多重连接依赖探针扩增
HNF1B型
拷贝数变化
外显子组测序
遗传学
医学
多路复用
基因
生物
突变
外显子
基因组
同源盒
基因表达
作者
Satoshi Tanaka,Hiroyuki Akagawa,Kenkou Azuma,Sayaka Higuchi,Atsushi Ujiie,Koshi Hashimoto,Naoko Iwasaki
摘要
Abstract Maturity‐Onset Diabetes of the Young (MODY) is a diabetes mellitus subtype caused by a single gene. The detection rate of the responsible gene is 27% in the United Kingdom, indicating that the causative gene remains unknown in the majority of clinically diagnosed MODY cases. To improve the detection rate, we applied comprehensive genetic testing using whole exome sequencing (WES) followed by Multiplex Ligation‐dependent Probe Amplification (MLPA) and functional analyses. Twenty‐one unrelated Japanese participants with MODY were enrolled in the study. To detect copy number variations (CNVs), WES was performed first, followed by MLPA analysis for participants who were negative on the basis of WES. Undetermined variants were analyzed according to their functional properties. WES identified 7 pathogenic and 3 novel likely pathogenic variants in the 21 participants. Functional analyses revealed that 1 in 3 variants was pathogenic. MLPA analysis applied to the remaining 13 undetermined samples identified 4 cases with pathogenic CNVs: 3 in HNF4A and 1 in HNF1B . Pathogenic variants were identified in 12 participants (12/21, 57.1%) – relatively high rate reported to date. Notably, one‐third of the participants had CNVs in HNF4A or HNF1B , indicating a limitation of WES‐only screening.
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