Department of Molecular Medicine and Surgery and Center for Molecular Medicine, Karolinska Institutet, Stockholm, Sweden.
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA.
Trends Genet. 2022 Nov;38(11):1134-1146. doi: 10.1016/j.tig.2022.06.003. Epub 2022 Jul 9.
Complex genomic rearrangements (CGRs) are known contributors to disease but are often missed during routine genetic screening. Identifying CGRs requires (i) identifying copy number variants (CNVs) concurrently with inversions, (ii) phasing multiple breakpoint junctions incis, as well as (iii) detecting and resolving structural variants (SVs) within repeats. We demonstrate how combining cytogenetics and new sequencing methodologies is being successfully applied to gain insights into the genomic architecture of CGRs. In addition, we review CGR patterns and molecular features revealed by studying constitutional genomic disorders. These data offer invaluable lessons to individuals interested in investigating CGRs, evaluating their clinical relevance and frequency, as well as assessing their impact(s) on rare genetic diseases.
复杂基因组重排(CGRs)是已知的疾病致病因素,但在常规基因筛查中经常被遗漏。鉴定 CGRs 需要 (i) 同时鉴定拷贝数变异 (CNVs) 和倒位,(ii) 对多个断点连接进行相位分析,以及 (iii) 检测和解决重复序列内的结构变异 (SVs)。我们展示了如何结合细胞遗传学和新的测序方法来深入了解 CGR 的基因组结构。此外,我们还回顾了通过研究先天性基因组疾病揭示的 CGR 模式和分子特征。这些数据为有兴趣研究 CGRs、评估其临床意义和频率以及评估其对罕见遗传疾病影响的个人提供了宝贵的经验。