Lee Hyang-Mi, Ren Jun, Yu Myeong-Sang, Kim Hyunjoo, Kim Woo Young, Shen Junhao, Yoo Seung Min, Eyun Seong-Il, Na Dokyun
Department of Biomedical Engineering, Chung-Ang University, 84 Heukseok-ro Dongjak-gu, Seoul, 06974, Republic of Korea.
Department of Life Science, Chung-Ang University, Seoul, 06974, Republic of Korea.
Biotechnol Biofuels. 2021 Dec 4;14(1):228. doi: 10.1186/s13068-021-02077-8.
As methane is 84 times more potent than carbon dioxide in exacerbating the greenhouse effect, there is an increasing interest in the utilization of methanotrophic bacteria that can convert harmful methane into various value-added compounds. A recently isolated methanotroph, Methylomonas sp. DH-1, is a promising biofactory platform because of its relatively fast growth. However, the lack of genetic engineering tools hampers its wide use in the bioindustry.
Through three different approaches, we constructed a tunable promoter library comprising 33 promoters that can be used for the metabolic engineering of Methylomonas sp. DH-1. The library had an expression level of 0.24-410% when compared with the strength of the lac promoter. For practical application of the promoter library, we fine-tuned the expressions of cadA and cadB genes, required for cadaverine synthesis and export, respectively. The strain with P-cadA and P-cadB produced the highest cadaverine titre (18.12 ± 1.06 mg/L) in Methylomonas sp. DH-1, which was up to 2.8-fold higher than that obtained from a non-optimized strain. In addition, cell growth and lysine (a precursor of cadaverine) production assays suggested that gene expression optimization through transcription tuning can afford a balance between the growth and precursor supply.
The tunable promoter library provides standard and tunable components for gene expression, thereby facilitating the use of methanotrophs, specifically Methylomonas sp. DH-1, as a sustainable cell factory.
由于甲烷在加剧温室效应方面的效力是二氧化碳的84倍,人们对利用能够将有害甲烷转化为各种增值化合物的甲烷营养细菌的兴趣日益浓厚。最近分离出的一种甲烷营养菌,甲基单胞菌属DH-1,因其生长相对较快,是一个很有前景的生物工厂平台。然而,缺乏基因工程工具阻碍了它在生物产业中的广泛应用。
通过三种不同的方法,我们构建了一个包含33个启动子的可调启动子文库,可用于甲基单胞菌属DH-1的代谢工程。与乳糖启动子的强度相比,该文库的表达水平为0.24 - 410%。为了启动子文库的实际应用,我们分别对尸胺合成和输出所需的cadA和cadB基因的表达进行了微调。带有P-cadA和P-cadB的菌株在甲基单胞菌属DH-1中产生了最高的尸胺滴度(18.12±1.06mg/L),比未优化的菌株高出2.8倍。此外,细胞生长和赖氨酸(尸胺的前体)生产试验表明,通过转录调控优化基因表达可以在生长和前体供应之间实现平衡。
可调启动子文库为基因表达提供了标准且可调的元件,从而促进了甲烷营养菌,特别是甲基单胞菌属DH-1作为可持续细胞工厂的应用。