In situ gene editing of hematopoietic stem cells via AAV-delivered CRISPR guide RNAs.

IF 7.1 1区 医学 Q1 HEMATOLOGY
Alborz Karimzadeh, Rebekah Kim, Vivian Garcia, Michael Florea, Bryan L Peacker, Shio Kobayashi, Drake Watkins, Kathleen A Messemer, Jing Zeng, Daniel E Bauer, Thomas Serwold, Amy J Wagers
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Abstract

Hematopoietic stem cells (HSCs) are self-renewing, multipotent, and engraftable precursors of all blood cells. Efficient delivery of therapeutic gene products and gene editing machinery to correct disease-causing gene variants in endogenous HSCs while they remain in the body holds exciting potential to leverage HSC potency for the treatment of monogenic blood disorders. Towards this goal, we used adeno-associated virus (AAV) to deliver CRISPR guide RNAs (gRNAs) to edit HSC genomes in situ in Ai9;SpCas9-EGFP transgenics carrying a Cas9-activatable Lox-STOP-Lox (LSL)-tdTomato reporter cassette together with a constitutive SpCas9-2A-EGFP. Using a variety of conditions and vector designs, we tested whether systemic administration to these mice of AAVs carrying SpCas9 compatible gRNAs designed to cut DNA upstream and downstream of the STOP cassette would induce tdTomato expression in HSCs. Our findings identify self-complementary AAVs (scAAVs) and increased guide to Cas9 ratio as parameters facilitating higher editing efficiency. Of note, we find preserved multilineage output and engraftability of HSCs upon scAAV-gRNA editing. In an example application of this technology, we explore the potential for in situ HSC gene editing by dual AAV-CRISPR delivery and demonstrate robust gene modification, concurrent with induction of therapeutic fetal hemoglobin (HbF), in a sickle cell disease (SCD) mouse model modified to express SpCas9. In summary, this work offers a sensitive and adaptable platform that allows robust modification of HSC genomes in situ.

通过aav递送的CRISPR引导rna对造血干细胞进行原位基因编辑。
造血干细胞(hsc)是所有血细胞的自我更新、多能和可移植的前体。有效递送治疗性基因产物和基因编辑机制,在内源性造血干细胞留在体内时纠正其致病基因变异,具有利用造血干细胞效力治疗单基因血液疾病的令人兴奋的潜力。为了实现这一目标,我们使用腺相关病毒(AAV)递送CRISPR引导rna (gRNAs)在Ai9中原位编辑HSC基因组;携带cas9可激活的Lox-STOP-Lox (LSL)-tdTomato报告卡带的SpCas9-2A-EGFP转基因基因。使用多种条件和载体设计,我们测试了携带SpCas9兼容的旨在切割STOP盒上下游DNA的gRNAs的aav系统给药是否会诱导造血干细胞中的tdTomato表达。我们的研究结果确定了自我互补的aav (scaav)和增加的Cas9比率指导作为促进更高编辑效率的参数。值得注意的是,我们发现在scAAV-gRNA编辑后保留了造血干细胞的多系输出和可移植性。在该技术的一个应用示例中,我们探索了通过双重AAV-CRISPR递送原位HSC基因编辑的潜力,并在镰状细胞病(SCD)小鼠模型中展示了强大的基因修饰,同时诱导治疗性胎儿血红蛋白(HbF)表达SpCas9。总之,这项工作提供了一个敏感和适应性强的平台,允许在原位对HSC基因组进行强大的修饰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Blood advances
Blood advances Medicine-Hematology
CiteScore
12.70
自引率
2.70%
发文量
840
期刊介绍: Blood Advances, a semimonthly medical journal published by the American Society of Hematology, marks the first addition to the Blood family in 70 years. This peer-reviewed, online-only, open-access journal was launched under the leadership of founding editor-in-chief Robert Negrin, MD, from Stanford University Medical Center in Stanford, CA, with its inaugural issue released on November 29, 2016. Blood Advances serves as an international platform for original articles detailing basic laboratory, translational, and clinical investigations in hematology. The journal comprehensively covers all aspects of hematology, including disorders of leukocytes (both benign and malignant), erythrocytes, platelets, hemostatic mechanisms, vascular biology, immunology, and hematologic oncology. Each article undergoes a rigorous peer-review process, with selection based on the originality of the findings, the high quality of the work presented, and the clarity of the presentation.
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