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Involvement of Cytochrome P450 in Pentachlorophenol Transformation in a White Rot Fungus Phanerochaete chrysosporium

机译:细胞色素p450的参与五氯酚转型白腐菌白腐菌

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摘要

The occurrence of cytochrome P450 and P450-mediated pentachlorophenol oxidation in a white rot fungus Phanerochaete chrysosporium was demonstrated in this study. The carbon monoxide difference spectra indicated induction of P450 (103±13 pmol P450 per mg protein in the microsomal fraction) by pentachlorophenol. The pentachlorophenol oxidation by the microsomal P450 was NADPH-dependent at a rate of 19.0±1.2 pmol min−1 (mg protein)−1, which led to formation of tetrachlorohydroquinone and was significantly inhibited by piperonyl butoxide (a P450 inhibitor). Tetrachlorohydroquinone was also found in the cultures, while the extracellular ligninases which were reported to be involved in tetrachlorohydroquinone formation were undetectable. The formation of tetrachlorohydroquinone was not detectable in the cultures added with either piperonyl butoxide or cycloheximide (an inhibitor of de novo protein synthesis). These results revealed the pentachlorophenol oxidation by induced P450 in the fungus, and it should be the first time that P450-mediated pentachlorophenol oxidation was demonstrated in a microorganism. Furthermore, the addition of the P450 inhibitor to the cultures led to obvious increase of pentachlorophenol, suggesting that the relationship between P450 and pentachlorophenol methylation is worthy of further research.
机译:在这项研究中证明了白腐真菌Phanerochaete chrysosporium中细胞色素P450和P450介导的五氯苯酚氧化的发生。一氧化碳差异光谱表明五氯苯酚可诱导P450(微粒体级分中每mg蛋白103±13 pmol P450)。微粒体P450对五氯苯酚的氧化以NADPH依赖性,速率为19.0±1.2 pmol min -1 (mg蛋白) -1 ,导致四氯氢醌和被哌啶丁醇(P450抑制剂)显着抑制。在培养物中也发现了四氯氢醌,而据报道与四氯氢醌形成有关的细胞外木质素酶则无法检测到。在添加了胡椒基丁醇或环己酰亚胺(从头蛋白质合成的抑制剂)的培养物中无法检测到四氯氢醌的形成。这些结果揭示了真菌中诱导的P450引起的五氯苯酚氧化,这应该是在微生物中首次证明P450介导的五氯苯酚氧化。此外,在培养物中加入P450抑制剂会导致五氯苯酚的明显增加,这表明P450与五氯苯酚甲基化之间的关系值得进一步研究。

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    Daliang Ning; Hui Wang;

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  • 年(卷),期 -1(7),9
  • 年度 -1
  • 页码 e45887
  • 总页数 7
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