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普氏立克次氏体ATP/ADP转位酶的表达增强及调控以及无半胱氨酸突变体转位酶的分析

Increased and controlled expression of the Rickettsia prowazekii ATP/ADP translocase and analysis of cysteine-less mutant translocase.

作者信息

Dunbar Sherry A, Winkler Herbert H

机构信息

Laboratory of Molecular Biology, Department of Microbiology and Immunology, University of South Alabama College of Medicine, Mobile, AL 36688, USA.

出版信息

Microbiology (Reading). 1997 Nov;143 ( Pt 11):3661-3669. doi: 10.1099/00221287-143-11-3661.

Abstract

Detailed molecular analysis of the Rickettsia prowazekii ATP/ADP translocase, an obligate exchange transport system that is specific for ATP and ADP, has been extremely difficult due to limited quantities of material available from these obligate intracytoplasmic bacteria and by the toxicity and poor expression in recombinant Escherichia coli expression systems. In this study, a stable and controllable system for the increased expression of the rickettsial ATP/ADP translocase was developed in E. coli where the expression of translocase from the bacteriophage T7 promoter in the pET11a vector led to a 26-fold increase in ATP transport activity and a 34-fold increase in translocase protein as compared to the expression with the native rickettsial promoter in E. coli. When compared to R. prowazekii, ATP transport activity was increased sixfold and membrane translocase was increased threefold. Approximately 24% of the translocase protein produced was localized in an inclusion body fraction. This expression system was then used to determine whether the two cysteine residues in the ATP/ADP translocase were essential for activity or expression. The translocase was modified by oligonucleotide-directed site-specific mutagenesis such that the two cysteines were converted to alanines. The ATP transport properties and ATP/ADP translocase production kinetics, translocase protein concentration and subcellular localization were indistinguishable in the wild-type and mutant strains, proving that cysteines play no functional role in the R. prowazekii ATP/ADP translocase and providing a system suitable for cysteine-scanning mutagenesis.

摘要

普氏立克次体ATP/ADP转位酶是一种专用于ATP和ADP的强制性交换运输系统,由于这些专性胞内细菌可获得的材料数量有限,且在重组大肠杆菌表达系统中存在毒性和低表达问题,对其进行详细的分子分析极其困难。在本研究中,在大肠杆菌中开发了一种稳定且可控的系统,用于增加立克次体ATP/ADP转位酶的表达。与在大肠杆菌中使用天然立克次体启动子表达相比,pET11a载体中噬菌体T7启动子的转位酶表达导致ATP运输活性增加26倍,转位酶蛋白增加34倍。与普氏立克次体相比,ATP运输活性增加了6倍,膜转位酶增加了3倍。所产生的转位酶蛋白约24%定位于包涵体部分。然后使用该表达系统来确定ATP/ADP转位酶中的两个半胱氨酸残基对活性或表达是否至关重要。通过寡核苷酸定向位点特异性诱变对转位酶进行修饰,使两个半胱氨酸转化为丙氨酸。野生型和突变株在ATP运输特性、ATP/ADP转位酶产生动力学、转位酶蛋白浓度和亚细胞定位方面没有区别,证明半胱氨酸在普氏立克次体ATP/ADP转位酶中不发挥功能作用,并提供了一个适用于半胱氨酸扫描诱变的系统。

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