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异构化组蛋白H4的半合成揭示了染色质对分子衰老的稳健性和脆弱性。

Semisynthesis of Isomerized Histone H4 Reveals Robustness and Vulnerability of Chromatin toward Molecular Aging.

作者信息

Zhang Tianze, Guerra Luis F, Berlina Yana, Wilson Jon R, Fierz Beat, Müller Manuel M

机构信息

Department of Chemistry, King's College London, Britannia House, 7 Trinity Street, London SE1 1DB, U.K.

École Polytechnique Fédérale de Lausanne (EPFL), ISIC, Lausanne CH-1015, Switzerland.

出版信息

J Am Chem Soc. 2025 Feb 12;147(6):4952-4961. doi: 10.1021/jacs.4c14136. Epub 2025 Feb 2.

Abstract

Proteins are subject to aging in the form of spontaneous, nonenzymatic post-translational modifications (PTMs). One such PTM is the formation of the β-linked isomer l-isoaspartic acid (isoAsp) from aspartic acid (Asp) or asparagine residues, which tends to occur in long-lived proteins. Histones can exhibit half-lives on the order of 100 days, and unsurprisingly, isoAsp formation has been observed in nearly every histone family. Delineating the molecular consequences of isoAsp formation in histones is challenging due to the multitude of processes that occur on such time scales. To isolate the effects of a specific isoAsp modification thus necessitates precise characterization with well-defined substrates. Here, we adapt a protein semisynthesis approach to generate full-length variants of histone H4 in which the canonical Asp at position 24 is replaced by its isoAsp isomer (H4isoD24). This variant was incorporated into chromatin templates, and the resulting constructs were used to interrogate key parameters of chromatin integrity and maintenance : compaction, nucleosome remodeling, and methylation of H4 lysine 20 (H4K20). Remarkably, despite its disruptive changes to the backbone's spacing and direction, isoD24 did not dramatically disrupt Mg-mediated chromatin self-association or nucleosome repositioning by the remodeler Chd1. In contrast, H4isoD24 significantly inhibited both Set8- and Suv4-20h1-catalyzed methylation at H4K20. These results suggest that H4isoD24 gives rise to a complex reorganization of the chromatin functional landscape, in which macroscopic processes show robustness and local mechanisms exhibit vulnerability to the presence of this mark.

摘要

蛋白质会以自发的、非酶促的翻译后修饰(PTM)的形式发生老化。其中一种PTM是由天冬氨酸(Asp)或天冬酰胺残基形成β-连接的异构体l-异天冬氨酸(isoAsp),这种情况往往发生在长寿蛋白中。组蛋白的半衰期可达100天左右,不出所料,几乎在每个组蛋白家族中都观察到了isoAsp的形成。由于在这样的时间尺度上会发生众多过程,因此描绘组蛋白中isoAsp形成的分子后果具有挑战性。为了分离特定isoAsp修饰的影响,因此需要用明确的底物进行精确表征。在这里,我们采用蛋白质半合成方法来生成组蛋白H4的全长变体,其中第24位的标准Asp被其isoAsp异构体(H4isoD24)取代。将该变体整合到染色质模板中,并使用所得构建体来探究染色质完整性和维持的关键参数:压缩、核小体重塑以及H4赖氨酸20(H4K20)的甲基化。值得注意的是,尽管isoD24对主链的间距和方向有破坏性变化,但它并没有显著破坏Mg介导的染色质自缔合或重塑因子Chd1介导的核小体重新定位。相比之下,H4isoD24显著抑制了Set8和Suv4-20h1催化的H4K20甲基化。这些结果表明,H4isoD24导致了染色质功能景观的复杂重组,其中宏观过程表现出稳健性,而局部机制则对这种标记的存在表现出脆弱性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b387/11826994/9923a218cd38/ja4c14136_0001.jpg

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