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LINC 复合物抑制过度染色质抑制。

The LINC Complex Inhibits Excessive Chromatin Repression.

机构信息

Department of Molecular Genetics, Weizmann Institute of Science, Rehovot 7610001, Israel.

Bayer AG, 51368 Leverkusen, Germany.

出版信息

Cells. 2023 Mar 18;12(6):932. doi: 10.3390/cells12060932.

Abstract

The Linker of Nucleoskeleton and Cytoskeleton (LINC) complex transduces nuclear mechanical inputs suggested to control chromatin organization and gene expression; however, the underlying mechanism is currently unclear. We show here that the LINC complex is needed to minimize chromatin repression in muscle tissue, where the nuclei are exposed to significant mechanical inputs during muscle contraction. To this end, the genomic binding profiles of Polycomb, Heterochromatin Protein1 (HP1a) repressors, and of RNA-Pol II were studied in larval muscles lacking functional LINC complex. A significant increase in the binding of Polycomb and parallel reduction of RNA-Pol-II binding to a set of muscle genes was observed. Consistently, enhanced tri-methylated H3K9 and H3K27 repressive modifications and reduced chromatin activation by H3K9 acetylation were found. Furthermore, larger tri-methylated H3K27me3 repressive clusters, and chromatin redistribution from the nuclear periphery towards nuclear center, were detected in live LINC mutant larval muscles. Computer simulation indicated that the observed dissociation of the chromatin from the nuclear envelope promotes growth of tri-methylated H3K27 repressive clusters. Thus, we suggest that by promoting chromatin-nuclear envelope binding, the LINC complex restricts the size of repressive H3K27 tri-methylated clusters, thereby limiting the binding of Polycomb transcription repressor, directing robust transcription in muscle fibers.

摘要

核骨架-细胞质骨架连接体(LINC)复合物转导核机械输入,这些输入被认为控制染色质组织和基因表达;然而,其潜在机制目前尚不清楚。我们在这里表明,LINC 复合物对于最小化肌肉组织中的染色质抑制是必需的,在肌肉收缩过程中,细胞核会受到显著的机械输入。为此,研究了缺乏功能性 LINC 复合物的幼虫肌肉中的多梳蛋白、异染色质蛋白 1(HP1a)抑制剂的基因组结合谱,以及 RNA 聚合酶 II。观察到多梳蛋白的结合显著增加,同时 RNA 聚合酶 II 与一组肌肉基因的结合减少。一致地,发现增强的三甲基化 H3K9 和 H3K27 抑制性修饰以及 H3K9 乙酰化的染色质激活减少。此外,在活的 LINC 突变体幼虫肌肉中检测到更大的三甲基化 H3K27me3 抑制性簇,以及染色质从核周向核中心的重新分布。计算机模拟表明,观察到的染色质与核膜的解离促进了三甲基化 H3K27 抑制性簇的生长。因此,我们认为,通过促进染色质-核膜结合,LINC 复合物限制了抑制性 H3K27 三甲基化簇的大小,从而限制了多梳转录抑制剂的结合,指导肌肉纤维中强大的转录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1dd/10047284/fed91db3bb2c/cells-12-00932-g001.jpg

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