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Functional analysis of a chimeric mammalian peptide transporter derived from the intestinal and renal isoforms.

机译:源自肠和肾同种型的嵌合哺乳动物肽转运蛋白的功能分析。

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摘要

l. Recently two genes have been identified by expression cloning that encode mammalian epithelial peptide transporters capable of translocating di- and tripeptides and selected peptidomimetics by stereoselective and rheogenic substrate-H+ cotransport. PepT1 from rabbit or human small intestine induces a transport activity with high transport capacity but rather low substrate affinity when expressed in Xenopus oocytes. In contrast, the renal carrier PepT2 is a high affinity-type transporter with a lower maximal transport capacity. In addition, both transporters show differences in pH dependence and substrate specificity. 2. As a first approach to identify structural components of the transport proteins that determine their phenotypical characteristics, we constructed a recombinant chimeric peptide transporter (CH1Pep) in which the aminoterminal region (residues 1-401) is derived from PepT2 whereas the carboxyterminal region (residues 402-707) starting at the end of transmembrane domain 9 is derived from PepT1. Expression of PepT1, PepT2 and CH1Pep in Xenopus oocytes allowed the characteristics of the transporters to be determined by flux studies employing a radiolabelled dipeptide and by the two-electrode voltage clamp technique. 3. Our studies indicate that CH1Pep conserves the characteristics of PepT2 including the high affinity for dipeptides and peptidomimetics, the substrate specificity, the pH dependence of transport activation and the electrophysiological parameters. We conclude that the phenotypical characteristics of the renal peptide transporter are determined by its amino-terminal region.
机译:l。最近,通过表达克隆已经鉴定出两个基因,它们编码哺乳动物上皮肽转运蛋白,该转运蛋白能够通过立体选择性和流变底物-H +共转运来转运二肽和三肽以及选择的拟肽。当在非洲爪蟾卵母细胞中表达时,来自兔或人小肠的PepT1诱导具有高运输能力但较低的底物亲和力的运输活性。相反,肾载体PepT2是高亲和力型转运蛋白,其最大转运能力较低。另外,两种转运蛋白在pH依赖性和底物特异性上均表现出差异。 2.作为鉴定决定其表型特征的转运蛋白结构成分的第一种方法,我们构建了重组嵌合肽转运蛋白(CH1Pep),其中氨基末端区域(残基1-401)源自PepT2,而羧基末端区域(从跨膜结构域9的末端开始的残基402-707)衍生自PepT1。爪蟾卵母细胞中PepT1,PepT2和CH1Pep的表达使转运蛋白的特性可以通过使用放射性标记的二肽的通量研究和通过两电极电压钳技术来确定。 3.我们的研究表明,CH1Pep保留了PepT2的特征,包括对二肽和拟肽的高亲和力,底物特异性,转运激活的pH依赖性和电生理参数。我们得出结论,肾肽转运蛋白的表型特征由其氨基末端区域决定。

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