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

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作者
Ariele Viacava Follis
Fabien Llambi
Halime Kalkavan
Yong Yao
Aaron H. Phillips
Cheon-Gil Park
Francesca M. Marassi
Douglas R. Green
Richard W. Kriwacki
机构
[1] St. Jude Children’s Research Hospital,Department of Structural Biology
[2] St. Jude Children’s Research Hospital,Department of Immunology
[3] Sanford Burnham Prebys Medical Discovery Institute,Department of Microbiology, Immunology and Biochemistry
[4] University of Tennessee Health Sciences Center,undefined
[5] Blueprint Medicines,undefined
来源
Nature Chemical Biology | 2018年 / 14卷
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摘要
Intrinsically disordered regions (IDRs) of proteins often regulate function upon post-translational modification (PTM) through interactions with folded domains. An IDR linking two α-helices (α1-α2) of the antiapoptotic protein Bcl-xL experiences several PTMs that reduce antiapoptotic activity. Here, we report that PTMs within the α1-α2 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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页码:458 / 465
页数:7
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