Faculty of Pharmaceutical Sciences, Toho University.
Laboratory of Biophysical Chemistry, Graduate School of Pharmaceutical Sciences, Hokkaido University.
Biol Pharm Bull. 2021;44(5):678-685. doi: 10.1248/bpb.b20-01013.
To clarify the role of an amino acid residue in the pH-dependent efflux process in Chinese hamster ovary (CHO) cells expressing the human oligopeptide transporter hPEPT1 (CHO/hPEPT1), we determined the effect of extracellular pH on the hPEPT1-mediated efflux process. The efflux of glycylsarcosine (Gly-Sar), a typical substrate for hPEPT1, was determined using an infinite dilution method after cells were preloaded with [H]-Gly-Sar. The efflux of [H]-Gly-Sar was stimulated by 5 mM unlabeled hPEPT1 substrates in the medium. This trans-stimulation phenomenon showed that hPEPT1 mediated the efflux of [H]-Gly-Sar from CHO/hPEPT1 and that hPEPT1 is a bi-directional transporter. We then determined the effect of extracellular pH (varying from 8.0 to 3.5) on the efflux activity. The efflux activity by hPEPT1 decreased with the decrease in extracellular pH. The Henderson-Hasselbälch-type equation, which fitted well to the pH-profile of efflux activity, indicated that a single amino acid residue with a pK value of approximately 5.7 regulates the efflux activity. The pH-profile of the efflux activity remained almost unchanged irrespective of the proton gradient across the plasma membrane. In addition, the chemical modification of the histidine residue with diethylpyrocarbonate completely abolished the efflux activity from cells, which could be prevented by the presence of 10 mM Gly-Sar. These data indicate that the efflux process of hPEPT1 is also regulated in a pH-dependent manner by the protonation state of a histidine residue located at or near the substrate recognition site facing the extracellular space.
为了阐明在表达人寡肽转运蛋白 hPEPT1(CHO/hPEPT1)的中国仓鼠卵巢(CHO)细胞中,氨基酸残基在 pH 依赖性外排过程中的作用,我们测定了细胞外 pH 对 hPEPT1 介导的外排过程的影响。在细胞预载 [H]-Gly-Sar 后,采用无限稀释法测定甘氨酰-肌氨酸(Gly-Sar)的外排,Gly-Sar 是 hPEPT1 的典型底物。在培养基中用 5mM 未标记的 hPEPT1 底物刺激 [H]-Gly-Sar 的外排。这种跨刺激现象表明 hPEPT1 介导 [H]-Gly-Sar 从 CHO/hPEPT1 的外排,且 hPEPT1 是一种双向转运体。然后,我们测定了细胞外 pH(从 8.0 变化至 3.5)对该外排活性的影响。hPEPT1 的外排活性随细胞外 pH 的降低而降低。与外排活性 pH 曲线拟合良好的 Henderson-Hasselbälch 方程表明,单个 pK 值约为 5.7 的氨基酸残基调节外排活性。外排活性的 pH 曲线与质膜两侧质子梯度无关,基本保持不变。此外,用二乙基焦碳酸酯对组氨酸残基进行化学修饰完全消除了细胞的外排活性,而 10mM Gly-Sar 的存在可以防止这种情况发生。这些数据表明,hPEPT1 的外排过程也通过位于面向细胞外空间的底物识别位点或其附近的组氨酸残基的质子化状态,以 pH 依赖的方式进行调节。