Hubei Provincial Engineering and Technology Research Center for Resources and Utilization of Microbiology, College of Life Sciences, South-Central University for Nationalities, Wuhan 430074, People's Republic of China.
Hubei Provincial Key Laboratory for Protection and Application of Special Plants in Wuling Area of China, Key Laboratory for the State Ethnic Affairs Commission for Biological Technology, College of Life Sciences, South-Central University for Nationalities, Wuhan 430074, People's Republic of China.
Can J Microbiol. 2021 Feb;67(2):138-146. doi: 10.1139/cjm-2020-0118. Epub 2020 Aug 25.
The SCUEC4 strain of is a newly isolated bacterium that degrades nicotine can use nicotine as the sole carbon source via a series of enzymatic catalytic processes. The mechanisms underlying nicotine degradation in this bacterium and the corresponding functional genes remain unclear. Here, we analyzed the function and biological properties of the gene involved in the nicotine-degradation pathways in strain SCUEC4. The gene was cloned by PCR with total DNA of strain SCUEC4 and used to construct the recombinant plasmid pET28a-. The overexpression of the OcnE protein was detected by SDS-PAGE analysis, and study of the function of this protein was spectrophotometrically carried out by monitoring the changes of 2,5-dihydroxypyridine. Moreover, the effects of temperature, pH, and metal ions on the biological activities of the OcnE protein were analyzed. The optimal conditions for the biological activities of OcnE, a protein of approximately 37.6 kDa, were determined to be 25 °C, pH 7.0, and 25 μmol/L Fe, and the suitable storage conditions for the OcnE protein were 0 °C and pH 7.0. In conclusion, the gene is responsible for the ability of 2,5-dihydroxypyridine dioxygenase. These findings will be beneficial in clarifying the mechanisms of nicotine degradation in SCUEC4.
SCUEC4 菌株是一种新分离的尼古丁降解菌,可以通过一系列酶催化过程将尼古丁作为唯一的碳源利用。该菌中尼古丁降解的机制和相应的功能基因尚不清楚。在这里,我们分析了参与 SCUEC4 菌株尼古丁降解途径的 基因的功能和生物学特性。通过 PCR 用菌株 SCUEC4 的总 DNA 克隆了 基因,并将其用于构建重组质粒 pET28a-。通过 SDS-PAGE 分析检测到 OcnE 蛋白的过表达,并通过监测 2,5-二羟基吡啶的变化来进行该蛋白功能的研究。此外,还分析了温度、pH 和金属离子对 OcnE 蛋白生物活性的影响。确定了约 37.6 kDa 的 OcnE 蛋白的最佳生物活性条件为 25°C、pH 7.0 和 25 μmol/L Fe,OcnE 蛋白的适宜储存条件为 0°C 和 pH 7.0。总之, 基因负责 2,5-二羟吡啶双加氧酶的能力。这些发现将有助于阐明 SCUEC4 中尼古丁降解的机制。