通过基因组工程实现功能基因组学。

Enabling functional genomics with genome engineering.

作者信息

Hilton Isaac B, Gersbach Charles A

机构信息

Department of Biomedical Engineering, Duke University, Durham, North Carolina 27708, USA; Center for Genomic and Computational Biology, Duke University, Durham, North Carolina 27708, USA;

Department of Biomedical Engineering, Duke University, Durham, North Carolina 27708, USA; Center for Genomic and Computational Biology, Duke University, Durham, North Carolina 27708, USA; Department of Orthopaedic Surgery, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Genome Res. 2015 Oct;25(10):1442-55. doi: 10.1101/gr.190124.115.

Abstract

Advances in genome engineering technologies have made the precise control over genome sequence and regulation possible across a variety of disciplines. These tools can expand our understanding of fundamental biological processes and create new opportunities for therapeutic designs. The rapid evolution of these methods has also catalyzed a new era of genomics that includes multiple approaches to functionally characterize and manipulate the regulation of genomic information. Here, we review the recent advances of the most widely adopted genome engineering platforms and their application to functional genomics. This includes engineered zinc finger proteins, TALEs/TALENs, and the CRISPR/Cas9 system as nucleases for genome editing, transcription factors for epigenome editing, and other emerging applications. We also present current and potential future applications of these tools, as well as their current limitations and areas for future advances.

摘要

基因组工程技术的进步使得在多个学科中对基因组序列和调控进行精确控制成为可能。这些工具能够拓展我们对基本生物学过程的理解,并为治疗设计创造新机会。这些方法的迅速发展还催化了一个基因组学的新时代,其中包括多种在功能上表征和操纵基因组信息调控的方法。在此,我们综述了最广泛采用的基因组工程平台的最新进展及其在功能基因组学中的应用。这包括作为基因组编辑核酸酶、表观基因组编辑转录因子以及其他新兴应用的工程化锌指蛋白、TALE/TALEN和CRISPR/Cas9系统。我们还介绍了这些工具当前和潜在的未来应用,以及它们目前的局限性和未来进展的领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a10a/4579329/b925656802bb/1442f01.jpg

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