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核糖体相关抗生素耐药性基础

The ABC of Ribosome-Related Antibiotic Resistance.

作者信息

Wilson Daniel N

机构信息

Gene Center and Department of Biochemistry, University of Munich, Munich, Germany Center for Integrated Protein Science Munich (CiPSM), Munich, Germany.

出版信息

mBio. 2016 May 3;7(3):e00598-16. doi: 10.1128/mBio.00598-16.

Abstract

The increase in multidrug-resistant pathogenic bacteria is limiting the utility of our current arsenal of antimicrobial agents. Mechanistically understanding how bacteria obtain antibiotic resistance is a critical first step to the development of improved inhibitors. One common mechanism for bacteria to obtain antibiotic resistance is by employing ATP-binding cassette (ABC) transporters to actively pump the drug from the cell. The ABC-F family includes proteins conferring resistance to a variety of clinically important ribosome-targeting antibiotics; however, controversy remains as to whether resistance is conferred via efflux like other ABC transporters or whether another mechanism, such as ribosome protection, is at play. A recent study by Sharkey and coworkers (L. K. Sharkey, T. A. Edwards, and A. J. O'Neill, mBio 7:e01975-15, 2016, http://dx.doi.org/10.1128/mBio.01975-15) provides strong evidence that ABC-F proteins conferring antibiotic resistance utilize ribosome protection mechanisms, namely, by interacting with the ribosome and displacing the drug from its binding site, thus revealing a novel role for ABC-F proteins in antibiotic resistance.

摘要

多重耐药病原菌的增加限制了我们目前抗菌药物 arsenal 的效用。从机制上理解细菌如何获得抗生素耐药性是开发改进抑制剂的关键第一步。细菌获得抗生素耐药性的一种常见机制是利用 ATP 结合盒(ABC)转运蛋白将药物主动泵出细胞。ABC-F 家族包括赋予对多种临床上重要的核糖体靶向抗生素耐药性的蛋白质;然而,关于耐药性是像其他 ABC 转运蛋白一样通过外排赋予,还是存在其他机制(如核糖体保护)在起作用,仍存在争议。Sharkey 及其同事最近的一项研究(L.K. Sharkey、T.A. Edwards 和 A.J. O'Neill,mBio 7:e01975-15,2016,http://dx.doi.org/10.1128/mBio.01975-15)提供了有力证据,表明赋予抗生素耐药性的 ABC-F 蛋白利用核糖体保护机制,即通过与核糖体相互作用并将药物从其结合位点置换出来,从而揭示了 ABC-F 蛋白在抗生素耐药性中的新作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ced/4959660/28cad79b9931/mbo0021628120001.jpg

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