Distance-dependent effects on CRISPR/Cas9-mediated genome editing in Schizosaccharomyces pombe compromise efficiency and create unsought alleles.

microPublication biology Pub Date : 2024-07-25 eCollection Date: 2024-01-01 DOI:10.17912/micropub.biology.001248
Reine U Protacio, Emory G Malone, Wayne P Wahls
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Abstract

Discrete DNA sites position meiotic recombination at hotspots. We sought to create four different, 15 bp long, candidate regulatory DNA sites within the ura4 reporter gene. Each effort employed a fission yeast-optimized CRISPR system (SpEDIT), optimal guide RNA, and one of four homologous recombination templates with 10 to 15 bp substitutions. Remarkably, every Ura - transformant analyzed had template-directed, PAM-disabling bp substitutions near (5-6 bp away from) the DSB but no DNA site-generating substitutions at distance (42-56 bp). An unsought novel allele, ura4-P127* , has two substitutions (C379T, C380A) that create a stop codon, rendering strains unable to grow without uracil.

距离依赖性效应影响了球囊酵母菌(Schizosaccharomyces pombe)中 CRISPR/Cas9 介导的基因组编辑的效率,并产生了不需要的等位基因。
离散 DNA 位点将减数分裂重组定位在热点上。我们试图在 ura4 报告基因中创建四个不同的、15 bp 长的候选调控 DNA 位点。每种方法都采用了裂殖酵母优化的 CRISPR 系统(SpEDIT)、最佳引导 RNA 和四种同源重组模板中的一种,并进行了 10 到 15 bp 的置换。值得注意的是,分析的每一个 Ura - 转化子都在 DSB 附近(距离 DSB 5-6 bp)有模板定向、PAM 禁用的 bp 置换,但在距离 DSB 42-56 bp 处没有 DNA 位点产生置换。一个未发现的新等位基因 ura4-P127* 有两个取代(C379T、C380A),产生了一个终止密码子,使菌株在没有尿嘧啶的情况下无法生长。
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