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三维基因组:精准医学中的发育技术与应用。

Three-dimensional genome: developmental technologies and applications in precision medicine.

机构信息

Marine Medical Research Institute of Guangdong Zhanjiang (GDZJMMRI), Southern Marine Science and Engineering Guangdong Laboratory Zhanjiang, Guangdong Medical University, Zhanjiang, 524023, China.

Department of Gastroenterology, Zibo Central Hospital, Zibo, 255000, China.

出版信息

J Hum Genet. 2020 Jun;65(6):497-511. doi: 10.1038/s10038-020-0737-7. Epub 2020 Mar 9.

Abstract

In the 20th century, our familiar structure of DNA was the double helix. Due to technical limitations, we do not have a good way to understand the finer structure of the genome, let alone its transcriptional regulation. Until the advent of 3C technologies, we were no longer blind to this one. Three-dimensional (3D) genomics is a new subject, which mainly studies the 3D structure and transcriptional regulation of eukaryotic genomes. Now, this field mainly has Hi-C series and CHIA-PET series technologies. Through 3D genomics, we can understand the basic structure of DNA, understand the growth and development of organisms and the occurrence of diseases, so as to promote human medical and health undertakings. The review introduces the main research techniques of 3D genomics and their characteristics, the latest development of 3D genome structure, the relationship between diseases and 3D genome structure, the applications of 3D genome in precision medicine, and the development of the 4D nucleome project.

摘要

在 20 世纪,我们熟悉的 DNA 结构是双螺旋结构。由于技术限制,我们没有很好的方法来了解基因组的更精细结构,更不用说其转录调控了。直到 3C 技术的出现,我们才不再对此一无所知。三维基因组学是一个新兴学科,主要研究真核基因组的三维结构和转录调控。目前,这个领域主要有 Hi-C 系列和 CHIA-PET 系列技术。通过三维基因组学,我们可以了解 DNA 的基本结构,了解生物的生长发育和疾病的发生,从而促进人类的医学和健康事业。本文介绍了三维基因组学的主要研究技术及其特点、三维基因组结构的最新进展、疾病与三维基因组结构的关系、三维基因组在精准医学中的应用以及 4D 核组学项目的发展。

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