OKADAIC ACID IDENTIFIES A PHOSPHORYLATION DEPHOSPHORYLATION CYCLE CONTROLLING THE INHIBITORY GUANINE-NUCLEOTIDE-BINDING REGULATORY PROTEIN GI2

被引:45
作者
BUSHFIELD, M
LAVAN, BE
HOUSLAY, MD
机构
[1] Molecular Pharmacology Group, Department of Biochemistry, University of Glasgow
关键词
D O I
10.1042/bj2740317
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
Recently, the alpha-subunit of the inhibitory guanine-nucleotide-binding protein G(i)2(alpha-G(i)2) has been shown to be a substrate for phosphorylation both by protein kinase C and also by other unidentified kinase(s) which are activated as a result of elevated cyclic AMP levels in intact rat hepatocytes [Bushfield, Murphy, Lavan, Parker, Hruby, Milligan & Houslay (1990) Biochem. J. 268, 449-457]. Here we show that the incorporation of [P-32]P(i) into alpha-G(i)2 was enhanced 3-fold by incubation of intact hepatocytes with the tumour promoter and protein phosphatase (1 and 2A) inhibitor, okadaic acid. This action was both time- and concentration-dependent and was accompanied by a loss of guanine-nucleotide-induced inhibition of adenylate cyclase. The increased labelling of alpha-G(i)2 induced by okadaic acid was partially additive with that elicited by 8-bromo cyclic AMP, but not with that elicited by the protein kinase C activator phorbol 12-myristate 13-acetate. We suggest that, in the absence of hormones, the activity of alpha-G(i)2 is under the control of a dynamic phosphorylation/dephosphorylation system involving protein kinase C and protein phosphatases 1 and/or 2A. This highlights the regulation of kinases and phosphatases as both providing potentially important mechanisms for causing 'cross-talk' between different signalling systems, in this instance controlling cellular responsiveness through regulation of alpha-G(i)2 phosphorylation.
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页码:317 / 321
页数:5
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