Warwick Medical School, University of Warwick, Coventry, UK.
School of Life Sciences, University of Warwick, Coventry, UK.
Methods Mol Biol. 2022;2479:1-9. doi: 10.1007/978-1-0716-2233-9_1.
We present a scarless recombineering-based method for introducing multiple point mutations into the genome of a temperate phage. The method uses the λ Red recombineering system to promote exogenous ssDNA oligos to anneal on the prophage lagging strand during host genome replication. DNA repair is suppressed by inducing the expression of a dominant-negative mutant protein of the methyl-directed mismatch repair system. Screening for recombinant cells without a selection marker is feasible due to its high recombination frequency, estimated as more than 40% after six cycles. The method enables scarless editing of the genome of a bacteriophage in 4-5 days.
我们提出了一种无痕的基于重组酶的方法,可将多个点突变引入温和噬菌体的基因组中。该方法利用λ Red 重组酶系统在宿主基因组复制期间促进外源 ssDNA 寡核苷酸与前噬菌体的滞后链退火。通过诱导甲基化指导的错配修复系统的显性负突变蛋白的表达来抑制 DNA 修复。由于其高重组频率(经过 6 个循环后估计超过 40%),因此无需选择标记即可筛选重组细胞。该方法可在 4-5 天内实现噬菌体基因组的无痕编辑。