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在动物模型中通过saCas9和多重单向导RNA对HIV-1前病毒进行体内切除

In Vivo Excision of HIV-1 Provirus by saCas9 and Multiplex Single-Guide RNAs in Animal Models.

作者信息

Yin Chaoran, Zhang Ting, Qu Xiying, Zhang Yonggang, Putatunda Raj, Xiao Xiao, Li Fang, Xiao Weidong, Zhao Huaqing, Dai Shen, Qin Xuebin, Mo Xianming, Young Won-Bin, Khalili Kamel, Hu Wenhui

机构信息

Department of Neuroscience, Center for Neurovirology and the Comprehensive NeuroAIDS Center, Temple University Lewis Katz School of Medicine, 3500 N. Broad Street, Philadelphia, PA 19140, USA.

Department of Radiology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15219, USA.

出版信息

Mol Ther. 2017 May 3;25(5):1168-1186. doi: 10.1016/j.ymthe.2017.03.012. Epub 2017 Mar 30.

Abstract

CRISPR-associated protein 9 (Cas9)-mediated genome editing provides a promising cure for HIV-1/AIDS; however, gene delivery efficiency in vivo remains an obstacle to overcome. Here, we demonstrate the feasibility and efficiency of excising the HIV-1 provirus in three different animal models using an all-in-one adeno-associated virus (AAV) vector to deliver multiplex single-guide RNAs (sgRNAs) plus Staphylococcus aureus Cas9 (saCas9). The quadruplex sgRNAs/saCas9 vector outperformed the duplex vector in excising the integrated HIV-1 genome in cultured neural stem/progenitor cells from HIV-1 Tg26 transgenic mice. Intravenously injected quadruplex sgRNAs/saCas9 AAV-DJ/8 excised HIV-1 proviral DNA and significantly reduced viral RNA expression in several organs/tissues of Tg26 mice. In EcoHIV acutely infected mice, intravenously injected quadruplex sgRNAs/saCas9 AAV-DJ/8 reduced systemic EcoHIV infection, as determined by live bioluminescence imaging. Additionally, this quadruplex vector induced efficient proviral excision, as determined by PCR genotyping in the liver, lungs, brain, and spleen. Finally, in humanized bone marrow/liver/thymus (BLT) mice with chronic HIV-1 infection, successful proviral excision was detected by PCR genotyping in the spleen, lungs, heart, colon, and brain after a single intravenous injection of quadruplex sgRNAs/saCas9 AAV-DJ/8. In conclusion, in vivo excision of HIV-1 proviral DNA by sgRNAs/saCas9 in solid tissues/organs can be achieved via AAV delivery, a significant step toward human clinical trials.

摘要

CRISPR相关蛋白9(Cas9)介导的基因组编辑为治疗HIV-1/AIDS带来了希望;然而,体内基因递送效率仍是一个需要克服的障碍。在此,我们展示了使用一体化腺相关病毒(AAV)载体递送多重单向导RNA(sgRNA)加金黄色葡萄球菌Cas9(saCas9),在三种不同动物模型中切除HIV-1前病毒的可行性和效率。四重sgRNA/saCas9载体在切除HIV-1 Tg26转基因小鼠培养的神经干/祖细胞中整合的HIV-1基因组方面优于双重载体。静脉注射四重sgRNA/saCas9 AAV-DJ/8可切除Tg26小鼠多个器官/组织中的HIV-1前病毒DNA,并显著降低病毒RNA表达。在EcoHIV急性感染小鼠中,通过活体生物发光成像确定,静脉注射四重sgRNA/saCas9 AAV-DJ/8可降低全身EcoHIV感染。此外,通过肝脏、肺、脑和脾脏的PCR基因分型确定,该四重载体可诱导有效的前病毒切除。最后,在慢性HIV-1感染的人源化骨髓/肝脏/胸腺(BLT)小鼠中,单次静脉注射四重sgRNA/saCas9 AAV-DJ/8后,通过脾脏、肺、心脏、结肠和脑的PCR基因分型检测到成功的前病毒切除。总之,通过AAV递送可在实体组织/器官中实现sgRNA/saCas9对HIV-1前病毒DNA的体内切除,这是迈向人体临床试验的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f439/5417847/5e7f22024174/fx1.jpg

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