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协同抗生素耐药性促进了水平基因转移。

Cooperative antibiotic resistance facilitates horizontal gene transfer.

机构信息

Department of Biology, University of Copenhagen, 2100, Copenhagen, Denmark.

National Food Institute, Technical University of Denmark, 2800, Lyngby, Denmark.

出版信息

ISME J. 2023 Jun;17(6):846-854. doi: 10.1038/s41396-023-01393-1. Epub 2023 Mar 22.

Abstract

The rise of β-lactam resistance among pathogenic bacteria, due to the horizontal transfer of plasmid-encoded β-lactamases, is a current global health crisis. Importantly, β-lactam hydrolyzation by β-lactamases, not only protects the producing cells but also sensitive neighboring cells cooperatively. Yet, how such cooperative traits affect plasmid transmission and maintenance is currently poorly understood. Here we experimentally show that KPC-2 β-lactamase expression and extracellular activity were higher when encoded on plasmids compared with the chromosome, resulting in the elevated rescue of sensitive non-producers. This facilitated efficient plasmid transfer to the rescued non-producers and expanded the potential plasmid recipient pool and the probability of plasmid transfer to new genotypes. Social conversion of non-producers by conjugation was efficient yet not absolute. Non-cooperative plasmids, not encoding KPC-2, were moderately more competitive than cooperative plasmids when β-lactam antibiotics were absent. However, in the presence of a β-lactam antibiotic, strains with non-cooperative plasmids were efficiently outcompeted. Moreover, plasmid-free non-producers were more competitive than non-producers imposed with the metabolic burden of a plasmid. Our results suggest that cooperative antibiotic resistance especially promotes the fitness of replicons that transfer horizontally such as conjugative plasmids.

摘要

由于质粒编码的β-内酰胺酶的水平转移,致病细菌中β-内酰胺耐药性的上升是当前全球健康危机。重要的是,β-内酰胺酶对β-内酰胺的水解不仅保护产生细胞,而且还协同保护敏感的邻近细胞。然而,这种协同特性如何影响质粒的传递和维持目前还知之甚少。在这里,我们通过实验表明,与染色体相比,KPC-2 型β-内酰胺酶在质粒上的表达和细胞外活性更高,导致敏感的非产生菌的拯救率升高。这促进了有效的质粒向被拯救的非产生菌的转移,并扩大了潜在的质粒受体库和向新基因型转移的概率。通过接合进行的非产生菌的社会转化是有效的,但并非绝对的。当不存在β-内酰胺抗生素时,不编码 KPC-2 的非合作性质粒比合作性质粒具有更强的竞争力。然而,在存在β-内酰胺抗生素的情况下,不具有合作性的质粒的菌株会被有效地淘汰。此外,与带有质粒代谢负担的非产生菌相比,无质粒的非产生菌更具竞争力。我们的研究结果表明,协同抗生素耐药性特别促进了能够水平转移的复制子(如接合质粒)的适应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c4e/10203111/ffdda51e6ca0/41396_2023_1393_Fig1_HTML.jpg

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