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通过二半胱氨酸突变体的化学交联揭示 Glut1 内部跨膜螺旋的配体诱导运动。

Ligand-induced movements of inner transmembrane helices of Glut1 revealed by chemical cross-linking of di-cysteine mutants.

机构信息

The Department of Cell Biology and Physiology, Washington University School of Medicine, St. Louis, Missouri, United States of America. mmueckler@.wustl.edu

出版信息

PLoS One. 2012;7(2):e31412. doi: 10.1371/journal.pone.0031412. Epub 2012 Feb 20.

Abstract

The relative orientation and proximity of the pseudo-symmetrical inner transmembrane helical pairs 5/8 and 2/11 of Glut1 were analyzed by chemical cross-linking of di-cysteine mutants. Thirteen functional di-cysteine mutants were created from a C-less Glut1 reporter construct containing cysteine substitutions in helices 5 and 8 or helices 2 and 11. The mutants were expressed in Xenopus oocytes and the sensitivity of each mutant to intramolecular cross-linking by two homobifunctional thiol-specific reagents was ascertained by protease cleavage followed by immunoblot analysis. Five of 9 mutants with cysteine residues predicted to lie in close proximity to each other were susceptible to cross-linking by one or both reagents. None of 4 mutants with cysteine substitutions predicted to lie on opposite faces of their respective helices was susceptible to cross-linking. Additionally, the cross-linking of a di-cysteine pair (A70C/M420C, helices 2/11) predicted to lie near the exoplasmic face of the membrane was stimulated by ethylidene glucose, a non-transported glucose analog that preferentially binds to the exofacial substrate-binding site, suggesting that the binding of this ligand stimulates the closure of helices at the exoplasmic face of the membrane. In contrast, the cross-linking of a second di-cysteine pair (T158C/L325, helices 5/8), predicted to lie near the cytoplasmic face of the membrane, was stimulated by cytochalasin B, a glucose transport inhibitor that competitively inhibits substrate efflux, suggesting that this compound recruits the transporter to a conformational state in which closure of inner helices occurs at the cytoplasmic face of the membrane. This observation provides a structural explanation for the competitive inhibition of substrate efflux by cytochalasin B. These data indicate that the binding of competitive inhibitors of glucose efflux or influx induce occluded states in the transporter in which substrate is excluded from the exofacial or endofacial binding site.

摘要

通过对二半胱氨酸突变体的化学交联,分析了 Glut1 内跨膜螺旋对 5/8 和 2/11 的假对称相对取向和接近程度。从不含 C 的 Glut1 报告构建体中创建了 13 个功能性二半胱氨酸突变体,该构建体在螺旋 5 和 8 或螺旋 2 和 11 中包含半胱氨酸取代。突变体在非洲爪蟾卵母细胞中表达,并通过蛋白酶切割后免疫印迹分析确定每个突变体对两种同双功能巯基特异性试剂的分子内交联的敏感性。在预测彼此靠近的位置存在半胱氨酸残基的 9 个突变体中的 5 个对一种或两种试剂的交联敏感。在预测位于各自螺旋的相对面上的 4 个突变体中,没有一个对交联敏感。此外,预测位于膜外表面附近的二半胱氨酸对(A70C/M420C,螺旋 2/11)的交联被非转运葡萄糖类似物乙基葡萄糖刺激,该类似物优先结合外表面的底物结合位点,表明该配体的结合刺激螺旋在膜的外表面关闭。相比之下,预测位于膜细胞质侧附近的第二个二半胱氨酸对(T158C/L325,螺旋 5/8)的交联被细胞松弛素 B 刺激,细胞松弛素 B 是葡萄糖转运抑制剂,竞争性抑制底物外排,表明该化合物将转运蛋白募集到一种构象状态,其中内螺旋在膜的细胞质侧关闭。这一观察结果为细胞松弛素 B 对底物外排的竞争性抑制提供了结构解释。这些数据表明,葡萄糖外排或内流的竞争性抑制剂的结合诱导转运蛋白处于封闭状态,其中底物被排除在外表面或内表面结合位点之外。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2009/3282689/5775507054ca/pone.0031412.g001.jpg

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