本构异染色质通过H3K9me3介导的染色质压实控制核力学、形态和完整性。

IF 4.5
Nucleus (Austin, Tex.) Pub Date : 2025-12-01 Epub Date: 2025-04-09 DOI:10.1080/19491034.2025.2486816
Gianna Manning, Andy Li, Nebiyat Eskndir, Marilena Currey, Andrew D Stephens
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引用次数: 0

摘要

异常的核形态是人类疾病的一个标志,并导致核功能障碍。异染色质的减少使核力学受到干扰,使核变弱,导致核起泡和破裂。虽然异染色质的作用是已知的,但组成异染色质甲基化状态的单独作用仍然是难以捉摸的。使用MEF和HT1080细胞,我们通过组蛋白甲基转移酶抑制剂分离了组成型异染色质H3K9甲基化状态的个体贡献。chaeoxytocin抑制SUV39H1可下调H3K9三甲基化(me3), BIX01294抑制G9a可下调H3K9二甲基化(me2)。总的来说,H3K9me3的缺失增加了核泡和间期核破裂,这是由于色中心分解导致核刚性降低。相反,H3K9me2的损失减少了核泡和破裂,核刚度增加,色心更致密。我们发现兼性异染色质和HP1α对于色中心压实不是必需的。本构异染色质提供必要的核机械支持,以维持核的形状和完整性,通过染色质压实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Constitutive heterochromatin controls nuclear mechanics, morphology, and integrity through H3K9me3 mediated chromocenter compaction.

Aberrant nuclear morphology is a hallmark of human disease and causes nuclear dysfunction. Perturbed nuclear mechanics via reduced heterochromatin weakens the nucleus resulting in nuclear blebbing and rupture. While the role of heterochromatin is known, the separate roles of constitutive heterochromatin methylation states remains elusive. Using MEF and HT1080 cells, we isolated the individual contribution of constitutive heterochromatin H3K9 methylation states through histone methyltransferase inhibitors. Inhibition of SUV39H1 via Chaetocin downregulates H3K9 trimethylation (me3), while inhibition of G9a via BIX01294 downregulates H3K9 dimethylation (me2). Overall, the loss of H3K9me3 increased nuclear blebbing and rupture in interphase nuclei due to decreased nuclear rigidity from decompaction of chromocenters. Oppositely, loss of H3K9me2 decreased nuclear blebbing and rupture with increased nuclear rigidity and more compact chromocenters. We show that facultative heterochromatin and HP1α are non-essential for chromocenter compaction. Constitutive heterochromatin provides essential nuclear mechanical support to maintain nuclear shape and integrity through chromocenter compaction.

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