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表观遗传学工程:组蛋白 H3K9 乙酰化与动粒结构和功能兼容。

Epigenetic engineering: histone H3K9 acetylation is compatible with kinetochore structure and function.

机构信息

Wellcome Trust Centre for Cell Biology, University of Edinburgh, King's Building, Mayfield Road, Edinburgh EH9 3JR, UK.

出版信息

J Cell Sci. 2012 Jan 15;125(Pt 2):411-21. doi: 10.1242/jcs.090639. Epub 2012 Feb 13.

Abstract

Human kinetochores are transcriptionally active, producing very low levels of transcripts of the underlying alpha-satellite DNA. However, it is not known whether kinetochores can tolerate acetylated chromatin and the levels of transcription that are characteristic of housekeeping genes, or whether kinetochore-associated 'centrochromatin', despite being transcribed at a low level, is essentially a form of repressive chromatin. Here, we have engineered two types of acetylated chromatin within the centromere of a synthetic human artificial chromosome. Tethering a minimal NF-κB p65 activation domain within kinetochore-associated chromatin produced chromatin with high levels of histone H3 acetylated on lysine 9 (H3K9ac) and an ~10-fold elevation in transcript levels, but had no substantial effect on kinetochore assembly or function. By contrast, tethering the herpes virus VP16 activation domain produced similar modifications in the chromatin but resulted in an ~150-fold elevation in transcripts, approaching the level of transcription of an endogenous housekeeping gene. This rapidly inactivated kinetochores, causing a loss of assembled CENP-A and blocking further CENP-A assembly. Our data reveal that functional centromeres in vivo show a remarkable plasticity--kinetochores tolerate profound changes to their chromatin environment, but appear to be critically sensitive to the level of centromeric transcription.

摘要

人类着丝粒具有转录活性,能转录其下的α-卫星 DNA 产生极低水平的转录本。然而,目前尚不清楚着丝粒是否能耐受乙酰化染色质和管家基因特有的转录水平,或者尽管着丝粒相关的“中心粒染色质”以低水平转录,但它是否本质上是一种抑制性染色质。在这里,我们在合成的人类人工染色体的着丝粒内构建了两种类型的乙酰化染色质。在着丝粒相关染色质内固定最小的 NF-κB p65 激活结构域会产生具有高水平组蛋白 H3 赖氨酸 9 乙酰化(H3K9ac)和转录本水平提高约 10 倍的染色质,但对着丝粒组装或功能没有实质性影响。相比之下,固定疱疹病毒 VP16 激活结构域会导致染色质发生类似的修饰,但会导致转录本水平提高约 150 倍,接近内源性管家基因的转录水平。这迅速使着丝粒失活,导致组装的 CENP-A 丢失,并阻止进一步的 CENP-A 组装。我们的数据表明,体内功能性着丝粒表现出显著的可塑性——着丝粒能耐受其染色质环境的深刻变化,但对着丝粒转录的水平似乎极为敏感。

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