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首页> 外文期刊>American Journal of Physiology >A role for guanylate cyclase C in acid-stimulated duodenal mucosal bicarbonate secretion.
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A role for guanylate cyclase C in acid-stimulated duodenal mucosal bicarbonate secretion.

机译:鸟苷酸环化酶C在酸刺激的十二指肠粘膜碳酸氢盐分泌中的作用。

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摘要

Luminal acidification provides the strongest physiological stimulus for duodenal HCO3- secretion. Various neurohumoral mechanisms are believed to play a role in acid-stimulated HCO3- secretion. Previous studies in the rat and human duodenum have shown that guanylin and Escherichia coli heat-stable toxin, both ligands of the transmembrane guanylyl cyclase receptor [guanylate cyclase C (GC-C)], are potent stimulators for duodenal HCO3- secretion. We postulated that the GC-C receptor plays an important role in acid-stimulated HCO3- secretion. In vivo perfusion studies performed in wild-type (WT) and GC-C knockout (KO) mice indicated that acid-stimulated duodenal HCO3- secretion was significantly decreased in the GC-C KO animals compared with the WT counterparts. Pretreatment with PD-98059, an MEK inhibitor, resulted in attenuation of duodenal HCO3- secretion in response to acid stimulation in the WT mice with no further effect in the KO mice. In vitro cGMP generation studies demonstrated a significant andcomparable increase in cGMP levels on acid exposure in the duodenum of both WT and KO mice. In addition, a rapid, time-dependent phosphorylation of ERK was observed with acid exposure in the duodenum of WT mice, whereas a marked attenuation in ERK phosphorylation was observed in the KO animals despite equivalent levels of ERK in both groups of animals. On the basis of these studies, we conclude that transmembrane GC-C is a key mediator of acid-stimulated duodenal HCO3- secretion. Furthermore, ERK phosphorylation may be an important intracellular mediator of duodenal HCO3- secretion.
机译:发光酸化为十二指肠HCO3的分泌提供了最强的生理刺激。据信各种神经体液机制在酸刺激的HCO3分泌中起作用。先前在大鼠和人十二指肠中的研究表明,跨膜鸟苷酸环化酶受体[鸟苷酸环化酶C(GC-C)]的两个配体鸟苷和大肠杆菌热稳定毒素都是十二指肠HCO3-分泌的有效刺激剂。我们推测,GC-C受体在酸刺激的HCO3-分泌中起重要作用。在野生型(WT)和GC-C敲除(KO)小鼠中进行的体内灌注研究表明,与WT对应物相比,GC-C KO动物中酸刺激的十二指肠HCO3-分泌明显减少。用PD-98059(MEK抑制剂)进行预处理可导致WT小鼠的酸刺激导致十二指肠HCO3-分泌减少,而KO小鼠则无进一步作用。体外cGMP生成研究表明,WT和KO小鼠十二指肠酸暴露后cGMP水平显着且可比地增加。此外,在野生型小鼠的十二指肠中,随着酸的暴露,观察到ERK的快速,时间依赖性磷酸化,而在KO动物中,尽管两组动物中ERK的水平均相同,但ERK的磷酸化明显减弱。在这些研究的基础上,我们得出结论,跨膜GC-C是酸刺激十二指肠HCO3-分泌的关键介质。此外,ERK磷酸化可能是十二指肠HCO3分泌的重要细胞内介质。

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