Harder Daniel, Stolz Jürgen, Casagrande Fabio, Obrdlik Petr, Weitz Dietmar, Fotiadis Dimitrios, Daniel Hannelore
Molecular Nutrition Unit, Technical University of Munich, Freising, Germany.
FEBS J. 2008 Jul;275(13):3290-8. doi: 10.1111/j.1742-4658.2008.06477.x. Epub 2008 May 15.
The genome of Escherichia coli contains four genes assigned to the peptide transporter (PTR) family. Of these, only tppB (ydgR) has been characterized, and named tripeptide permease, whereas protein functions encoded by the yhiP, ybgH and yjdL genes have remained unknown. Here we describe the overexpression of yhiP as a His-tagged fusion protein in E. coli and show saturable transport of glycyl-sarcosine (Gly-Sar) with an apparent affinity constant of 6.5 mm. Overexpression of the gene also increased the susceptibility of cells to the toxic dipeptide alafosfalin. Transport was strongly decreased in the presence of a protonophore but unaffected by sodium depletion, suggesting H(+)-dependence. This was confirmed by purification of YhiP and TppB by nickel affinity chromatography and reconstitution into liposomes. Both transporters showed Gly-Sar influx in the presence of an artificial proton gradient and generated transport currents on a chip-based sensor. Competition experiments established that YhiP transported dipeptides and tripeptides. Western blot analysis revealed an apparent mass of YhiP of 40 kDa. Taken together, these findings show that yhiP encodes a protein that mediates proton-dependent electrogenic transport of dipeptides and tripeptides with similarities to mammalian PEPT1. On the basis of our results, we propose to rename YhiP as DtpB (dipeptide and tripeptide permease B), by analogy with the nomenclature in other bacteria. We also propose to rename TppB as DtpA, to better describe its function as the first protein of the PTR family characterized in E. coli.
大肠杆菌的基因组包含四个被归为肽转运蛋白(PTR)家族的基因。其中,只有tppB(ydgR)已被鉴定,并命名为三肽通透酶,而yhiP、ybgH和yjdL基因所编码的蛋白质功能仍不清楚。在此,我们描述了yhiP作为一种带有His标签的融合蛋白在大肠杆菌中的过表达,并显示其对甘氨酰肌氨酸(Gly-Sar)具有饱和转运,表观亲和常数为6.5 mM。该基因的过表达还增加了细胞对有毒二肽阿拉磷的敏感性。在质子载体存在的情况下,转运作用显著降低,但不受钠缺乏的影响,表明其依赖于H⁺。通过镍亲和层析纯化YhiP和TppB并将其重组到脂质体中,证实了这一点。在人工质子梯度存在的情况下,这两种转运蛋白均显示出Gly-Sar内流,并在基于芯片的传感器上产生转运电流。竞争实验确定YhiP转运二肽和三肽。蛋白质印迹分析显示YhiP的表观分子量为40 kDa。综上所述,这些发现表明yhiP编码一种介导质子依赖性二肽和三肽电转运的蛋白质,与哺乳动物的PEPT1相似。基于我们的研究结果,我们建议将YhiP重命名为DtpB(二肽和三肽通透酶B),这是类比其他细菌中的命名法。我们还建议将TppB重命名为DtpA,以便更好地描述其作为大肠杆菌中首个被鉴定的PTR家族蛋白的功能。