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仓鼠空肠体外摄取二肽和三肽的单一共同载体的证据。

Evidence for a single common carrier for uptake of a dipeptide and a tripeptide by hamster jejunum in vitro.

作者信息

Sleisenger M H, Burston D, Dalrymple J A, Wilkinson S, Mathews D M

出版信息

Gastroenterology. 1976 Jul;71(1):76-81.

PMID:1278652
Abstract

This paper describes an investigation of whether a dipeptide and a tripeptide were taken up by hamster jejunum by the same transport system, or whether there was evidence of uptake by more than one transport system. The work was carried out with rings of everted hamster jejunum in vitro, under conditions of influx, using the "model" peptides glycylsarcosine, glycylsarcosylsarcosine, and glycylsarcosylsarcosylsarcosine. These peptides are all exceptionally resistant to hydrolysis, appearing intact in the rings, and the di- and tripeptide have previously been shown to be concentrated in the rings by active transport. The results showed that influx of glycylsarcosine was inhibited by glycylsarcosylsarcosine in a competitive way, and that each of the peptides was capable of causing virtually complete inhibition of influx of the other. Glycylsarcosylsarcosylsarcosine had no effect on influx of glycylsarcosine or of glycylsarcosylsarcosine. It was concluded that although the existence of multiple transport systems shared by both glycylsarcosine and glycylsarcosylsarcosine could not be ruled out, the simplest hypothesis was that both the dipeptide and the tripeptide shared a single common carrier for uptake. The tetrapeptide glycylsarcosylsarcosylsarcosine was apparently not transported by this carrier, in agreement with previous results. The possible effects of the "unstirred layer" were taken into account in considering the results and are discussed. They do not alter the conclusions reached.

摘要

本文描述了一项关于二肽和三肽是否通过相同转运系统被仓鼠空肠吸收,或者是否有证据表明存在不止一种转运系统参与吸收的研究。该研究是在体外使用外翻的仓鼠空肠环,在流入条件下,使用“模型”肽甘氨酰肌氨酸、甘氨酰肌氨酰肌氨酸和甘氨酰肌氨酰肌氨酰肌氨酸进行的。这些肽都具有极强的抗水解能力,在肠环中保持完整,并且先前已证明二肽和三肽通过主动转运在肠环中被浓缩。结果表明,甘氨酰肌氨酰肌氨酸以竞争性方式抑制甘氨酰肌氨酸的流入,并且每种肽实际上都能够完全抑制另一种肽的流入。甘氨酰肌氨酰肌氨酰肌氨酸对甘氨酰肌氨酸或甘氨酰肌氨酰肌氨酸的流入没有影响。得出的结论是,虽然不能排除甘氨酰肌氨酸和甘氨酰肌氨酰肌氨酸共享多个转运系统的可能性,但最简单的假设是二肽和三肽共享一个单一的共同载体进行吸收。与先前的结果一致,四肽甘氨酰肌氨酰肌氨酰肌氨酸显然不是由该载体转运 的。在考虑结果时考虑了“未搅动层”的可能影响并进行了讨论。它们不会改变得出的结论。

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