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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >Guanylin peptides: cyclic GMP signaling mechanisms
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Guanylin peptides: cyclic GMP signaling mechanisms

机译:鸟苷肽:环状GMP信号传导机制

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Guanylate cyclases (GC) serve in two different signaling pathways involving cytosolic and membrane enzymes. Membrane GCs are receptors for guanylin and atriopeptin peptides, two families of cGMP-regulating peptides. Three subclasses of guanylin peptides contain one intramolecular disulfide (lymphoguanylin), two disulfides (guanylin and uroguanylin) and three disulfides (E. coli stable toxin, ST). The peptides activate membrane receptor-GCs and regulate intestinal Cl- and HCO3- secretion via cGMP in target enterocytes. Uroguanylin and ST also elicit diuretic and natriuretic responses in the kidney. GC-C is an intestinal receptor-GC for guanylin and uroguanylin, but GC-C may not be involved in renal cGMP pathways. A novel receptor-GC expressed in the opossum kidney (OK-GC) has been identified by molecular cloning. OK-GC cDNAs encode receptor-GCs in renal tubules that are activated by guanylins. Lymphoguanylin is highly expressed in the kidney and heart where it may influence cGMP pathways. Guanylin and uroguanylin are highly expressed in intestinal mucosa to regulate intestinal salt and water transport via paracrine actions on GC-C. Uroguanylin and guanylin are also secreted from intestinal mucosa into plasma where uroguanylin serves as an intestinal natriuretic hormone to influence body Na+ homeostasis by endocrine mechanisms. Thus, guanylin peptides control salt and water transport in the kidney and intestine mediated by cGMP via membrane receptors with intrinsic guanylate cyclase activity.
机译:鸟苷酸环化酶(GC)在涉及细胞溶质和膜酶的两种不同信号途径中发挥作用。膜GC是鸟苷肽和atriopeptin肽(两个cGMP调节肽家族)的受体。鸟苷肽的三个亚类包含一个分子内二硫键(lymphoguanylin),两个二硫键(guanylin和uroguanylin)和三个二硫键(大肠杆菌稳定毒素,ST)。该肽通过靶肠细胞中的cGMP激活膜受体-GC并调节肠道Cl-和HCO3-的分泌。尿鸟嘌呤和ST也可引起肾脏的利尿和利钠反应。 GC-C是鸟嘌呤和尿鸟苷的肠道受体-GC,但GC-C可能不参与肾脏cGMP途径。已通过分子克隆鉴定了在负鼠肾中表达的新型受体-GC(OK-GC)。 OK-GC cDNA编码被鸟嘌呤激活的肾小管中的受体-GC。淋巴鸟苷在肾脏和心脏中高度表达,可能影响cGMP途径。鸟苷和尿鸟苷在肠粘膜中高度表达,通过旁分泌作用于GC-C来调节肠盐和水的运输。尿鸟苷蛋白和鸟苷蛋白也从肠粘膜分泌到血浆中,在那里尿鸟苷蛋白作为肠利钠激素,通过内分泌机制影响机体Na +稳态。因此,鸟苷蛋白肽通过具有固有鸟苷酸环化酶活性的膜受体控制cGMP介导的肾脏和肠道中的盐和水运输。

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