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首页> 外文期刊>Archives of Microbiology >Molecular identification and functional characterization of cytochrome P450 monooxygenases from the brown-rot basidiomycete Postia placenta
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Molecular identification and functional characterization of cytochrome P450 monooxygenases from the brown-rot basidiomycete Postia placenta

机译:褐腐担子菌Postia胎盘中细胞色素P450单加氧酶的分子鉴定和功能表征

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摘要

We explored the molecular diversity and functional capabilities of cytochrome P450 monooxygenases (P450s) from the brown-rot basidiomycete Postia placenta. Using bioinformatic and experimental data, we found 250 genes of P450s in the whole genome, including 60 putative allelic variants. Phylogenetic analysis revealed the presence of 42 families, including 18 novel families. Comparative phylogenetic analysis of P450s from P. placenta and the white-rot basidiomycete Phanerochaete chrysosporium suggested that vigorous gene duplication and molecular evolution occurred after speciation of basidiomycetes. Among the 250 gene models, 184 were isolated as full-length cDNA and transformed into Saccharomyces cerevisiae to construct a functional library in which recombinant P450s were co-expressed with yeast NADPH-P450 oxidoreductase. Using this library, the catalytic potentials of P450s against a wide variety of compounds were investigated. A functionomic survey allowed the discovery of novel catalytic properties of P. placenta P450s. The phylogenetic diversity of the CYP53 family in P. placenta was clear, and CYP53D2 is capable of converting stilbene derivatives. This is the first report of this peculiar function of the CYP53 family. Our increased understanding of the molecular and functional diversity of P450s in this fungus will facilitate comprehension of metabolic diversity in basidiomycetes and has future biotechnology applications.
机译:我们探讨了褐腐担子菌Postia胎盘中细胞色素P450单加氧酶(P450s)的分子多样性和功能能力。利用生物信息学和实验数据,我们在整个基因组中发现了250个P450基因,包括60个推定的等位基因变体。系统发育分析显示存在42个科,其中包括18个新科。比较的系统发育分析来自胎盘假单胞菌和白腐担子菌Phanerochaete chrysosporium的P450提示,在对担子菌进行物种形成后,发生了剧烈的基因复制和分子进化。在250个基因模型中,分离出184个全长cDNA,并将其转化为酿酒酵母以构建功能性文库,其中重组P450与酵母NADPH-P450氧化还原酶共表达。使用该文库,研究了P450对多种化合物的催化潜力。功能组学调查允许发现胎盘疟原虫P450的新催化特性。胎盘疟原虫中CYP53家族的系统发育多样性是清楚的,并且CYP53D2能够转化二苯乙烯衍生物。这是CYP53家族独特功能的首次报道。我们对这种真菌中P450分子和功能多样性的深入了解将有助于理解担子菌的代谢多样性,并具有未来的生物技术应用。

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