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Structural basis for oligomerization of the prokaryotic peptide transporter PepTSo2

机译:原核肽转运蛋白PepTSo2寡聚的结构基础

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摘要

Proton-dependent oligopeptide transporters (POTs) belong to the major facilitator superfamily (MFS) and transport dipeptides and tripeptides from the extracellular environment into the target cell. The human POTs PepT1 and PepT2 are also involved in the absorption of various orally ingested drugs. Previously reported structures revealed that the bacterial POTs possess 14 helices, of which H1–H6 and H7–H12 constitute the typical MFS fold and the residual two helices are involved in the cytoplasmic linker. PepTSo2 from Shewanella oneidensis is a unique POT which reportedly assembles as a 200 kDa tetramer. Although the previously reported structures suggested the importance of H12 for tetramer formation, the structural basis for the PepTSo2-specific oligomerization remains unclear owing to the lack of a high-resolution tetrameric structure. In this study, the expression and purification conditions for tetrameric PepTSo2 were optimized. A single-particle cryo-EM analysis revealed the tetrameric structure of PepTSo2 incorporated into Salipro nanoparticles at 4.1 Å resolution. Furthermore, a combination of lipidic cubic phase (LCP) crystallization and an automated data-processing system for multiple microcrystals enabled crystal structures of PepTSo2 to be determined at resolutions of 3.5 and 3.9 Å. The present structures in a lipid bilayer revealed the detailed mechanism for the tetrameric assembly of PepTSo2, in which a characteristic extracellular loop (ECL) interacts with two asparagine residues on H12 which were reported to be important for tetramerization and plays an essential role in oligomeric assembly. This study provides valuable insights into the oligomerization mechanism of this MFS-type transporter, which will further pave the way for understanding other oligomeric membrane proteins.
机译:质子依赖的寡肽转运蛋白(POT)属于主要的促进子超家族(MFS),可将二肽和三肽从细胞外环境转运到靶细胞中。人POT PepT1和PepT2也参与各种口服药物的吸收。先前报道的结构表明,细菌POT具有14个螺旋,其中H1-H6和H7-H12构成典型的MFS折叠,其余两个螺旋参与细胞质接头。来自Shewanella oneidensis的PepTSo2是一种独特的POT,据报道可组装成200 kDa的四聚体。尽管先前报道的结构表明H12对于四聚体形成的重要性,但由于缺乏高分辨率四聚体结构,因此PepTSo2特异性低聚的结构基础仍然不清楚。在这项研究中,对四聚体PepTSo2的表达和纯化条件进行了优化。单粒子冷冻-EM分析揭示了以4.1Å分辨率结合到Salipro纳米粒子中的PepTSo2的四聚体结构。此外,脂质立方相(LCP)结晶和用于多个微晶的自动化数据处理系统的结合使PepTSo2的晶体结构得以确定,分辨率为3.5和3.9 resolution。脂质双层中的当前结构揭示了PepTSo2四聚体组装的详细机制,其中特征性的细胞外环(ECL)与H12上的两个天冬酰胺残基相互作用,据报道这对于四聚化很重要,并且在寡聚组装中起重要作用。这项研究为这种MFS型转运蛋白的寡聚化机理提供了宝贵的见识,这将进一步为理解其他寡聚膜蛋白铺平道路。

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