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通过 HiFi 测序对基因组编辑细胞群体中的超罕见脱靶突变进行无偏全基因组检测。

Unbiased whole genome detection of ultrarare off-target mutations in genome-edited cell populations by HiFi sequencing.

机构信息

Division of Genetic and Molecular Toxicology, National Center for Toxicological Research, U.S. Food and Drug Administration, Jefferson, Arkansas, USA.

出版信息

Environ Mol Mutagen. 2023 Aug;64(7):374-381. doi: 10.1002/em.22566. Epub 2023 Aug 11.

Abstract

DNA base editors (BEs) composed of a nuclease-deficient Cas9 fused to a DNA-modifying enzyme can achieve on-target mutagenesis without creating double-strand DNA breaks (DSBs). As a result, BEs generate far less DNA damage than traditional nuclease-proficient Cas9 systems, which do rely on the creation of DSBs to achieve on-target mutagenesis. The inability of BEs to create DSBs makes the detection of their undesired off-target effects very difficult. PacBio HiFi sequencing can efficiently detect ultrarare mutations resulting from chemical mutagenesis in whole genomes with a sensitivity ~1 × 10 mutations per base pair. In this proof-of-principle study, we evaluated whether this technique could also detect the on- and off-target mutations generated by a cytosine-to-thymine (C>T) BE targeting the LacZ gene in Escherichia coli (E. coli). HiFi sequencing detected on-target mutant allele fractions ranging from ~7% to ~63%, depending on the single-guide RNA (sgRNA) used, while no on-target mutations were detected in controls lacking the BE. The presence of the BE resulted in a ~3-fold increase in mutation frequencies compared to controls lacking the BE, irrespective of the sgRNA used. These increases were mostly composed of C:G>T:A substitutions distributed throughout the genome. Our results demonstrate that HiFi sequencing can efficiently identify on- and off-target mutations in cell populations that have undergone genome editing.

摘要

DNA 碱基编辑器(BEs)由与 DNA 修饰酶融合的无核酸酶缺陷型 Cas9 组成,可以在不产生双链 DNA 断裂(DSBs)的情况下实现靶向突变。因此,BEs 产生的 DNA 损伤比传统的依赖 DSB 产生靶向突变的核酸酶高效 Cas9 系统少得多。BEs 无法产生 DSBs,使得难以检测其不需要的脱靶效应。PacBio HiFi 测序可以高效地检测全基因组中由于化学诱变导致的超稀有突变,其灵敏度约为每碱基对 1×10 个突变。在这项原理验证研究中,我们评估了该技术是否还可以检测靶向大肠杆菌(E. coli)LacZ 基因的胞嘧啶到胸腺嘧啶(C>T)BE 产生的靶标和脱靶突变。HiFi 测序检测到的靶标突变等位基因分数范围为7%至63%,具体取决于使用的单指导 RNA(sgRNA),而在缺乏 BE 的对照中则未检测到靶标突变。与缺乏 BE 的对照相比,无论使用何种 sgRNA,BE 的存在都会使突变频率增加约 3 倍。这些增加主要由基因组中分布的 C:G>T:A 取代组成。我们的结果表明,HiFi 测序可以有效地鉴定经历基因组编辑的细胞群体中的靶标和脱靶突变。

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