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高效的细胞色素P450 167A1(EpoK)依赖性埃坡霉素B的形成以及作为新埃坡霉素衍生物的7-酮基埃坡霉素D的产生。

Highly Efficient CYP167A1 (EpoK) dependent Epothilone B Formation and Production of 7-Ketone Epothilone D as a New Epothilone Derivative.

作者信息

Kern Fredy, Dier Tobias K F, Khatri Yogan, Ewen Kerstin M, Jacquot Jean-Pierre, Volmer Dietrich A, Bernhardt Rita

机构信息

Department of Biochemistry, Saarland University, 66123 Saarbrücken, Germany.

Institute of Bioanalytical Chemistry, Saarland University, 66123 Saarbrücken, Germany.

出版信息

Sci Rep. 2015 Oct 8;5:14881. doi: 10.1038/srep14881.

Abstract

Since their discovery in the soil bacterium Sorangium cellulosum, epothilones have emerged as a valuable substance class with promising anti-tumor activity. Because of their benefits in the treatment of cancer and neurodegenerative diseases, epothilones are targets for drug design and pharmaceutical research. The final step of their biosynthesis - a cytochrome P450 mediated epoxidation of epothilone C/D to A/B by CYP167A1 (EpoK) - needs significant improvement, in particular regarding the efficiency of its redox partners. Therefore, we have investigated the ability of various hetero- and homologous redox partners to transfer electrons to EpoK. Hereby, a new hybrid system was established with conversion rates eleven times higher and Vmax of more than seven orders of magnitudes higher as compared with the previously described spinach redox chain. This hybrid system is the most efficient redox chain for EpoK described to date. Furthermore, P450s from So ce56 were identified which are able to convert epothilone D to 14-OH, 21-OH, 26-OH epothilone D and 7-ketone epothilone D. The latter one represents a novel epothilone derivative and is a suitable candidate for pharmacological tests. The results revealed myxobacterial P450s from S. cellulosum So ce56 as promising candidates for protein engineering for biotechnological production of epothilone derivatives.

摘要

自埃坡霉素在土壤细菌纤维堆囊菌中被发现以来,它已成为一类具有抗肿瘤活性的有价值的物质。由于其在癌症和神经退行性疾病治疗中的益处,埃坡霉素成为药物设计和制药研究的靶点。其生物合成的最后一步——细胞色素P450介导的由CYP167A1(EpoK)将埃坡霉素C/D环氧化为A/B——需要显著改进,特别是在其氧化还原伙伴的效率方面。因此,我们研究了各种异源和同源氧化还原伙伴向EpoK转移电子的能力。由此,建立了一种新的混合系统,与先前描述的菠菜氧化还原链相比,其转化率提高了11倍,Vmax提高了7个多数量级。这个混合系统是迄今为止描述的EpoK最有效的氧化还原链。此外,还鉴定出了来自纤维堆囊菌So ce56的能够将埃坡霉素D转化为14-羟基、21-羟基、26-羟基埃坡霉素D和7-酮基埃坡霉素D的细胞色素P450。后者是一种新型的埃坡霉素衍生物,是药理学测试的合适候选物。结果表明,来自纤维堆囊菌So ce56的粘细菌细胞色素P450是用于埃坡霉素衍生物生物技术生产的蛋白质工程的有前景的候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cafe/4597204/cde4c8809656/srep14881-f1.jpg

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