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Review Biochemical Society transactions. 2016 Dec 15;44(6):1581-1602. doi: 10.1042/BST20160227 Q24.32025

Molecular basis for specificity of the Met1-linked polyubiquitin signal

甲硫氨酸连接的泛素信号的特异性分子基础 翻译改进

Paul R Elliott  1

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  • 1 MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge Biomedical Campus, Cambridge CB2 0QH, U.K.
  • DOI: 10.1042/BST20160227 PMID: 27913667

    摘要 Ai翻译

    The post-translational modification of proteins provides a rapid and versatile system for regulating all signalling pathways. Protein ubiquitination is one such type of post-translational modification involved in controlling numerous cellular processes. The unique ability of ubiquitin to form polyubiquitin chains creates a highly complex code responsible for different subsequent signalling outcomes. Specialised enzymes ('writers') generate the ubiquitin code, whereas other enzymes ('erasers') disassemble it. Importantly, the ubiquitin code is deciphered by different ubiquitin-binding proteins ('readers') functioning to elicit particular cellular responses. Ten years ago, the methionine1 (Met1)-linked (linear) polyubiquitin code was first identified and the intervening years have witnessed a seismic shift in our understanding of Met1-linked polyubiquitin in cellular processes, particularly inflammatory signalling. This review will discuss the molecular mechanisms of specificity determination within Met1-linked polyubiquitin signalling.

    Keywords: inflammation; post-translational modification; ubiquitin signalling.

    Keywords:molecular basis; specificity

    Copyright © Biochemical Society transactions. 中文内容为AI机器翻译,仅供参考!

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    期刊名:Biochemical society transactions

    缩写:BIOCHEM SOC T

    ISSN:0300-5127

    e-ISSN:1470-8752

    IF/分区:4.3/Q2

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    Molecular basis for specificity of the Met1-linked polyubiquitin signal