Departement of Human Genetics, KU Leuven, Leuven, 3000 Belgium.
Cardiovascular Research Institute, UCSF School of Medicine, San Francisco, California 94158, USA.
Genome Res. 2019 Sep;29(9):1389-1401. doi: 10.1101/gr.248682.119.
Low copy repeats (LCRs) are recognized as a significant source of genomic instability, driving genome variability and evolution. The Chromosome 22 LCRs (LCR22s) mediate nonallelic homologous recombination (NAHR) leading to the 22q11 deletion syndrome (22q11DS). However, LCR22s are among the most complex regions in the genome, and their structure remains unresolved. The difficulty in generating accurate maps of LCR22s has also hindered localization of the deletion end points in 22q11DS patients. Using fiber FISH and Bionano optical mapping, we assembled LCR22 alleles in 187 cell lines. Our analysis uncovered an unprecedented level of variation in LCR22s, including LCR22A alleles ranging in size from 250 to 2000 kb. Further, the incidence of various LCR22 alleles varied within different populations. Additionally, the analysis of LCR22s in 22q11DS patients and their parents enabled further refinement of the rearrangement site within LCR22A and -D, which flank the 22q11 deletion. The NAHR site was localized to a 160-kb paralog shared between the LCR22A and -D in seven 22q11DS patients. Thus, we present the most comprehensive map of LCR22 variation to date. This will greatly facilitate the investigation of the role of LCR variation as a driver of 22q11 rearrangements and the phenotypic variability among 22q11DS patients.
低拷贝重复序列(LCRs)被认为是基因组不稳定性的重要来源,驱动基因组的变异性和进化。22 号染色体 LCRs(LCR22s)介导非等位基因同源重组(NAHR),导致 22q11 缺失综合征(22q11DS)。然而,LCR22s 是基因组中最复杂的区域之一,其结构仍未解决。难以生成 LCR22s 的准确图谱也阻碍了 22q11DS 患者缺失末端点的定位。我们使用纤维荧光原位杂交(FISH)和 Bionano 光学图谱技术,在 187 个细胞系中组装了 LCR22 等位基因。我们的分析揭示了 LCR22s 前所未有的变异性,包括大小在 250 至 2000kb 之间的 LCR22A 等位基因。此外,不同人群中各种 LCR22 等位基因的发生率也有所不同。此外,对 22q11DS 患者及其父母的 LCR22s 分析,进一步精确定位了 LCR22A 和 -D 内的重排位点,这些区域侧翼 22q11 缺失。NAHR 位点定位于 LCR22A 和 -D 之间的一个 160kb 直系同源物,在 7 个 22q11DS 患者中。因此,我们展示了迄今为止最全面的 LCR22 变异图谱。这将极大地促进对 LCR 变异作为 22q11 重排驱动因素以及 22q11DS 患者表型变异性的研究。