Department of Radiation Oncology, Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Department of Pathology and Laboratory Medicine, Weill Cornell Medicine, New York, NY, USA.
Nature. 2023 Sep;621(7977):129-137. doi: 10.1038/s41586-023-06461-2. Epub 2023 Aug 16.
Homologous recombination (HR) deficiency is associated with DNA rearrangements and cytogenetic aberrations. Paradoxically, the types of DNA rearrangements that are specifically associated with HR-deficient cancers only minimally affect chromosomal structure. Here, to address this apparent contradiction, we combined genome-graph analysis of short-read whole-genome sequencing (WGS) profiles across thousands of tumours with deep linked-read WGS of 46 BRCA1- or BRCA2-mutant breast cancers. These data revealed a distinct class of HR-deficiency-enriched rearrangements called reciprocal pairs. Linked-read WGS showed that reciprocal pairs with identical rearrangement orientations gave rise to one of two distinct chromosomal outcomes, distinguishable only with long-molecule data. Whereas one (cis) outcome corresponded to the copying and pasting of a small segment to a distant site, a second (trans) outcome was a quasi-balanced translocation or multi-megabase inversion with substantial (10 kb) duplications at each junction. We propose an HR-independent replication-restart repair mechanism to explain the full spectrum of reciprocal pair outcomes. Linked-read WGS also identified single-strand annealing as a repair pathway that is specific to BRCA2 deficiency in human cancers. Integrating these features in a classifier improved discrimination between BRCA1- and BRCA2-deficient genomes. In conclusion, our data reveal classes of rearrangements that are specific to BRCA1 or BRCA2 deficiency as a source of cytogenetic aberrations in HR-deficient cells.
同源重组 (HR) 缺陷与 DNA 重排和细胞遗传学异常有关。矛盾的是,与 HR 缺陷型癌症特异性相关的 DNA 重排类型仅对染色体结构产生最小影响。在这里,为了解决这个明显的矛盾,我们结合了数千个肿瘤的短读全基因组测序 (WGS) 图谱的基因组图分析,以及 46 个 BRCA1 或 BRCA2 突变型乳腺癌的深度链接读取 WGS。这些数据揭示了一类独特的 HR 缺陷富集重排,称为相互对。链接读取 WGS 显示,具有相同重排方向的相互对产生两种不同的染色体结果之一,只有长分子数据才能区分。虽然一个(顺式)结果对应于一小段片段的复制和粘贴到一个遥远的位点,但第二个(反式)结果是准平衡易位或多兆碱基倒位,每个连接处都有大量(10 kb)重复。我们提出了一种 HR 独立的复制重新启动修复机制来解释相互对结果的全貌。链接读取 WGS 还确定了单链退火作为一种修复途径,它是人类癌症中 BRCA2 缺陷所特有的。在分类器中整合这些特征可以提高对 BRCA1 和 BRCA2 缺陷基因组的区分能力。总之,我们的数据揭示了特定于 BRCA1 或 BRCA2 缺陷的重排类型是 HR 缺陷细胞细胞遗传学异常的来源。