Lek Angela, Ma Kaiyue, Woodman Keryn G, Lek Monkol
Department of Genetics, Yale School of Medicine, New Haven, Connecticut, USA.
Hum Gene Ther. 2021 Mar;32(5-6):260-274. doi: 10.1089/hum.2020.241.
Clustered regularly interspaced short palindromic repeat (CRISPR)-based technology has been adapted to achieve a wide range of genome modifications, including transcription regulation. The focus of this review is on the application of CRISPR-based platforms such as nuclease-deficient Cas9 and Cas12a, to achieve targeted gene activation. We review studies to date that have used CRISPR-based activation technology for the elucidation of biological mechanism and disease correction, as well as its application in genetic screens as a powerful tool for high-throughput genotype-phenotype mapping. In addition to our synthesis and critical analysis of published studies, we explore key considerations for the potential clinical translation of CRISPR-based activation technology.
基于成簇规律间隔短回文重复序列(CRISPR)的技术已被应用于实现广泛的基因组修饰,包括转录调控。本综述的重点是基于CRISPR的平台(如核酸酶缺陷型Cas9和Cas12a)在实现靶向基因激活方面的应用。我们回顾了迄今为止使用基于CRISPR的激活技术来阐明生物学机制和疾病矫正的研究,以及该技术在基因筛选中作为高通量基因型-表型映射的强大工具的应用。除了对已发表研究的综合和批判性分析外,我们还探讨了基于CRISPR的激活技术潜在临床转化的关键考虑因素。