Tianjin University of Science and Technology, Tianjin 300457, China.
Key Laboratory of Engineering Biology for Low-carbon Manufacturing, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin 300308, China.
Nucleic Acids Res. 2023 Sep 8;51(16):8623-8642. doi: 10.1093/nar/gkad602.
Corynebacterium glutamicum is an important industrial workhorse for production of amino acids and chemicals. Although recently developed genome editing technologies have advanced the rational genetic engineering of C. glutamicum, continuous genome evolution based on genetic mutators is still unavailable. To address this issue, the DNA replication and repair machinery of C. glutamicum was targeted in this study. DnaQ, the homolog of ϵ subunit of DNA polymerase III responsible for proofreading in Escherichia coli, was proven irrelevant to DNA replication fidelity in C. glutamicum. However, the histidinol phosphatase (PHP) domain of DnaE1, the α subunit of DNA polymerase III, was characterized as the key proofreading element and certain variants with PHP mutations allowed elevated spontaneous mutagenesis. Repression of the NucS-mediated post-replicative mismatch repair pathway or overexpression of newly screened NucS variants also impaired the DNA replication fidelity. Simultaneous interference with the DNA replication and repair machinery generated a binary genetic mutator capable of increasing the mutation rate by up to 2352-fold. The mutators facilitated rapid evolutionary engineering of C. glutamicum to acquire stress tolerance and protein overproduction phenotypes. This study provides efficient tools for evolutionary engineering of C. glutamicum and could inspire the development of mutagenesis strategy for other microbial hosts.
谷氨酸棒杆菌是生产氨基酸和化学品的重要工业生产工具。尽管最近开发的基因组编辑技术推动了谷氨酸棒杆菌的合理基因工程,但基于遗传诱变剂的连续基因组进化仍然不可用。针对这一问题,本研究靶向了谷氨酸棒杆菌的 DNA 复制和修复机制。DnaQ 是大肠杆菌中负责校对的 DNA 聚合酶 III 的 ϵ 亚基的同源物,已被证明与谷氨酸棒杆菌的 DNA 复制保真度无关。然而,DNA 聚合酶 III 的 α 亚基 DnaE1 的组氨酸醇磷酸酶 (PHP) 结构域被表征为关键的校对元件,某些具有 PHP 突变的变体允许提高自发突变率。抑制 NucS 介导的复制后错配修复途径或过表达新筛选的 NucS 变体也会损害 DNA 复制保真度。同时干扰 DNA 复制和修复机制产生了一种二元遗传诱变剂,可将突变率提高高达 2352 倍。这些诱变剂有助于快速对谷氨酸棒杆菌进行工程进化,以获得应激耐受和蛋白质过表达表型。本研究为谷氨酸棒杆菌的进化工程提供了有效的工具,并可能激发其他微生物宿主诱变策略的发展。