Department of Cancer Biology, Dana-Farber Cancer Institute, Boston, MA, USA.
Department of and Medical Oncology, Dana-Farber Cancer Institute, Boston, MA, USA.
Nat Rev Cancer. 2022 Sep;22(9):533-546. doi: 10.1038/s41568-022-00488-9. Epub 2022 Jun 28.
Structural variations (SVs) affect more of the cancer genome than any other type of somatic genetic alteration but difficulties in detecting and interpreting them have limited our understanding. Clinical cancer sequencing also increasingly aims to detect SVs, leading to a widespread necessity to interpret their biological and clinical relevance. Recently, analyses of large whole-genome sequencing data sets revealed features that impact rates of SVs across the genome in different cancers. A striking feature has been the extent to which, in both their generation and their influence on the selective fitness of cancer cells, SVs are more specific to individual cancer types than other genetic alterations such as single-nucleotide variants. This Perspective discusses how the folding of the 3D genome, and differences in its folding across cell types, affect observed SV rates in different cancer types as well as how SVs can impact cancer cell fitness.
结构变异(SV)比任何其他类型的体细胞遗传改变对癌症基因组的影响更大,但由于检测和解释这些变异的困难,我们对它们的了解受到了限制。临床癌症测序也越来越旨在检测 SV,这导致广泛需要解释它们的生物学和临床相关性。最近,对大型全基因组测序数据集的分析揭示了影响不同癌症中基因组中 SV 速率的特征。一个显著的特征是,在 SV 的产生及其对癌细胞选择性适应性的影响方面,SV 比其他遗传改变(如单核苷酸变体)更具有个体癌症类型的特异性。本观点讨论了 3D 基因组的折叠方式以及不同细胞类型之间折叠方式的差异如何影响不同癌症类型中观察到的 SV 速率,以及 SV 如何影响癌细胞适应性。