首页> 美国卫生研究院文献>American Journal of Physiology - Cell Physiology >cGMP inhibition of type 3 phosphodiesterase is the major mechanism by which C-type natriuretic peptide activates CFTR in the shark rectal gland
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cGMP inhibition of type 3 phosphodiesterase is the major mechanism by which C-type natriuretic peptide activates CFTR in the shark rectal gland

机译:cGMP对3型磷酸二酯酶的抑制是C型利钠肽激活鲨鱼直肠腺体CFTR的主要机制

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摘要

The in vitro perfused rectal gland of the dogfish shark (Squalus acanthias) and filter-grown monolayers of primary cultures of shark rectal gland (SRG) epithelial cells were used to analyze the signal transduction pathway by which C-type natriuretic peptide (CNP) stimulates chloride secretion. CNP binds to natriuretic receptors in the basolateral membrane, elevates cellular cGMP, and opens cystic fibrosis transmembrane conductance regulator (CFTR) chloride channels in the apical membrane. CNP-provoked chloride secretion was completely inhibitable by the nonspecific protein kinase inhibitor staurosporine and the PKA inhibitor H89 but insensitive to H8, an inhibitor of type I and II isoforms of cGMP-dependent protein kinase (cGKI and cGKII). CNP-induced secretion could not be mimicked by nonhydrolyzable cGMP analogs added alone or in combination with the protein kinase C activator phorbolester, arguing against a role for cGK or for cGMP-induced PKC signaling. We failed to detect a dogfish ortholog of cGKII by molecular cloning and affinity chromatography. However, inhibitors of the cGMP-inhibitable isoform of phosphodiesterase (PDE3) including milrinone, amrinone, and cilostamide but not inhibitors of other PDE isoenzymes mimicked the effect of CNP on chloride secretion in perfused glands and monolayers. CNP raised cGMP and cAMP levels in the SRG epithelial cells. This rise in cAMP as well as the CNP and amrinone-provoked chloride secretion, but not the rise in cGMP, was almost completely blocked by the Gαi-coupled adenylyl cyclase inhibitor somatostatin, arguing against a role for cGMP cross-activation of PKA in CNP action. These data provide molecular, functional, and pharmacological evidence for a CNP/cGMP/PDE3/cAMP/PKA signaling cascade coupled to CFTR in the SRG.
机译:狗鲨鲨(Squalus acanthias)的体外灌流直肠和鲨直肠直肠(SRG)上皮细胞原代培养物的滤膜生长单层被用于分析C型利钠肽(CNP)刺激的信号传导途径氯化物分泌。 CNP与基底外侧膜中的利尿钠受体结合,升高细胞cGMP,并在顶膜中打开囊性纤维化跨膜电导调节剂(CFTR)氯化物通道。非特异性蛋白激酶抑制剂星形孢菌素和PKA抑制剂H89完全抑制CNP诱导的氯化物分泌,但对c8MP依赖性蛋白激酶I和II型亚型的抑制剂H8(cGKI和cGKII)不敏感。单独或与蛋白激酶C激活物佛波酸酯组合添加的不可水解cGMP类似物不能模仿CNP诱导的分泌,这与cGK或cGMP诱导的PKC信号传导的作用不符。我们无法通过分子克隆和亲和层析检测到cGKII的狗鱼直系同源物。但是,磷酸二酯酶(PDE3)的cGMP抑制同工型的抑制剂包括米力农,氨力农和西洛酰胺,但其他PDE同工酶的抑制剂则无法模拟CNP对灌注腺体和单层中氯化物分泌的影响。 CNP提高了SRG上皮细胞的cGMP和cAMP水平。 cAMP的增加以及CNP和氨力农诱导的氯化物分泌增加,但cGMP的增加并未被Gαi偶联的腺苷酸环化酶抑制剂生长抑素几乎完全阻止,这证明了CNP中PKA的cGMP交叉激活作用。行动。这些数据提供了与SRG中CFTR偶联的CNP / cGMP / PDE3 / cAMP / PKA信号级联的分子,功能和药理学证据。

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