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Molecular basis of nucleosomal H3K36 methylation by NSD methyltransferases

机译:Nucleosomal H3K36甲基化的分子基础通过NSD甲基转移酶

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摘要

Histone methyltransferases of the nuclear receptor-binding SET domain protein (NSD) family, including NSD1, NSD2 and NSD3, have crucial roles in chromatin regulation and are implicated in oncogenesis~(1,2). NSD enzymes exhibit an autoinhibitory state that is relieved by binding to nucleosomes, enabling dimethylation of histone H3 at Lys36 (H3K36)~(3-7). However, the molecular basis that underlies this mechanism is largely unknown. Here we solve the cryo-electron microscopy structures of NSD2 and NSD3 bound to mononucleosomes. We find that binding of NSD2 and NSD3 to mononucleosomes causes DNA near the linker region to unwrap, which facilitates insertion of the catalytic core between the histone octamer and the unwrapped segment of DNA. A network of DNA- and histone-specific contacts between NSD2 or NSD3 and the nucleosome precisely defines the position of the enzyme on the nucleosome, explaining the specificity of methylation to H3K36. Intermolecular contacts between NSD proteins and nucleosomes are altered by several recurrent cancer-associated mutations in NSD2 and NSD3. NSDs that contain these mutations are catalytically hyperactive in vitro and in cells, and their ectopic expression promotes the proliferation of cancer cells and the growth of xenograft tumours. Together, our research provides molecular insights into the nucleosome-based recognition and histone-modification mechanisms of NSD2 and NSD3, which could lead to strategies for therapeutic targeting of proteins of the NSD family.
机译:核受体结合设定结构域蛋白(NSD)系列的组蛋白甲基转移酶,包括NSD1,NSD2和NSD3,在染色质调节中具有至关重要的作用,并且涉及一种致癌〜(1,2)。 NSD酶表现出通过与核体结合而放松的自动抑制状态,使组织H3在Lys36(H3K36)〜(3-7)中的二甲基化。然而,潜在这种机制的分子基础在很大程度上是未知的。在这里,我们解决了NSD2和NSD3与单核糖瓜结合的低温电子显微镜结构。我们发现NSD2和NSD3的结合使得单核糖瓜导致接头区域附近的DNA,以解开,这有助于在组蛋白八寡发射机和未包装的DNA段之间插入催化芯。 NSD2或NSD3之间的DNA和组蛋白特异性触点网络和核小体之间的网络精确地定义了酶对核小体上的位置,解释了对H3K36的甲基化的特异性。 NSD蛋白质和核体之间的分子间触点通过NSD2和NSD3中的几种复发性癌症相关突变改变。含有这些突变的NSD在体​​外和细胞中催化过度活跃,其异位表达促进癌细胞的增殖和异种移植肿瘤的生长。我们的研究共同提供了NSD2和NSD3的基于核心的识别和组蛋白改性机制的分子见解,这可能导致NSD家族蛋白质治疗靶向的策略。

著录项

  • 来源
    《Nature》 |2021年第7846期|498-503|共6页
  • 作者单位

    Department of Biology Cryo-EM Centre Southern University of Science and Technology;

    Key Laboratory of Cell Proliferation and Regulation Biology of Ministry of Education College of Life Sciences Beijing Normal University;

    Department of Biology Stanford University;

    Key Laboratory of Cell Proliferation and Regulation Biology of Ministry of Education College of Life Sciences Beijing Normal University;

    Department of Biology Stanford University;

    Structural Biology Program Memorial Sloan Kettering Cancer Center;

    Key Laboratory of Cell Proliferation and Regulation Biology of Ministry of Education College of Life Sciences Beijing Normal University;

    Key Laboratory of Cell Proliferation and Regulation Biology of Ministry of Education College of Life Sciences Beijing Normal University;

    Key Laboratory of Cell Proliferation and Regulation Biology of Ministry of Education College of Life Sciences Beijing Normal University;

    Key Laboratory of Cell Proliferation and Regulation Biology of Ministry of Education College of Life Sciences Beijing Normal University;

    Key Laboratory of Cell Proliferation and Regulation Biology of Ministry of Education College of Life Sciences Beijing Normal University;

    Department of Biology Stanford University;

    Structural Biology Program Memorial Sloan Kettering Cancer Center;

    Key Laboratory of Cell Proliferation and Regulation Biology of Ministry of Education College of Life Sciences Beijing Normal University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 23:00:53

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