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组蛋白H4赖氨酸20甲基转移酶SUV420H1的催化和非催化机制

Catalytic and non-catalytic mechanisms of histone H4 lysine 20 methyltransferase SUV420H1.

作者信息

Abini-Agbomson Stephen, Gretarsson Kristjan, Shih Rochelle M, Hsieh Laura, Lou Tracy, De Ioannes Pablo, Vasilyev Nikita, Lee Rachel, Wang Miao, Simon Matthew, Armache Jean-Paul, Nudler Evgeny, Narlikar Geeta, Liu Shixin, Lu Chao, Armache Karim-Jean

机构信息

Department of Biochemistry and Molecular Pharmacology, New York University Grossman School of Medicine, New York, NY, USA.

Department of Genetics and Development, Columbia University Irving Medical Center, New York, NY, USA.

出版信息

bioRxiv. 2023 Mar 19:2023.03.17.533220. doi: 10.1101/2023.03.17.533220.

Abstract

The intricate regulation of chromatin plays a key role in controlling genome architecture and accessibility. Histone lysine methyltransferases regulate chromatin by catalyzing the methylation of specific histone residues but are also hypothesized to have equally important non-catalytic roles. SUV420H1 di- and tri-methylates histone H4 lysine 20 (H4K20me2/me3) and plays crucial roles in DNA replication, repair, and heterochromatin formation, and is dysregulated in several cancers. Many of these processes were linked to its catalytic activity. However, deletion and inhibition of SUV420H1 have shown distinct phenotypes suggesting the enzyme likely has uncharacterized non-catalytic activities. To characterize the catalytic and non-catalytic mechanisms SUV420H1 uses to modify chromatin, we determined cryo- EM structures of SUV420H1 complexes with nucleosomes containing histone H2A or its variant H2A.Z. Our structural, biochemical, biophysical, and cellular analyses reveal how both SUV420H1 recognizes its substrate and H2A.Z stimulates its activity, and show that SUV420H1 binding to nucleosomes causes a dramatic detachment of nucleosomal DNA from histone octamer. We hypothesize that this detachment increases DNA accessibility to large macromolecular complexes, a prerequisite for DNA replication and repair. We also show that SUV420H1 can promote chromatin condensates, another non-catalytic role that we speculate is needed for its heterochromatin functions. Together, our studies uncover and characterize the catalytic and non-catalytic mechanisms of SUV420H1, a key histone methyltransferase that plays an essential role in genomic stability.

摘要

染色质的复杂调控在控制基因组结构和可及性方面起着关键作用。组蛋白赖氨酸甲基转移酶通过催化特定组蛋白残基的甲基化来调节染色质,但也被推测具有同样重要的非催化作用。SUV420H1使组蛋白H4赖氨酸20(H4K20me2/me3)发生二甲基化和三甲基化,并在DNA复制、修复和异染色质形成中发挥关键作用,且在多种癌症中失调。其中许多过程都与其催化活性有关。然而,SUV420H1的缺失和抑制表现出不同的表型,这表明该酶可能具有尚未被表征的非催化活性。为了表征SUV420H1用于修饰染色质的催化和非催化机制,我们确定了SUV420H1与含有组蛋白H2A或其变体H2A.Z的核小体复合物的冷冻电镜结构。我们的结构、生化、生物物理和细胞分析揭示了SUV420H1如何识别其底物以及H2A.Z如何刺激其活性,并表明SUV420H1与核小体的结合导致核小体DNA从组蛋白八聚体上显著脱离。我们推测这种脱离增加了DNA对大型大分子复合物的可及性,这是DNA复制和修复的先决条件。我们还表明SUV420H1可以促进染色质凝聚,这是我们推测其异染色质功能所需的另一种非催化作用。总之,我们的研究揭示并表征了SUV420H1的催化和非催化机制,SUV420H1是一种在基因组稳定性中起重要作用的关键组蛋白甲基转移酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8602/10055266/84bb09634636/nihpp-2023.03.17.533220v2-f0001.jpg

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