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Design and characterization of an efficient CYP105A1-based whole-cell biocatalyst for the conversion of resin acid diterpenoids in permeabilized Escherichia coli

机译:一种高效的基于CYP105A1的全细胞生物催化剂的设计和表征,该催化剂可在渗透性大肠杆菌中转化树脂酸二萜类化合物

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摘要

Cytochrome P450 enzymes exhibit a tremendous potential for biotechnological applications due to their ability to introduce oxygen into non-activated carbon atoms. Their catalytic diversity is complemented by a broad substrate range covering many natural compounds. Especially the functionalization of terpenoids by P450s becomes increasingly interesting due to the diverse biological effects of these compounds. The bacterial CYP105A1 from Streptomyces griseolus was recently identified to carry out a one-step hydroxylation of several abietane-type resin acids. In this work, a whole-cell system for CYP105A1 with its heterologous electron transfer proteins Arh1 and Etp1fd from Schizosaccharomyces pombe was designed in Escherichia coli JM109 cells. Additionally, an enzyme-coupled cofactor regeneration system was integrated by co-expression of alcohol dehydrogenase from Lactobacillus brevis. In order to overcome mass transfer limitations of substrate into the cell, different agents were tested towards their permeabilizing activity on the E. coli membrane. The peptide antibiotic polymyxin B proved to be the most effective permeabilizer. After optimising the expression and conversion conditions, the cells were able to completely convert 200 μMof abietic acid into 15-hydroxyabietic acid within 2 h, exhibiting an initial conversion rate of 125 μM/h. These results demonstrate the high potential of this whole-cell system for the synthesis of functionalized resin acid diterpenoids.
机译:细胞色素P450酶具有将氧引入非活化碳原子的能力,因此在生物技术应用中具有巨大潜力。它们的催化多样性得到了覆盖许多天然化合物的广泛底物范围的补充。特别是由于这些化合物的多种生物学作用,P450对萜类化合物的功能化越来越引起人们的兴趣。最近鉴定到来自灰链霉菌的细菌CYP105A1可以对几种abetanene型树脂酸进行一步式羟基化反应。在这项工作中,CYP105A1的全细胞系统及其来自粟酒裂殖酵母的异源电子转移蛋白Arh1和Etp1fd在大肠杆菌JM109细胞中设计。另外,通过共表达来自短乳杆菌的醇脱氢酶,整合了酶偶联的辅因子再生系统。为了克服底物向细胞内的传质限制,针对其在大肠杆菌膜上的透化活性测试了不同的试剂。肽类抗生素多粘菌素B被证明是最有效的通透剂。优化表达和转化条件后,细胞能够在2 h内将200μM松香酸完全转化为15-羟基松香酸,初始转化率为125μM/ h。这些结果证明了该全细胞系统在合成功能化树脂酸二萜类化合物方面的巨大潜力。

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