Does AMP-activated protein kinase couple inhibition of mitochondrial oxidative phosphorylation by hypoxia to calcium signaling in O2-sensing cells?

被引:145
作者
Evans, AM
Mustard, KJW
Wyatt, CN
Peers, C
Dipp, M
Kumar, P
Kinnear, NP
Hardie, DG
机构
[1] Univ St Andrews, Div Biomed Sci, Sch Biol, St Andrews KY16 9TS, Fife, Scotland
[2] Univ Dundee, Wellcome Trust Bioctr, Div Mol Physiol, Sch Life Sci, Dundee DD1 5EH, Scotland
[3] Univ Leeds, Inst Cardiovasc Res, Leeds LS2 9JT, W Yorkshire, England
[4] Univ Birmingham, Sch Med, Dept Physiol, Birmingham B15 2TT, W Midlands, England
关键词
D O I
10.1074/jbc.M510040200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Specialized O-2-sensing cells exhibit a particularly low threshold to regulation by O-2 supply and function to maintain arterial pO(2) within physiological limits. For example, hypoxic pulmonary vasoconstriction optimizes ventilation-perfusion matching in the lung, whereas carotid body excitation elicits corrective cardio-respiratory reflexes. It is generally accepted that relatively mild hypoxia inhibits mitochondrial oxidative phosphorylation in O-2-sensing cells, thereby mediating, in part, cell activation. However, the mechanism by which this process couples to Ca2+ signaling mechanisms remains elusive, and investigation of previous hypotheses has generated contrary data and failed to unite the field. We propose that a rise in the cellular AMP/ATP ratio activates AMP-activated protein kinase and thereby evokes Ca2+ signals in O-2-sensing cells. Co-immunoprecipitation identified three possible AMP-activated protein kinase subunit isoform combinations in pulmonary arterial myocytes, with alpha 1 beta 2 gamma 1 predominant. Furthermore, their tissue-specific distribution suggested that the AMP-activated protein kinase-alpha 1 catalytic isoform may contribute, via amplification of the metabolic signal, to the pulmonary selectivity required for hypoxic pulmonary vasoconstriction. Immunocytochemistry showed AMP-activated protein kinase-alpha 1 to be located throughout the cytoplasm of pulmonary arterial myocytes. In contrast, it was targeted to the plasma membrane in carotid body glomus cells. Consistent with these observations and the effects of hypoxia, stimulation of AMP-activated protein kinase by phenformin or 5-aminoimidazole-4-carboxamide- riboside elicited discrete Ca2+ signaling mechanisms in each cell type, namely cyclic ADP-ribose-dependent Ca2+ mobilization from the sarcoplasmic reticulum via ryanodine receptors in pulmonary arterial myocytes and transmembrane Ca2+ influx into carotid body glomus cells. Thus, metabolic sensing by AMP-activated protein kinase may mediate chemotransduction by hypoxia.
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收藏
页码:41504 / 41511
页数:8
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