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通过 CRISPR-Cas9 在毛里求斯食蟹猴胚胎中编辑 CCR5 基因组。

Genome editing of CCR5 by CRISPR-Cas9 in Mauritian cynomolgus macaque embryos.

机构信息

Wisconsin National Primate Research Center, University of Wisconsin-Madison, Madison, WI, USA.

Department of Comparative Biosciences, Wisconsin National Primate Research Center, University of Wisconsin-Madison, 1220 Capitol Court, Madison, WI, 53715, USA.

出版信息

Sci Rep. 2020 Oct 28;10(1):18457. doi: 10.1038/s41598-020-75295-z.

Abstract

The discovery that CCR5 serves as an R5-HIV-1 co-receptor, coupled with findings of protection from HIV infection in individuals lacking CCR5, led to the exploration of novel therapeutic strategies for HIV infection based on genome editing of CCR5. Advancing translation of CCR5-mutant-based cellular therapies for HIV requires development of novel physiologically relevant animal models. Mauritian cynomolgus macaques (MCMs), with high degree of MHC allele sharing, are valuable models for HIV-1 research and stem cell therapies. To facilitate the generation of a CCR5-mutant MHC-defined MCM model, we explored editing the CCR5 gene in MCM embryos via CRISPR-Cas9. We refined ovarian stimulation and in vitro fertilization (IVF) methods established for Chinese cynomolgus macaques to generate in vitro MCM embryos. Time-lapse embryo imaging was performed to assess the timing of MCM embryonic developmental events in control and CRISPR-Cas9 microinjected embryos. Using a dual-guide gene targeting approach, biallelic deletions in the CCR5 gene were introduced into ~ 23-37% of MCM embryos. In addition, single blastomere PCR analysis revealed mosaicism in CCR5 editing within the same embryo. Successful development of IVF and CCR5 editing protocols in MCM embryos lays a foundation for the creation of CCR5-mutant MCMs to assess novel stem cell-based HIV therapeutics.

摘要

该发现表明 CCR5 是 R5-HIV-1 共受体,同时还发现 CCR5 缺失的个体能够免受 HIV 感染,这促使人们探索基于 CCR5 基因组编辑的新型 HIV 感染治疗策略。推进基于 CCR5 突变的细胞疗法用于 HIV 的转化需要开发新型生理相关的动物模型。MHC 等位基因高度共享的食蟹猴(MCM)是 HIV-1 研究和干细胞疗法的有价值模型。为了促进 CCR5 突变 MHC 定义的 MCM 模型的产生,我们探索了通过 CRISPR-Cas9 编辑 MCM 胚胎中的 CCR5 基因。我们改进了已经建立的针对中国食蟹猴的卵巢刺激和体外受精(IVF)方法,以生成体外 MCM 胚胎。进行时差胚胎成像以评估对照和 CRISPR-Cas9 微注射胚胎中 MCM 胚胎发育事件的时间。使用双引导基因靶向方法,将 CCR5 基因的双等位基因缺失引入到约 23-37%的 MCM 胚胎中。此外,单个卵裂球 PCR 分析显示同一胚胎内 CCR5 编辑的嵌合性。在 MCM 胚胎中成功建立了 IVF 和 CCR5 编辑方案,为创建用于评估新型基于干细胞的 HIV 治疗方法的 CCR5 突变 MCM 奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b838/7595107/6daca5764413/41598_2020_75295_Fig1_HTML.jpg

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