State Key Laboratory of Microbial Metabolism, School of Life Sciences & Biotechnology, Shanghai Jiao Tong University, Shanghai 200240, China.
Metab Eng. 2011 Nov;13(6):768-76. doi: 10.1016/j.ymben.2011.10.001. Epub 2011 Oct 13.
During the fermentation of Streptomyces hygroscopicus TL01 to produce validamycin A (18 g/L), a considerable amount of an intermediate validoxylamine A (4.0 g/L) is accumulated. Chemical or enzymatic hydrolysis of validamycin A was not observed during the fermentation process. Over-expression of glucosyltransferase ValG in TL01 did not increase the efficiency of glycosylation. However, increased validamycin A and decreased validoxylamine A production were observed in both the cell-free extract and fermentation broth of TL01 supplemented with a high concentration of UDP-glucose. The enzymatic activity of UDP-glucose pyrophosphorylase (Ugp) in TL01, which catalyzes UDP-glucose formation, was found to be much lower than the activities of other enzymes involved in the biosynthesis of UDP-glucose and the glucosyltransferase ValG. An ugp gene was cloned from S. hygroscopicus 5008 and verified to code for Ugp. In TL01 with an extra copy of ugp, the transcription of ugp was increased for 1.5 times, and Ugp activity was increased by 100%. Moreover, 22 g/L validamycin A and 2.5 g/L validoxylamine A were produced, and the validamycin A/validoxylamine A ratio was increased from 3.15 in TL01 to 5.75. These data prove that validamycin A biosynthesis is limited by the supply of UDP-glucose, which can be relieved by Ugp over-expression.
在吸水链霉菌 TL01 发酵生产 validamycin A(18 g/L)的过程中,会积累相当数量的中间体 validoxylamine A(4.0 g/L)。在发酵过程中,没有观察到 validamycin A 的化学或酶水解。在 TL01 中过表达葡萄糖基转移酶 ValG 并没有提高糖基化效率。然而,在添加高浓度 UDP-葡萄糖的 TL01 无细胞提取物和发酵液中,均观察到 validamycin A 增加,而 validoxylamine A 减少。UDP-葡萄糖焦磷酸化酶(Ugp)的酶活性(催化 UDP-葡萄糖形成)发现远低于 UDP-葡萄糖生物合成和葡萄糖基转移酶 ValG 涉及的其他酶的活性。从吸水链霉菌 5008 中克隆了一个 ugp 基因,并证实其编码 Ugp。在带有额外 ugp 拷贝的 TL01 中,ugp 的转录增加了 1.5 倍,Ugp 活性增加了 100%。此外,生产了 22 g/L validamycin A 和 2.5 g/L validoxylamine A,validamycin A/validoxylamine A 比值从 TL01 中的 3.15 增加到 5.75。这些数据证明 validamycin A 生物合成受到 UDP-葡萄糖供应的限制,而过表达 Ugp 可以缓解这种限制。