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发育中兔子肠黏膜中的二肽转运

Dipeptide transport in the intestinal mucosa of developing rabbits.

作者信息

Rubino A, Guandalini S

出版信息

Ciba Found Symp. 1977(50):61-77. doi: 10.1002/9780470720318.ch5.

Abstract

Influxes of glycyl-L-proline (a dipeptide which is not hydrolysed in the membrane and is transported intact across the brush border) and of glycyl-L phenylalanine (a dipeptide which has affinity for the peptide transport system and is hydrolysed at the brush border membrane) have been studied in the small intestine of fetal, newborn and suckling rabbits. For glycyl-L-phenylalanine, transport as the intact dipeptide and 'membrane hydrolysis + amino acid transport' have been measured separately by using glycyl-L-proline and L-leucine as selective inhibitors of each pathway. For comparison, uptake of free glycine and of free phenylalanine has also been studied. The intestine of newborn rabbits is shown to have a translocation process for intact dipeptides which is saturable with a low Kt and stimulated by sodium ions, and which is not shared by free amino acids. This process resembles that described in adult animals, except that the maximal velocity is much higher in newborns. The developmental pattern of this uptake process for dipeptides differs markedly from that of free glycine, thus providing a new type of evidence for the distinction between amino acid and dipeptide transport processes. The developmental pattern of the free phenylalanine uptake process also differs from the development of the 'superficial hydrolysis + amino acid transport' component of glycl-L-phenylalanine uptake. These data suggest that the advantage of mucosal uptake of peptides, compared to the uptake of free amino acids, is much greater in the early stages of postnatal life than in the adult.

摘要

在胎儿、新生和哺乳兔的小肠中,研究了甘氨酰-L-脯氨酸(一种在膜中不被水解且完整地穿过刷状缘转运的二肽)和甘氨酰-L-苯丙氨酸(一种对肽转运系统有亲和力且在刷状缘膜处被水解的二肽)的流入情况。对于甘氨酰-L-苯丙氨酸,通过使用甘氨酰-L-脯氨酸和L-亮氨酸作为各途径的选择性抑制剂,分别测量了完整二肽的转运以及“膜水解+氨基酸转运”。为作比较,还研究了游离甘氨酸和游离苯丙氨酸的摄取。结果表明,新生兔的小肠具有完整二肽的转运过程,该过程可饱和,Kt值低,受钠离子刺激,且游离氨基酸不具备此过程。此过程与成年动物中描述的过程相似,只是新生兔的最大转运速度要高得多。这种二肽摄取过程的发育模式与游离甘氨酸的发育模式明显不同,从而为区分氨基酸和二肽转运过程提供了一种新的证据类型。游离苯丙氨酸摄取过程的发育模式也与甘氨酰-L-苯丙氨酸摄取的“表面水解+氨基酸转运”成分的发育不同。这些数据表明,与游离氨基酸的摄取相比,肽的黏膜摄取在出生后早期比成年期具有更大的优势。

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