首页> 外文期刊>Antimicrobial agents and chemotherapy. >E240V substitution increases catalytic efficiency toward ceftazidime in a new natural TEM-type extended-spectrum beta-lactamase, TEM-149, from Enterobacter aerogenes and Serratia marcescens clinical isolates.
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E240V substitution increases catalytic efficiency toward ceftazidime in a new natural TEM-type extended-spectrum beta-lactamase, TEM-149, from Enterobacter aerogenes and Serratia marcescens clinical isolates.

机译:E240V取代提高了来自产气肠杆菌和粘质沙雷氏菌临床分离株的新型天然TEM型超广谱β-内酰胺酶TEM-149中对头孢他啶的催化效率。

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The aim of this study was to characterize a novel extended-spectrum beta-lactamase that belongs to the TEM family, the TEM-149 enzyme, and that was isolated from the urine of two hospitalized patients from different hospitals in southern Italy. The peculiarity of this enzyme was the finding of a valine residue at position 240. The array of amino acid substitutions found in TEM-149 was as follows: E104K, R164S, M182T, and E240V. A reversion of a threonine residue at position 182 was also performed to create a new mutant, TEM-149 T182M, in order to assess the contribution of this substitution on the kinetic profile and the stability of TEM-149. The bla TEM-149 and bla TEM-149/T182M genes were cloned into pBC-SK, and the corresponding enzymes were purified from recombinant Escherichia coli HB101 by the same procedure. Both enzymes hydrolyzed all beta-lactams tested, with a preference for ceftazidime, which was found to be the best substrate. By comparison of the kinetic parameters of the TEM-149 and the TEM-149 T182M enzymes, a reduction of the catalytic efficiency for the TEM-149 T182M mutant was observed against all substrates tested except benzylpenicillin, cefotaxime, and aztreonam. Tazobactam, clavulanic acid, and sulbactam were good inhibitors of the TEM-149 beta-lactamase.
机译:这项研究的目的是鉴定属于TEM家族的新型超广谱β-内酰胺酶TEM-149酶,该酶是从意大利南部不同医​​院的两名住院患者的尿液中分离出来的。该酶的独特之处在于在240位发现了缬氨酸残基。在TEM-149中发现的氨基酸取代阵列如下:E104K,R164S,M182T和E240V。还进行了182位苏氨酸残基的还原反应,以创建新的突变体TEM-149 T182M,以评估该取代对TEM-149动力学图谱和稳定性的影响。将bla TEM-149和bla TEM-149 / T182M基因克隆到pBC-SK中,并通过相同步骤从重组大肠杆菌HB101中纯化相应的酶。两种酶均水解了所有测试的β-内酰胺,偏爱头孢他啶,后者被认为是最好的底物。通过比较TEM-149和TEM-149 T182M酶的动力学参数,观察到TEM-149 T182M突变体对除苄青霉素,头孢噻肟和氨曲南以外的所有底物的催化效率均降低。他唑巴坦,克拉维酸和舒巴坦是TEM-149β-内酰胺酶的良好抑制剂。

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