首页> 外文期刊>Applied and Environmental Microbiology >Reconstitution of the In Vitro Activity of the Cyclosporine-Specific P450 Hydroxylase from Sebekia benihana and Development of a Heterologous Whole-Cell Biotransformation System
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Reconstitution of the In Vitro Activity of the Cyclosporine-Specific P450 Hydroxylase from Sebekia benihana and Development of a Heterologous Whole-Cell Biotransformation System

机译:重组来自伯尼希氏菌的环孢菌素特异性P450羟化酶的体外活性和异源全细胞生物转化系统的开发

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The cytochrome P450 enzyme CYP-sb21 from Sebekia benihana is capable of catalyzing the site-specific hydroxylation of the immunosuppressant cyclosporine (CsA), leading to the single product γ-hydroxy-N-methyl-l-Leu4-CsA (CsA-4-OH). Unlike authentic CsA, this hydroxylated CsA shows significantly reduced immunosuppressive activity while it retains a side effect of CsA, the hair growth stimulation effect. Although CYP-sb21 was previously identified to be responsible for CsA-specific hydroxylation in vivo, the in vitro activity of CYP-sb21 has yet to be established for a deeper understanding of this P450 enzyme and further reaction optimization. In this study, we reconstituted the in vitro activity of CYP-sb21 by using surrogate redox partner proteins of bacterial and cyanobacterial origins. The highest CsA site-specific hydroxylation activity by CYP-sb21 was observed when it was partnered with the cyanobacterial redox system composed of seFdx and seFdR from Synechococcus elongatus PCC 7942. The best bioconversion yields were obtained in the presence of 10% methanol as a cosolvent and an NADPH regeneration system. A heterologous whole-cell biocatalyst using Escherichia coli was also constructed, and the permeability problem was solved by using N-cetyl-N,N,N-trimethylammonium bromide (CTAB). This work provides a useful example for reconstituting a hybrid P450 system and developing it into a promising biocatalyst for industrial application.
机译:来自伯尼希氏菌的细胞色素P450酶CYP-sb21能够催化免疫抑制剂环孢素(CsA)的位点特异性羟基化,从而产生单一产物γ-羟基-N-甲基-1-Leu4-CsA(CsA-4-哦)。与真正的CsA不同,这种羟基化的CsA显示出明显降低的免疫抑制活性,同时保留了CsA的副作用,即刺激毛发生长的作用。尽管先前已确定CYP-sb21负责体内CsA特异性羟基化,但尚未建立CYP-sb21的体外活性以进一步了解该P450酶和进一步的反应优化。在这项研究中,我们通过使用细菌和蓝细菌来源的替代氧化还原伴侣蛋白重建了CYP-sb21的体外活性。当它与来自长形突触球菌PCC 7942的seFdx和seFdR组成的蓝细菌氧化还原系统结合时,发现CYP-sb21具有最高的CsA位点特异性羟基化活性。在10%甲醇作为溶剂存在下,可获得最佳的生物转化率。助溶剂和NADPH再生系统。还构建了使用大肠杆菌的异源全细胞生物催化剂,并通过使用N-鲸蜡基-N,N,N-三甲基溴化铵(CTAB)解决了通透性问题。这项工作为重构混合P450系统并将其开发为工业应用前景广阔的生物催化剂提供了有用的示例。

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