High Detection Rate of Copy Number Variations Using Capture Sequencing Data: A Retrospective Study

Author:

Sun Yu1,Ye Xiantao1,Fan Yanjie1,Wang Lili1,Luo Xiaomei1,Liu Huili1,Gao Xueren1,Gong Zhuwen1,Wang Yu1,Qiu Wenjuan1,Zhang Huiwen1,Han Lianshu1,Liang Lili1,Ye Hui1,Xiao Bing1,Gu Xuefan1,Yu Yongguo1

Affiliation:

1. Department of Pediatric Endocrinology and Genetic Metabolism, Shanghai Institute for Pediatric Research, Xinhua Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200092, China

Abstract

Abstract Background Capture sequencing (CS) is widely applied to detect small genetic variations such as single nucleotide variants or indels. Algorithms based on depth comparison are becoming available for detecting copy number variation (CNV) from CS data. However, a systematic evaluation with a large sample size has not been conducted to evaluate the efficacy of CS-based CNV detection in clinical diagnosis. Methods We retrospectively studied 3010 samples referred to our diagnostic laboratory for CS testing. We used 68 chromosomal microarray analysis–positive samples (true set [TS]) and 1520 reference samples to build a robust CS-CNV pipeline. The pipeline was used to detect candidate clinically relevant CNVs in 1422 undiagnosed samples (undiagnosed set [UDS]). The candidate CNVs were confirmed by an alternative method. Results The CS-CNV pipeline detected 78 of 79 clinically relevant CNVs in TS samples, with analytical sensitivity of 98.7% and positive predictive value of 49.4%. Candidate clinically relevant CNVs were identified in 106 UDS samples. CNVs were confirmed in 96 patients (90.6%). The diagnostic yield was 6.8%. The molecular etiology includes aneuploid (n = 7), microdeletion/microduplication syndrome (n = 40), and Mendelian disorders (n = 49). Conclusions These findings demonstrate the high yield of CS-based CNV. With further improvement of our CS-CNV pipeline, the method may have clinical utility for simultaneous evaluation of CNVs and small variations in samples referred for pre- or postnatal analysis.

Funder

Precision Medical Research of National Key Research and Development Program

National Natural Science Foundation of China

Shanghai Municipal Commission of Health and Family Planning Foundation

Shanghai Shen Kang Hospital Development Center

Shanghai Science and Technology Commission

Jiaotong University Cross Biomedical Engineering

Publisher

Oxford University Press (OUP)

Subject

Biochemistry (medical),Clinical Biochemistry

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