Sevilla, Spain.

机译:在开发过程中异染色质的形成和隔离:2012年9月7日在西班牙塞维利亚举行的第37届FEBS大会上交付。

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摘要

Chromatin is not randomly positioned in the nucleus, but is distributed in subdomains based on its degree of compaction and transcriptional status. Recent studies have shed light on the logic of chromatin distribution, showing that tissue-specific promoters drive distinct patterns of gene positioning during cell-type differentiation. In addition, the sequestration of heterochromatin at the nuclear envelope has been found to depend on lamin and lamin-associated proteins. On the chromatin side, H3K9 monomethylation, dimethylation and trimethylation were shown to be the critical signals for perinuclear anchoring in worm embryonic nuclei. Downregulation of an equivalent histone methyltransferase, G9a, in human cells has a similar effect. In worms, the sequestration of the terminal methyltransferase by repressed chromatin may facilitate the propagation of a heterochromatin compartment, much as the sequestration of the silent information regulatory complex does at telomeric foci in budding yeast. These results argue for conserved logic in eukaryotic nuclear organization. 2013 FEBS.Registry Number/Name of Substance 0 (Heterochromatin). 0 (Histones).
机译:染色质不是随机位于细胞核中,而是根据其紧缩程度和转录状态分布在亚域中。最近的研究揭示了染色质分布的逻辑,表明组织特异性启动子在细胞类型分化过程中驱动基因定位的不同模式。此外,已发现异染色质在核被膜上的螯合取决于lamin和lamin相关蛋白。在染色质方面,H3K9单甲基化,二甲基化和三甲基化是蠕虫胚胎核中核周锚定的关键信号。在人类细胞中等价的组蛋白甲基转移酶G9a的下调具有相似的作用。在蠕虫中,被抑制的染色质螯合末端甲基转移酶可以促进异染色质区室的繁殖,就像沉默信息调节复合物的螯合在发芽酵母中的端粒位点上一样。这些结果证明了真核细胞核组织中的保守逻辑。 2013年FEBS。注册号/物质名称0(异染色质)。 0(组蛋白)。

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