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首页> 外文期刊>Journal of Clinical Microbiology >Prediction of Decreased Susceptibility to Penicillin of Neisseria meningitidis Strains by Real-Time PCR
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Prediction of Decreased Susceptibility to Penicillin of Neisseria meningitidis Strains by Real-Time PCR

机译:实时PCR预测脑膜炎奈瑟氏菌菌株对青霉素的敏感性降低

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Sequence analysis of the penA gene, encoding penicillin-binding protein 2 (PBP2), in 30 penicillin-intermediate (PenI) Neisseria meningitidis strains showed altered gene sequences due to the translocation of exogenous DNA blocks derived from commensal neisseriae, which are known to have PBP2 proteins with decreased affinity for the antibiotic. In order to obtain a rapid and reproducible method for predicting the PenI phenotype, a real-time PCR assay was set up with primers and probes designed on the basis of the penA gene. The A→G mutation at codon 566, in the transpeptidase domain of the penA gene (which is present in the whole sample of 30 PenI strains and in all the 41 sequences of PenI meningococci isolated worldwide and has been deposited in the sequence databank), was chosen as a marker of penA translocations. Two hybridization probes were designed to distinguish the wild-type penA gene in penicillin-susceptible (PenS) meningococci from the mutated penA gene at codon 566 in PenI strains. Thermal analysis of probe hybridization revealed a melting temperature difference of at least 6°C between PenI and PenS strains. This real-time PCR protocol characterizes the penicillin phenotype of N. meningitidis in a few hours without DNA sequencing and is useful for rapid screening of the penicillin-intermediate genotype among meningococcal isolates.
机译:30株青霉素中间脑膜炎奈瑟氏球菌菌株中编码青霉素结合蛋白2(PBP2)的 penA 基因的序列分析显示,由于易位,基因序列发生了变化来源于共生奈瑟氏球菌的外源DNA嵌段,已知具有对抗生素亲和力降低的PBP2蛋白。为了获得一种快速,可重复的预测PenI表型的方法,使用基于 penA 基因设计的引物和探针建立了实时PCR检测方法。 penA 基因的转肽酶结构域中第566位密码子的A→G突变(存在于30个PenI菌株的整个样品中,以及在全球范围内分离的PenI脑膜炎球菌的所有41个序列中存放在序列数据库中)作为 penA 易位标记。设计了两种杂交探针,以区分PenI菌株中566位密码子的青霉素易感性(PenS)脑膜炎球菌中的野生型 penA 基因与突变的 penA 基因。探针杂交的热分析表明PenI和PenS菌株之间的熔解温度差异至少为6°C。这种实时PCR协议表征了 N的青霉素表型。无需进行DNA测序即可在数小时内完成脑膜炎,可用于快速筛选脑膜炎球菌分离株中的青霉素中间基因型。

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