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Structural mechanism of cGAS inhibition by thenucleosome

机译:CGAS抑制的结构机制

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摘要

The DNA sensor cyclic GMP-AMP synthase (cGAS) initiates innate immune responses following microbial infection, cellular stress and cancer(1). Upon activation by double-stranded DNA, cytosolic cGAS produces 2'3' cGMP-AMP, which triggers the induction of inflammatory cytokines and type I interferons (2-7). cGAS is also present inside the cell nucleus, which is replete with genomic DNA(8), where chromatin has been implicated in restricting its enzymatic activity(9). However, the structural basis for inhibition of cGAS by chromatin remains unknown. Here we present the cryo-electron microscopy structure of human cGAS bound to nucleosomes. cGAS makes extensive contacts with both the acidic patch of the histone H2A-H2B heterodimer and nucleosomal DNA. The structural and complementary biochemical analysis also find cGAS engaged to a second nucleosome in trans. Mechanistically, binding of the nucleosome locks cGAS into a monomeric state, in which steric hindrance suppresses spurious activation by genomic DNA. We find that mutations to the cGAS-acidic patch interface are sufficient to abolish the inhibitory effect of nucleosomes in vitro and to unleash the activity of cGAS on genomic DNA in living cells. Our work uncovers the structural basis of the interaction between cGAS and chromatin and details a mechanism that permits self-non-self discrimination of genomic DNA by cGAS.
机译:DNA传感器环状GMP-AMP合酶(CGA)在微生物感染,细胞应激和癌症(1)后启动先天免疫应答。通过双链DNA激活后,细胞溶质CGA产生2'3'CGMP-AMP,触发炎症细胞因子和I型干扰素(2-7)的诱导。 CGA也存在于细胞核内,其与基因组DNA(8)的内容一起注入,其中染色质已涉及限制其酶活性(9)。然而,染色质抑制CGA的结构基础仍然未知。在这里,我们介绍了与核肉结合的人CGA的冷冻电子显微镜结构。 CGA与组蛋白H2A-H2B异二聚体和核体DNA的酸性贴剂进行了广泛的接触。结构和互补的生化分析还发现CGA与反式中的第二个核小体接触。机械地,核心锁定CGA的结合成单体状态,其中空间障碍抑制了基因组DNA的杂散活化。我们发现对CGAS-酸性贴剂界面的突变足以在体外取消核体的抑制作用,并释放CGA在活细胞中基因组DNA上的活性。我们的作品揭示了CGA和染色质与CGA和染色质之间相互作用的结构依据,并细节了CGA通过CGA自我判断基因组DNA的机制。

著录项

  • 来源
    《Nature》 |2020年第7835期|668-672|共5页
  • 作者单位

    Friedrich Miescher Inst Biomed Res Basel Switzerland|Univ Basel Basel Switzerland;

    Swiss Fed Inst Technol Lausanne EPFL Grobal Hlth Inst Lausanne Switzerland;

    Swiss Fed Inst Technol Lausanne EPFL Grobal Hlth Inst Lausanne Switzerland;

    Friedrich Miescher Inst Biomed Res Basel Switzerland|Univ Basel Basel Switzerland;

    Swiss Fed Inst Technol Lausanne EPFL Inst Chem Sci & Engn Lausanne Switzerland;

    Swiss Fed Inst Technol Lausanne EPFL Inst Chem Sci & Engn Lausanne Switzerland;

    Friedrich Miescher Inst Biomed Res Basel Switzerland|Univ Basel Basel Switzerland;

    Friedrich Miescher Inst Biomed Res Basel Switzerland|Univ Basel Basel Switzerland;

    Friedrich Miescher Inst Biomed Res Basel Switzerland|Univ Basel Basel Switzerland;

    Swiss Fed Inst Technol Lausanne EPFL Grobal Hlth Inst Lausanne Switzerland;

    Swiss Fed Inst Technol Lausanne EPFL Grobal Hlth Inst Lausanne Switzerland;

    Swiss Fed Inst Technol Lausanne EPFL Inst Chem Sci & Engn Lausanne Switzerland;

    Friedrich Miescher Inst Biomed Res Basel Switzerland|Univ Basel Basel Switzerland;

    Swiss Fed Inst Technol Lausanne EPFL Grobal Hlth Inst Lausanne Switzerland;

  • 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 22:15:35

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