Mitochondrial PKM2 regulates oxidative stress-induced apoptosis by stabilizing Bcl2

被引:0
|
作者
Ji Liang
Ruixiu Cao
Xiongjun Wang
Yajuan Zhang
Pan Wang
Hong Gao
Chen Li
Fan Yang
Rong Zeng
Ping Wei
Dawei Li
Wenfeng Li
Weiwei Yang
机构
[1] CAS Key Laboratory of Systems Biology,Department of Pathology
[2] CAS Center for Excellence in Molecular Cell Science,Department of Colorectal Surgery
[3] Institute of Biochemistry and Cell Biology,Department of Radiation Oncology
[4] Shanghai Institutes for Biological Sciences,undefined
[5] Chinese Academy of Sciences,undefined
[6] Shanghai Key Laboratory of Molecular Andrology,undefined
[7] Institute of Biochemistry and Cell Biology,undefined
[8] Shanghai Institutes for Biological Sciences,undefined
[9] Chinese Academy of Science,undefined
[10] Innovation Center for Cell Signaling Network,undefined
[11] Institute of Biochemistry and Cell Biology,undefined
[12] Shanghai Institutes for Biological Sciences,undefined
[13] Chinese Academy of Science,undefined
[14] Shenzhen Center for Disease Control and Prevention,undefined
[15] Fudan University Shanghai Cancer Center,undefined
[16] Fudan University Shanghai Cancer Center,undefined
[17] First Affiliated Hospital of Wenzhou Medical College,undefined
来源
Cell Research | 2017年 / 27卷
关键词
PKM2; Bcl2; HSP90; mitochondria; apoptosis; oxidative stress; tumorigenesis;
D O I
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中图分类号
学科分类号
摘要
Pyruvate kinase M2 isoform (PKM2) catalyzes the last step of glycolysis and plays an important role in tumor cell proliferation. Recent studies have reported that PKM2 also regulates apoptosis. However, the mechanisms underlying such a role of PKM2 remain elusive. Here we show that PKM2 translocates to mitochondria under oxidative stress. In the mitochondria, PKM2 interacts with and phosphorylates Bcl2 at threonine (T) 69. This phosphorylation prevents the binding of Cul3-based E3 ligase to Bcl2 and subsequent degradation of Bcl2. A chaperone protein, HSP90α1, is required for this function of PKM2. HSP90α1's ATPase activity launches a conformational change of PKM2 and facilitates interaction between PKM2 and Bcl2. Replacement of wild-type Bcl2 with phosphorylation-deficient Bcl2 T69A mutant sensitizes glioma cells to oxidative stress-induced apoptosis and impairs brain tumor formation in an orthotopic xenograft model. Notably, a peptide that is composed of the amino acid residues from 389 to 405 of PKM2, through which PKM2 binds to Bcl2, disrupts PKM2-Bcl2 interaction, promotes Bcl2 degradation and impairs brain tumor growth. In addition, levels of Bcl2 T69 phosphorylation, conformation-altered PKM2 and Bcl2 protein correlate with one another in specimens of human glioblastoma patients. Moreover, levels of Bcl2 T69 phosphorylation and conformation-altered PKM2 correlate with both grades and prognosis of glioma malignancy. Our findings uncover a novel mechanism through which mitochondrial PKM2 phosphorylates Bcl2 and inhibits apoptosis directly, highlight the essential role of PKM2 in ROS adaptation of cancer cells, and implicate HSP90-PKM2-Bcl2 axis as a potential target for therapeutic intervention in glioblastoma.
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页码:329 / 351
页数:22
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