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锌指核酸酶介导的同源重组在人上皮干细胞中的靶向基因添加。

Targeted gene addition in human epithelial stem cells by zinc-finger nuclease-mediated homologous recombination.

机构信息

Department of Life Sciences, University of Modena and Reggio Emilia, Modena, Italy.

出版信息

Mol Ther. 2013 Sep;21(9):1695-704. doi: 10.1038/mt.2013.143. Epub 2013 Jun 13.

Abstract

Preclinical and clinical studies showed that autologous transplantation of epidermis derived from genetically modified epithelial stem cells (EpSCs) leads to long-term correction of inherited skin adhesion defects. These studies were based on potentially genotoxic retroviral vectors. We developed an alternative gene transfer strategy aimed at targeting a "safe harbor" locus, the adeno-associated virus integration site 1 (AAVS1), by zinc-finger nuclease (ZFN)-induced homologous recombination (HR). Delivery of AAVS1-specific ZFNs and a GFP-expressing HR cassette by integration-defective lentiviral (LV) vectors (IDLVs) or adenoviral (Ad) vectors resulted in targeted gene addition with an efficiency of > 20% in a human keratinocyte cell line, > 10% in immortalized keratinocytes, and < 1% in primary keratinocytes. Deep sequencing of the AAVS1 locus showed that ZFN-induced double-strand breaks are mostly repaired by nonhomologous end joining (NHEJ) in primary cells, indicating that poor induction of the HR-dependent DNA repair pathway may be a significant limitation for targeted gene integration. Skin equivalents derived from unselected keratinocyte cultures coinfected with a GFP-IDLV and a ZFN-Ad vector were grafted onto immunodeficient mice. GFP-positive clones were observed in all grafts up to 18 weeks post-transplantation. By histological and molecular analysis, we were able to demonstrate highly efficient targeting of the AAVS1 locus in human repopulating EpSCs.

摘要

临床前和临床研究表明,源自遗传修饰的上皮干细胞 (EpSCs) 的表皮自体移植可导致遗传性皮肤粘连缺陷的长期纠正。这些研究基于潜在的遗传毒性逆转录病毒载体。我们开发了一种替代的基因转移策略,旨在通过锌指核酸酶 (ZFN) 诱导的同源重组 (HR) 靶向“安全港”位点,即腺相关病毒整合位点 1 (AAVS1)。通过整合缺陷型慢病毒 (LV) 载体 (IDLVs) 或腺病毒 (Ad) 载体递送 AAVS1 特异性 ZFN 和 GFP 表达的 HR 盒,可在人角质形成细胞系中实现>20%的靶向基因添加,在永生化角质形成细胞中实现>10%的靶向基因添加,在原代角质形成细胞中实现<1%的靶向基因添加。AAVS1 基因座的深度测序表明,ZFN 诱导的双链断裂主要通过非同源末端连接 (NHEJ) 在原代细胞中修复,表明 HR 依赖性 DNA 修复途径的诱导不良可能是靶向基因整合的一个重要限制因素。用 GFP-IDLV 和 ZFN-Ad 载体共感染的未选择的角质形成细胞培养物衍生的皮肤等效物被移植到免疫缺陷小鼠中。移植后 18 周内,所有移植物中均观察到 GFP 阳性克隆。通过组织学和分子分析,我们能够在人类再生 EpSCs 中高效靶向 AAVS1 基因座。

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