Literature DB >> 23354411

Regulation of a truncated isoform of AMP-activated protein kinase α (AMPKα) in response to hypoxia in the muscle of Pacific oyster Crassostrea gigas.

Eric Guévélou1, Arnaud Huvet, Rossana Sussarellu, Massimo Milan, Ximing Guo, Li Li, Guofan Zhang, Virgile Quillien, Jean-Yves Daniel, Claudie Quéré, Pierre Boudry, Charlotte Corporeau.   

Abstract

AMP-activated protein kinase α (AMPKα) is a key regulator of energy balance in many model species during hypoxia. In a marine bivalve, the Pacific oyster Crassostrea gigas, we analyzed the protein content of adductor muscle in response to hypoxia during 6 h. In both smooth and striated muscles, the amount of full-length AMP-activated protein kinase α (AMPKα) remained unchanged during hypoxia. However, hypoxia induced a rapid and muscle-specific response concerning truncated isoforms of AMPKα. In the smooth muscle, a truncated isoform of AMPKα was increased from 1 to 6 h of hypoxia, and was linked with accumulation of AKT kinase, a key enzyme of the insulin signaling pathway which controls intracellular glucose metabolism. In this muscle, aerobic metabolism was maintained over the 6 h of hypoxia, as mitochondrial citrate synthase activity remained constant. In contrast, in striated muscle, hypoxia did not induce any significant modification of neither truncated AMPKα nor AKT protein content, and citrate synthase activity was altered after 6 h of hypoxia. Together, our results demonstrate that hypoxia response is specific to muscle type in Pacific oyster, and that truncated AMPKα and AKT proteins might be involved in maintaining aerobic metabolism in smooth muscle. Such regulation might occur in vivo during tidal intervals that cause up to 6 h of hypoxia.

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Year:  2013        PMID: 23354411     DOI: 10.1007/s00360-013-0743-6

Source DB:  PubMed          Journal:  J Comp Physiol B        ISSN: 0174-1578            Impact factor:   2.200


  80 in total

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3.  Novel isoforms of heat shock transcription factor 1 are induced by hypoxia in the Pacific oyster Crassostrea gigas.

Authors:  Shinya Kawabe; Yoshihiro Yokoyama
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4.  The identification of genes from the oyster Crassostrea gigas that are differentially expressed in progeny exhibiting opposed susceptibility to summer mortality.

Authors:  Arnaud Huvet; Amaury Herpin; Lionel Dégremont; Yannick Labreuche; Jean-François Samain; Charles Cunningham
Journal:  Gene       Date:  2004-12-08       Impact factor: 3.688

5.  Mechanism of activation of protein kinase B by insulin and IGF-1.

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Review 6.  AMP-activated/SNF1 protein kinases: conserved guardians of cellular energy.

Authors:  D Grahame Hardie
Journal:  Nat Rev Mol Cell Biol       Date:  2007-10       Impact factor: 94.444

7.  A PGC-1α isoform induced by resistance training regulates skeletal muscle hypertrophy.

Authors:  Jorge L Ruas; James P White; Rajesh R Rao; Sandra Kleiner; Kevin T Brannan; Brooke C Harrison; Nicholas P Greene; Jun Wu; Jennifer L Estall; Brian A Irving; Ian R Lanza; Kyle A Rasbach; Mitsuharu Okutsu; K Sreekumaran Nair; Zhen Yan; Leslie A Leinwand; Bruce M Spiegelman
Journal:  Cell       Date:  2012-12-07       Impact factor: 41.582

8.  Identification of phosphorylation sites in AMP-activated protein kinase (AMPK) for upstream AMPK kinases and study of their roles by site-directed mutagenesis.

Authors:  Angela Woods; Didier Vertommen; Dietbert Neumann; Roland Turk; Jayne Bayliss; Uwe Schlattner; Theo Wallimann; David Carling; Mark H Rider
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Review 9.  Physiological role of AMP-activated protein kinase (AMPK): insights from knockout mouse models.

Authors:  B Viollet; F Andreelli; S B Jørgensen; C Perrin; D Flamez; J Mu; J F P Wojtaszewski; F C Schuit; M Birnbaum; E Richter; R Burcelin; S Vaulont
Journal:  Biochem Soc Trans       Date:  2003-02       Impact factor: 5.407

10.  Differential regulation of AMP-activated kinase and AKT kinase in response to oxygen availability in crucian carp (Carassius carassius).

Authors:  Kåre-Olav Stensløkken; Stian Ellefsen; Jonathan A W Stecyk; Mai Britt Dahl; Göran E Nilsson; Jarle Vaage
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  5 in total

1.  The Voltage-Dependent Anion Channel (VDAC) of Pacific Oysters Crassostrea gigas Is Upaccumulated During Infection by the Ostreid Herpesvirus-1 (OsHV-1): an Indicator of the Warburg Effect.

Authors:  Lizenn Delisle; Marine Fuhrmann; Claudie Quéré; Marianna Pauletto; Vianney Pichereau; Fabrice Pernet; Charlotte Corporeau
Journal:  Mar Biotechnol (NY)       Date:  2018-01-17       Impact factor: 3.619

2.  Proteomic responses to hypoxia at different temperatures in the great scallop (Pecten maximus).

Authors:  Sébastien Artigaud; Camille Lacroix; Joëlle Richard; Jonathan Flye-Sainte-Marie; Luca Bargelloni; Vianney Pichereau
Journal:  PeerJ       Date:  2015-03-31       Impact factor: 2.984

3.  The Kinome of Pacific Oyster Crassostrea gigas, Its Expression during Development and in Response to Environmental Factors.

Authors:  Yanouk Epelboin; Laure Quintric; Eric Guévélou; Pierre Boudry; Vianney Pichereau; Charlotte Corporeau
Journal:  PLoS One       Date:  2016-05-27       Impact factor: 3.240

4.  A novel and stress adaptive alternative oxidase derived from alternative splicing of duplicated exon in oyster Crassostrea virginica.

Authors:  Ming Liu; Ximing Guo
Journal:  Sci Rep       Date:  2017-09-07       Impact factor: 4.379

5.  Hypoxia Induces Changes in AMP-Activated Protein Kinase Activity and Energy Metabolism in Muscle Tissue of the Oriental River Prawn Macrobrachium nipponense.

Authors:  Shengming Sun; Zhongbao Gu; Hongtuo Fu; Jian Zhu; Xianping Ge; Xugan Wu
Journal:  Front Physiol       Date:  2018-06-14       Impact factor: 4.566

  5 in total

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