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细胞外环 2 结构的改变调节了鼠类 KCC2 钾氯离子协同转运蛋白的离子转运。

Structural changes in the extracellular loop 2 of the murine KCC2 potassium chloride cotransporter modulate ion transport.

机构信息

Division of Neurogenetics, School of Medicine and Health Sciences, Carl von Ossietzky University Oldenburg, Oldenburg, Germany; Research Center for Neurosensory Sciences, Carl von Ossietzky University Oldenburg, Oldenburg, Germany.

Biophysics II, Biophysics II-Structural Biology, Faculty of Biology and Pre-Clinical Medicine, University of Regensburg, Regensburg, Germany.

出版信息

J Biol Chem. 2021 Jan-Jun;296:100793. doi: 10.1016/j.jbc.2021.100793. Epub 2021 May 18.

Abstract

K-Cl cotransporters (KCCs) play important roles in physiological processes such as inhibitory neurotransmission and cell-volume regulation. KCCs exhibit significant variations in K affinities, yet recent atomic structures demonstrated that K- and Cl-binding sites are highly conserved, raising the question of whether additional structural elements may contribute to ion coordination. The termini and the large extracellular domain (ECD) of KCCs exhibit only low sequence identity and were already discussed as modulators of transport activity. Here, we used the extracellular loop 2 (EL2) that links transmembrane helices (TMs) 3 and 4, as a mechanism to modulate ECD folding. We compared consequences of point mutations in the K-binding site on the function of WT KCC2 and in a KCC2 variant, in which EL2 was structurally altered by insertion of a IFYPYDVPDYAGYPYDVPDYAGSYPYDVPDYAAHAAA (3xHA) tag (36 amino acids). In WT KCC2, individual mutations of five residues in the K-binding site resulted in a 2- to 3-fold decreased transport rate. However, the same mutations in the KCC2 variant with EL2 structurally altered by insertion of a 3xHA tag had no effect on transport activity. Homology models of mouse KCC2 with the 3xHA tag inserted into EL2 using ab initio prediction were generated. The models suggest subtle conformational changes occur in the ECD upon EL2 modification. These data suggest that a conformational change in the ECD, for example, by interaction with EL2, might be an elegant way to modulate the K affinity of the different isoforms in the KCC subfamily.

摘要

钾氯协同转运蛋白(KCCs)在抑制性神经传递和细胞体积调节等生理过程中发挥重要作用。KCCs 在钾亲和力方面表现出显著差异,但最近的原子结构表明,钾和氯结合位点高度保守,这就提出了一个问题,即是否有其他结构元件可能有助于离子配位。KCCs 的末端和大细胞外结构域(ECD)的序列同一性较低,并且已经被讨论为转运活性的调节剂。在这里,我们使用连接跨膜螺旋(TMs)3 和 4 的细胞外环 2(EL2)作为调节 ECD 折叠的机制。我们比较了 K 结合位点的点突变对 WT KCC2 功能的影响,以及在 KCC2 变体中的影响,该变体中 EL2 通过插入 IFYPYDVPDYAGYPYDVPDYAGSYPYDVPDYAAHAAA(3xHA)标签(36 个氨基酸)而结构发生改变。在 WT KCC2 中,K 结合位点的五个残基的单个突变导致转运速率降低 2-3 倍。然而,在插入 3xHA 标签导致 EL2 结构改变的 KCC2 变体中,相同的突变对转运活性没有影响。使用从头预测法,使用插入 EL2 的 3xHA 标签,生成了具有 3xHA 标签插入的小鼠 KCC2 的同源模型。模型表明,ECD 中的构象发生了细微变化。这些数据表明,ECD 的构象变化,例如通过与 EL2 的相互作用,可能是调节 KCC 亚家族中不同同工型钾亲和力的一种巧妙方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b5b/8191313/266021f4f984/gr1.jpg

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