Elevated K + induces myristoylated alanine-rich C-kinase substrate phosphorylation and phospholipase D activation in glomerulosa cells

Elevated extracellular potassium concentrations ([K +] e) are known to stimulate aldosterone secretion from adrenal glomerulosa cells in vivo and in vitro. The mechanism is thought to involve depolarization-elicited activation of voltage-dependent calcium channels and an increase in calcium influx....

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Veröffentlicht in:Molecular and cellular endocrinology 2001-11, Vol.184 (1), p.65-76
Hauptverfasser: Betancourt-Calle, Soraya, Jung, EunMi, White, Stephanie, Ray, Sagarika, Zheng, Xiangjian, Calle, Roberto A, Bollag, Wendy B
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Sprache:eng
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Zusammenfassung:Elevated extracellular potassium concentrations ([K +] e) are known to stimulate aldosterone secretion from adrenal glomerulosa cells in vivo and in vitro. The mechanism is thought to involve depolarization-elicited activation of voltage-dependent calcium channels and an increase in calcium influx. Until now protein kinase C (PKC) was thought not to play a role in the steroidogenic response to elevated [K +] e. In this report, we provide evidence in bovine adrenal glomerulosa cells to suggest that elevated [K +] e increases PKC activity, as shown by an enhancement in the phosphorylation of myristoylated alanine-rich C-kinase substrate (MARCKS). Elevated [K +] e-induced MARCKS phosphorylation was delayed and transient and was not the result of a local production of angiotensin II (AngII). MARCKS phosphorylation in response to elevated [K +] e was not accompanied by phosphoinositide hydrolysis but was inhibited by a selective PKC inhibitor. Elevated [K +] e also activated phospholipase D (PLD) in a delayed but sustained manner. We propose that the observed PLD activation mediates the elevated [K +] e-induced MARCKS phosphorylation via PKC, although other factors may modulate this phosphorylation event.
ISSN:0303-7207
1872-8057
DOI:10.1016/S0303-7207(01)00642-6