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首页> 外文期刊>American Journal of Physiology >Proprotein convertases play an important role in regulating PKGI endoproteolytic cleavage and nuclear transport.
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Proprotein convertases play an important role in regulating PKGI endoproteolytic cleavage and nuclear transport.

机译:前蛋白转化酶在调节PKGI内蛋白裂解和核转运中起重要作用。

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摘要

Nitric oxide and cGMP modulate vascular smooth muscle cell (SMC) phenotype by regulating cell differentiation and proliferation. Recent studies suggest that cGMP-dependent protein kinase I (PKGI) cleavage and the nuclear translocation of a constitutively active kinase fragment, PKGIgamma, are required for nuclear cGMP signaling in SMC. However, the mechanisms that control PKGI proteolysis are unknown. Inspection of the amino acid sequence of a PKGI cleavage site that yields PKGIgamma and a protease database revealed a putative minimum consensus sequence for proprotein convertases (PCs). Therefore we investigated the role of PCs in regulating PKGI proteolysis. We observed that overexpression of PCs, furin and PC5, but not PC7, which are all expressed in SMC, increase PKGI cleavage in a dose-dependent manner in human embryonic kidney (HEK) 293 cells. Moreover, furin-induced proteolysis of mutant PKGI, in which ala-nines were substituted into the putative PC consensus sequence, was decreased in these cells. In addition, overexpression of furin increased PKGI proteolysis in L0V0 cells, which is an adenocarcinoma cell line expressing defective furin without PC activity. Also, expression of alpha_1-PDX, an engineered serpin-like PC inhibitor, reduced PC activity and decreased PKGI proteolysis in HEK293 cells. Last, treatment of low-passage rat aortic SMC with membrane-permeable PC inhibitor peptides decreased cGMP-stimulated nuclear PKGIgamma translocation. These data indicate for the first time that PCs have a role in regulating PKGI proteolysis and the nuclear localization of its active cleavage product, which are important for cGMP-mediated SMC phenotype.
机译:一氧化氮和cGMP通过调节细胞分化和增殖来调节血管平滑肌细胞(SMC)表型。最近的研究表明,SMC中的核cGMP信号传导需要cGMP依赖性蛋白激酶I(PKGI)裂解和组成性活性激酶片段PKGIgamma的核易位。但是,控制PKGI蛋白水解的机制尚不清楚。检查产生PKGIgamma的PKGI切割位点的氨基酸序列和蛋白酶数据库,发现推定的原蛋白转化酶(PCs)的最小共有序列。因此,我们研究了PC在调节PKGI蛋白水解中的作用。我们观察到,PC,弗林蛋白酶和PC5而不是PC7的过度表达均在SMC中表达,它们在人胚肾(HEK)293细胞中以剂量依赖的方式增加PKGI裂解。此外,在这些细胞中弗林蛋白酶诱导的突变体PKGI的蛋白水解降低,在突变蛋白PKGI中,丙氨酸被取代为假定的PC共有序列。此外,弗林蛋白酶的过表达增加了L0V0细胞中PKGI的蛋白水解,L0V0细胞是表达有缺陷的弗林蛋白酶而无PC活性的腺癌细胞系。同样,α_1-PDX(一种工程化的丝氨酸蛋白酶抑制剂样PC抑制剂)的表达在HEK293细胞中降低了PC活性,并降低了PKGI蛋白水解。最后,用膜可渗透的PC抑制剂肽治疗低通道大鼠主动脉SMC减少了cGMP刺激的核PKGIgamma移位。这些数据首次表明PC在调节PKGI蛋白水解及其活性裂解产物的核定位中发挥作用,这对于cGMP介导的SMC表型很重要。

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