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An Enterococcus faecalis ABC Homologue (Lsa) Is Required for the Resistance of This Species to Clindamycin and Quinupristin-Dalfopristin

机译:粪肠球菌ABC同源物(Lsa)是该物种对克林霉素和奎奴普丁-达尔福普汀的抗性所必需的

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摘要

Enterococcus faecalis isolates are resistant to clindamycin (CLI) and quinupristin-dalfopristin (Q-D), and this is thought to be a species characteristic. Disruption of a gene (abc-23, now designated lsa, for “lincosamide and streptogramin A resistance”) of E. faecalis was associated with a ≥40-fold decrease in MICs of Q-D (to 0.75 μg/ml), CLI (to 0.12 to 0.5 μg/ml), and dalfopristin (DAL) (to 4 to 8 μg/ml) for the wild-type E. faecalis parental strain (Q-D MIC, 32 μg/ml; CLI MIC, 32 to 48 μg/ml; DAL MIC, 512 μg/ml). Complementation of the disruption mutant with lsa on a shuttle plasmid resulted in restoration of the MICs of CLI, Q-D, and DAL to wild-type levels. Under high-stringency conditions, lsa was found in 180 of 180 isolates of E. faecalis but in none of 189 other enterococci. Among 19 erm(B)-lacking Enterococcus faecium strains, 9 (47%) were highly susceptible to CLI (MIC, 0.06 to 0.25 μg/ml) and had DAL MICs of 4 to 16 μg/ml; for the remaining erm(B)-lacking E. faecium strains, the CLI and DAL MICs were 4 to >256 and 2 to >128 μg/ml, respectively. In contrast, none of 32 erm(B)-lacking E. faecalis strains were susceptible (CLI MIC range, 16 to 32 μg/ml; DAL MIC range, ≥32 μg/ml). When lsa was introduced into an E. faecium strain initially susceptible to CLI, the MICs of CLI and DAL increased ≥60-fold and that of Q-D increased 6-fold (to 3 to 6 μg/ml). Introduction of lsa into two DAL-resistant (MICs, >128 μg/ml), Q-D-susceptible (MICs, 0.5 and 1.5 μg/ml) E. faecium strains (CLI MICs, 12 and >256 μg/ml) resulted in an increase in the Q-D MICs from 3- to 10-fold (to 8 and >32 μg/ml), respectively. Although efflux was not studied, the similarity (41 to 64%) of the predicted Lsa protein to ABC proteins such as Vga(A), Vga(B), and Msr(A) of Staphylococcus aureus and YjcA of Lactococcus lactis and the presence of Walker A and B ATP-binding motifs suggest that this resistance may be related to efflux of these antibiotics. In conclusion, lsa appears to be an intrinsic gene of E. faecalis that explains the characteristic resistance of this species to CLI and Q-D.
机译:粪肠球菌分离株对克林霉素(CLI)和奎奴普丁-达福普汀(Q-D)具有抗性,被认为是一种物种特征。粪肠球菌的基因(abc-23,现命名为lsa,“林可酰胺和链霉菌素A耐药性”)的破坏与QD MIC降低≥40倍(至0.75μg/ ml),CLI(至0.12至0.5μg/ ml)和达福普汀(DAL)(至4至8μg/ ml)用于野生型粪肠球菌亲本菌株(QD MIC,32μg/ ml; CLI MIC,32至48μg/ ml ; DAL MIC,512μg/ ml)。穿梭质粒上的lsa破坏突变体的补充导致CLI,Q-D和DAL的MIC恢复到野生型水平。在高严格性条件下,在180株粪肠球菌中分离出180株,但在其他189株肠球菌中均未发现lsa。在19株缺乏Erm(B)的肠球菌中,有9株(47%)对CLI高度敏感(MIC为0.06至0.25μg/ ml),DAL MIC为4至16μg/ ml。对于其余缺少erm(B)的屎肠球菌菌株,CLI和DAL MIC分别为4至> 256μg/ ml。相比之下,没有32株缺少Erm(B)的粪肠球菌菌株(CLI MIC范围为16至32μg/ ml; DAL MIC范围为≥32μg/ ml)。当将lsa引入最初易受CLI影响的粪肠球菌菌株时,CLI和DAL的MIC增加≥60倍,而Q-D的MIC增加6倍(至3至6μg/ ml)。将lsa引入两个DAL抗性(MICs> 128μg/ ml),QD易感性(MICs 0.5和1.5μg/ ml)屎肠球菌菌株(CLI MICs 12和> 256μg/ ml) QD MIC分别增加了3到10倍(分别达到8和> 32μg/ ml)。尽管未研究外排,但预测的Lsa蛋白与ABC蛋白(如金黄色葡萄球菌的Vga(A),Vga(B)和Msr(A)和乳酸乳球菌YjcA)的相似性(41%至64%)以及存在Walker A和B的ATP结合基序表明,这种耐药性可能与这些抗生素的外排有关。总之,lsa似乎是粪肠球菌的内在基因,这解释了该物种对CLI和Q-D的特征抗性。

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