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首页> 外文期刊>American Journal of Physiology >Complex interactions of NO/cGMP/PKG systems on Ca2+ signaling in afferent arteriolar vascular smooth muscle.
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Complex interactions of NO/cGMP/PKG systems on Ca2+ signaling in afferent arteriolar vascular smooth muscle.

机译:NO / CGMP / PKG系统的复杂相互作用在传入式动脉血管平滑肌中CA2 +信号传导。

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Little is known about the effects of nitric oxide (NO) and the cyclic GMP (cGMP)/protein kinase G (PKG) system on Ca(2+) signaling in vascular smooth muscle cells (VSMC) of resistance vessels in general and afferent arterioles in particular. We tested the hypotheses that cGMP-, Ca(2+)-dependent big potassium channels (BK(Ca(2+))) buffer the Ca(2+) response to depolarization by high extracellular KCl and that NO inhibits adenosine diphosphoribose (ADPR) cyclase, thereby reducing the Ca(2+)-induced Ca(2+) release. We isolated rat afferent arterioles, utilizing the magnetized microsphere method, and measured cytosolic Ca(2+) concentration ([Ca(2+)](i)) with fura-2, a preparation in which endothelial cells do not participate in [Ca(2+)](i) responses. KCl (50 mM)-induced depolarization causes an immediate increase in [Ca(2+)](i) of 151 nM. The blockers N(omega)-nitro-L-arginine methyl ester (of nitric oxide synthase), 1,2,4-oxodiazolo-[4,3-a]quinoxalin-1-one (ODQ, of guanylyl cyclase), KT-5823 (of PKG activation), and iberiotoxin (IBX, of BK(Ca(2+)) activity) do not alter the [Ca(2+)](i) response to KCl, suggesting no discernible endogenous NO production under basal conditions. The NO donor sodium nitroprusside (SNP) reduces the [Ca(2+)](i) response to 77 nM; IBX restores the response to control values. These data show that activation of BK(Ca(2+)) in the presence of NO/cGMP provides a brake on KCl-induced [Ca(2+)](i) responses. Experiments with the inhibitor of cyclic ADPR 8-bromo-cyclic ADPR (8-Br-cADPR) and SNP + downstream inhibitors of PKG and BK(Ca(2+)) suggest that NO inhibits ADPR cyclase in intact arterioles. When we pretreat afferent arterioles with 8-bromoguanosine 3',5'-cyclic monophosphate (8-Br-cGMP; 10 muM), the response to KCl is 143 nM. However, in the presence of both IBX and 8-Br-cGMP, we observe a surprising doubling of the [Ca(2+)](i) response to KCl. In summary, we present evidence for effects of the NO/cGMP/PKG system to reduce [Ca(2+)](i), via activation of BK(Ca(2+)) and possibly by inhibition of ADPR cyclase, and to increase [Ca(2+)](i), by a mechanism(s) yet to be defined.
机译:关于血管平滑肌(VSMC)的血管平滑肌细胞(VSMC)一般和传入的动脉瘤中的血管平滑肌细胞(VSMC)中的一氧化氮(NO)和环状GMP(CGMP)/蛋白激酶G(PKG)系统的影响很少特别是。我们测试了CGMP-,Ca(2 +) - 依赖性大钾通道(BK(2+))缓冲液对高细胞外KCl去极化的Ca(2+)响应的假设,并且不抑制腺苷二磷酶(ADPR )环酶,从而减少Ca(2 +) - 诱导的Ca(2+)释放。我们用磁化微球法分离出鼠致传入动脉瘤,并测得的细胞溶质Ca(2+)浓度([Ca(2 +)](I))与Fura-2,一种制剂,其中内皮细胞不参与[CA. (2 +)](i)回复。 KCl(50mM)诱导的去极化导致[Ca(2 +)](I)为151nm的立即增加。阻断剂N(Omega) - 尼硝 - L-精氨酸甲酯(一氧化氮合酶),1,2,4-氧代唑-[4,3-a]喹喔啉-1-one(ODQ,冠状阴性环酶),KT -5823(PKG激活)和伊贝因毒素(IBX的BK(Ca(2+))活性)不会改变[Ca(2 +)](i)对KCl的反应,表明在基础上没有任何可辨别的内源性没有生产状况。 No供体亚硝酸钠(SNP)减少了[Ca(2 +)](i)响应于77nm; IBX恢复对控制值的响应。这些数据表明,在NO / CGMP存在下,BK(Ca(2+))的激活提供了KCl诱导的[Ca(2 +)](I)反应的制动器。与PKG和BK的循环ADPR 8-溴环循环ADPR(8-BR-CADPR)和SNP +下游抑制剂的抑制剂(CA(2+))的实验表明,不抑制完整的动脉中的ADPR环化酶。当我们用8-溴雄藻酸盐3'进行预造型动脉溶液,5'-环状单磷酸(8- BR-CGMP; 10毫米),对KCl的反应是143nm。然而,在IBX和8-BR-CGMP的存在下,我们观察到[Ca(2 +)](i)对KCl的反应的惊人倍增。总之,我们介绍了NO / CGMP / PKG系统的效果的证据,通过激活BK(CA(2+)),并且可能通过抑制ADPR环酶,以及通过尚未定义的机制增加[CA(2 +)](i)。

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