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Natriuretic peptide activation of extracellular regulated kinase 1/2 (ERK1/2) pathway by particulate guanylyl cyclases in GH3 somatolactotropes

机译:GH3在GH3生长酰亚胺术中颗粒瓜族环酶细胞外调节激酶1/2(ERK1 / 2)途径的利可钠肽活化

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摘要

The natriuretic peptides, Atrial-, B-type and C-type natriuretric peptides (ANP, BNP, CNP), are regulators of many endocrine tissues and exert their effects predominantly through the activation of their specific guanylyl cyclase receptors (GC-A and GC-B) to generate cGMP. Whereas cGMP-independent signalling has been reported in response to natriuretic peptides, this is mediated via either the clearance receptor (Npr-C) or a renal-specific NPR-Bi isoform, which both lack intrinsic guanylyl cyclase activity. Here, we report evidence of GC-B-dependent cGMP-independent signalling in pituitary GH3 cells. Stimulation of GH3 cells with CNP resulted in a rapid and sustained enhancement of ERK1/2 phosphorylation (P-ERK1/2), an effect that was not mimicked by dibutryl-cGMP. Furthermore, CNP-stimulated P-ERK1/2 occurred at concentrations below that required for cGMP accumulation. The effect of CNP on P-ERK1/2 was sensitive to pharmacological blockade of MEK (U0126) and Src kinases (PP2). Silencing of the GC-B1 and GC-B2 splice variants of the GC-B receptor by using targeted short interfering RNAs completely blocked the CNP effects on P-ERK1/2. CNP failed to alter GH3 cell proliferation or cell cycle distribution but caused a concentration-dependent increase in the activity of the human glycoprotein alpha-subunit promoter (alpha GSU) in a MEK-dependent manner. Finally, CNP also activated the p38 and JNK MAPK pathways in GH3 cells. These findings reveal an additional mechanism of GC-B signalling and suggest additional biological roles for CNP in its target tissues.
机译:利钠肽,心房,B型和C型Natrietric肽(ANP,BNP,CNP)是许多内分泌组织的调节因子,并通过其特定的观论环酶受体的激活来施加它们的效果(GC-A和GC -b)生成cgmp。虽然响应于利钠肽报告了CGMP无关的信令,但是通过间隙受体(NPR-C)或肾特异性NPR-BI同种型介导,其介导,这既不缺乏内在的瓜毛环酶活性。在此,我们报告垂体GH3细胞中GC-B依赖性CGMP无关信号传导的证据。刺激CNP的GH3细胞导致ERK1 / 2磷酸化(P-ERK1 / 2)的快速和持续增强,其效果不受二丁烷-CGMP模仿的效果。此外,CNP刺激的P-ERK1 / 2在低于CGMP积累所需的浓度下发生。 CNP对P-ERK1 / 2的影响对MEK(U0126)和SRC激酶的药理学阻滞(PP2)敏感。通过使用靶向短干扰RNA沉默GC-B1和GC-B2接头变体GC-B受体的变体完全阻断了对P-ERK1 / 2的CNP效应。 CNP未能改变GH3细胞增殖或细胞周期分布,但是以MEK依赖性方式导致人糖蛋白α-亚基启动子(αGSU)的活性依赖性增加。最后,CNP还在GH3细胞中激活了P38和JNK MAPK途径。这些发现揭示了GC-B信号传导的另一种机制,并在其靶组织中提出了CNP的额外生物学作用。

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