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三方非ATP依赖性周质(TRAP)转运蛋白利用精氨酸介导的选择性过滤器进行高亲和力底物结合。

Tripartite ATP-independent Periplasmic (TRAP) Transporters Use an Arginine-mediated Selectivity Filter for High Affinity Substrate Binding.

作者信息

Fischer Marcus, Hopkins Adam P, Severi Emmanuele, Hawkhead Judith, Bawdon Daniel, Watts Andrew G, Hubbard Roderick E, Thomas Gavin H

机构信息

York Structural Biology Laboratory, Departments of Chemistry, University of York, P. O. Box 373, York YO10 5YW.

York Structural Biology Laboratory, Departments of Biology (Area 10), University of York, P. O. Box 373, York YO10 5YW.

出版信息

J Biol Chem. 2015 Nov 6;290(45):27113-27123. doi: 10.1074/jbc.M115.656603. Epub 2015 Sep 5.

Abstract

Tripartite ATP-independent periplasmic (TRAP) transporters are secondary transporters that have evolved an obligate dependence on a substrate-binding protein (SBP) to confer unidirectional transport. Different members of the DctP family of TRAP SBPs have binding sites that recognize a diverse range of organic acid ligands but appear to only share a common electrostatic interaction between a conserved arginine and a carboxylate group in the ligand. We investigated the significance of this interaction using the sialic acid-specific SBP, SiaP, from the Haemophilus influenzae virulence-related SiaPQM TRAP transporter. Using in vitro, in vivo, and structural methods applied to SiaP, we demonstrate that the coordination of the acidic ligand moiety of sialic acid by the conserved arginine (Arg-147) is essential for the function of the transporter as a high affinity scavenging system. However, at high substrate concentrations, the transporter can function in the absence of Arg-147 suggesting that this bi-molecular interaction is not involved in further stages of the transport cycle. As well as being required for high affinity binding, we also demonstrate that the Arg-147 is a strong selectivity filter for carboxylate-containing substrates in TRAP transporters by engineering the SBP to recognize a non-carboxylate-containing substrate, sialylamide, through water-mediated interactions. Together, these data provide biochemical and structural support that TRAP transporters function predominantly as high affinity transporters for carboxylate-containing substrates.

摘要

三方ATP非依赖性周质(TRAP)转运蛋白是一类次级转运蛋白,它们已进化出对底物结合蛋白(SBP)的绝对依赖性,以实现单向转运。TRAP SBP的DctP家族的不同成员具有识别多种有机酸配体的结合位点,但似乎仅在保守的精氨酸与配体中的羧酸盐基团之间共享一种常见的静电相互作用。我们使用来自流感嗜血杆菌毒力相关的SiaPQM TRAP转运蛋白的唾液酸特异性SBP即SiaP,研究了这种相互作用的重要性。通过对SiaP应用体外、体内和结构方法,我们证明保守的精氨酸(Arg-147)对唾液酸酸性配体部分的配位对于转运蛋白作为高亲和力清除系统的功能至关重要。然而,在高底物浓度下,转运蛋白在没有Arg-147的情况下也能发挥作用,这表明这种双分子相互作用不参与转运循环的后续阶段。除了高亲和力结合所需外,我们还通过对SBP进行工程改造,使其通过水介导的相互作用识别不含羧酸盐的底物唾液酰胺,证明了Arg-147是TRAP转运蛋白中含羧酸盐底物的强选择性过滤器。总之,这些数据提供了生化和结构支持,表明TRAP转运蛋白主要作为含羧酸盐底物的高亲和力转运蛋白发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/902c/4646407/6ba946ea4b26/zbc0471529040001.jpg

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