Fontana R, Grossato A, Rossi L, Cheng Y R, Satta G
Antimicrob Agents Chemother. 1985 Nov;28(5):678-83. doi: 10.1128/AAC.28.5.678.
Penicillin-binding protein (PBP) 5 of Streptococcus faecium has been shown to have a very low affinity for penicillin, and this PBP was suggested to be responsible for both the natural low susceptibility and high resistance to the antibiotic in this species (R. Fontana, R. Cerini, P. Longoni, A. Grossato, and P. Canepari, J. Bacteriol. 155:1343-1350, 1983). In this study, an S. faecium mutant (Rev 14) hypersusceptible to penicillin was derived from the highly resistant S. faecium R40 treated with novobiocin, and its properties were compared with those of the parent and S. faecium PS, a relatively susceptible strain from which R40 was isolated. The hypersusceptible strain did not synthesize PBP 5, but it did resemble the parent in cell morphology, growth rate, and autolytic activity. In addition, it was highly susceptible to other beta-lactams but remained as susceptible as R40 and PS to antibiotics of a different mechanisms of action. The affinity of individual PBPs for the beta-lactams tested was the same in all the strains. This finding suggested that Rev 14 hypersusceptibility was due to the lack of PBP 5 and strongly supported the role of this protein in the mechanism of both natural low susceptibility and high-level resistance to beta-lactams in S. faecium.
粪肠球菌的青霉素结合蛋白(PBP)5已被证明对青霉素的亲和力非常低,并且有人认为该PBP是导致该菌种对这种抗生素天然低敏感性和高抗性的原因(R. 丰塔纳、R. 切里尼、P. 隆戈尼、A. 格罗萨托和P. 卡内帕里,《细菌学杂志》155:1343 - 1350,1983年)。在本研究中,对青霉素高度敏感的粪肠球菌突变体(Rev 14)源自用新生霉素处理的高度耐药的粪肠球菌R40,并将其特性与亲本以及粪肠球菌PS(R40从中分离出的相对敏感菌株)的特性进行了比较。该高度敏感菌株不合成PBP 5,但在细胞形态、生长速率和自溶活性方面与亲本相似。此外,它对其他β-内酰胺类药物高度敏感,但对作用机制不同的抗生素的敏感性仍与R40和PS相同。所有菌株中各个PBP对所测试的β-内酰胺类药物的亲和力相同。这一发现表明Rev 14的高度敏感性是由于缺乏PBP 5,并有力地支持了该蛋白在粪肠球菌对β-内酰胺类药物天然低敏感性和高水平抗性机制中的作用。