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pVHL suppresses kinase activity of Akt in a proline-hydroxylation-dependent manner

Authors :
Jianping Guo
Linli Zhang
William G. Kaelin
John M. Asara
Jinfang Zhang
Jesse Novak
Sabina Signoretti
Hiroyuki Inuzuka
Abhishek A. Chakraborty
Wenyi Wei
Qing Zhang
Bin Wang
Xingnan Zheng
Alex Toker
Jin Q. Cheng
Wenjian Gan
Pengda Liu
Min Yuan
Source :
Science (New York, N.Y.). 353(6302)
Publication Year :
2015

Abstract

Activation of the serine-threonine kinase Akt promotes the survival and proliferation of various cancers. Hypoxia promotes the resistance of tumor cells to specific therapies. We therefore explored a possible link between hypoxia and Akt activity. We found that Akt was prolyl-hydroxylated by the oxygen-dependent hydroxylase EglN1. The von Hippel–Lindau protein (pVHL) bound directly to hydroxylated Akt and inhibited Akt activity. In cells lacking oxygen or functional pVHL, Akt was activated to promote cell survival and tumorigenesis. We also identified cancer-associated Akt mutations that impair Akt hydroxylation and subsequent recognition by pVHL, thus leading to Akt hyperactivation. Our results show that microenvironmental changes, such as hypoxia, can affect tumor behaviors by altering Akt activation, which has a critical role in tumor growth and therapeutic resistance.

Details

ISSN :
10959203
Volume :
353
Issue :
6302
Database :
OpenAIRE
Journal :
Science (New York, N.Y.)
Accession number :
edsair.doi.dedup.....3a4848e44fe516a4284a4e4bd057d89a