Literature DB >> 22507198

A two-dimensional screen for AMPK substrates identifies tumor suppressor fumarate hydratase as a preferential AMPKα2 substrate.

Anna Klaus1, Cécile Polge, Sarah Zorman, Yolanda Auchli, René Brunisholz, Uwe Schlattner.   

Abstract

AMP-activated protein kinase (AMPK) is emerging as a central cellular signaling hub involved in energy homeostasis and proliferation. The kinase is considered as a suitable target for pharmacological intervention in several energy-related pathologies like diabetes type II and cancer, although its signaling network is still incompletely understood. Here we apply an original two-dimensional in vitro screening approach for AMPK substrates that combines biophysical interaction based on surface plasmon resonance with in vitro phosphorylation. By enriching for proteins that interact with a specific AMPK isoform, we aimed to identify substrates that are also preferentially phosphorylated by this specific AMPK isoform. Application of this screen to full-length AMPK α2β2γ1 and soluble rat liver proteins identified the tumor suppressor fumarate hydratase (FH). FH was confirmed to interact with and to be preferentially phosphorylated by the AMPKα2 isoform by using yeast-two-hybrid and in vitro phosphorylation assays. AMPK-mediated phosphorylation of FH significantly increased enzyme activity in vitro and in vivo, suggesting that it is a bona fide AMPK substrate. In vivo, AMPKα2 is supposed to target the cytosolic/nuclear pools of FH, whose tumor suppressor function relies on DNA damage repair and inhibition of HIF-1α-signaling.
Copyright © 2012 Elsevier B.V. All rights reserved.

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Year:  2012        PMID: 22507198     DOI: 10.1016/j.jprot.2012.03.040

Source DB:  PubMed          Journal:  J Proteomics        ISSN: 1874-3919            Impact factor:   4.044


  7 in total

1.  Global Phosphoproteomic Analysis of Human Skeletal Muscle Reveals a Network of Exercise-Regulated Kinases and AMPK Substrates.

Authors:  Nolan J Hoffman; Benjamin L Parker; Rima Chaudhuri; Kelsey H Fisher-Wellman; Maximilian Kleinert; Sean J Humphrey; Pengyi Yang; Mira Holliday; Sophie Trefely; Daniel J Fazakerley; Jacqueline Stöckli; James G Burchfield; Thomas E Jensen; Raja Jothi; Bente Kiens; Jørgen F P Wojtaszewski; Erik A Richter; David E James
Journal:  Cell Metab       Date:  2015-10-01       Impact factor: 27.287

2.  β-Aminoisobutyric acid supplementation attenuated salt-sensitive hypertension in Dahl salt-sensitive rats through prevention of insufficient fumarase.

Authors:  Xuewei Zheng; Luxin Zhou; Yuexin Jin; Xinrui Zhao; Hussain Ahmad; Yanan OuYang; Sa Chen; Jie Du; Xiangbo Chen; Lan Chen; Di Gao; Zhe Yang; Zhongmin Tian
Journal:  Amino Acids       Date:  2021-11-27       Impact factor: 3.520

3.  Connexin36 contributes to INS-1E cells survival through modulation of cytokine-induced oxidative stress, ER stress and AMPK activity.

Authors:  F Allagnat; P Klee; A K Cardozo; P Meda; J-A Haefliger
Journal:  Cell Death Differ       Date:  2013-10-04       Impact factor: 15.828

4.  Mild Glucose Starvation Induces KDM2A-Mediated H3K36me2 Demethylation through AMPK To Reduce rRNA Transcription and Cell Proliferation.

Authors:  Yuji Tanaka; Hirohisa Yano; Sachiko Ogasawara; Sho-Ichi Yoshioka; Hiromi Imamura; Kengo Okamoto; Makoto Tsuneoka
Journal:  Mol Cell Biol       Date:  2015-09-28       Impact factor: 4.272

5.  AMPK dysregulation promotes diabetes-related reduction of superoxide and mitochondrial function.

Authors:  Laura L Dugan; Young-Hyun You; Sameh S Ali; Maggie Diamond-Stanic; Satoshi Miyamoto; Anne-Emilie DeCleves; Aleksander Andreyev; Tammy Quach; San Ly; Grigory Shekhtman; William Nguyen; Andre Chepetan; Thuy P Le; Lin Wang; Ming Xu; Kacie P Paik; Agnes Fogo; Benoit Viollet; Anne Murphy; Frank Brosius; Robert K Naviaux; Kumar Sharma
Journal:  J Clin Invest       Date:  2013-10-25       Impact factor: 14.808

6.  Glutathione S-transferases interact with AMP-activated protein kinase: evidence for S-glutathionylation and activation in vitro.

Authors:  Anna Klaus; Sarah Zorman; Alexandre Berthier; Cécile Polge; Sacnicte Ramirez; Sylvie Michelland; Michel Sève; Didier Vertommen; Mark Rider; Nicolas Lentze; Daniel Auerbach; Uwe Schlattner
Journal:  PLoS One       Date:  2013-05-31       Impact factor: 3.240

7.  HIGD1A Regulates Oxygen Consumption, ROS Production, and AMPK Activity during Glucose Deprivation to Modulate Cell Survival and Tumor Growth.

Authors:  Kurosh Ameri; Arman Jahangiri; Anthony M Rajah; Kathryn V Tormos; Ravi Nagarajan; Melike Pekmezci; Vien Nguyen; Matthew L Wheeler; Michael P Murphy; Timothy A Sanders; Stefanie S Jeffrey; Yerem Yeghiazarians; Paolo F Rinaudo; Joseph F Costello; Manish K Aghi; Emin Maltepe
Journal:  Cell Rep       Date:  2015-02-13       Impact factor: 9.423

  7 in total

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