Angiotensin II-induced hypertension in rats caused downregulation of the BK channel β1 subunit, uncoupling BK channels from Ca2+ sparks and reducing their contribution to vascular tone.
Absolute Event Rate: 5% vs 16%
p-value: p=<0.05
Hypertension is a clinical syndrome characterized by increased vascular tone. However, the molecular mechanisms underlying vascular dysfunction during acquired hypertension remain unresolved. Localized intracellular Ca2+ release events through ryanodine receptors (Ca2+ sparks) in the sarcoplasmic reticulum are tightly coupled to the activation of large-conductance, Ca2+-activated K+ (BK) channels to provide a hyperpolarizing influence that opposes vasoconstriction. In this study we tested the hypothesis that a reduction in Ca2+ spark-BK channel coupling underlies vascular smooth muscle dysfunction during acquired hypertension. We found that in hypertension, expression of the beta1 subunit was decreased relative to the pore-forming alpha subunit of the BK channel. Consequently, the BK channels were functionally uncoupled from Ca2+ sparks. Consistent with this, the contribution of BK channels to vascular tone was reduced during hypertension. We conclude that downregulation of the beta1 subunit of the BK channel contributes to vascular dysfunction in hypertension. These results support the novel concept that changes in BK channel subunit composition regulate arterial smooth muscle function.
Amberg et al. (Mon,) conducted a other in Hypertension (n=17). Angiotensin II infusion vs. Sham operation was evaluated on Iberiotoxin (Ibtx)-induced constriction of pressurized cerebral arteries (p=<0.05). Angiotensin II-induced hypertension in rats caused downregulation of the BK channel β1 subunit, uncoupling BK channels from Ca2+ sparks and reducing their contribution to vascular tone.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: