4.8 Article

Regulation of apoptosis by an intrinsically disordered region of Bcl-xL

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NATURE CHEMICAL BIOLOGY
卷 14, 期 5, 页码 458-+

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41589-018-0011-x

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资金

  1. NIH [R01CA082491, 1R01GM083159, R01GM96208, R01 CA179087, R35 GM118186]
  2. National Cancer Institute Cancer Center Support grant [P30CA21765, P30CA030199]
  3. ALSAC
  4. Neoma Boadway Fellowship from SJCRH

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Intrinsically disordered regions (IDRs) of proteins often regulate function upon post-translational modification (PTM) through interactions with folded domains. An IDR linking two alpha-helices (alpha 1-alpha 2) of the antiapoptotic protein Bcl-xL experiences several PTMs that reduce antiapoptotic activity. Here, we report that PTMs within the alpha 1-alpha 2 IDR promote its interaction with the folded core of Bcl-xL that inhibits the proapoptotic activity of two types of regulatory targets, BH3-only proteins and p53. This autoregulation utilizes an allosteric pathway whereby, in one direction, the IDR induces a direct displacement of p53 from Bcl-xL coupled to allosteric displacement of simultaneously bound BH3-only partners. This pathway operates in the opposite direction when the BH3-only protein PUMA binds to the BH3 binding groove of Bcl-xL, directly displacing other bound BH3-only proteins, and allosterically remodels the distal site, displacing p53. Our findings show how an IDR enhances functional versatility through PTM-dependent allosteric regulation of a folded protein domain.

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