Miyamoto Y, Coone J L, Ganapathy V, Leibach F H
Department of Cell and Molecular Biology, Medical College of Georgia, Augusta 30912-3331.
Biochem J. 1988 Jan 1;249(1):247-53. doi: 10.1042/bj2490247.
The distribution and properties of the peptide-transport system in rabbit renal proximal tubule was examined with glycylsarcosine as the substrate and using brush-border-membrane vesicles derived from pars convoluta (outer cortex) and pars recta (outer medulla). The dipeptide was transported into these vesicles against a concentration gradient in the presence of an inward-directed H+ gradient, demonstrating the presence of a H+-coupled peptide-transport system in outer-cortical as well as outer-medullary brush-border membranes. Even though the transport was electrogenic and was energized by a H+ gradient in both membranes, the system was more active in outer medullary membranes than in outer cortical membranes. Kinetic analysis showed that, although the affinity of the transport system for glycylsarcosine was similar in both membrane preparations, the capacity of the system was significantly greater in outer medulla than in outer cortex. In addition, the pH profiles of the peptide-transport systems in these membrane preparations also showed dissimilarities. The greater dipeptide uptake in one membrane vis-à-vis the other may probably be due to the difference in the affinity of the transport system for H+ and/or the difference in peptide/H+ stoichiometry.
以甘氨酰肌氨酸为底物,利用取自近曲小管(外皮质)和直部(外髓质)的刷状缘膜囊泡,研究了兔肾近端小管中肽转运系统的分布和特性。在存在内向H⁺梯度的情况下,二肽逆浓度梯度被转运到这些囊泡中,这表明在外皮质和外髓质刷状缘膜中存在H⁺偶联的肽转运系统。尽管转运是生电的,且在两种膜中均由H⁺梯度提供能量,但该系统在外髓质膜中比在外皮质膜中更活跃。动力学分析表明,虽然两种膜制剂中转运系统对甘氨酰肌氨酸的亲和力相似,但该系统在外髓质中的容量明显大于在外皮质中的容量。此外,这些膜制剂中肽转运系统的pH曲线也显示出差异。一种膜相对于另一种膜中二肽摄取量的增加可能是由于转运系统对H⁺的亲和力差异和/或肽/H⁺化学计量的差异。