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古菌谷氨酸转运蛋白同源物 GltPh 表现出不均匀的底物结合。

The archaeal glutamate transporter homologue GltPh shows heterogeneous substrate binding.

机构信息

Department of Physiology and Biophysics, Weill Cornell Medicine, New York, NY.

Tri-Institutional Training Program in Chemical Biology, New York, NY.

出版信息

J Gen Physiol. 2022 May 2;154(5). doi: 10.1085/jgp.202213131. Epub 2022 Apr 22.

Abstract

Integral membrane glutamate transporters couple the concentrative substrate transport to ion gradients. There is a wealth of structural and mechanistic information about this protein family. Recent studies of an archaeal homologue, GltPh, revealed transport rate heterogeneity, which is inconsistent with simple kinetic models; however, its structural and mechanistic determinants remain undefined. Here, we demonstrate that in a mutant GltPh, which exclusively populates the outward-facing state, at least two substates coexist in slow equilibrium, binding the substrate with different apparent affinities. Wild type GltPh shows similar binding properties, and modulation of the substate equilibrium correlates with transport rates. The low-affinity substate of the mutant is transient following substrate binding. Consistently, cryo-EM on samples frozen within seconds after substrate addition reveals the presence of structural classes with perturbed helical packing of the extracellular half of the transport domain in regions adjacent to the binding site. By contrast, an equilibrated structure does not show such classes. The structure at 2.2-Å resolution details a pattern of waters in the intracellular half of the domain and resolves classes with subtle differences in the substrate-binding site. We hypothesize that the rigid cytoplasmic half of the domain mediates substrate and ion recognition and coupling, whereas the extracellular labile half sets the affinity and dynamic properties.

摘要

整合膜谷氨酸转运蛋白将浓缩底物的运输与离子梯度偶联。关于这个蛋白家族,已经有大量的结构和机制信息。最近对古细菌同源物 GltPh 的研究揭示了转运速率的异质性,这与简单的动力学模型不一致;然而,其结构和机制决定因素仍未确定。在这里,我们证明在一个突变的 GltPh 中,它只占据外向状态,至少存在两个亚稳态以缓慢平衡共存,以不同的表观亲和力结合底物。野生型 GltPh 表现出相似的结合特性,亚稳态平衡的调节与转运速率相关。突变体的低亲和力亚态在底物结合后是瞬时的。一致地,在添加底物后几秒钟内冷冻的样品的 cryo-EM 显示出存在结构类别,在与结合位点相邻的运输域的细胞外半部分的螺旋包装受到干扰。相比之下,平衡结构则没有显示出这样的类别。2.2-Å分辨率的结构详细说明了细胞内半域中的水分子模式,并解析了底物结合位点有细微差异的类别。我们假设刚性的细胞质半域介导底物和离子的识别和偶联,而细胞外不稳定的半域则设定亲和力和动态特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b4d/9044058/9d21d58d6ccb/JGP_202213131_FigS1.jpg

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