Literature DB >> 17012231

A revised model for AMP-activated protein kinase structure: The alpha-subunit binds to both the beta- and gamma-subunits although there is no direct binding between the beta- and gamma-subunits.

Kelly A Wong1, Harvey F Lodish.   

Abstract

The 5'-AMP-activated protein kinase (AMPK) is a master sensor for cellular metabolic energy state. It is activated by a high AMP/ATP ratio and leads to metabolic changes that conserve energy and utilize alternative cellular fuel sources. The kinase is composed of a heterotrimeric protein complex containing a catalytic alpha-subunit, an AMP-binding gamma-subunit, and a scaffolding beta-subunit thought to bind directly both the alpha- and gamma-subunits. Here, we use coimmunoprecipitation of proteins in transiently transfected cells to show that the alpha2-subunit binds directly not only to the beta-subunit, confirming previous work, but also to the gamma1-subunit. Deletion analysis of the alpha2-subunit reveals that the C-terminal 386-552 residues are sufficient to bind to the beta-subunit. The gamma1-subunit binds directly to the alpha2-subunit at two interaction sites, one within the catalytic domain consisting of alpha2 amino acids 1-312 and a second within residues 386-552. Binding of the alpha2 and the gamma1-subunits was not affected by 400 mum AMP or ATP. Furthermore, we show that the beta-subunit C terminus is essential for binding to the alpha2-subunit but, in contrast to previous work, the beta-subunit does not bind directly to the gamma1-subunit. Taken together, this study presents a new model for AMPK heterotrimer structure where through its C terminus the beta-subunit binds to the alpha-subunit that, in turn, binds to the gamma-subunit. There is no direct interaction between the beta- and gamma-subunits.

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Year:  2006        PMID: 17012231     DOI: 10.1074/jbc.M607410200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  14 in total

1.  Angiotensin II activates AMPK for execution of apoptosis through energy-dependent and -independent mechanisms.

Authors:  Regina M Day; Young H Lee; Li Han; Yong-Chul Kim; Ying-Hong Feng
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2011-08-19       Impact factor: 5.464

2.  Supramolecular fishing for plasma membrane proteins using an ultrastable synthetic host-guest binding pair.

Authors:  Don-Wook Lee; Kyeng Min Park; Mainak Banerjee; Sang Hoon Ha; Taehoon Lee; Kyungwon Suh; Somak Paul; Hyuntae Jung; Jaeyoon Kim; Narayanan Selvapalam; Sung Ho Ryu; Kimoon Kim
Journal:  Nat Chem       Date:  2010-12-19       Impact factor: 24.427

3.  Ca2+-dependent GTPase, extra-large G protein 2 (XLG2), promotes activation of DNA-binding protein related to vernalization 1 (RTV1), leading to activation of floral integrator genes and early flowering in Arabidopsis.

Authors:  Jae Bok Heo; Sibum Sung; Sarah M Assmann
Journal:  J Biol Chem       Date:  2012-01-09       Impact factor: 5.157

4.  Angiotensin II regulates activation of Bim via Rb/E2F1 during apoptosis: involvement of interaction between AMPKβ1/2 and Cdk4.

Authors:  Yong-Chul Kim; Regina M Day
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2012-06-01       Impact factor: 5.464

5.  Activation of AMP-activated protein kinase signaling pathway by adiponectin and insulin in mouse adipocytes: requirement of acyl-CoA synthetases FATP1 and Acsl1 and association with an elevation in AMP/ATP ratio.

Authors:  Qingqing Liu; Marie-Soleil Gauthier; Lei Sun; Neil Ruderman; Harvey Lodish
Journal:  FASEB J       Date:  2010-07-28       Impact factor: 5.191

6.  CA1 pyramidal neuron gene expression mosaics in the Ts65Dn murine model of Down syndrome and Alzheimer's disease following maternal choline supplementation.

Authors:  Melissa J Alldred; Helen M Chao; Sang Han Lee; Judah Beilin; Brian E Powers; Eva Petkova; Barbara J Strupp; Stephen D Ginsberg
Journal:  Hippocampus       Date:  2018-02-12       Impact factor: 3.899

7.  Role of AMP-activated protein kinase gamma 3 genetic variability in glucose and lipid metabolism in non-diabetic whites.

Authors:  P Weyrich; F Machicao; H Staiger; P Simon; C Thamer; J Machann; F Schick; A Guirguis; A Fritsche; N Stefan; H-U Häring
Journal:  Diabetologia       Date:  2007-08-14       Impact factor: 10.122

8.  The function study on the interaction between Grb2 and AMPK.

Authors:  Zhi Pan; Jian Wang; Xiushan Yin; Ping Xie; Juntao Yang; Jizhi Jiang; Lingqiang Zhang; Fuchu He
Journal:  Mol Cell Biochem       Date:  2007-09-12       Impact factor: 3.396

9.  Transitory activation of AMPK at reperfusion protects the ischaemic-reperfused rat myocardium against infarction.

Authors:  Marta A Paiva; Lino M Gonçalves; Luis A Providência; Sean M Davidson; Derek M Yellon; Mihaela M Mocanu
Journal:  Cardiovasc Drugs Ther       Date:  2010-02       Impact factor: 3.727

10.  A conserved sequence immediately N-terminal to the Bateman domains in AMP-activated protein kinase gamma subunits is required for the interaction with the beta subunits.

Authors:  Rosa Viana; Mhairi C Towler; David A Pan; David Carling; Benoit Viollet; D Grahame Hardie; Pascual Sanz
Journal:  J Biol Chem       Date:  2007-04-02       Impact factor: 5.157

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