Department of Environmental Science and Engineering, Tsinghua University, Beijing, People's Republic of China.
Biodegradation. 2010 Apr;21(2):297-308. doi: 10.1007/s10532-009-9301-z. Epub 2009 Sep 29.
The white rot fungus Phanerochaete chrysosporium has the largest cytochrome P450 contingent known to date in fungi, but the study on the function of these P450s is limited. In this study, induction of functional P450 in P. chrysosporium was first shown and P450-mediate degradation of benzoic acid was demonstrated in this fungus. Carbon monoxide difference spectra indicated significant induction of P450 by benzoic acid, m-chlorobenzoic acid, p-chlorobenzoic acid and n-hexane, and showed the effect of inducer concentration and nutrient condition on the induction of P450. The high contents of P450 in the microsomal fractions facilitated the study on the function of P450. While the n-hexane-induced P450 could not interact with benzoic acid, the microsomal P450 induced by benzoic acid produced type I substrate binding spectra upon the addition of benzoic acid. The benzoic acid degradation by the microsomal P450 was NADPH-dependent at a specific rate of 194 +/- 14 min(-1), and significantly inhibited by piperonyl butoxide (a P450 inhibitor). However, inhibition of benzoic acid degradation by piperonyl butoxide was slight or not detectable in the cultures of this fungus, suggesting presumable involvement of other enzyme in benzoic acid degradation. The extracellular ligninolytic enzymes, lignin peroxidase and manganese-dependent peroxidase, were not involved in initial metabolism of benzoic acid under the test conditions.
白腐真菌糙皮侧耳(Phanerochaete chrysosporium)拥有真菌中最大的细胞色素 P450 群体,但目前对这些 P450 功能的研究十分有限。本研究首次证明了糙皮侧耳中功能性 P450 的诱导,并证明了 P450 介导的苯甲酸降解。一氧化碳差示光谱表明苯甲酸、间氯苯甲酸、对氯苯甲酸和正己烷显著诱导了 P450,同时还显示了诱导剂浓度和营养条件对 P450 诱导的影响。由于粗面内质网中 P450 的含量较高,因此方便了对 P450 功能的研究。虽然正己烷诱导的 P450 不能与苯甲酸相互作用,但当加入苯甲酸时,由苯甲酸诱导的 P450 产生了 I 型底物结合光谱。粗面内质网 P450 依赖 NADPH 以 194±14min-1 的特定速率降解苯甲酸,且被胡椒基丁醚(一种 P450 抑制剂)显著抑制。然而,在该真菌的培养物中,胡椒基丁醚对苯甲酸降解的抑制作用轻微或无法检测到,这表明苯甲酸降解可能涉及其他酶。在测试条件下,细胞外木质素降解酶木质素过氧化物酶和锰依赖过氧化物酶不参与苯甲酸的初始代谢。