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Structural basis of DNA binding to human YB-1 cold shock domain regulated by phosphorylation

机译:通过磷酸化调节对人Yb-1冷休克域的DNA结合的结构基础

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摘要

Human Y-box binding protein 1 (YB-1) is a multifunctional protein and overexpressed in many types of cancer. It specifically recognizes DNA/RNA through a cold shock domain (CSD) and regulates nucleic acid metabolism. The C-terminal extension of CSD and the phosphorylation of S102 are indispensable for YB-1 function. Until now, the roles of the C-terminal extension and phosphorylation in gene transcription and translation are still largely unknown. Here, we solved the structure of human YB-1 CSD with a C-terminal extension sequence (CSDex). The structure reveals that the extension interacts with several residues in the conventional CSD and adopts a rigid structure instead of being disordered. Either deletion of this extension or phosphorylation of S102 destabilizes the protein and results in partial unfolding. Structural characterization of CSDex in complex with a ssDNA heptamer shows that all the seven nucleotides are involved in DNA-protein interactions and the C-terminal extension provides a unique DNA binding site. Our DNA-binding study indicates that CSDex can recognize more DNA sequences than previously thought and the phosphorylation reduces its binding to ssDNA dramatically. Our results suggest that gene transcription and translation can be regulated by changing the affinity of CSDex binding to DNA and RNA through phosphorylation, respectively.
机译:人Y盒结合蛋白1(YB-1)是多官能蛋白,在许多类型的癌症中过表达。它通过冷休克结构域(CSD)特别识别DNA / RNA并调节核酸代谢。 CSD的C末端延伸和S102的磷酸化对于YB-1功能是必不可少的。到目前为止,C末端延伸和基因转录和翻译中的磷酸化的作用仍然很大程度上是未知的。在这里,我们用C末端延伸序列(CSDEX)解决了人YB-1 CSD的结构。该结构表明,延伸延伸与传统CSD中的几个残基相互作用,并采用刚性结构而不是混乱。 S102的这种延伸或磷酸化的缺失使蛋白质不稳定并导致部分展开。在复杂CSDex的结构表征与ssDNA的七聚体显示,所有的7个核苷酸参与DNA-蛋白质相互作用和C末端延伸提供了一个独特的DNA结合位点。我们的DNA结合研究表明,CSDEX可以识别比以前认为更多的DNA序列,并且磷酸化急剧降低其与SSDNA的结合。我们的研究结果表明,通过分别通过磷酸化改变CSDEX与DNA和RNA的亲和力来调节基因转录和翻译。

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  • 来源
    《Nucleic Acids Research》 |2020年第16期|共11页
  • 作者单位

    Chinese Acad Sci State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Natl Ctr Magnet Resonance Wuhan Key Lab Magnet Re Innovat Acad Precis Measurement Sci &

    Technol Wuh Wuhan 430071 Peoples R China;

    Natl Univ Singapore Dept Biol Sci 14 Sci Dr 4 Singapore 117543 Singapore;

    Chinese Acad Sci State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Natl Ctr Magnet Resonance Wuhan Key Lab Magnet Re Innovat Acad Precis Measurement Sci &

    Technol Wuh Wuhan 430071 Peoples R China;

    Chinese Acad Sci State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Natl Ctr Magnet Resonance Wuhan Key Lab Magnet Re Innovat Acad Precis Measurement Sci &

    Technol Wuh Wuhan 430071 Peoples R China;

    Chinese Acad Sci State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Natl Ctr Magnet Resonance Wuhan Key Lab Magnet Re Innovat Acad Precis Measurement Sci &

    Technol Wuh Wuhan 430071 Peoples R China;

    Chinese Acad Sci State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Natl Ctr Magnet Resonance Wuhan Key Lab Magnet Re Innovat Acad Precis Measurement Sci &

    Technol Wuh Wuhan 430071 Peoples R China;

    Chinese Acad Sci State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Natl Ctr Magnet Resonance Wuhan Key Lab Magnet Re Innovat Acad Precis Measurement Sci &

    Technol Wuh Wuhan 430071 Peoples R China;

    Chinese Acad Sci State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Natl Ctr Magnet Resonance Wuhan Key Lab Magnet Re Innovat Acad Precis Measurement Sci &

    Technol Wuh Wuhan 430071 Peoples R China;

    Natl Univ Singapore Dept Biol Sci 14 Sci Dr 4 Singapore 117543 Singapore;

    Chinese Acad Sci State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Natl Ctr Magnet Resonance Wuhan Key Lab Magnet Re Innovat Acad Precis Measurement Sci &

    Technol Wuh Wuhan 430071 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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