首页> 外文期刊>Applied and Environmental Microbiology >HipH Catalyzes the Hydroxylation of 4-Hydroxyisophthalate to Protocatechuate in 2,4-Xylenol Catabolism by Pseudomonas putida NCIMB 9866
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HipH Catalyzes the Hydroxylation of 4-Hydroxyisophthalate to Protocatechuate in 2,4-Xylenol Catabolism by Pseudomonas putida NCIMB 9866

机译:HipH催化恶臭假单胞菌NCIMB 9866在2,4-二甲苯酚分解代谢中将4-羟基间苯二酸酯羟基化为原儿茶酸酯

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In addition to growing on p-cresol, Pseudomonas putida NCIMB 9866 is the only reported strain capable of aerobically growing on 2,4-xylenol, which is listed as a priority pollutant by the U.S. Environmental Protection Agency. Several enzymes involved in the oxidation of the para-methyl group, as well as the corresponding genes, have previously been reported. The enzyme catalyzing oxidation of the catabolic intermediate 4-hydroxyisophthalate to the ring cleavage substrate protocatechuate was also purified from strain NCIMB 9866, but its genetic determinant is still unavailable. In this study, the gene hipH, encoding 4-hydroxyisophthalate hydroxylase, from strain NCIMB 9866 was cloned by transposon mutagenesis. Purified recombinant HipH-His6 was found to be a dimer protein with a molecular mass of approximately 110 kDa. HipH-His6 catalyzed the hydroxylation of 4-hydroxyisophthalate to protocatechuate with a specific activity of 1.54 U mg?1 and showed apparent Km values of 11.40 ± 3.05 μM for 4-hydroxyisophthalate with NADPH and 11.23 ± 2.43 μM with NADH and similar Km values for NADPH and NADH (64.31 ± 13.16 and 72.76 ± 12.06 μM, respectively). The identity of protocatechuate generated from 4-hydroxyisophthalate hydroxylation by HipH-His6 has also been confirmed by high-performance liquid chromatography and mass spectrometry. Gene transcriptional analysis, gene knockout, and complementation indicated that hipH is essential for 2,4-xylenol catabolism but not for p-cresol catabolism in this strain. This fills a gap in our understanding of the gene that encodes a critical step in 2,4-xylenol catabolism and also provides another example of biochemical and genetic diversity of microbial catabolism of structurally similar compounds.
机译:除了在对甲酚上生长以外,恶臭假单胞菌NCIMB 9866是唯一能够在2,4-二甲苯酚上有氧生长的菌株,该菌株被美国环境保护署列为优先污染物。先前已经报道了涉及对甲基氧化的几种酶以及相应的基因。还从菌株NCIMB 9866中纯化了催化分解代谢的中间体4-羟基间苯二甲酸酯氧化成环裂解底物原儿茶酸酯的酶,但其遗传决定因素仍然不可用。在这项研究中,通过转座子诱变从菌株NCIMB 9866克隆了编码4-羟基间苯二甲酸羟化酶的基因hipH。发现纯化的重组HipH-His6是分子量约为110kDa的二聚体蛋白。 HipH-His6催化4-羟基间苯二甲酸的羟基化为原儿茶酸,比活度为1.54 U mg?1,表观Km值对于带有NADPH的4-羟基间苯二甲酸酯为11.40±3.05μM,对于NADH为11.23±2.43μM,对于KDH具有相似的Km值NADPH和NADH(分别为64.31±13.16和72.76±12.06μM)。高效液相色谱和质谱也已证实了通过HipH-His6由4-羟基间苯二甲酸邻苯二甲酸酯羟基化生成的原儿茶酸的身份。基因转录分析,基因敲除和互补表明,该菌株中hipH对于2,4-二甲苯酚分解代谢是必需的,但对对甲酚分解代谢不是必需的。这填补了我们对编码2,4-二甲苯酚分解代谢关键步骤的基因的理解的空白,并且还提供了结构相似化合物的微生物分解代谢的生化和遗传多样性的另一个例子。

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