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解析多种甜菜碱 - 肉碱 - 胆碱转运体在嗜盐副溶血性弧菌中的作用。

Deciphering the role of multiple betaine-carnitine-choline transporters in the Halophile Vibrio parahaemolyticus.

作者信息

Ongagna-Yhombi Serge Y, McDonald Nathan D, Boyd E Fidelma

机构信息

Department of Biological Sciences, University of Delaware, Newark, Delaware, USA.

Department of Biological Sciences, University of Delaware, Newark, Delaware, USA

出版信息

Appl Environ Microbiol. 2015 Jan;81(1):351-63. doi: 10.1128/AEM.02402-14. Epub 2014 Oct 24.

Abstract

Vibrio parahaemolyticus is a halophile that is the predominant cause of bacterial seafood-related gastroenteritis worldwide. To survive in the marine environment, V. parahaemolyticus must have adaptive strategies to cope with salinity changes. Six putative compatible solute (CS) transport systems were previously predicted from the genome sequence of V. parahaemolyticus RIMD2210633. In this study, we determined the role of the four putative betaine-carnitine-choline transporter (BCCT) homologues VP1456, VP1723, VP1905, and VPA0356 in the NaCl stress response. Expression analysis of the four BCCTs subjected to NaCl upshock showed that VP1456, VP1905, and VPA0356, but not VP1723, were induced. We constructed in-frame single-deletion mutant strains for all four BCCTs, all of which behaved similarly to the wild-type strain, demonstrating a redundancy of the systems. Growth analysis of a quadruple mutant and four BCCT triple mutants demonstrated the requirement for at least one BCCT for efficient CS uptake. We complemented Escherichia coli MHK13, a CS synthesis- and transporter-negative strain, with each BCCT and examined CS uptake by growth analysis and (1)H nuclear magnetic resonance (NMR) spectroscopy analyses. These data demonstrated that VP1456 had the most diverse substrate transport ability, taking up glycine betaine (GB), proline, choline, and ectoine. VP1456 was the sole ectoine transporter. In addition, the data demonstrated that VP1723 can transport GB, proline, and choline, whereas VP1905 and VPA0356 transported only GB. Overall, the data showed that the BCCTs are functional and that there is redundancy among them.

摘要

副溶血性弧菌是一种嗜盐菌,是全球细菌性海鲜相关肠胃炎的主要病因。为了在海洋环境中生存,副溶血性弧菌必须具备应对盐度变化的适应性策略。先前从副溶血性弧菌RIMD2210633的基因组序列中预测出六种假定的相容性溶质(CS)转运系统。在本研究中,我们确定了四种假定的甜菜碱 - 肉碱 - 胆碱转运蛋白(BCCT)同源物VP1456、VP1723、VP1905和VPA0356在NaCl应激反应中的作用。对经受NaCl冲击的四种BCCT进行表达分析表明,VP1456、VP1905和VPA0356被诱导表达,而VP1723未被诱导。我们构建了所有四种BCCT的框内单缺失突变菌株,所有这些菌株的表现与野生型菌株相似,表明这些系统具有冗余性。对四重突变体和四个BCCT三突变体的生长分析表明,高效摄取CS至少需要一种BCCT。我们用每种BCCT对CS合成和转运均为阴性的大肠杆菌MHK13进行了互补,并通过生长分析和(1)H核磁共振(NMR)光谱分析检查了CS摄取情况。这些数据表明,VP1456具有最多样化的底物转运能力,能够摄取甘氨酸甜菜碱(GB)、脯氨酸、胆碱和羟基四氢嘧啶。VP1456是唯一的羟基四氢嘧啶转运蛋白。此外,数据表明VP1723可以转运GB、脯氨酸和胆碱,而VP1905和VPA0356仅转运GB。总体而言,数据表明BCCT具有功能,并且它们之间存在冗余性。

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