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首页> 外文期刊>Yeast >Cloning and heterologous expression of the NADPH cytochrome P450 oxidoreductase genes from an industrial dicarboxylic acid-producing Candida tropicalis
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Cloning and heterologous expression of the NADPH cytochrome P450 oxidoreductase genes from an industrial dicarboxylic acid-producing Candida tropicalis

机译:产自工业二羧酸的热带假丝酵母的NADPH细胞色素P450氧化还原酶基因的克隆和异源表达

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NADPH cytochrome P450 oxidoreductase (CPR) catalyses the transfer of electrons during P450-mediated oxidation, which plays an important role in the omega-oxidation pathway of Candida tropicalis. Two putative allelic genes, CPR-a and CPR-b, were cloned from the long chain dicarboxylic acid-producing Candida tropicalis 1230, using cassette PCR methods. Both the identified open reading frames predict the gene products of 679 amino acid residues. The deduced amino acid sequences of CPR-a and CPR-b are highly homologous to CPR genes from C. tropicalis ATCC 750 and Candida maltosa. Both genes were individually expressed in a cpr mutant of Saccharomyces cerevisiae with high CPR activities, in which only a small distinction was observed between recombinant CPR-a and CPR-b. Both CPR-a and CPR-b contain one CTG codon, which codes for serine (amino acid 50) in C. tropicalis rather than universal leucine. A mutated cDNA of CPR-a with a TCG codon instead of CTG codon was constructed and expressed, resulting in little increase in CPR activity. This indicates that the alteration of Ser-50 has little effect on functional expression of CPR. Furthermore, high ketoconazole sensitivity for the cpr mutant was complemented by heterologous expression of the cloned CPR-a or CPR-b.
机译:NADPH细胞色素P450氧化还原酶(CPR)在P450介导的氧化过程中催化电子的转移,这在热带假丝酵母的ω-氧化途径中起重要作用。使用盒式PCR方法从产长链二羧酸的假丝酵母念珠菌1230中克隆了两个假定的等位基因CPR-a和CPR-b。鉴定出的两个开放阅读框均预测了679个氨基酸残基的基因产物。推导的CPR-a和CPR-b氨基酸序列与热带假丝酵母ATCC 750和麦芽假丝酵母的CPR基因高度同源。两种基因均在具有高CPR活性的酿酒酵母的cpr突变体中单独表达,其中在重组CPR-a和CPR-b之间仅观察到很小的区别。 CPR-a和CPR-b都包含一个CTG密码子,该密码子编码热带假丝酵母中的丝氨酸(氨基酸50)而不是通用亮氨酸。构建并表达了具有TCG密码子而不是CTG密码子的CPR-a突变cDNA,导致CPR活性几乎没有增加。这表明Ser-50的改变对CPR的功能表达影响很小。此外,克隆的CPR-a或CPR-b的异源表达补充了对cpr突变体的高酮康唑敏感性。

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