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大肠杆菌乳糖通透酶中天然单色氨酸突变体的荧光:结构特性及底物诱导构象变化的证据

Fluorescence of native single-Trp mutants in the lactose permease from Escherichia coli: structural properties and evidence for a substrate-induced conformational change.

作者信息

Weitzman C, Consler T G, Kaback H R

机构信息

Howard Hughes Medical Institute, Department of Physiology, University of California, Los Angeles 90095-1662, USA.

出版信息

Protein Sci. 1995 Nov;4(11):2310-8. doi: 10.1002/pro.5560041108.

Abstract

Six single-Trp mutants were engineered by individually reintroducing each of the native Trp residues into a functional lactose permease mutant devoid of Trp (Trp-less permease; Menezes ME, Roepe PD, Kaback HR, 1990, Proc Natl Acad Sci USA 87:1638-1642), and fluorescent properties were studied with respect to solvent accessibility, as well as alterations produced by ligand binding. The emission of Trp 33, Trp 78, Trp 171, and Trp 233 is strongly quenched by both acrylamide and iodide, whereas Trp 151 and Trp 10 display a decrease in fluorescence in the presence of acrylamide only and no quenching by iodide. Of the six single-Trp mutants, only Trp 33 exhibits a significant change in fluorescence (ca. 30% enhancement) in the presence of the substrate analog beta,D-galactopyranosyl 1-thio-beta,D-galactopyranoside (TDG). This effect was further characterized by site-directed fluorescent studies with purified single-Cys W33-->C permease labeled with 2-(4'-maleimidylanilino)-naphthalene-6-sulfonic acid (MIANS). Titration of the change in the fluorescence spectrum reveals a 30% enhancement accompanied with a 5-nm blue shift in the emission maximum, and single exponential behavior with an apparent KD of 71 microM. The effect of substrate binding on the rate of MIANS labeling of single-Cys 33 permease was measured in addition to iodide and acrylamide quenching of the MIANS-labeled protein. Complete blockade of labeling is observed in the presence of TDG, as well as a 30% decrease in accessibility to iodide with no change in acrylamide quenching. Overall, the findings are consistent with the proposal (Wu J, Frillingos S, Kaback HR, 1995a, Biochemistry 34:8257-8263) that ligand binding induces a conformational change at the C-terminus of helix I such that Pro 28 and Pro 31, which are on one face, become more accessible to solvent, whereas Trp 33, which is on the opposite face, becomes less accessible to the aqueous phase. The findings regarding accessibility to collisional quenchers are also consistent with the predicted topology of the six native Trp residues in the permease.

摘要

通过将每个天然色氨酸残基逐个重新引入到一个缺乏色氨酸的功能性乳糖通透酶突变体(无色氨酸通透酶;Menezes ME、Roepe PD、Kaback HR,1990年,《美国国家科学院院刊》87:1638 - 1642)中,构建了六个单色氨酸突变体,并研究了其荧光特性,包括溶剂可及性以及配体结合产生的变化。色氨酸33、色氨酸78、色氨酸171和色氨酸233的发射光被丙烯酰胺和碘化物强烈淬灭,而色氨酸151和色氨酸10仅在存在丙烯酰胺时荧光减弱,且不被碘化物淬灭。在六个单色氨酸突变体中,只有色氨酸33在存在底物类似物β,D - 吡喃半乳糖基1 - 硫代 - β,D - 吡喃半乳糖苷(TDG)时荧光有显著变化(增强约30%)。通过用2 - (4' - 马来酰亚胺基苯胺) - 萘 - 6 - 磺酸(MIANS)标记纯化的单半胱氨酸W33→C通透酶进行定点荧光研究,进一步表征了这种效应。荧光光谱变化的滴定显示增强30%,同时发射最大值有5纳米的蓝移,且具有表观解离常数为71微摩尔的单指数行为。除了对MIANS标记蛋白进行碘化物和丙烯酰胺淬灭外,还测量了底物结合对单半胱氨酸33通透酶MIANS标记速率的影响。在存在TDG时观察到标记完全被阻断,同时对碘化物的可及性降低30%,而丙烯酰胺淬灭没有变化。总体而言,这些发现与以下提议一致(Wu J、Frillingos S、Kaback HR,1995a,《生物化学》34:8257 - 8263),即配体结合在螺旋I的C末端诱导构象变化使得位于同一面上的脯氨酸28和脯氨酸31变得更易被溶剂接触,而位于相反面上的色氨酸33变得更不易被水相接触。关于对碰撞淬灭剂可及性的发现也与通透酶中六个天然色氨酸残基的预测拓扑结构一致。

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