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哺乳动物和鱼类质子依赖性寡肽转运蛋白 PepT1 的统一建模。

Unified modeling of the mammalian and fish proton-dependent oligopeptide transporter PepT1.

机构信息

Laboratory of Cellular and Molecular Physiology, Department of Biotechnology and Molecular Sciences, University of Insubria, Varese, Italy.

出版信息

Channels (Austin). 2011 Jan-Feb;5(1):89-99. doi: 10.4161/chan.5.1.13505. Epub 2011 Jan 1.

Abstract

Electrophysiological and biophysical analyses were used to compare the partial and complete transport cycles of the intestinal oligopeptide transporter PepT1 among three species (seabass, zebrafish and rabbit). On the whole, the presteady-state currents of the fish transporters were similar to each other. Rabbit PepT1 differed from the fish transporters by having slower-decaying currents, and the charge vs. potential (Q/V) and time constant vs. potential (τ/V) curves shifted to more positive potentials. All of the isoforms were similarly affected by external pH, showing acidity-induced slowing of the transients and positive shifts in the Q/V and τ/V curves. Analysis of the pH-dependence of the unidirectional rates of the intramembrane charge movement suggested that external protonation of the protein limits the speed of this process in both directions. The complete cycle of the transporter was studied using the neutral dipeptide Gly-Gln. Michaelis-Menten analysis confirmed that, in all species, acidity significantly increases the apparent affinity for the substrate but does not strongly impact maximal transport current. Simulations using a kinetic model incorporating the new findings showed good agreement with experimental data for all three species, both with respect to the presteady-state and the transport currents.

摘要

运用电生理学和生物物理学分析方法比较了三种物种(海鲈、斑马鱼和兔)肠道寡肽转运蛋白 PepT1 的部分和完全转运循环。总体而言,鱼类转运蛋白的准稳定态电流彼此相似。兔 PepT1 与鱼类转运蛋白的不同之处在于其电流衰减较慢,电荷与电位(Q/V)和时间常数与电位(τ/V)曲线向更正的电位移动。所有同种型都受到外部 pH 的相似影响,表现为酸诱导的瞬态减慢以及 Q/V 和 τ/V 曲线的正移。对膜内电荷移动的单向速率的 pH 依赖性的分析表明,蛋白外部质子化限制了此过程在两个方向上的速度。使用中性二肽 Gly-Gln 研究了转运蛋白的完整循环。米氏分析证实,在所有物种中,酸度显著增加了对底物的表观亲和力,但对最大转运电流没有强烈影响。使用包含新发现的动力学模型的模拟与所有三种物种的实验数据非常吻合,无论是在准稳定态还是转运电流方面。

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