首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Identification and Characterization of the CYP52 Family of Candida tropicalis ATCC 20336 Important for the Conversion of Fatty Acids and Alkanes to αω-Dicarboxylic Acids
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Identification and Characterization of the CYP52 Family of Candida tropicalis ATCC 20336 Important for the Conversion of Fatty Acids and Alkanes to αω-Dicarboxylic Acids

机译:CYP52家族热带假丝酵母ATCC 20336的鉴定和表征对于脂肪酸和烷烃向αω-二羧酸的转化很重要

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摘要

Candida tropicalis ATCC 20336 excretes α,ω-dicarboxylic acids as a by-product when cultured on n-alkanes or fatty acids as the carbon source. Previously, a β-oxidation-blocked derivative of ATCC 20336 was constructed which showed a dramatic increase in the production of dicarboxylic acids. This paper describes the next steps in strain improvement, which were directed toward the isolation and characterization of genes encoding the ω-hydroxylase enzymes catalyzing the first step in the ω-oxidation pathway. Cytochrome P450 monooxygenase (CYP) and the accompanying NADPH cytochrome P450 reductase (NCP) constitute the hydroxylase complex responsible for the first and rate-limiting step of ω-oxidation of n-alkanes and fatty acids. 10 members of the alkane-inducible P450 gene family (CYP52) of C. tropicalis ATCC20336 as well as the accompanying NCP were cloned and sequenced. The 10 CYP genes represent four unique genes with their putative alleles and two unique genes for which no allelic variant was identified. Of the 10 genes, CYP52A13 and CYP52A14 showed the highest levels of mRNA induction, as determined by quantitative competitive reverse transcription-PCR during fermentation with pure oleic fatty acid (27-fold increase), pure octadecane (32-fold increase), and a mixed fatty acid feed, Emersol 267 (54-fold increase). The allelic pair CYP52A17 and CYP52A18 was also induced under all three conditions but to a lesser extent. Moderate induction of CYP52A12 was observed. These results identify the CYP52 and NCP genes as being involved in α,ω-dicarboxylic acid production by C. tropicalis and provide the foundation for biocatalyst improvement.
机译:当在正构烷烃或脂肪酸作为碳源上培养时,热带假丝酵母ATCC 20336会排出作为副产物的α,ω-二羧酸。以前,构建了ATCC 20336的β-氧化封闭衍生物,该衍生物显示出二羧酸的产量急剧增加。本文介绍了菌株改良的下一步,这些步骤旨在分离和表征编码ω-羟化酶的基因,这些基因催化ω-氧化途径的第一步。细胞色素P450单加氧酶(CYP)和随附的NADPH细胞色素P450还原酶(NCP)构成了羟化酶复合物,负责正构烷烃和脂肪酸ω-氧化的第一步和限速步骤。克隆并测序了热带假丝酵母ATCC20336的烷烃诱导性P450基因家族(CYP52)的10个成员,并对其进行了测序。 10个CYP基因代表具有推定的等位基因的四个独特基因和两个未鉴定出等位基因变异的独特基因。在这10个基因中,CYP52A13和CYP52A14显示出最高的mRNA诱导水平,这是通过在纯油酸脂肪酸(增加27倍),纯十八烷(增加32倍)和a混合脂肪酸饲料Emersol 267(增加了54倍)。 CYP52A17和CYP52A18等位基因对在所有三种条件下均被诱导,但程度较小。观察到CYP52A12的中等诱导。这些结果确定了CYP52和NCP基因与热带假丝酵母产生α,ω-二羧酸有关,并为改进生物催化剂提供了基础。

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