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Identification and characterization of two novel ISCR1-associated genes dfrA42 and dfrA43 encoding trimethoprim resistant dihydrofolate reductases.


ABSTRACT: Two novel ISCR1-associated dfr genes, dfrA42 and dfrA43, were identified from trimethoprim (TMP)-resistant Proteus strains and were shown to confer high level TMP resistance (MIC ≥ 1024 mg/L) when cloned into Escherichia coli These genes were hosted by complex class 1 integrons suggesting their potentials for dissemination. Analysis of enzymatic parameters and TMP affinity were performed, suggesting that the mechanism of TMP resistance for these novel DHFRs is the reduction of binding with TMP.

SUBMITTER: Li L 

PROVIDER: S-EPMC8092886 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Identification and characterization of two novel IS<i>CR1</i>-associated genes <i>dfrA42</i> and <i>dfrA43</i> encoding trimethoprim resistant dihydrofolate reductases.

Li Ling L   Zhang Mengge M   Wang Wenjia W   Xia Ruirui R   Ma Yanan Y   Wei Xin X   Wang Xinhua X   Sun Xiaomin X   Xie Xiaohong X   Xie Shiling S   Wang Mingyu M   Xu Hai H  

Antimicrobial agents and chemotherapy 20210216 5


Two novel IS<i>CR1</i>-associated <i>dfr</i> genes, <i>dfrA42</i> and <i>dfrA43</i>, were identified from trimethoprim (TMP)-resistant <i>Proteus</i> strains and were shown to confer high level TMP resistance (MIC ≥ 1024 mg/L) when cloned into <i>Escherichia coli</i> These genes were hosted by complex class 1 integrons suggesting their potentials for dissemination. Analysis of enzymatic parameters and TMP affinity were performed, suggesting that the mechanism of TMP resistance for these novel DH  ...[more]

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