Department of Biological Sciences and Biotechnology, Jiangxi Agricultural University, NO.1101 Fangzhimin Avenue, Nanchang, 330045, China.
Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, NO.500 Caobao Road, Shanghai, 200233, China.
Biotechnol Lett. 2023 Aug;45(8):993-1000. doi: 10.1007/s10529-023-03397-5. Epub 2023 May 27.
The self-sufficient cytochrome P450 BM3 mutant (A74G/F87V/D168H/L188Q) can serve as a biocatalyst for whole-cell catalysis process of indigo. Nevertheless, the bioconversion yield of indigo is generally low under normal cultivation conditions (37 °C, 250 rpm). In this study, a recombinant E. coli BL21(DE3) strain was constructed to co-express the P450 BM3 mutant gene and GroEL/ES genes to investigate whether GroEL/ES can promote the indigo bioconversion yield in E. coli. The results revealed that the GroEL/ES system could significantly increase the indigo bioconversion yield, and the indigo bioconversion yield of the strain co-expressing P450 BM3 mutant and GroEL/ES was about 21-fold that of the strain only expressing the P450 BM3 mutant. In addition, the P450 BM3 enzyme content and in vitro indigo bioconversion yield were determined to explore the underlying mechanism for the improvement of indigo bioconversion yield. The results revealed that GroEL/ES did not increase indigo bioconversion yield by increasing the content of P450 BM3 enzyme and its enzymatic transformation efficiency. Moreover, GroEL/ES could improve the intracellular nicotinamide adenine dinucleotide phosphate (NADPH)/NADP ratio. Given that NADPH is an important coenzyme in the catalytic process of indigo, the underlying mechanism for the improvement of indigo bioconversion yield is probably related to an increase in the intracellular NADPH/NADP ratio.
自给自足的细胞色素 P450 BM3 突变体(A74G/F87V/D168H/L188Q)可以作为整个细胞催化靛蓝生物转化过程的生物催化剂。然而,在正常培养条件下(37°C,250rpm),靛蓝的生物转化产率通常较低。在本研究中,构建了一株重组大肠杆菌 BL21(DE3)菌株,共表达 P450 BM3 突变基因和 GroEL/ES 基因,以研究 GroEL/ES 是否能促进大肠杆菌中靛蓝的生物转化产率。结果表明,GroEL/ES 系统能显著提高靛蓝的生物转化产率,共表达 P450 BM3 突变体和 GroEL/ES 的菌株的靛蓝生物转化产率约为仅表达 P450 BM3 突变体的菌株的 21 倍。此外,还测定了 P450 BM3 酶含量和体外靛蓝生物转化产率,以探讨提高靛蓝生物转化产率的潜在机制。结果表明,GroEL/ES 并没有通过增加 P450 BM3 酶的含量及其酶转化效率来提高靛蓝的生物转化产率。此外,GroEL/ES 可以提高细胞内烟酰胺腺嘌呤二核苷酸磷酸(NADPH)/NADP 的比值。鉴于 NADPH 是靛蓝催化过程中的一种重要辅酶,提高靛蓝生物转化产率的潜在机制可能与细胞内 NADPH/NADP 比值的增加有关。