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两种产β-内酰胺酶粪肠球菌菌株的比较。

Comparison of two beta-lactamase-producing strains of Streptococcus faecalis.

作者信息

Murray B E, Church D A, Wanger A, Zscheck K, Levison M E, Ingerman M J, Abrutyn E, Mederski-Samoraj B

出版信息

Antimicrob Agents Chemother. 1986 Dec;30(6):861-4. doi: 10.1128/AAC.30.6.861.

Abstract

A second strain of enterococcus (PA) producing beta-lactamase (Bla+ phenotype) was compared with the previously reported Bla+ enterococcus, strain HH22. As with the original strain, there was a marked inoculum effect when PA was tested with penicillin, ampicillin, and piperacillin; no difference was noted with methicillin, cephalothin, imipenem, or vancomycin; the difference with ticarcillin was intermediate. High-level gentamicin resistance (Gmr) transferred from PA to an enterococcal recipient strain at a frequency approximately 100-fold lower than for HH22; all Gmr transconjugants from both strains were Bla+, but only PA showed linkage of Gmr and Bla+ with transfer of resistance to streptomycin, tetracycline, and chloramphenicol. EcoRI digestion of plasmid DNA from Gmr Bla+ transconjugants showed no similarities between the two strains. A 5.1-kilobase EcoRI Bla+-encoding fragment derived from HH22 was cloned into an Escherichia coli cloning vector and shown to hybridize to a 10.2-kilobase EcoRI fragment derived from PA; both fragments hybridized to an 840-base-pair staphylococcal Bla+ gene probe. These data indicate that the penicillinases are similar but encoded on different or differently arranged plasmids. The fact that both are transferable emphasizes the potential for this new streptococcal resistance determinant to disseminate.

摘要

将一株产β-内酰胺酶(Bla+表型)的粪肠球菌(PA)与先前报道的产Bla+的粪肠球菌HH22进行比较。与原始菌株一样,用青霉素、氨苄西林和哌拉西林检测PA时存在显著的接种量效应;用甲氧西林、头孢噻吩、亚胺培南或万古霉素检测时未发现差异;替卡西林检测结果介于两者之间。高水平庆大霉素耐药性(Gmr)从PA转移到肠球菌受体菌株的频率比HH22低约100倍;来自两种菌株的所有Gmr转接合子均为Bla+,但只有PA显示Gmr和Bla+与对链霉素、四环素和氯霉素的耐药性转移相关。对来自Gmr Bla+转接合子的质粒DNA进行EcoRI酶切,结果显示两种菌株之间没有相似性。将来自HH22的一个5.1千碱基的EcoRI Bla+编码片段克隆到大肠杆菌克隆载体中,结果显示它与来自PA的一个10.2千碱基的EcoRI片段杂交;两个片段均与一个840碱基对的葡萄球菌Bla+基因探针杂交。这些数据表明,两种青霉素酶相似,但由不同或排列方式不同的质粒编码。两者均可转移这一事实强调了这种新的链球菌耐药决定因素传播的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ca9/180608/a47133c33f2b/aac00167-0073-a.jpg

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