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September 1, 1985European Journal of Biochemistry735 citationsOpen Access

Protein kinase C phosphorylates the inhibitory guanine‐nucleotide‐binding regulatory component and apparently suppresses its function in hormonal inhibition of adenylate cyclase

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TKToshiaki KatadaAGAlfred G. GilmanYWYasuhiro Watanabe

Key Points

  • This research investigates how protein kinase C influences the function of the inhibitory regulatory component of adenylate cyclase through phosphorylation.
  • Human platelet membrane proteins were phosphorylated using Ca2+‐activated protein kinase C.
  • G i subunits were examined for their phosphorylation by protein kinase C.
  • Cyc-S49 lymphoma cells were treated with phorbol ester to assess changes in adenylate cyclase activity.
  • Phosphorylation of the G i α subunit was confirmed; however, the G i oligomer did not serve as a substrate.
  • Phorbol ester treatment did not change forskolin-stimulated adenylate cyclase activity.
  • Inhibition of adenylate cyclase by somatostatin was impaired, indicating altered signaling due to phosphorylation.

Abstract

Human platlet membrane proteins were phosphorylated by exogenous, partially purified Ca 2+ ‐activated phospholipid‐dependent protein kinase (protein kinase C. the phosphorylation of one of the major substrates fro protein kinase C ( M r = 41000) wa specifically suppressed by the β subunit of the inhibitory guaninenucleotide‐binding regulatory component (G 1 , N i ) of adenylate cyclase. The free α subunit of G i ( M r = 41000) also served as an excellent substrate for the kinase (<0.5 mol phosphate incorporated per mol of subunit), but the G i oligomer (α·β·γ) did not. Treatment of cyc ‐ S49 lymphoma cells, which are dificient in G s /N s (the stimulatory component) but contain functional G i /N s , with the phorbol ester, 12‐ O ‐tetradecanoylophorbol 13‐acetate, a potent activator of protein kinase C, did not alter stimulation of adenylate cyclase catalystic activity by forskolin, whereas the G i /N i ‐mediated inhibition of the cyclase by the hormone, somatostatin, was impaired in these membranes. The results suggest that the α subunit of the inhibitory guanine‐nucleotide‐binding regulatory component of adenylate cyclase may be a physiological substrate for protein kinase C and that the function of the component in transducing inhibitory hormonal signals to adenylate cyclase is altered by its phosphorylation.

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Cite This Study

Katada et al. (1985) studied this question.

synapsesocial.com/papers/6a0d355248a82a5ce309a9b4https://doi.org/10.1111/j.1432-1033.1985.tb09120.x
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