Jiang Huling, Ping Zepeng, Wang Jianguo, Liu Xiaodan, Jin Yuxia, Li Suping, Zhou Chiyan, Huang Pinghua, Jin Yi, Ai Ling, Chen Jie
Department of Prenatal Diagnosis Center, Maternity and Child Health Care Affiliated Hospital, Jiaxing University, Jiaxing, 314000, China.
Department of Pediatric Surgery, Xinhua Hospital Affiliated To Shanghai Jiao Tong University School Of Medicine, Shanghai, 200092, China.
Mol Cytogenet. 2021 Mar 3;14(1):14. doi: 10.1186/s13039-021-00532-7.
Molecular genetic testing for the 11p15-associated imprinting disorder Beckwith-Wiedemann syndrome (BWS) is challenging because of the molecular heterogeneity and complexity of the affected imprinted regions. An integrated molecular approach to analyze the epigenetic-genetic alterations is required for accurate diagnosis of BWS.
We reported a Chinese case with BWS detected by SNP array analysis and methylation-specific multiplex ligation-dependent probe amplification (MS-MLPA). The genetic analysis showed a de novo duplication of 24 Mb at 11p15.5p14.3 is much longer than ever reported. MS-MLPA showed copy number changes with a peak height ratio value of 1.5 (three copies) at 11p15. The duplication of paternal origin with increase of methylation index of 0.68 at H19 and decreased methylation index of 0.37 at KCNQ1OT1.
Combined chromosome microarray analysis and methylation profiling provided reliable diagnosis for this paternally derived duplication of BWS. The phenotype associated with 11p15 duplications depends on the size, genetic content, parental inheritance and imprinting status. Identification of these rare duplications is crucial for genetic counselling.
由于11p15相关印记障碍贝克威思-维德曼综合征(BWS)所涉及的印记区域存在分子异质性和复杂性,因此对其进行分子遗传学检测具有挑战性。准确诊断BWS需要采用综合分子方法来分析表观遗传-遗传改变。
我们报告了1例通过单核苷酸多态性阵列分析和甲基化特异性多重连接依赖探针扩增(MS-MLPA)检测出患有BWS的中国病例。基因分析显示,11p15.5p14.3处有一个24 Mb的新发重复,比以往报道的长得多。MS-MLPA显示11p15处存在拷贝数变化,峰值高度比值为1.5(三个拷贝)。该重复来自父系,H19处甲基化指数增加0.68,KCNQ1OT1处甲基化指数降低0.37。
联合染色体微阵列分析和甲基化谱分析为该例父系来源的BWS重复提供了可靠诊断。与11p15重复相关的表型取决于大小、遗传内容、亲本遗传和印记状态。识别这些罕见重复对遗传咨询至关重要。