Epinephrine-induced Ca2+ influx in vascular endothelial cells is mediated by CNGA2 channels |
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Authors: | Shen Bing Cheng Kwong-Tai Leung Yuk-Ki Kwok Yuk-Chi Kwan Hiu-Yee Wong Ching-On Chen Zhen-Yu Huang Yu Yao Xiaoqiang |
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Affiliation: | a Li Ka Shing Institute of Health Sciences, The Chinese University of Hong Kong, Hong Kong, China b Department of Physiology, The Chinese University of Hong Kong, Hong Kong, China c Institute of Vascular Medicine, The Chinese University of Hong Kong, Hong Kong, China d Department of Biochemistry, Faculty of Medicine, The Chinese University of Hong Kong, Hong Kong, China |
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Abstract: | Epinephrine, through its action on β-adrenoceptors, may induce endothelium-dependent vascular dilation, and this action is partly mediated by a cytosolic Ca2+ ([Ca2+]i) change in endothelial cells. In the present study, we explored the molecular identity of the channels that mediate epinephrine-induced endothelial Ca2+ influx and subsequent vascular relaxation. Patch clamp recorded an epinephrine- and cAMP-activated cation current in the primary cultured bovine aortic endothelial cells (BAECs) and H5V endothelial cells. L-cis-diltiazem and LY-83583, two selective inhibitors for cyclic nucleotide-gated channels, diminished this cation current. Furthermore, this cation current was greatly reduced by a CNGA2-specific siRNA in H5V cells. With the use of fluorescent Ca2+ dye, it was found that epinephrine and isoprenaline, a β-adrenoceptor agonist, induced endothelial Ca2+ influx in the presence of bradykinin. This Ca2+ influx was inhibited by L-cis-diltiazem and LY-83583, and by a β2-adrenoceptor antagonist ICI-118551. CNGA2-specific siRNA also diminished this Ca2+ influx in H5V cells. Furthermore, L-cis-diltiazem and LY-83583 inhibited the endothelial Ca2+ influx in isolated mouse aortic strips. L-cis-diltiazem also markedly reduced the endothelium-dependent vascular dilation to isoprenaline in isolated mouse aortic segments. In summary, CNG channels, CNGA2 in particular, mediate β-adrenoceptor agonist-induced endothelial Ca2+ influx and subsequent vascular dilation. |
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Keywords: | CNGA2 channels Epinephrine Isoprenaline Endothelial cells Ca2+ |
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