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首页> 外文期刊>Journal of Biotechnology >Autodisplay of functional CYP106A2 in Escherichia coli
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Autodisplay of functional CYP106A2 in Escherichia coli

机译:在大肠杆菌中自动显示功能性CYP106A2

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Cytochrome P450 enzymes catalyse a wide variety of reactions, including the hydroxylation and epoxidation of C-C bonds, and dealkylation reactions. There is high interest in these reactions for biotechnology and pharmaceutical processes. Many P450s require membrane surroundings and have substrates that do not cross biological membranes. To circumvent these obstacles, CYP106A2 from Bacillus megaterium was expressed on the outer membrane of Escherichia coli cells by Autodisplay. Exposure on the surface was confirmed by a protease accessibility test and flow cytometry after immunolabelling. HPLC assays showed that 0.5 ml of cells displaying the enzyme (OD578 = 6) converted 9.13 mu mol of deoxycorticosterone to 15 beta-OH-deoxycorticosterone within 1 h. Imipramine and abietic acid were also accepted as substrates. The number of active enzyme molecules per cell was calculated to be 20,000. Surprisingly, surface-exposed CYP106A2 was active in E. coli BL21 without the external addition of the heme group. However, when CYP106A2 was expressed on the surface of an E. coli strain lacking the TolC channel protein (JW5503), enzymatic activity was almost completely abolished. The activity of CYP106A2 on the surface of E. coli JW5503 could be restored by the external addition of the heme group. This suggests, as has been reported before, that E. coli uses a TolC-dependent mechanism to export heme into the growth media, where it can be scavenged by a surface-displayed apoenzyme. Our results indicate that Autodisplay enables the functional surface display of P450 enzymes and provides a new platform to access their synthetic potential
机译:细胞色素P450酶催化多种反应,包括C-C键的羟基化和环氧化以及脱烷基反应。对于生物技术和制药过程的这些反应引起了很高的兴趣。许多P450需要膜的周围环境,并且底物不能穿过生物膜。为了克服这些障碍,通过Autodisplay在大肠杆菌细胞的外膜上表达了来自巨大芽孢杆菌的CYP106A2。免疫标记后通过蛋白酶可及性测试和流式细胞仪确认表面暴露。 HPLC测定显示0.5ml展示该酶的细胞(OD578 = 6)在1小时内将9.13μmol的脱氧皮质酮转化为15β-OH-脱氧皮质酮。丙咪嗪和松香酸也被认为是底物。每个细胞的活性酶分子数经计算为20,000。令人惊讶地,表面暴露的CYP106A2在大肠杆菌BL21中是有活性的,而没有外部添加血红素基团。但是,当在缺乏TolC通道蛋白(JW5503)的大肠杆菌菌株的表面表达CYP106A2时,酶活性几乎完全消失。 CYP106A2在大肠杆菌JW5503表面的活性可以通过外部添加血红素基团来恢复。如以前所报道的,这表明大肠杆菌利用TolC依赖性机制将血红素输出到生长培养基中,在那里可以通过表面展示的脱辅酶对其进行清除。我们的结果表明,自动展示可以实现P450酶的功能性表面展示,并提供了一个新的平台来利用其合成潜力

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