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三维基因组中的结构变异作为疾病的驱动因素。

Structural variants in the 3D genome as drivers of disease.

作者信息

Sreenivasan Varun K A, Yumiceba Verónica, Spielmann Malte

机构信息

Institute of Human Genetics, University Hospital Schleswig-Holstein, University of Lübeck and Kiel University, Lübeck, Germany.

Max Planck Institute for Molecular Genetics, RG Human Molecular Genomics, Berlin, Germany.

出版信息

Nat Rev Genet. 2025 Jun 30. doi: 10.1038/s41576-025-00862-x.

Abstract

The spatial organization of the genome within the nucleus - also known as genome architecture or 3D genome - is important to the regulation of gene expression. Disruption of the 3D genome, for example, by structural variation, can contribute to disease, including developmental disorders and cancer. Structural variants can rearrange higher-order chromatin structures, such as topologically associating domains, and disrupt interactions between cis-regulatory elements, which can lead to altered gene expression, a phenomenon known as position effects. New experimental and computational approaches are revealing the effect of structural variants on the 3D genome and gene expression and can help interpret their pathogenic potential, which has important implications for patients. Here, we review mechanisms of disease caused by position effects owing to disruptions of genome architecture, and more specifically topologically associating domains, as well as their consequences and clinical impact.

摘要

基因组在细胞核内的空间组织——也称为基因组架构或三维基因组——对基因表达的调控至关重要。例如,三维基因组的破坏,如通过结构变异,可导致疾病,包括发育障碍和癌症。结构变异可重新排列高阶染色质结构,如拓扑相关结构域,并破坏顺式调控元件之间的相互作用,从而导致基因表达改变,这种现象称为位置效应。新的实验和计算方法正在揭示结构变异对三维基因组和基因表达的影响,并有助于解释它们的致病潜力,这对患者具有重要意义。在这里,我们综述了由于基因组架构破坏,更具体地说是拓扑相关结构域破坏所导致的位置效应引起的疾病机制,以及它们的后果和临床影响。

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