Key result
Elevated potassium or angiotensin II increases Ca2+-independent CaMKII activity up to ~105% in bovine cells.
Why the study?
The role of CaMKII in depolarization-induced Ca2+ signaling in adrenal glomerulosa cells and its activation by aldosterone secretagogues was not fully characterized.
CaMKII is activated by aldosterone secretagogues and augments Ca2+ signaling through voltage-gated Ca2+ channels in bovine adrenal glomerulosa cells.
May implicate CaMKII in aldosterone secretion; leaves open therapeutic relevance in human hypertension or HF.
We recently reported that elevations in the intracellular Ca2+ concentration ([Ca2+]i) enhance low-voltage-activated, T-type, Ca2+ channel activity via Ca2+/calmodulin-dependent protein kinase II (CaMKII). Here, we document CaMKII activity in bovine adrenal glomerulosa (AG) cells and assess the importance of CaMKII in depolarization-induced Ca2+ signaling. AG cell extracts exhibited kinase activity toward a CaMKII-selective peptide substrate that was dependent on both Ca2+ [half-maximal concentration for Ca2+ activation (K0.5) = 1.5 microM] and calmodulin (K0.5 = 46 nM) and was sensitive to a calmodulin antagonist and a CaMKII peptide inhibitor. On cell treatment with elevated extracellular potassium (10-60 mM) or angiotensin II, Ca(2+)-independent CaMKII activity increased to 133-205% of basal activity. Ca(2+)-independent kinase activity in agonist-stimulated extracts was inhibited by the CaMKII inhibitor peptide, 1(-)[N,O-bis(1,5- isoquinolinesulfonyl)-N-methyl-L-tyrosyl]-4-phenylpiperazine (KN-62), a cell-permeable inhibitor of CaMKII, reduced the agonist-induced stimulation of Ca(2+)-independent CaMKII activity. KN-62 also diminished depolarization-induced increases in [Ca2+]i without affecting the membrane potential. These observations suggest that CaMKII is activated in situ by aldosterone secretagogues and augments Ca2+ signaling through voltage-gated Ca2+ channels.
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Fern et al. (1995) studied Adrenal glomerulosa Ca2+ signaling. Elevated extracellular potassium or angiotensin II vs. Basal activity was evaluated on Ca(2+)-independent CaMKII activity. In bovine adrenal glomerulosa cells, elevated extracellular potassium or angiotensin II increased Ca(2+)-independent CaMKII activity to 133-205% of basal activity.
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