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使用CRISPR碱基编辑器的双引导RNA介导的C&G到T&A和A&T到G&C的同时转换。

Dual guide RNA-mediated concurrent C&G-to-T&A and A&T-to-G&C conversions using CRISPR base editors.

作者信息

Zhao Yuting, Li Min, Liu Jie, Xue Xiaowen, Zhong Jingli, Lin Jianxiang, Ye Bo, Chen Jun, Qiao Yunbo

机构信息

Precise Genome Engineering Center, School of Life Sciences, Guangzhou University, Guangzhou 510006, China.

Guangzhou Medical University, Guangzhou 511495, China.

出版信息

Comput Struct Biotechnol J. 2023 Jan 2;21:856-868. doi: 10.1016/j.csbj.2022.12.055. eCollection 2023.

Abstract

Base editing tools enable precise genome modifications, disease modeling, and promising gene therapy. However, many human genetic diseases are elicited by multi-nucleotide variants (MNVs) with heterogeneous substitutions at the same genomic locus. Based on the adenine and cytosine base editors, dual base editors that can catalyze concurrent C-to-T and A-to-G editing have been developed, while simultaneous C&G-to-T&A and A&T-to-G&C conversions on the same allele have not been achieved at the desirable site. Here we propose a strategy of combining base editors with dual guide RNAs (gRNAs) that target two overlapped neighboring loci on the opposite strands, which can induce simultaneous C&G-to-T&A and A&T-to-G&C conversions within their overlapping targeting windows. Moreover, one of the paired gRNAs is mutated to perfectly match another gRNA-edited sequence, efficiently facilitating concurrent base conversions on the same allele. To further expand the targeting scopes, PAMless SpRY Cas9-mediated base editors are combined with our optimized dual gRNAs system to induce expected concurrent base editing and to install neighboring pathogenic MNVs in TP53 in cancer cells. In addition, more complex mutation types can be achieved by integrating dual base editors and our dual gRNAs strategy. Thus, we establish a general strategy to efficiently induce MNVs in human genome, helping to dissect the functions of pathogenic MNVs with multifarious types.

摘要

碱基编辑工具能够实现精确的基因组修饰、疾病建模以及颇具前景的基因治疗。然而,许多人类遗传疾病是由在同一基因组位点发生异质替换的多核苷酸变体(MNVs)引发的。基于腺嘌呤和胞嘧啶碱基编辑器,已开发出能够催化同时进行C到T和A到G编辑的双碱基编辑器,而在理想位点尚未实现同一等位基因上同时进行C&G到T&A和A&T到G&C的转换。在此,我们提出一种将碱基编辑器与靶向相反链上两个重叠相邻位点的双向导RNA(gRNAs)相结合的策略,该策略可在其重叠靶向窗口内诱导同时进行C&G到T&A和A&T到G&C的转换。此外,将一对gRNAs中的一个进行突变,使其与另一个gRNA编辑的序列完美匹配,从而有效地促进同一等位基因上的同时碱基转换。为了进一步扩大靶向范围,将无PAM的SpRY Cas9介导的碱基编辑器与我们优化的双gRNAs系统相结合,以诱导预期的同时碱基编辑,并在癌细胞的TP53中引入相邻的致病性MNVs。此外,通过整合双碱基编辑器和我们的双gRNAs策略,可以实现更复杂的突变类型。因此,我们建立了一种在人类基因组中有效诱导MNVs的通用策略,有助于剖析多种类型致病性MNVs的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dee1/9842798/c8bdfab66640/ga1.jpg

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