Engineering allosteric inhibition of homoserine dehydrogenase by semi-rational saturation mutagenesis screening

饱和突变 变构调节 突变 化学 高丝氨酸 生物化学 突变 基因 群体感应 突变体 毒力
作者
Xin‐Yang Liu,Jiao Liu,Zhemin Liu,Qianqian Qiao,Xiaomeng Ni,Jinxing Yang,Guannan Sun,Fanghe Li,Wenjuan Zhou,Xuan Guo,Jiuzhou Chen,Shiru Jia,Yu Zheng,Ping Zheng,Jibin Sun
出处
期刊:Frontiers in Bioengineering and Biotechnology [Frontiers Media]
卷期号:11: 1336215-1336215 被引量:9
标识
DOI:10.3389/fbioe.2023.1336215
摘要

Allosteric regulation by pathway products plays a vital role in amino acid metabolism. Homoserine dehydrogenase (HSD), the key enzyme for the biosynthesis of various aspartate family amino acids, is subject to feedback inhibition by l -threonine and l -isoleucine. The desensitized mutants with the potential for amino acid production remain limited. Herein, a semi-rational approach was proposed to relieve the feedback inhibition. HSD from Corynebacterium glutamicum ( Cg HSD) was first characterized as a homotetramer, and nine conservative sites at the tetramer interface were selected for saturation mutagenesis by structural simulations and sequence analysis. Then, we established a high-throughput screening (HTS) method based on resistance to l -threonine analog and successfully acquired two dominant mutants (I397V and A384D). Compared with the best-ever reported desensitized mutant G378E, both new mutants qualified the engineered strains with higher production of Cg HSD-dependent amino acids. The mutant and wild-type enzymes were purified and assessed in the presence or absence of inhibitors. Both purified mutants maintained >90% activity with 10 mM l -threonine or 25 mM l -isoleucine. Moreover, they showed >50% higher specific activities than G378E without inhibitors. This work provides two competitive alternatives for constructing cell factories of Cg HSD-related amino acids and derivatives. Moreover, the proposed approach can be applied to engineering other allosteric enzymes in the amino acid synthesis pathway.
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