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配体诱导的大肠杆菌乳糖通透酶构象变化:两个结合位点的证据

Ligand-induced conformational changes in the lactose permease of Escherichia coli: evidence for two binding sites.

作者信息

Wu J, Frillingos S, Voss J, Kaback H R

机构信息

Department of Physiology, Howard Hughes Medical Institute, University of California at Los Angeles 90024-1662, USA.

出版信息

Protein Sci. 1994 Dec;3(12):2294-301. doi: 10.1002/pro.5560031214.

Abstract

By using a lactose permease mutant containing a single Cys residue in place of Val 331 (helix X), conformational changes induced by ligand binding were studied. With right-side-out membrane vesicles containing Val 331-->Cys permease, lactose transport is inactivated by either N-ethylmaleimide (NEM) or 7-diethylamino-3-(4'-maleimidylphenyl)-4-methylcoumarin (CPM). Remarkably, beta,D-galactopyranosyl 1-thio-beta,D-galactopyranoside (TDG) enhances the rate of inactivation by CPM, a hydrophobic sulfhydryl reagent, whereas NEM inactivation is attenuated by the ligand. Val 331-->Cys permease was then purified and studied in dodecyl-beta,D-maltoside by site-directed fluorescence spectroscopy. The reactivity of Val 331-->Cys permease with 2-(4'-maleimidylanilino)-naphthalene-6-sulfonic acid (MIANS) is not changed over a low range of TDG concentrations (< 0.8 mM), but the fluorescence of the MIANS-labeled protein is quenched in a saturable manner (apparent Kd approximately equal to 0.12 mM) without a change in emission maximum. In contrast, over a higher range of TDG concentrations (1-10 mM), the reactivity of Val 331-->Cys permease with MIANS is enhanced and the emission maximum of MIANS-labeled permease is blue shifted by 3-7 nm. Furthermore, the fluorescence of MIANS-labeled Val 331 -->Cys permease is quenched by both acrylamide and iodide, but the former is considerably more effective. A low concentration of TDG (0.2 mM) does not alter quenching by either compound, whereas a higher concentration of ligand (10 mM) decreases the quenching constant for iodide by about 50% and for acrylamide by about 20%.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过使用一个乳糖通透酶突变体,其中第331位缬氨酸(螺旋X)被单个半胱氨酸残基取代,研究了配体结合诱导的构象变化。对于含有第331位缬氨酸→半胱氨酸通透酶的外翻膜囊泡,乳糖转运可被N - 乙基马来酰亚胺(NEM)或7 - 二乙氨基 - 3 -(4'-马来酰亚胺基苯基)- 4 - 甲基香豆素(CPM)灭活。值得注意的是,β,D - 吡喃半乳糖基1 - 硫代 - β,D - 吡喃半乳糖苷(TDG)可提高CPM(一种疏水性巯基试剂)的灭活速率,而NEM的灭活作用则被该配体减弱。然后纯化第331位缬氨酸→半胱氨酸通透酶,并通过定点荧光光谱法在十二烷基 - β,D - 麦芽糖苷中进行研究。在低浓度的TDG(<0.8 mM)范围内,第331位缬氨酸→半胱氨酸通透酶与2 -(4'-马来酰亚胺基苯胺)-萘 - 6 - 磺酸(MIANS)的反应性不变,但MIANS标记蛋白的荧光以可饱和的方式猝灭(表观解离常数Kd约等于0.12 mM),发射最大值不变。相反,在较高浓度的TDG(1 - 10 mM)范围内,第331位缬氨酸→半胱氨酸通透酶与MIANS的反应性增强,MIANS标记的通透酶的发射最大值蓝移3 - 7 nm。此外,MIANS标记的第331位缬氨酸→半胱氨酸通透酶的荧光可被丙烯酰胺和碘化物猝灭,但前者的效果要显著得多。低浓度的TDG(0.2 mM)不会改变这两种化合物的猝灭作用,而较高浓度的配体(10 mM)会使碘化物的猝灭常数降低约50%,丙烯酰胺的猝灭常数降低约20%。(摘要截断于250字)

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本文引用的文献

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What's new with lactose permease.乳糖通透酶有什么新进展?
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