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CRISPR/腺相关病毒介导的精准基因组编辑在心脏领域的应用

Cardiac Applications of CRISPR/AAV-Mediated Precise Genome Editing.

作者信息

Zheng Yanjiang, Mayourian Joshua, King Justin S, Li Yifei, Bezzerides Vassilios J, Pu William T, VanDusen Nathan J

机构信息

Key Laboratory of Birth Defects and Related Diseases of Women and Children of MOE, Department of Pediatrics, West China Second University Hospital, Sichuan University, Chengdu, Sichuan 610041, China.

Department of Cardiology, Boston Children's Hospital, Boston, MA, USA.

出版信息

bioRxiv. 2024 Dec 4:2024.12.03.626493. doi: 10.1101/2024.12.03.626493.

Abstract

The ability to efficiently make precise genome edits in somatic tissues will have profound implications for gene therapy and basic science. CRISPR/Cas9 mediated homology-directed repair (HDR) is one approach that is commonly used to achieve precise and efficient editing in cultured cells. Previously, we developed a platform capable of delivering CRISPR/Cas9 gRNAs and donor templates via adeno-associated virus to induce HDR (CASAAV-HDR). We demonstrated that CASAAV-HDR is capable of creating precise genome edits within mouse cardiomyocytes at the neonatal and adult stages. Here, we report several applications of CASAAV-HDR in cardiomyocytes. First, we show the utility of CASAAV-HDR for disease modeling applications by using CASAAV-HDR to create and precisely tag two pathological variants of the titin gene observed in cardiomyopathy patients. We used this approach to monitor the cellular localization of the variants, resulting in mechanistic insights into their pathological functions. Next, we utilized CASAAV-HDR to create another mutation associated with human cardiomyopathy, arginine 14 deletion (R14Del) within the N-terminus of Phospholamban (PLN). We assessed the localization of PLN-R14Del and quantified cardiomyocyte phenotypes associated with cardiomyopathy, including cell morphology, activation of PLN via phosphorylation, and calcium handling. After demonstrating CASAAV-HDR utility for disease modeling we next tested its utility for functional genomics, by targeted genomic insertion of a library of enhancers for a massively parallel reporter assay (MPRA). We show that MPRAs with genomically integrated enhancers are feasible, and can yield superior assay sensitivity compared to tests of the same enhancers in an AAV/episomal context. Collectively, our study showcases multiple applications for precise editing of cardiomyocyte genomes via CASAAV-HDR.

摘要

在体细胞组织中高效进行精确基因组编辑的能力将对基因治疗和基础科学产生深远影响。CRISPR/Cas9介导的同源定向修复(HDR)是一种常用于在培养细胞中实现精确高效编辑的方法。此前,我们开发了一个平台,能够通过腺相关病毒递送CRISPR/Cas9 gRNA和供体模板以诱导HDR(CASAAV-HDR)。我们证明了CASAAV-HDR能够在新生和成年小鼠心肌细胞内进行精确的基因组编辑。在此,我们报告CASAAV-HDR在心肌细胞中的几种应用。首先,我们通过使用CASAAV-HDR创建并精确标记在心肌病患者中观察到的肌联蛋白基因的两个病理变体,展示了CASAAV-HDR在疾病建模应用中的效用。我们使用这种方法监测变体的细胞定位,从而深入了解其病理功能的机制。接下来,我们利用CASAAV-HDR在受磷蛋白(PLN)的N端创建了另一个与人类心肌病相关的突变,即精氨酸14缺失(R14Del)。我们评估了PLN-R14Del的定位,并量化了与心肌病相关的心肌细胞表型,包括细胞形态、通过磷酸化激活PLN以及钙处理。在证明CASAAV-HDR在疾病建模中的效用后,我们接下来通过靶向基因组插入用于大规模平行报告基因检测(MPRA)的增强子文库来测试其在功能基因组学中的效用。我们表明,具有基因组整合增强子的MPRA是可行的,并且与在AAV/游离体背景下对相同增强子的测试相比,可以产生更高的检测灵敏度。总的来说,我们的研究展示了通过CASAAV-HDR对心肌细胞基因组进行精确编辑的多种应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d4f/11642850/0b0c12d81811/nihpp-2024.12.03.626493v1-f0001.jpg

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