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在鞘氨醇单胞菌 WG 生产 Sphingan WL 胶时对核苷酸糖前体 UDP-葡萄糖生物合成途径的表征。

Characterization of the biosynthetic pathway of nucleotide sugar precursor UDP-glucose during sphingan WL gum production in Sphingomonas sp. WG.

机构信息

State Key Laboratory of Heavy Oil Processing and Centre for Bioengineering and Biotechnology, China University of Petroleum (East China), 66 Changjiang West Road, Qingdao 266580, People's Republic of China.

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai 200237, People's Republic of China.

出版信息

J Biotechnol. 2019 Aug 20;302:1-9. doi: 10.1016/j.jbiotec.2019.06.005. Epub 2019 Jun 11.

Abstract

To elucidate the possible biosynthetic pathway of a precursor UDP-glucose of the sphingan WL gum produced by Sphingomonas sp. WG, two enzymes phosphoglucomutase (PGM) and UDP-glucose pyrophosphorylase (UGPase) were bioinformatically analysed, expressed in Escherichia coli BL21 (DE3) and characterized. PGM was in the phosphoglucomutase/phosphomannomutase subclass and UGPase was predicted to be a UDP-glucose pyrophosphatase in a tetrameric structure. Both enzymes were expressed in soluble form, purified to near homogeneity with high activity at 1159 and 796 U/mg, exhibited folding with reasonable secondary structures, and existed as monomer and tetramer, respectively. The optimal pH and temperature of PGM were 9.0 and 50 °C, respectively, and this protein was stable at pH 8.0 and at temperatures ranging from 40 to 50 °C. The optimal pH and temperature of UGPase were 9.0 and 45 °C, respectively, and the protein was stable at pH 8.0 and at temperatures ranging from 30 to 55 °C. A small-scale one-pot biosynthesis of UDP-glucose by combining PGM and UGPase using glucose-6-phosphate and UTP as substrates was also performed, and formation of UDP-glucose was observed by HPLC detection, which confirmed the biosynthetic pathway of UDP-glucose in vitro. PGM and UGPase will be ideal targets for the metabolic engineering to improve WL gum yields in industrial production.

摘要

为了阐明 Sphingomonas sp. WG 产生的神经酰胺 WL 树胶的 UDP-葡萄糖前体的可能生物合成途径,对两种酶磷酸葡糖变位酶 (PGM) 和 UDP-葡萄糖焦磷酸化酶 (UGPase) 进行了生物信息学分析、在大肠杆菌 BL21 (DE3) 中表达并进行了表征。PGM 属于磷酸葡糖变位酶/磷酸甘露糖变位酶亚类,而 UGPase 预测为四聚体结构中的 UDP-葡萄糖焦磷酸酶。两种酶均以可溶性形式表达,在 1159 和 796 U/mg 的高活性下纯化至近乎均一,表现出合理的二级结构折叠,并分别以单体和四聚体形式存在。PGM 的最适 pH 和温度分别为 9.0 和 50°C,该蛋白在 pH 8.0 和 40 至 50°C 的温度范围内稳定。UGPase 的最适 pH 和温度分别为 9.0 和 45°C,该蛋白在 pH 8.0 和 30 至 55°C 的温度范围内稳定。还使用葡萄糖-6-磷酸和 UTP 作为底物,通过 PGM 和 UGPase 进行了 UDP-葡萄糖的小规模一锅法生物合成,通过 HPLC 检测观察到 UDP-葡萄糖的形成,这证实了 UDP-葡萄糖的体外生物合成途径。PGM 和 UGPase 将成为代谢工程的理想目标,以提高工业生产中 WL 树胶的产量。

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