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Random Mutagenesis of the Prokaryotic Peptide Transporter YdgR Identifies Potential Periplasmic Gating Residues

机译:原核肽转运蛋白YdgR的随机诱变确定潜在的周质选通残基。

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摘要

The peptide transporter (PTR) family represents a group of proton-coupled secondary transporters responsible for bulk uptake of amino acids in the form of di- and tripeptides, an essential process employed across species ranging from bacteria to humans. To identify amino acids critical for peptide transport in a prokaryotic PTR member, we have screened a library of mutants of the Escherichia coli peptide transporter YdgR using a high-throughput substrate uptake assay. We have identified 35 single point mutations that result in a full or partial loss of transport activity. Additional analysis, including homology modeling based on the crystal structure of the Shewanella oneidensis peptide transporter PepTso, identifies Glu56 and Arg305 as potential periplasmic gating residues. In addition to providing new insights into transport by members of the PTR family, these mutants provide valuable tools for further study of the mechanism of peptide transport.
机译:肽转运蛋白(PTR)家族代表一组质子偶联的二级转运蛋白,负责大量摄取二肽和三肽形式的氨基酸,这是从细菌到人类的跨物种所必需的基本过程。为了鉴定对原核PTR成员中的肽转运至关重要的氨基酸,我们使用高通量底物摄取测定法筛选了大肠杆菌肽转运蛋白YdgR的突变体文库。我们已经鉴定出35个单点突变,这些突变导致运输活性的全部或部分丧失。进一步的分析,包括基于矮人希瓦氏菌肽转运蛋白PepTso的晶体结构的同源性建模,确定Glu 56 和Arg 305 为潜在的周质门控残基。除了为PTR家族成员的转运提供新的见解之外,这些突变体还为进一步研究肽转运的机理提供了有价值的工具。

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