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结构变异对遗传性视网膜疾病贡献的系统评估。

Systematic assessment of the contribution of structural variants to inherited retinal diseases.

作者信息

Wen Shu, Wang Meng, Qian Xinye, Li Yumei, Wang Keqing, Choi Jongsu, Pennesi Mark E, Yang Paul, Marra Molly, Koenekoop Robert K, Lopez Irma, Matynia Anna, Gorin Michael, Sui Ruifang, Yao Fengxia, Goetz Kerry, Porto Fernanda Belga Ottoni, Chen Rui

出版信息

bioRxiv. 2023 Jan 3:2023.01.02.522522. doi: 10.1101/2023.01.02.522522.

Abstract

Despite increasing success in determining genetic diagnosis for patients with inherited retinal diseases (IRDs), mutations in about 30% of the IRD cases remain unclear or unsettled after targeted gene panel or whole exome sequencing. In this study, we aimed to investigate the contributions of structural variants (SVs) to settling the molecular diagnosis of IRD with whole-genome sequencing (WGS). A cohort of 755 IRD patients whose pathogenic mutations remain undefined was subjected to WGS. Four SV calling algorithms including include MANTA, DELLY, LUMPY, and CNVnator were used to detect SVs throughout the genome. All SVs identified by any one of these four algorithms were included for further analysis. AnnotSV was used to annotate these SVs. SVs that overlap with known IRD-associated genes were examined with sequencing coverage, junction reads, and discordant read pairs. PCR followed by Sanger sequencing was used to further confirm the SVs and identify the breakpoints. Segregation of the candidate pathogenic alleles with the disease was performed when possible. In total, sixteen candidate pathogenic SVs were identified in sixteen families, including deletions and inversions, representing 2.1% of patients with previously unsolved IRDs. Autosomal dominant, autosomal recessive, and X-linked inheritance of disease-causing SVs were observed in 12 different genes. Among these, SVs in were found in multiple families. Our study suggests that the contribution of SVs detected by short-read WGS is about 0.25% of our IRD patient cohort and is significantly lower than that of single nucleotide changes and small insertions and deletions.

摘要

尽管在确定遗传性视网膜疾病(IRD)患者的基因诊断方面取得了越来越多的成功,但在进行靶向基因panel或全外显子组测序后,约30%的IRD病例中的突变仍不明确或未得到解决。在本研究中,我们旨在通过全基因组测序(WGS)研究结构变异(SVs)对解决IRD分子诊断的贡献。对755名致病突变仍未明确的IRD患者进行了WGS。使用包括MANTA、DELLY、LUMPY和CNVnator在内的四种SV检测算法来检测全基因组中的SVs。由这四种算法中的任何一种识别出的所有SVs都被纳入进一步分析。使用AnnotSV对这些SVs进行注释。对与已知IRD相关基因重叠的SVs进行测序覆盖度、连接读数和不一致读数对的检查。采用PCR后进行Sanger测序来进一步确认SVs并确定断点。尽可能对候选致病等位基因与疾病进行分离分析。总共在16个家族中鉴定出16个候选致病SVs,包括缺失和倒位,占先前未解决IRD患者的2.1%。在12个不同基因中观察到致病SVs的常染色体显性、常染色体隐性和X连锁遗传。其中,在多个家族中发现了[具体基因]中的SVs。我们的研究表明,短读长WGS检测到的SVs在我们的IRD患者队列中的贡献约为0.25%,明显低于单核苷酸变化以及小插入和缺失的贡献。

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