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配体结合将蛾类信息素结合蛋白转变为pH传感器:对多音天蚕PBP1构象的影响。

Ligand binding turns moth pheromone-binding protein into a pH sensor: effect on the Antheraea polyphemus PBP1 conformation.

作者信息

Katre Uma V, Mazumder Suman, Prusti Rabi K, Mohanty Smita

机构信息

Department of Chemistry and Biochemistry, Auburn University, Auburn, Alabama 36849, USA.

出版信息

J Biol Chem. 2009 Nov 13;284(46):32167-77. doi: 10.1074/jbc.M109.013383. Epub 2009 Sep 16.

Abstract

In moths, pheromone-binding proteins (PBPs) are responsible for the transport of the hydrophobic pheromones to the membrane-bound receptors across the aqueous sensillar lymph. We report here that recombinant Antheraea polyphemus PBP1 (ApolPBP1) picks up hydrophobic molecule(s) endogenous to the Escherichia coli expression host that keeps the protein in the "open" (bound) conformation at high pH but switches to the "closed" (free) conformation at low pH. This finding has bearing on the solution structures of undelipidated lepidopteran moth PBPs determined thus far. Picking up a hydrophobic molecule from the host expression system could be a common feature for lipid-binding proteins. Thus, delipidation is critical for bacterially expressed lipid-binding proteins. We have shown for the first time that the delipidated ApolPBP1 exists primarily in the closed form at all pH levels. Thus, current views on the pH-induced conformational switch of PBPs hold true only for the ligand-bound open conformation of the protein. Binding of various ligands to delipidated ApolPBP1 studied by solution NMR revealed that the protein in the closed conformation switches to the open conformation only at or above pH 6.0 with a protein to ligand stoichiometry of approximately 1:1. Mutation of His(70) and His(95) to alanine drives the equilibrium toward the open conformation even at low pH for the ligand-bound protein by eliminating the histidine-dependent pH-induced conformational switch. Thus, the delipidated double mutant can bind ligand even at low pH in contrast to the wild type protein as revealed by fluorescence competitive displacement assay using 1-aminoanthracene and solution NMR.

摘要

在蛾类中,信息素结合蛋白(PBPs)负责将疏水性信息素穿过水性感器淋巴液运输到膜结合受体。我们在此报告,重组多音天蚕蛾PBP1(ApolPBP1)摄取了大肠杆菌表达宿主内源性的疏水分子,该分子使蛋白质在高pH下保持“开放”(结合)构象,但在低pH下转变为“封闭”(游离)构象。这一发现与迄今为止所确定的未脂质化的鳞翅目蛾类PBPs的溶液结构有关。从宿主表达系统中摄取疏水分子可能是脂质结合蛋白的一个共同特征。因此,脂质去除对于细菌表达的脂质结合蛋白至关重要。我们首次表明,脂质去除后的ApolPBP1在所有pH水平下主要以封闭形式存在。因此,目前关于PBPs的pH诱导构象转换的观点仅适用于蛋白质的配体结合开放构象。通过溶液核磁共振研究各种配体与脂质去除后的ApolPBP1的结合,结果表明,处于封闭构象的蛋白质仅在pH 6.0或更高时以大约1:1的蛋白质与配体化学计量比转变为开放构象。将His(70)和His(95)突变为丙氨酸,通过消除组氨酸依赖性的pH诱导构象转换,即使在低pH下,对于配体结合的蛋白质,也会使平衡向开放构象移动。因此,如使用1-氨基蒽的荧光竞争置换分析和溶液核磁共振所揭示的,与野生型蛋白质相比,脂质去除后的双突变体即使在低pH下也能结合配体。

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