Neisseriaceae, a group of bacteria with dihydrofolate reductases, moderately susceptible to trimethoprim.

R L Then
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Abstract

Dihydrofolate reductases of five species of the family Neisseriaceae were compared by means of inhibition profiles, using several structurally different inhibitors, including trimethoprim (TMP) and pyrimethamine. All enzymes were seen to be highly susceptible to the folate analog aminopterin, but exhibited moderate susceptibility to all other inhibitors tested. Approximately 200-fold higher concentrations of TMP were needed to inhibit neisserial reductases as compared to the E. coli enzyme. Besides poor penetration this is assumed to be the main basis for the low susceptibility of neisseriae to TMP. In addition to TMP all other inhibitors were also moderately active or inactive in vitro. The enzymatic differences, as seen from inhibition profiles, were statistically significant but small among all species of the genus Neisseria. Branhamella catarrhalis on the other hand was seen to be far less related to the other neisseriae, as seen by the inhibition profile of its reductase, its dihydrofolate reductase conttent, as well as by its in vitro properties.

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奈瑟菌科,一组具有二氢叶酸还原酶的细菌,对甲氧苄啶中度敏感。
采用甲氧苄啶(TMP)和乙胺嘧啶(pyrimethamine)两种结构不同的抑制剂,比较了五种奈丝菌科植物的二氢叶酸还原酶的抑制谱。所有的酶都对叶酸类似物氨蝶呤高度敏感,但对所有其他抑制剂表现出中等敏感性。与大肠杆菌酶相比,抑制neisseries还原酶所需的TMP浓度大约高200倍。除了渗透性差外,这被认为是奈瑟菌对TMP敏感性低的主要原因。除TMP外,所有其他抑制剂在体外也具有中等活性或无活性。从抑制谱来看,酶的差异在所有奈瑟菌属物种中都有统计学意义,但很小。另一方面,从其还原酶的抑制谱、二氢叶酸还原酶含量以及其体外特性来看,卡他氏Branhamella catarrhalis与其他奈瑟菌的相关性要小得多。
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