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Determination of steroid hydroxylation specificity of an industrial strain Aspergillus ochraceus TCCC41060 by cytochrome P450 gene CYP68J5

机译:工业菌株的类固醇羟基化特异性<斜视>曲霉菌Ochraceus TCCC41060通过细胞色素p450基因<斜斜度> CYP68J5

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Purpose The use of Aspergillus ochraceus TCCC41060 for synthesis of 11α-OH-ethylgonendione, an important intermediate for synthesis of desogestrel-a major ingredient of the “third-generation” oral contraceptives, is hampered by its low regioselectivity of hydroxylation. In the present study, we sought to characterize gene(s) involved in steroid hydroxylation specificity in strain TCCC41060. Methods Taking advantage of the fact that expression of the 11α-hydroxylase, a member of the cytochrome P450 family, is highly induced by steroid substrates, we combined RNA-seq, qRT-PCR, and yeast functional expression to search for responsible steroid hydroxylase gene(s). Results Two highly inducible P450 genes ( CYP68L8 and CYP68J5 ) were isolated and recombinant yeast cells expressing CYP68J5 were capable of 11α-hydroxylating both 16,17α-epoxyprogesterone and D-ethylgonendione. Disruption of CYP68J5 in strain TCCC41060 resulted in complete loss of hydroxylation activities towards D-ethylgonendione, indicating that CYP68J5 was solely responsible for hydroxylation activity on D-ethylgonendione in TCCC41060. Conclusion The above results demonstrated that low hydroxylation specificity of CYP68J5 on D-ethylgonendione fully accounted for high by-product contents in TCCC41060, thus pointing to a strategy to engineer 11α-hydroxylase variants with higher hydroxylation specificity.
机译:目的,使用aspergillus ochraceus tccc41060用于合成11α-OH-乙基赎罪酮,这是合成Desogestrel的重要中间体 - 通过其低羟基的细节接收性阻碍了“第三代”口腔避孕药的主要成分。在本研究中,我们寻求表征菌株TCCC41060中的类固醇羟基化特异性的基因。方法利用Cytochrome P450家族成员的11α-羟化酶的表达,通过类固醇底物,组合RNA-SEQ,QRT-PCR和酵母功能表达来寻找负责任的类固醇羟化酶基因(s)。结果分离出两种高诱导的P450基因(CYP68L8和CYP68J5),表达CYP68J5的重组酵母细胞能够11α-羟基化均为16,17α-环氧酮和D-乙烯胺。 CYP68J5在菌株TCCC41060中断导致朝向D-乙烯基胺的羟基化活性的完全丧失,表明CYP68J5仅对TCCC41060中的D-乙烯基胺羟基化活性负责。结论上述结果表明,CYP68J5对TCCC41060中的高副产物内容物的低羟基化特异性在TCCC41060中完全占副产物的高副产物,从而指向具有更高羟基化特异性的液体11α-羟化酶变体的策略。

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