Jiangxi Provincial Key Laboratory of Systems Biomedicine, Jiujiang University, 17 Lufeng Road, Jiujiang, 332000, China.
State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, China.
Appl Biochem Biotechnol. 2021 Sep;193(9):3017-3027. doi: 10.1007/s12010-021-03551-7. Epub 2021 Apr 7.
NADH-dependent reductase enzyme catalyzes the phenolic aldehyde conversion and correspondingly improves the ethanol fermentability of the ethanologenic Zymomonas mobilis. This study constructed the transcriptional landscape of mono/dioxygenase genes in Z. mobilis ZM4 under the stress of the toxic phenolic aldehyde inhibitors of 4-hydroxybenzaldehyde, syringaldehyde, and vanillin. One specific dioxygenase encoding gene ZMO1721 was differentially expressed by 3.07-folds under the stress of 4-hydroxybenzaldehyde among the eleven mono/dioxygenase genes. The purified ZMO1721 shared 99.9% confidence and 48.0% identity with the oxidoreductase in Rhodoferax ferrireducens T118 was assayed and the NADH-dependent reduction activity was confirmed for phenolic aldehyde vanillin conversion. The ZMO1721 gene was then overexpressed in Z. mobilis ZM4 and the 4-hydroxybenzaldehyde conversion rate was accelerated. The cell growth, glucose consumption, and ethanol productivity of Z. mobilis ZM4 were also improved by ZMO1721 overexpression. The genes identified on improving phenolic aldehyde tolerance and ethanol fermentability in this study could be used as the synthetic biology tools for modification of ethanologenic strains.
NADH 依赖型还原酶催化酚醛的转化,相应地提高了产乙醇的运动发酵单胞菌的乙醇发酵能力。本研究构建了在毒性酚醛抑制剂 4-羟基苯甲醛、丁香醛和香草醛的胁迫下,运动发酵单胞菌 ZM4 中单加氧酶/双加氧酶基因的转录图谱。在 11 个单加氧酶/双加氧酶基因中,有一个特定的双加氧酶编码基因 ZMO1721 在 4-羟基苯甲醛的胁迫下差异表达 3.07 倍。纯化的 ZMO1721 与 Rhodoferax ferrireducens T118 的氧化还原酶具有 99.9%的置信度和 48.0%的同一性,并测定了其对酚醛香草醛转化的 NADH 依赖性还原活性。然后,将 ZMO1721 基因在运动发酵单胞菌 ZM4 中过表达,加速了 4-羟基苯甲醛的转化。过表达 ZMO1721 还提高了运动发酵单胞菌 ZM4 的细胞生长、葡萄糖消耗和乙醇生产率。本研究中鉴定的提高酚醛耐受性和乙醇发酵能力的基因可作为改造产乙醇菌株的合成生物学工具。