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来自四种不同微生物的丙氨酸脱氢酶:特性及其在L-丙氨酸生产中的应用。

Alanine dehydrogenases from four different microorganisms: characterization and their application in L-alanine production.

作者信息

Gu Pengfei, Ma Qianqian, Zhao Shuo, Li Qiang, Gao Juan

机构信息

School of Biological Science and Technology, University of Jinan, Jinan, 250022, People's Republic of China.

出版信息

Biotechnol Biofuels Bioprod. 2023 Aug 3;16(1):123. doi: 10.1186/s13068-023-02373-5.

Abstract

BACKGROUND

Alanine dehydrogenase (AlaDH) belongs to oxidoreductases, and it exists in several different bacteria species and plays a key role in microbial carbon and nitrogen metabolism, spore formation and photosynthesis. In addition, AlaDH can also be applied in biosynthesis of L-alanine from cheap carbon source, such as glucose.

RESULTS

To achieve a better performance of L-alanine accumulation, system evaluation and comparison of different AlaDH with potential application value are essential. In this study, enzymatic properties of AlaDH from Bacillus subtilis 168 (BsAlaDH), Bacillus cereus (BcAlaDH), Mycobacterium smegmatis MC 155 (MsAlaDH) and Geobacillus stearothermophilus (GsAlaDH) were firstly carefully investigated. Four different AlaDHs have few similarities in optimum temperature and optimum pH, while they also exhibited significant differences in enzyme activity, substrate affinity and enzymatic reaction rate. The wild E. coli BL21 with these four AlaDHs could produce 7.19 g/L, 7.81 g/L, 6.39 g/L and 6.52 g/L of L-alanine from 20 g/L glucose, respectively. To further increase the L-alanine titer, competitive pathways for L-alanine synthesis were completely blocked in E. coli. The final strain M-6 could produce 80.46 g/L of L-alanine with a yield of 1.02 g/g glucose after 63 h fed-batch fermentation, representing the highest yield for microbial L-alanine production.

CONCLUSIONS

Enzyme assay, biochemical characterization and structure analysis of BsAlaDH, BcAlaDH, MsAlaDH and GsAlaDH were carried out. In addition, application potential of these four AlaDHs in L-alanine productions were explored. The strategies here can be applied for developing L-alanine producing strains with high titers.

摘要

背景

丙氨酸脱氢酶(AlaDH)属于氧化还原酶,存在于多种不同的细菌物种中,在微生物碳氮代谢、孢子形成和光合作用中起关键作用。此外,AlaDH还可应用于从廉价碳源(如葡萄糖)生物合成L-丙氨酸。

结果

为了实现更好的L-丙氨酸积累性能,对具有潜在应用价值的不同AlaDH进行系统评估和比较至关重要。在本研究中,首先仔细研究了枯草芽孢杆菌168(BsAlaDH)、蜡样芽孢杆菌(BcAlaDH)、耻垢分枝杆菌MC 155(MsAlaDH)和嗜热栖热菌(GsAlaDH)中AlaDH的酶学性质。四种不同的AlaDH在最适温度和最适pH方面几乎没有相似之处,同时它们在酶活性、底物亲和力和酶促反应速率方面也表现出显著差异。携带这四种AlaDH的野生型大肠杆菌BL21分别可以从20 g/L葡萄糖中产生7.19 g/L、7.81 g/L、6.39 g/L和6.52 g/L的L-丙氨酸。为了进一步提高L-丙氨酸的滴度,在大肠杆菌中完全阻断了L-丙氨酸合成的竞争途径。最终菌株M-6在63 h补料分批发酵后可产生80.46 g/L的L-丙氨酸,葡萄糖产率为1.02 g/g,代表了微生物生产L-丙氨酸的最高产率。

结论

对BsAlaDH、BcAlaDH、MsAlaDH和GsAlaDH进行了酶活性测定、生化特性分析和结构分析。此外,还探索了这四种AlaDH在L-丙氨酸生产中的应用潜力。这里的策略可用于开发高滴度的L-丙氨酸生产菌株。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b256/10401832/1bf95d6fa9dd/13068_2023_2373_Fig1_HTML.jpg

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