首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Regulation of intestinal uroguanylin/guanylin receptor-mediated responses by mucosal acidity
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Regulation of intestinal uroguanylin/guanylin receptor-mediated responses by mucosal acidity

机译:黏膜酸对肠道尿鸟苷/鸟嘌呤受体介导的反应的调节

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摘要

Guanylin and uroguanylin are intestinal peptides that stimulate chloride secretion by activating a common set of receptor–guanylate cyclase signaling molecules located on the mucosal surface of enterocytes. High mucosal acidity, similar to the pH occurring within the fluid microclimate domain at the mucosal surface of the intestine, markedly enhances the cGMP accumulation responses of T84 human intestinal cells to uroguanylin. In contrast, a mucosal acidity of pH 5.0 renders guanylin essentially inactive. T84 cells were used as a model epithelium to further explore the concept that mucosal acidity imposes agonist selectivity for activation of the intestinal receptors for uroguanylin and guanylin, thus providing a rationale for the evolution of these related peptides. At an acidic mucosal pH of 5.0, uroguanylin is 100-fold more potent than guanylin, but at an alkaline pH of 8.0 guanylin is more potent than uroguanylin in stimulating intracellular cGMP accumulation and transepithelial chloride secretion. The relative affinities of uroguanylin and guanylin for binding to receptors on the mucosal surface of T84 cells is influenced dramatically by mucosal acidity, which explains the strong pH dependency of the cGMP and chloride secretion responses to these peptides. The guanylin-binding affinities for peptide–receptor interaction were reduced by 100-fold at pH 5 versus pH 8, whereas the affinities of uroguanylin for these receptors were increased 10-fold by acidic pH conditions. Deletion of the N-terminal acidic amino acids in uroguanylin demonstrated that these residues are responsible for the increase in binding affinities that are observed for uroguanylin at acidic pH. We conclude that guanylin and uroguanylin evolved distinctly different structures, which enables both peptides to regulate, in a pH-dependent fashion, the activity of receptors that control intestinal salt and water transport via cGMP.
机译:鸟苷鸟苷和尿鸟苷鸟苷是肠肽,通过激活位于肠上皮细胞粘膜表面的一组通用受体-鸟苷酸环化酶信号分子来刺激氯化物分泌。高粘膜酸度类似于在肠粘膜表面的流体微气候域内发生的pH值,可显着增强T84人肠细胞对尿鸟苷的cGMP积累反应。相反,pH为5.0的粘膜酸性使鸟苷蛋白基本上无活性。 T84细胞被用作模型上皮细胞,以进一步探索粘膜酸度对尿鸟苷蛋白和鸟苷蛋白的肠受体激活具有激动剂选择性的观点,从而为这些相关肽的进化提供了理论依据。在酸性粘膜pH值为5.0时,尿鸟苷蛋白的效力是鸟嘌呤的100倍,但在碱性pH值8.0时,鸟嘌呤在刺激细胞内cGMP积累和跨上皮氯化物分泌方面比尿鸟苷更有效。尿鸟苷蛋白和鸟苷蛋白与T84细胞粘膜表面受体结合的相对亲和力受到粘膜酸性的显着影响,这解释了cGMP对这些肽的强烈pH依赖性和氯化物分泌反应。与pH值8相比,pH 5时鸟嘌呤肽与肽-受体相互作用的亲和力降低了100倍,而在酸性pH条件下,尿鸟苷素对这些受体的亲和力提高了10倍。尿鸟苷蛋白中N-末端酸性氨基酸的缺失表明,这些残基负责在酸性pH下观察到的尿鸟苷蛋白的结合亲和力的增加。我们得出的结论是,鸟苷蛋白和尿鸟苷蛋白进化出截然不同的结构,这使两种肽都能以pH依赖的方式调节通过cGMP控制肠盐和水运输的受体的活性。

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