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蛋白激酶C介导血管平滑肌的非钙依赖性收缩。

Protein kinase C mediation of Ca(2+)-independent contractions of vascular smooth muscle.

作者信息

Walsh M P, Horowitz A, Clément-Chomienne O, Andrea J E, Allen B G, Morgan K G

机构信息

Smooth Muscle Research Group, Faculty of Medicine, University of Calgary, AB, Canada.

出版信息

Biochem Cell Biol. 1996;74(4):485-502. doi: 10.1139/o96-053.

Abstract

Tumour-promoting phorbol esters induce slow, sustained contractions of vascular smooth muscle, suggesting that protein kinase C (PKC) may play a role in the regulation of smooth muscle contractility. In some cases, e.g., ferret aortic smooth muscle, phorbol ester induced contractions occur without a change in [Ca2+]i or myosin phosphorylation. Direct evidence for the involvement of PKC came from the use of single saponin-permeabilized ferret aortic cells. A constitutively active catalytic fragment of PKC induced a slow, sustained contraction similar to that triggered by phenylephrine. Both responses were abolished by a peptide inhibitor of PKC. Contractions of similar magnitude occurred even when the [Ca2+] was reduced to close to zero, implicating a Ca(2+)-independent isoenzyme of PKC. Of the two Ca(2+)-independent PKC isoenzymes, epsilon and zeta, identified in ferret aorta, PKC epsilon is more likely to mediate the contractile response because (i) PKC epsilon, but not PKC zeta, is responsive to phorbol esters; (ii) upon stimulation with phenylephrine, PKC epsilon translocates from the sarcoplasm to the sarcolemma, whereas PKC zeta, translocates from a perinuclear localization to the interior of the nucleus; and (iii) when added to permeabilized single cells of the ferret aorta at pCa 9, PKC epsilon, but not PKC zeta, induced a contractile response similar to that induced by phenylephrine. A possible substrate of PKC epsilon is the smooth muscle specific, thin filament associated protein, calponin. Calponin is phosphorylated in intact smooth muscle strips in response to carbachol, endothelin-1, phorbol esters, or okadaic acid. Phosphorylation of calponin in vitro by PKC (a mixture of alpha, beta, and gamma isoenzymes) dramatically reduces its affinity for F-actin and alleviates its inhibition of the cross-bridge cycling rate. Calponin is phosphorylated in vitro by PKC epsilon but is a very poor substrate of PKC zeta. A signal transduction pathway is proposed to explain Ca(2+)-independent contraction of ferret aorta whereby extracellular signals trigger diacylglycerol production without a Ca2+ transient. The consequent activation of PKC epsilon would result in calponin phosphorylation, its release from the thin filaments, and alleviation of inhibition of cross-bridge cycling. Slow, sustained contraction then results from a slow rate of cross-bridge cycling because of the basal level of myosin light chain phosphorylation (approximately 0.1 mol Pi/mol light chain). We also suggest that signal transduction through PKC epsilon is a component of contractile responses triggered by agonists that activate phosphoinositide turnover; this may explain why smooth muscles often develop more force in response, e.g., to alpha 1-adrenergic agonists than to K+.

摘要

促肿瘤佛波酯可诱导血管平滑肌缓慢、持续收缩,这表明蛋白激酶C(PKC)可能在平滑肌收缩性调节中发挥作用。在某些情况下,如雪貂主动脉平滑肌,佛波酯诱导的收缩在细胞内钙离子浓度([Ca2+]i)或肌球蛋白磷酸化无变化的情况下发生。PKC参与其中的直接证据来自对单个经皂素通透处理的雪貂主动脉细胞的研究。PKC的一个组成型活性催化片段可诱导出与去氧肾上腺素引发的收缩相似的缓慢、持续收缩。两种反应均被PKC的一种肽抑制剂消除。即使将[Ca2+]降低至接近零,仍会出现幅度相似的收缩,这意味着存在一种不依赖钙离子的PKC同工酶。在雪貂主动脉中鉴定出的两种不依赖钙离子的PKC同工酶,即ε和ζ,PKCε更有可能介导收缩反应,原因如下:(i)PKCε对佛波酯有反应,而PKCζ则无;(ii)用去氧肾上腺素刺激后,PKCε从肌浆转位至肌膜,而PKCζ则从核周定位转位至细胞核内部;(iii)当在pCa 9条件下添加到雪貂主动脉通透的单细胞中时,PKCε可诱导出与去氧肾上腺素诱导的收缩相似的收缩反应,而PKCζ则不能。PKCε的一个可能底物是平滑肌特异性的、与细肌丝相关的蛋白——钙调蛋白。在完整的平滑肌条中,钙调蛋白会因卡巴胆碱、内皮素-1、佛波酯或冈田酸而发生磷酸化。PKC(α、β和γ同工酶的混合物)在体外对钙调蛋白的磷酸化会显著降低其对F-肌动蛋白的亲和力,并减轻其对横桥循环速率的抑制。钙调蛋白在体外可被PKCε磷酸化,但对PKCζ而言是一种很差的底物。提出了一条信号转导途径来解释雪貂主动脉不依赖钙离子的收缩,即细胞外信号触发二酰甘油的产生而无钙离子瞬变。随后PKCε的激活会导致钙调蛋白磷酸化、其从细肌丝上释放,并减轻对横桥循环的抑制。由于肌球蛋白轻链磷酸化的基础水平(约0.1摩尔磷酸根/摩尔轻链),横桥循环速率缓慢,进而导致缓慢、持续的收缩。我们还认为,通过PKCε的信号转导是由激活磷脂酰肌醇代谢的激动剂触发的收缩反应的一个组成部分;这可能解释了为什么平滑肌通常对例如α1-肾上腺素能激动剂的反应比对钾离子的反应产生更大的力量。

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