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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Diversity of SHV and TEM beta-lactamases in Klebsiella pneumoniae: gene evolution in Northern Taiwan and two novel beta-lactamases, SHV-25 and SHV-26.
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Diversity of SHV and TEM beta-lactamases in Klebsiella pneumoniae: gene evolution in Northern Taiwan and two novel beta-lactamases, SHV-25 and SHV-26.

机译:肺炎克雷伯菌中SHV和TEMβ-内酰胺酶的多样性:台湾北部的基因进化和两种新型β-内酰胺酶SHV-25和SHV-26。

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摘要

A total of 113 blood culture isolates of Klebsiella pneumoniae from 10 hospitals in northern Taiwan were studied for SHV and TEM beta-lactamase production. bla(SHV) was amplified from all isolates by PCR. TEM-type resistance, was found in 32 of the isolates and was of the TEM-1 type in all isolates. SHV-1, -2, -5, -11, and -12 and two novel enzymes were identified. These novel enzymes were designated SHV-25 and SHV-26 and had pIs of 7.5 and 7.6, respectively. Amino acid differences in comparison to the amino acid sequence of bla(SHV-1) were found at positions T18A (ThrACC-->AlaGCC), L35Q (LeuCTA-->GluCAA), and M129V (MetATG-->ValGTG) for SHV-25 and at position A187T (AlaGCC-->ThrACC) for SHV-26. The results of substrate profiles and MIC determinations showed that the novel enzymes did not hydrolyze extended-spectrum cephalosporins, rendering the isolates susceptible to these agents. Inhibition profiles revealed that the 50% inhibitory concentration for SHV-26 was higher than those for SHV-1 and SHV-25, resulting in an intermediate resistance to amoxicillin-clavulanic acid. Forty-nine ribotypes were identified, suggesting that major clonal spread had not occurred in any of the hospitals. According to the amino acid sequence, SHV beta-lactamases in Taiwan may basically be derived through stepwise mutation from SHV-1 or SHV-11 and further subdivided by four routes. The stepwise mutations initiated from SHV-1 or SHV-11 to SHV-2, SHV-5, and SHV-12 comprise the evolutionary change responsible for extended-spectrum beta-lactamase (ESBL) production in Taiwan. The stepwise mutations that lead to a non-ESBL (SHV-25) and the beta-lactamase (SHV-26) with reduced susceptibility to clavulanic acid are possibly derived from SHV-11 and SHV-1, respectively. The results suggest a stepwise evolution of SHV beta-lactamases in Taiwan.
机译:对台湾北部10家医院的113株肺炎克雷伯菌的血培养分离株进行了SHV和TEMβ-内酰胺酶生产的研究。通过PCR从所有分离物中扩增bla(SHV)。在32个菌株中发现了TEM型抗性,在所有菌株中均为TEM-1型。 SHV-1,-2,-5,-11和-12以及两种新型酶被鉴定。这些新型酶分别命名为SHV-25和SHV-26,pI分别为7.5和7.6。在SHV的T18A(ThrACC-> AlaGCC),L35Q(LeuCTA-> GluCAA)和M129V(MetATG-> ValGTG)的位置发现了与bla(SHV-1)氨基酸序列相比的氨基酸差异-25和SHV-26的位置A187T(AlaGCC-> ThrACC)。底物谱和MIC测定的结果表明,该新型酶不水解广谱头孢菌素,使分离株易受这些试剂的影响。抑制谱显示,SHV-26的50%抑制浓度高于SHV-1和SHV-25的抑制浓度,导致对阿莫西林-克拉维酸具有中等抵抗力。鉴定出四十九个核糖型,表明在任何一家医院中都没有发生主要的克隆传播。根据氨基酸序列,台湾的SHVβ-内酰胺酶基本上可以通过逐步突变从SHV-1或SHV-11衍生而来,并进一步细分为四种途径。从SHV-1或SHV-11到SHV-2,SHV-5和SHV-12的逐步突变构成了台湾地区广谱β-内酰胺酶(ESBL)生产的进化变化。导致非ESBL(SHV-25)和β-内酰胺酶(SHV-26)对克拉维酸敏感性降低的逐步突变可能分别来自SHV-11和SHV-1。结果表明台湾地区SHVβ-内酰胺酶的逐步进化。

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