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PMID: 41652449 已发表 · epublish 英语

SSA-like and MMEJ-like recombination events in a transgenic construct with in-cis programmed self-eliminating components in different E. coli strains.

BMC research notes ·第 19 卷 ·第 1 期 ·2026-02-06

Ogaugwu CE, Adelman ZN

摘要

DNA repair pathways have been leveraged for genetic engineering strategies, including self-eliminating transgenes in insects. In effort towards establishing a self-eliminating transgenic system that leaves desired cargoes like antibodies or anti-viral molecules in Aedes aegypti, steps were taken to generate a plasmid with direct repeats and other necessary transgenic components. Here, we present an account of series of recombination events in E. coli that were encountered during the building of a multi-component plasmid for achieving a cargo-leaving self-eliminating transgenic system in Ae. aegypti. Step-wise construction of the multi-component plasmid in Stellar™ E. coli competent cells achieved successful modifications of a parent plasmid from a previous study by removing some DNA fragments, incorporating direct repeats and incorporating fluorescent marker gene cassettes (3xP3-DsRed and 3xP3-BFP) in desired locations. However, recombination events resulting in precise and repeatable deletions of small and large DNA fragments were obtained following incorporation of a target site for the in-cis-located I-SceI homing endonuclease into the plasmid. These events were also observed using other E. coli strains like SURE and NEB® Stable competent cells, although one clone from the NEB® Stable cells eventually yielded the expected plasmid construct. Analysis of the incorrect plasmids revealed that SSA-like and MMEJ-like DNA repair pathways appeared responsible for the recombination events encountered, suggesting that Aedes aegypti regulatory elements used for control of the homing endonuclease might be leaky in E. coli.

关键词
DNA recombination Microhomology-mediated end joining Single-strand annealing
文献信息
期刊
BMC research notes
期刊简称
BMC Res Notes
ISSN
1756-0500
发表日期
2026-02-06
语言
英语
国家/地区
England
NLM ID
101462768
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