突变
突变
定向诱变
生物
体内
定点突变
聚合酶
遗传学
寄主(生物学)
计算生物学
插入突变
饱和突变
核糖核酸
抗性突变
寡核苷酸
RNA聚合酶
正向遗传学
限制
蛋白质亚单位
分子生物学
作者
Yuou Sheng,Huizhen Ni,Shihao Yang,Wenliang Hao,Chong Zhang
标识
DOI:10.1016/j.synbio.2026.09.002
摘要
Targeted mutagenesis is a crucial tool for in vivo continuous evolution. However, existing methods for long-range targeted mutagenesis in vivo often face limitations such as low efficiency, poor host compatibility, operational complexity, and uneven distribution of mutations across these windows. In this study, we developed a novel in vivo T argeted A ssisted M utagenesis via E ndogenous R NAP tool (TAMER) by functionally fusing the endogenous ω subunit of RNAP with a deaminase and dCas9. This tool achieved a mutagenesis efficiency of 1.28 × 10 −3 substitutions per base (s.p.b.), which represents a 4.2 × 10 5 -fold increase over the natural mutation rate. Additionally, this method enables uniform mutation distribution, an even mutation rate, a broad mutagenesis window, low off-target effects, and cross-host portability. Overall, TAMER offers a simple, efficient, and broadly applicable strategy for in vivo targeted long-range mutagenesis.
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