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Functional and structural determinants of reverse operation in the pH-dependent oligopeptide transporter PepT1

机译:pH依赖的寡肽转运蛋白PepT1中反向操作的功能和结构决定因素

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The functional and structural basis of reverse operation of PepT1 has been studied in Xenopus oocytes expressing the wild-type and mutated forms of this protein. Using brief pulses from a negative holding potential, wild-type and Arg282 mutants exhibit outward currents in the presence of Gly-Gln. The reversal potential of these currents is affected by both pH and substrate concentration, confirming coupled transport in the wild type and in the mutants as well. Long-lasting voltage and current-clamp experiments show that the outward currents are only temporary, and reflect accumulation and/or depletion effects near the membrane. The ability to operate in reverse mode was confirmed in all isoforms by intracellular injection of substrate. The role of Arg282 and Asp341 in the reverse transport was also investigated using charged substrates. Positive Lys-Gly (but not Gly-Lys) showed enhanced transport currents in the Arg282 mutants. In contrast, negative Gly-Asp and Asp-Gly elicited modest currents in all isoforms.
机译:PepT1反向操作的功能和结构基础已经在表达这种蛋白的野生型和突变形式的非洲爪蟾卵母细胞中进行了研究。使用来自负保持电位的短脉冲,野生型和Arg282突变体在存在Gly-Gln的情况下表现出向外的电流。这些电流的逆转电位受pH和底物浓度的影响,从而证实了野生型和突变体中的耦合运输。持久的电压和电流钳实验表明,向外的电流只是暂时的,反映了膜附近的累积和/或耗尽效应。通过胞内注射底物在所有同工型中证实了以反向模式操作的能力。还使用带电底物研究了Arg282和Asp341在反向转运中的作用。阳性Lys-Gly(而非Gly-Lys)在Arg282突变体中显示出增强的转运电流。相反,负Gly-Asp和Asp-Gly在所有同工型中引起适度的电流。

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