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锌指核酸酶、转录激活样效应因子核酸酶及规律成簇间隔短回文重复序列/CRISPR相关蛋白9技术在疾病模型构建及基因治疗中的应用

[Applications of ZFN, TALEN and CRISPR/Cas9 techniques in disease modeling and gene therapy].

作者信息

Zhao Guohua, Pu Jiali, Tang Beisha

机构信息

Department of Neurology, Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang 310009, China.

出版信息

Zhonghua Yi Xue Yi Chuan Xue Za Zhi. 2016 Dec 10;33(6):857-862. doi: 10.3760/cma.j.issn.1003-9406.2016.06.025.

Abstract

Precise and effective modification of complex genomes at the predicted loci has long been an important goal for scientists. However, conventional techniques for manipulating genomes in diverse organisms and cells have lagged behind the rapid advance in genomic studies. Such genome engineering tools have featured low efficiency and off-targeting. The newly developed custom-designed nucleases, zinc finger nucleases (ZFN), transcription activator-like effector nucleases (TALEN) and clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated (Cas) system have conferred genome modification with ease of customization, flexibility and high efficiency, which may impact biological research and studies on pathogenesis of human diseases. These novel techniques can edit the genomic DNA with high efficiency and specificity in a rich variety of organisms and cell types including the induced pluripotent stem cells (iPSCs), which has conferred them with the potential for revealing the pathogenesis and treatment of many human diseases. This review has briefly introduced the mechanisms of ZFN, TALENs and CRISPR/Cas9 system, and compared the efficiency and specificity of such approaches. In addition, the application of ZFN, TALENs and CRISPR/Cas9 mediated genome modification for human disease modeling and gene therapy was also discussed.

摘要

长期以来,在预测位点对复杂基因组进行精确有效的修饰一直是科学家们的重要目标。然而,在不同生物体和细胞中操纵基因组的传统技术落后于基因组研究的快速发展。此类基因组工程工具存在效率低和脱靶的问题。新开发的定制设计核酸酶,如锌指核酸酶(ZFN)、转录激活样效应因子核酸酶(TALEN)和成簇规律间隔短回文重复序列(CRISPR)/CRISPR相关蛋白(Cas)系统,使基因组修饰具有易于定制、灵活性和高效率等特点,这可能会影响生物学研究以及人类疾病发病机制的研究。这些新技术能够在包括诱导多能干细胞(iPSC)在内的多种生物体和细胞类型中高效且特异地编辑基因组DNA,赋予了它们揭示多种人类疾病发病机制和治疗方法的潜力。本文简要介绍了ZFN、TALEN和CRISPR/Cas9系统的作用机制,并比较了这些方法的效率和特异性。此外,还讨论了ZFN、TALEN和CRISPR/Cas9介导的基因组修饰在人类疾病模型构建和基因治疗中的应用。

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