Targeted C-to-T and A-to-G dual mutagenesis system for RhtA transporter in vivo evolution

Author:

Wei Zhandong12,Zhao Dongdong2,Wang Jie12,Li Ju3,Xu Ning24,Ding Chao24,Liu Jun24,Li Siwei24,Zhang Chunzhi1,Bi Changhao24ORCID,Zhang Xueli24

Affiliation:

1. School of Biological Engineering, Dalian Polytechnic University, Dalian, China

2. Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China

3. College of Life Science, Tianjin Normal University, Tianjin, China

4. Key Laboratory of Systems Microbial Biotechnology, Chinese Academy of Sciences, Tianjin, China

Abstract

ABSTRACT T7 RNA polymerase (T7RNAP) has been fused with cytosine or adenine deaminase individually, enabling in vivo C-to-T or A-to-G transitions on DNA sequence downstream of T7 promoter, and greatly accelerated directed protein evolution. However, its base conversion type is limited. In this study, we created a dual-functional system for simultaneous C-to-T and A-to-G in vivo mutagenesis, called T7-DualMuta, by fusing T7RNAP with both cytidine deaminase (PmCDA1) and a highly active adenine deaminase (TadA-8e). The C-to-T and A-to-G mutagenesis frequencies of T7-DualMuta were 4.02 × 10 −3 and 1.20 × 10 −2 , respectively, with 24 h culturing and distributed mutations evenly across the target gene. The T7-DualMuta system was used to in vivo directed evolution of L-homoserine transporter RhtA, resulting in efficient variants that carried the four types of base conversions by T7-DualMuta. The evolved variants greatly increased the host growth rates at L-homoserine concentrations of 8 g/L, which was not previously achieved, and demonstrated the great in vivo evolution capacity. The novel molecular device T7-DualMuta efficiently provides both C/G-to-T/A and A/T-to-G/C mutagenesis on target regions, making it useful for various applications and research in Enzymology and Synthetic Biology studies. It also represents an important expansion of the base editing toolbox. Importance A T7-DualMuta system for simultaneous C-to-T and A-to-G in vivo mutagenesis was created. The mutagenesis frequency was 4.02 × 10 7 fold higher than the spontaneous mutation, which was reported to be approximately 10 −10 bases per nucleotide per generation. This mutant system can be utilized for various applications and research in Enzymology and Synthetic Biology studies.

Funder

MOST | National Key Research and Development Program of China

MOST | National Natural Science Foundation of China

Tianjin Synthetic Biotechnology Innovation Capacity Improvement Project

Natural Science Foundation of Tianjin City

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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