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Probing the Putative Active Site of YjdL: An Unusual Proton-Coupled Oligopeptide Transporter from E. coli

机译:来自大肠杆菌的不寻常的质子耦合寡肽转运:探测YjdL的推定活性网站

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摘要

YjdL from E. coli is an unusual proton-coupled oligopeptide transporter (POT). Unlike prototypical POTs, dipeptides are preferred over tripeptides, in particular dipeptides with a positively charged C-terminal residue. To further understand this difference in peptide specificity, the sequences of YjdL and YdgR, a prototypical E. coli POT, were compared in light of the crystal structure of a POT from Shewanella oneidensis. Several residues found in the putative active site were mutated and the activities of the mutated variants were assessed in terms of substrate uptake assays, and changes in specificity in terms of uptake inhibition. Most strikingly, changing the YjdL specific Asp392 to the conserved Ser in YjdL obliterated the preference for a positively charged C-terminal residue. Based on this unique finding and previously published results indicating that the dipeptide N-terminus may interact with Glu388, a preliminary orientation model of a dipeptide in the YjdL cavity is presented. Single site mutations of particularly Ala281 and Trp278 support the presented orientation. A dipeptide bound in the cavity of YjdL appears to be oriented such that the N-terminal side chain protrudes into a sub pocket that opens towards the extracellular space. The C-terminal side chain faces in the opposite direction into a sub pocket that faces the cytoplasm. These data indicated a stabilizing effect on a bulky N-terminal residue by an Ala281Phe variant and on the dipeptide backbone by Trp278. In the presented orientation model, Tyr25 and Tyr58 both appear to be in proximity of the dipeptide backbone while Lys117 appears to be in proximity of the peptide C-terminus. Mutational studies of these conserved residues highlight their functional importance.
机译:来自大肠杆菌的YjdL是一种不寻常的质子偶联寡肽转运蛋白(POT)。与典型的POT不同,二肽优于三肽,特别是带有正电荷C末端残基的二肽。为了进一步了解肽特异性的这种差异,根据来自Shewanella oneidensis的POT的晶体结构,比较了典型的大肠杆菌POT YjdL和YdgR的序列。推定的活性位点中发现了几个残基,并根据底物摄取分析评估了突变变体的活性,并根据摄取抑制评估了特异性的变化。最惊人的是,将YjdL特异的Asp392改变为YjdL中的保守Ser,消除了对带正电荷的C末端残基的偏好。基于这一独特发现和先前公开的结果表明二肽N末端可能与Glu388相互作用,提出了YjdL腔中二肽的初步取向模型。特别是Ala281和Trp278的单位点突变支持提出的方向。结合在YjdL腔中的二肽似乎是经过定向的,因此N末端侧链突出到向细胞外空间开放的亚口袋中。 C末端侧链以相反的方向面向一个面向细胞质的亚袋。这些数据表明,Ala281Phe变体对庞大的N末端残基具有稳定作用,而Trp278对二肽主链具有稳定作用。在提出的方向模型中,Tyr25和Tyr58都似乎位于二肽骨架附近,而Lys117似乎位于肽C末端附近。这些保守残基的突变研究突出了它们的功能重要性。

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