生物
基因组
基因
结构变异
染色质
拷贝数变化
基因剂量
遗传学
计算生物学
基因表达调控
断点
遗传变异
人类基因组
基因组进化
进化生物学
基因表达
染色体
作者
Malte Spielmann,Darío G. Lupiáñez,Stefan Mundlos
标识
DOI:10.1038/s41576-018-0007-0
摘要
Structural and quantitative chromosomal rearrangements, collectively referred to as structural variation (SV), contribute to a large extent to the genetic diversity of the human genome and thus are of high relevance for cancer genetics, rare diseases and evolutionary genetics. Recent studies have shown that SVs can not only affect gene dosage but also modulate basic mechanisms of gene regulation. SVs can alter the copy number of regulatory elements or modify the 3D genome by disrupting higher-order chromatin organization such as topologically associating domains. As a result of these position effects, SVs can influence the expression of genes distant from the SV breakpoints, thereby causing disease. The impact of SVs on the 3D genome and on gene expression regulation has to be considered when interpreting the pathogenic potential of these variant types. Recent studies show that structural variation can alter the genome architecture, leading to changes in the regulation of gene expression that cause disease. The authors review the role of genetic structural variation in disease and the pathogenic potential of changes to the 3D genome.
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