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C-type natriuretic peptide activates a non-selective cation current in acutely isolated rat cardiac fibroblasts via natriuretic peptide C receptor-mediated signalling

机译:C型利钠肽通过利尿肽C受体介导的信号激活急性分离的大鼠心脏成纤维细胞中的非选择性阳离子电流

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摘要

In the heart, fibroblasts play an essential role in the deposition of the extracellular matrix and they also secrete a number of hormonal factors. Although natriuretic peptides, including C-type natriuretic peptide (CNP) and brain natriuretic peptide, have antifibrotic effects on cardiac fibroblasts, the effects of CNP on fibroblast electrophysiology have not been examined. In this study, acutely isolated ventricular fibroblasts from the adult rat were used to measure the effects of CNP (2 × 10−8m) under whole-cell voltage-clamp conditions. CNP, as well as the natriuretic peptide C receptor (NPR-C) agonist cANF (2 × 10−8m), significantly increased an outwardly rectifying non-selective cation current (NSCC). This current has a reversal potential near 0 mV. Activation of this NSCC by cANF was abolished by pre-treating fibroblasts with pertussis toxin, indicating the involvement of Gi proteins. The cANF-activated NSCC was inhibited by the compounds Gd3+, SKF 96365 and 2-aminoethoxydiphenyl borate. Quantitative RT-PCR analysis of mRNA from rat ventricular fibroblasts revealed the expression of several transient receptor potential (TRP) channel transcripts. Additional electrophysiological analysis showed that U73122, a phospholipase C antagonist, inhibited the cANF-activated NSCC. Furthermore, the effects of CNP and cANF were mimicked by the diacylglycerol analogue 1-oleoyl-2-acetyl-sn-glycerol (OAG), independently of protein kinase C activity. These are defining characteristics of specific TRPC channels. More detailed molecular analysis confirmed the expression of full-length TRPC2, TRPC3 and TRPC5 transcripts. These data indicate that CNP, acting via the NPR-C receptor, activates a NSCC that is at least partially carried by TRPC channels in cardiac fibroblasts.
机译:在心脏中,成纤维细胞在细胞外基质的沉积中起着至关重要的作用,并且它们还分泌许多激素因子。尽管利钠肽,包括C型利尿肽(CNP)和脑利钠肽,对心脏成纤维细胞具有抗纤维化作用,但尚未研究CNP对成纤维细胞电生理的影响。在这项研究中,使用成年大鼠急性分离的心室成纤维细胞在全细胞电压钳制条件下测量CNP(2×10-8m)的作用。 CNP以及利钠肽C受体(NPR-C)激动剂cANF(2×10-8m)显着增加了向外整流的非选择性阳离子电流(NSCC)。该电流的反向电位接近0 mV。用百日咳毒素预处理成纤维细胞可消除cANF对NSCC的激活作用,表明Gi蛋白参与了这一过程。 cANF活化的NSCC被化合物Gd3 +,SKF 96365和2-氨基乙氧基二苯基硼酸盐抑制。大鼠心室成纤维细胞mRNA的定量RT-PCR分析揭示了几种瞬时受体电位(TRP)通道转录本的表达。进一步的电生理分析表明,磷脂酶C拮抗剂U73122抑制cANF激活的NSCC。此外,CNP和cANF的作用被二酰基甘油类似物1-油酰基-2-乙酰基-sn-甘油(OAG)模仿,而与蛋白激酶C活性无关。这些是特定TRPC通道的定义特征。更详细的分子分析证实了全长TRPC2,TRPC3和TRPC5转录本的表达。这些数据表明,CNP通过NPR-C受体起作用,激活了心脏成纤维细胞中至少部分由TRPC通道携带的NSCC。

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