Long-read DNA sequencing fully characterized chromothripsis in a patient with Langer–Giedion syndrome and Cornelia de Lange syndrome-4

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作者
Ming Lei
Desheng Liang
Yifeng Yang
Satomi Mitsuhashi
Kazutaka Katoh
Noriko Miyake
Martin C. Frith
Lingqian Wu
Naomichi Matsumoto
机构
[1] Central South University,Center for Medical Genetics & Hunan Key Laboratory of Medical Genetics, School of Life Sciences
[2] Yokohama City University Graduate School of Medicine,Department of Human Genetics
[3] China Astronaut Research and Training Center,Department of Cardiovascular Surgery
[4] The Second Xiangya Hospital of Central South University,Research Institute for Microbial Diseases
[5] Osaka University,Artificial Intelligence Research Center
[6] National Institute of Advanced Industrial Science and Technology (AIST),Graduate School of Frontier Sciences
[7] University of Tokyo,undefined
[8] Computational Bio Big-Data Open Innovation Laboratory (CBBD-OIL),undefined
[9] AIST,undefined
来源
Journal of Human Genetics | 2020年 / 65卷
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摘要
Chromothripsis is a type of chaotic complex genomic rearrangement caused by a single event of chromosomal shattering and repair processes. Chromothripsis is known to cause rare congenital diseases when it occurs in germline cells, however, current genome analysis technologies have difficulty in detecting and deciphering chromothripsis. It is possible that this type of complex rearrangement may be overlooked in rare-disease patients whose genetic diagnosis is unsolved. We applied long read nanopore sequencing and our recently developed analysis pipeline dnarrange to a patient who has a reciprocal chromosomal translocation t(8;18)(q22;q21) as a result of chromothripsis between the two chromosomes, and fully characterize the complex rearrangements at the translocation site. The patient genome was evidently shattered into 19 fragments, and rejoined into derivative chromosomes in a random order and orientation. The reconstructed patient genome indicates loss of five genomic regions, which all overlap with microarray-detected copy number losses. We found that two disease-related genes RAD21 and EXT1 were lost by chromothripsis. These two genes could fully explain the disease phenotype with facial dysmorphisms and bone abnormality, which is likely a contiguous gene syndrome, Cornelia de Lange syndrome type IV (CdLs-4) and atypical Langer–Giedion syndrome (LGS), also known as trichorhinophalangeal syndrome type II (TRPSII). This provides evidence that our approach based on long read sequencing can fully characterize chromothripsis in a patient’s genome, which is important for understanding the phenotype of disease caused by complex genomic rearrangement.
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页码:667 / 674
页数:7
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