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作为多药外排转运蛋白的AcrB-AcrA融合蛋白。

AcrB-AcrA Fusion Proteins That Act as Multidrug Efflux Transporters.

作者信息

Hayashi Katsuhiko, Nakashima Ryosuke, Sakurai Keisuke, Kitagawa Kimie, Yamasaki Seiji, Nishino Kunihiko, Yamaguchi Akihito

机构信息

Graduate School of Pharmaceutical Sciences, Osaka University, Suita, Japan The Institute of Scientific and Industrial Research (ISIR), Osaka University, Ibaraki, Osaka, Japan Japan Society for the Promotion of Science, Tokyo, Japan.

The Institute of Scientific and Industrial Research (ISIR), Osaka University, Ibaraki, Osaka, Japan CREST, Japan Science and Technology Agency, Saitama, Japan.

出版信息

J Bacteriol. 2015 Nov 2;198(2):332-42. doi: 10.1128/JB.00587-15. Print 2016 Jan 15.

Abstract

UNLABELLED

The AcrAB-TolC system in Escherichia coli is an intrinsic RND-type multidrug efflux transporter that functions as a tripartite complex of the inner membrane transporter AcrB, the outer membrane channel TolC, and the adaptor protein AcrA. Although the crystal structures of each component of this system have been elucidated, the crystal structure of the whole complex has not been solved. The available crystal structures have shown that AcrB and TolC function as trimers, but the number of AcrA molecules in the complex is now under debate. Disulfide chemical cross-linking experiments have indicated that the stoichiometry of AcrB-AcrA-TolC is 1:1:1; on the other hand, recent cryo-electron microscopy images of AcrAB-TolC suggested a 1:2:1 stoichiometry. In this study, we constructed 1:1-fixed AcrB-AcrA fusion proteins using various linkers. Surprisingly, all the 1:1-fixed linker proteins showed drug export activity under both acrAB-deficient conditions and acrAB acrEF double-pump-knockout conditions regardless of the lengths of the linkers. Finally, we optimized a shorter linker lacking the conformational freedom imparted by the AcrB C terminus. These results suggest that a complex with equal amounts of AcrA and AcrB is sufficient for drug export function.

IMPORTANCE

The structure and stoichiometry of the RND-type multidrug exporter AcrB-AcrA-TolC complex are still under debate. Recently, electron microscopic images of the AcrB-AcrA-TolC complex have been reported, suggesting a 1:2:1 stoichiometry. However, we report here that the AcrB-AcrA 1:1 fusion protein is active for drug export under acrAB-deficient conditions and also under acrAB acrEF double-deficient conditions, which eliminate the aid of free AcrA and its close homolog AcrE, indicating that the AcrB-AcrA 1:1 stoichiometry is enough for drug export function. In addition, the AcrB-AcrA fusion protein can function without the aid of free AcrA. We believe that these results are very important for considering the structure and mechanism of AcrAB-TolC-mediated multidrug export.

摘要

未标记

大肠杆菌中的AcrAB-TolC系统是一种固有的RND型多药外排转运蛋白,它作为内膜转运蛋白AcrB、外膜通道TolC和衔接蛋白AcrA的三方复合物发挥作用。尽管该系统各组分的晶体结构已被阐明,但整个复合物的晶体结构尚未解析。现有的晶体结构表明AcrB和TolC以三聚体形式发挥作用,但复合物中AcrA分子的数量目前仍存在争议。二硫键化学交联实验表明AcrB-AcrA-TolC的化学计量比为1:1:1;另一方面,最近AcrAB-TolC的冷冻电子显微镜图像显示化学计量比为1:2:1。在本研究中,我们使用各种接头构建了1:1固定的AcrB-AcrA融合蛋白。令人惊讶的是,所有1:1固定的接头蛋白在acrAB缺陷条件和acrAB acrEF双泵敲除条件下均表现出药物外排活性,而与接头长度无关。最后,我们优化了一个较短的接头,该接头缺乏AcrB C末端赋予的构象自由度。这些结果表明,等量的AcrA和AcrB组成的复合物足以发挥药物外排功能。

重要性

RND型多药外排蛋白AcrB-AcrA-TolC复合物的结构和化学计量比仍存在争议。最近,已报道了AcrB-AcrA-TolC复合物的电子显微镜图像,表明其化学计量比为1:2:1。然而,我们在此报告,AcrB-AcrA 1:1融合蛋白在acrAB缺陷条件下以及在acrAB acrEF双缺陷条件下对药物外排具有活性,这消除了游离AcrA及其紧密同源物AcrE的辅助作用,表明AcrB-AcrA 1:1的化学计量比足以发挥药物外排功能。此外,AcrB-AcrA融合蛋白可以在没有游离AcrA辅助的情况下发挥作用。我们认为这些结果对于考虑AcrAB-TolC介导的多药外排的结构和机制非常重要。

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