Ubiquitylation of p62/sequestosome1 activates its autophagy receptor function and controls selective autophagy upon ubiquitin stress

被引:0
|
作者
Hong Peng
Jiao Yang
Guangyi Li
Qing You
Wen Han
Tianrang Li
Daming Gao
Xiaoduo Xie
Byung-Hoon Lee
Juan Du
Jian Hou
Tao Zhang
Hai Rao
Ying Huang
Qinrun Li
Rong Zeng
Lijian Hui
Hongyan Wang
Qin Xia
Xuemin Zhang
Yongning He
Masaaki Komatsu
Ivan Dikic
Daniel Finley
Ronggui Hu
机构
[1] Key Laboratory of Systems Biology,Department of Cell Biology
[2] CAS Center for Excellence in Molecular Cell Science,Department of Hematology
[3] Innovation Center for Cell Signaling Network,Department of Laboratory Medicine
[4] Graduate School,Department of Molecular Medicine
[5] University of Chinese Academy of Sciences,Department of Biochemistry
[6] Institute of Biochemistry and Cell Biology,undefined
[7] Chinese Academy of Sciences,undefined
[8] Harvard Medical School,undefined
[9] Changzheng Hospital,undefined
[10] The Second Military Medical University,undefined
[11] Huashan Hospital,undefined
[12] Fudan University,undefined
[13] University of Texas Health Science Center at San Antonio,undefined
[14] State Key Laboratory of Proteomics,undefined
[15] National Center of Biomedical Analysis,undefined
[16] Institute of Basic Medical Sciences,undefined
[17] School of Medicine Niigata University,undefined
[18] 757,undefined
[19] Ichibancho,undefined
[20] Asahimachidori,undefined
[21] Molecular Signaling,undefined
[22] Institute of Biochemistry II,undefined
[23] Goethe University School of Medicine,undefined
来源
Cell Research | 2017年 / 27卷
关键词
autophagy receptor; ubiquitylation; heat shock; dynamic light scattering; ubiquitin; selective autophagy;
D O I
暂无
中图分类号
学科分类号
摘要
Alterations in cellular ubiquitin (Ub) homeostasis, known as Ub stress, feature and affect cellular responses in multiple conditions, yet the underlying mechanisms are incompletely understood. Here we report that autophagy receptor p62/sequestosome-1 interacts with E2 Ub conjugating enzymes, UBE2D2 and UBE2D3. Endogenous p62 undergoes E2-dependent ubiquitylation during upregulation of Ub homeostasis, a condition termed as Ub+ stress, that is intrinsic to Ub overexpression, heat shock or prolonged proteasomal inhibition by bortezomib, a chemotherapeutic drug. Ubiquitylation of p62 disrupts dimerization of the UBA domain of p62, liberating its ability to recognize polyubiquitylated cargoes for selective autophagy. We further demonstrate that this mechanism might be critical for autophagy activation upon Ub+ stress conditions. Delineation of the mechanism and regulatory roles of p62 in sensing Ub stress and controlling selective autophagy could help to understand and modulate cellular responses to a variety of endogenous and environmental challenges, potentially opening a new avenue for the development of therapeutic strategies against autophagy-related maladies.
引用
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页码:657 / 674
页数:17
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