印记(心理学)
基因组印记
生物
DNA甲基化
表观遗传学
遗传学
差异甲基化区
基因
甲基化
安吉曼综合征
作者
Eguzkine Ochoa,Sunwoo Lee,Benoit Lan-Leung,Renuka Dias,Ken K. Ong,Jessica A. Radley,Gustavo Pérez de Nanclares,Rosa Martínez,Graeme R. Clark,Ezequiel Martin,Luis Castaño,Leonardo Bottolo,Eamonn R. Maher
标识
DOI:10.1016/j.gim.2021.10.011
摘要
Disruptions of genomic imprinting are associated with congenital imprinting disorders (CIDs) and other disease states, including cancer. CIDs are most often associated with altered methylation at imprinted differentially methylated regions (iDMRs). In some cases, multiple iDMRs are affected causing multilocus imprinting disturbances (MLIDs). The availability of accurate, quantitative, and scalable high-throughput methods to interrogate multiple iDMRs simultaneously would enhance clinical diagnostics and research.We report the development of a custom targeted methylation sequencing panel that covered most relevant 63 iDMRs for CIDs and the detection of MLIDs. We tested it in 70 healthy controls and 147 individuals with CIDs. We distinguished loss and gain of methylation per differentially methylated region and classified high and moderate methylation alterations.Across a range of CIDs with a variety of molecular mechanisms, ImprintSeq performed at 98.4% sensitivity, 99.9% specificity, and 99.9% accuracy (when compared with previous diagnostic testing). ImprintSeq was highly sensitive for detecting MLIDs and enabled diagnostic criteria for MLID to be proposed. In a child with extreme MLID profile a probable genetic cause was identified.ImprintSeq provides a novel assay for clinical diagnostic and research studies of CIDs, MLIDs, and the role of disordered imprinting in human disease states.
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