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Knockout of Na+/Ca2+ exchanger in smooth muscle attenuates vasoconstriction and L-type Ca2+ channel current and lowers blood pressure

机译:Na + / Ca2 +交换子在平滑肌中的敲除减弱了血管收缩和L型Ca2 +通道电流并降低了血压

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摘要

Mice with smooth muscle (SM)-specific knockout of Na+/Ca2+ exchanger type-1 (NCX1SM−/−) and the NCX inhibitor, SEA0400, were used to study the physiological role of NCX1 in mouse mesenteric arteries. NCX1 protein expression was greatly reduced in arteries from NCX1SM−/− mice generated with Cre recombinase. Mean blood pressure (BP) was 6–10 mmHg lower in NCX1SM−/− mice than in wild-type (WT) controls. Vasoconstriction was studied in isolated, pressurized mesenteric small arteries from WT and NCX1SM−/− mice and in heterozygotes with a global null mutation (NCX1Fx/−). Reduced NCX1 activity was manifested by a marked attenuation of responses to low extracellular Na+ concentration, nanomolar ouabain, and SEA0400. Myogenic tone (MT, 70 mmHg) was reduced by ∼15% in NCX1SM−/− arteries and, to a similar extent, by SEA0400 in WT arteries. MT was normal in arteries from NCX1Fx/− mice, which had normal BP. Vasoconstrictions to phenylephrine and elevated extracellular K+ concentration were significantly reduced in NCX1SM−/− arteries. Because a high extracellular K+ concentration-induced vasoconstriction involves the activation of L-type voltage-gated Ca2+ channels (LVGCs), we measured LVGC-mediated currents and Ca2+ sparklets in isolated mesenteric artery myocytes. Both the currents and the sparklets were significantly reduced in NCX1SM−/− (vs. WT or NCX1Fx/−) myocytes, but the voltage-dependent inactivation of LVGCs was not augmented. An acute application of SEA0400 in WT myocytes had no effect on LVGC current. The LVGC agonist, Bay K 8644, eliminated the differences in LVGC currents and Ca2+ sparklets between NCX1SM−/− and control myocytes, suggesting that LVGC expression was normal in NCX1SM−/− myocytes. Bay K 8644 did not, however, eliminate the difference in myogenic constriction between WT and NCX1SM−/− arteries. We conclude that, under physiological conditions, NCX1-mediated Ca2+ entry contributes significantly to the maintenance of MT. In NCX1SM−/− mouse artery myocytes, the reduced Ca2+ entry via NCX1 may lower cytosolic Ca2+ concentration and thereby reduce MT and BP. The reduced LVGC activity may be the consequence of a low cytosolic Ca2+ concentration.
机译:使用具有平滑肌(SM)特异性敲除Na + / Ca2 +交换器类型1(NCX1SM-/-)和NCX抑制剂SEA0400的小鼠来研究NCX1在小鼠肠系膜动脉中的生理作用。 Cre重组酶产生的NCX1SM-/-小鼠的动脉中NCX1蛋白表达大大降低。 NCX1SM-/-小鼠的平均血压(BP)比野生型(WT)对照低6-10 mmHg。在来自WT和NCX1SM-/-小鼠的分离的加压肠系膜小动脉以及具有全局无效突变(NCX1Fx /-)的杂合子中研究了血管收缩。 NCX1活性降低表现为对低细胞外Na +浓度,纳摩尔哇巴因和SEA0400的反应明显减弱。在NCX1SM-/-动脉中,肌原性张力(MT,70 mmHg)降低了约15%,而在WT动脉中,SEA0400降低了类似程度。在具有正常BP的NCX1Fx /-小鼠的动脉中MT正常。 NCX1SM-/-动脉对苯肾上腺素的血管收缩和细胞外K +浓度升高均明显降低。因为高细胞外K +浓度诱导的血管收缩涉及L型电压门控Ca2 +通道(LVGCs)的激活,所以我们测量了离体肠系膜动脉心肌细胞中LVGC介导的电流和Ca2 +小信号。在NCX1SM-/-(相对于WT或NCX1Fx /-)心肌细胞中,电流和小火花均显着降低,但是LVGC的电压依赖性失活并未增强。 SEA0400在野生型心肌细胞中的急性应用对LVGC电流没有影响。 LVGC激动剂Bay K 8644消除了NCX1SM-/-和对照心肌细胞之间的LVGC电流和Ca2 +小信号的差异,表明LVGC在NCX1SM-/-心肌细胞中表达正常。但是,Bay K 8644并未消除WT和NCX1SM-/-动脉之间的肌源性收缩差异。我们得出的结论是,在生理条件下,NCX1介导的Ca2 +进入显着有助于维持MT。在NCX1SM-/-小鼠动脉心肌细胞中,通过NCX1减少的Ca2 +进入可能会降低胞质Ca2 +的浓度,从而降低MT和BP。 LVGC活性降低可能是胞质Ca2 +浓度低的结果。

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