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与微缺失/微重复综合征相关的基因组区域表现出结构变异的极端多样性。

Genomic regions associated with microdeletion/microduplication syndromes exhibit extreme diversity of structural variation.

机构信息

Cardiovascular Research Institute, UCSF School of Medicine, San Francisco, CA 94143, USA.

Department of Integrative Biology, University of Colorado Denver, Denver, CO 80204, USA.

出版信息

Genetics. 2021 Feb 9;217(2). doi: 10.1093/genetics/iyaa038.

Abstract

Segmental duplications (SDs) are a class of long, repetitive DNA elements whose paralogs share a high level of sequence similarity with each other. SDs mediate chromosomal rearrangements that lead to structural variation in the general population as well as genomic disorders associated with multiple congenital anomalies, including the 7q11.23 (Williams-Beuren Syndrome, WBS), 15q13.3, and 16p12.2 microdeletion syndromes. Population-level characterization of SDs has generally been lacking because most techniques used for analyzing these complex regions are both labor and cost intensive. In this study, we have used a high-throughput technique to genotype complex structural variation with a single molecule, long-range optical mapping approach. We characterized SDs and identified novel structural variants (SVs) at 7q11.23, 15q13.3, and 16p12.2 using optical mapping data from 154 phenotypically normal individuals from 26 populations comprising five super-populations. We detected several novel SVs for each locus, some of which had significantly different prevalence between populations. Additionally, we localized the microdeletion breakpoints to specific paralogous duplicons located within complex SDs in two patients with WBS, one patient with 15q13.3, and one patient with 16p12.2 microdeletion syndromes. The population-level data presented here highlights the extreme diversity of large and complex SVs within SD-containing regions. The approach we outline will greatly facilitate the investigation of the role of inter-SD structural variation as a driver of chromosomal rearrangements and genomic disorders.

摘要

片段重复(SD)是一类长的、重复的 DNA 元件,其旁系同源物彼此之间具有高度的序列相似性。SD 介导染色体重排,导致一般人群中的结构变异以及与多种先天畸形相关的基因组疾病,包括 7q11.23(威廉姆斯-比伦综合征,WBS)、15q13.3 和 16p12.2 微缺失综合征。由于用于分析这些复杂区域的大多数技术既耗费劳动力又耗费成本,因此普遍缺乏对 SD 的群体特征描述。在这项研究中,我们使用了一种高通量技术,通过单分子长程光学作图方法对复杂结构变异进行基因分型。我们使用来自 26 个群体的 154 名表型正常个体的光学作图数据,对 7q11.23、15q13.3 和 16p12.2 上的 SD 进行了特征描述并鉴定了新的结构变异(SV)。我们在每个基因座检测到了几个新的 SV,其中一些在不同群体之间的流行率有显著差异。此外,我们还将 WBS 患者、15q13.3 患者和 16p12.2 微缺失综合征患者的微缺失断裂点定位到位于复杂 SD 内的特定旁系同源重复单元。此处呈现的群体水平数据突出了 SD 包含区域内大型和复杂 SV 的极端多样性。我们概述的方法将极大地促进对 SD 间结构变异作为染色体重排和基因组疾病驱动因素的作用的研究。

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