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构建来自大肠杆菌的渗透压感受器和质子渗透保护剂同向转运蛋白ProP的完全功能性无半胱氨酸变体及其在评估该转运蛋白膜取向中的应用。

Creation of a fully functional cysteine-less variant of osmosensor and proton-osmoprotectant symporter ProP from Escherichia coli and its application to assess the transporter's membrane orientation.

作者信息

Culham Doreen E, Hillar Alexander, Henderson James, Ly Anh, Vernikovska Yaroslava I, Racher Kathleen I, Boggs Joan M, Wood Janet M

机构信息

Department of Microbiology and Guelph-Waterloo Centre for Graduate Work in Chemistry and Biochemistry, University of Guelph, Guelph N1G 2W1, Ontario, Canada.

出版信息

Biochemistry. 2003 Oct 14;42(40):11815-23. doi: 10.1021/bi034939j.

Abstract

Transporter ProP of Escherichia coli is an osmosensor and an osmoprotectant transporter. Previous results suggest that medium osmolality determines the proportions of ProP in active and inactive conformations. A cysteine-less (Cys-less) variant was created and characterized as a basis for structural and functional analyses based on site-directed Cys substitution and chemical labeling of ProP. Parameters describing the osmosensory and osmoprotectant transport activities of Cys-less ProP-(His)(6) variants were examined, including the threshold for osmotic activation and the absolute transporter activity at high osmolality (in both cells and proteoliposomes), the dependence of K(M) and V(max) for proline uptake on osmolality, and the rate constant for transporter activation in response to an osmotic upshift (in cells only). Variant ProP-(His)(6)-C112A-C133A-C264V-C367A (designated ProP) retained similar activities to ProP-(His)(6) in both cells and proteoliposomes. The bulky Val residue was favored over Ala or Ser at position 264, whereas Val strongly impaired function when placed at position 367, highlighting the importance of residues at those positions for osmosensing. In the ProP* background, variants with a single Cys residue at positions 112, 133, 241, 264, 293, or 367 retained full function. The native Cys at positions 112, 133, 264, and 367, predicted to be within transmembrane segments of ProP, were poorly reactive with membrane-impermeant thiol reagents. The reactivities of Cys at positions 241 and 293 were consistent with exposure of those residues on the cytoplasmic and periplasmic surfaces of the cytoplasmic membrane, respectively. These observations are consistent with the topology and orientation of ProP predicted by hydropathy analysis.

摘要

大肠杆菌的转运蛋白ProP是一种渗透感受器和渗透保护剂转运蛋白。先前的结果表明,培养基渗透压决定了ProP处于活性和非活性构象的比例。构建了一个无半胱氨酸(Cys-less)变体,并将其作为基于ProP的定点半胱氨酸取代和化学标记进行结构和功能分析的基础。研究了描述无半胱氨酸ProP-(His)₆变体的渗透感受和渗透保护剂转运活性的参数,包括渗透激活阈值和高渗透压下的绝对转运蛋白活性(在细胞和蛋白脂质体中)、脯氨酸摄取的Kₘ和Vₘₐₓ对渗透压的依赖性,以及响应渗透压升高时转运蛋白激活的速率常数(仅在细胞中)。变体ProP-(His)₆-C112A-C133A-C264V-C367A(命名为ProP)在细胞和蛋白脂质体中均保留了与ProP-(His)₆相似的活性。在第264位,体积较大的缬氨酸残基比丙氨酸或丝氨酸更有利,而当缬氨酸位于第367位时,功能严重受损,突出了这些位置的残基对渗透感受的重要性。在ProP*背景下,在第112、133、241、264、293或367位带有单个半胱氨酸残基的变体保留了全部功能。预测位于ProP跨膜段内的第112、133、264和367位的天然半胱氨酸与膜不透性硫醇试剂的反应性较差。第241和293位半胱氨酸的反应性分别与这些残基在细胞质膜的细胞质和周质表面的暴露情况一致。这些观察结果与通过亲水性分析预测的ProP的拓扑结构和方向一致。

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