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首页> 外文期刊>Cytogenetic and genome research >Uniparental Disomy of Chromosome 15 in Two Cases by Chromosome Microarray: A Lesson Worth Thinking
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Uniparental Disomy of Chromosome 15 in Two Cases by Chromosome Microarray: A Lesson Worth Thinking

机译:通过染色体微阵列的两种情况下发单起染色体15例:值得思考的课程

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Prader-Willi syndrome (PWS) and Angelman syndrome (AS) are neurogenetic disorders caused by loss of function of the imprinted genes at 15q11q13. A 5-7 Mb paternal/maternal deletion of chromosomal region 15q11.2q13 is the major genetic cause of PWS/AS, but in a small group of patients, the PWS/AS phenotype can result from maternal/paternal uniparental disomy (UPD) of chromosome 15. Various mechanisms leading to UPD include gametic complementation, trisomy rescue, and compensatory UPD, which can be inferred from the pattern of uniparental heterodisomy (heteroUPD) or uniparental isodisomy (isoUPD). However, heteroUPD and isoUPD, especially mixed heteroUPD and isoUPD, are very rare in patients with PWS/AS. Here, we report 2 children with PWS/AS caused by mixed segmental heteroUPD 15 and isoUPD 15 which failed to be identified by chromosome microarray (CMA) but could be detected by other molecular genetic methods. The present report unravels the mechanism of mixed iso/heteroUPD 15 in PWS/AS and phenotypegenotype correlations. Moreover, our study suggests that CMA is prone to misdiagnosis for imprinting disorders such as PWS/AS, though it is considered a highly useful tool for copy number variations. As a result, other molecular detection methods, such as methylation analysis and STR marker analysis for UPD, should be supplementary used in this situation. (C) 2017 S. Karger AG, Basel
机译:PRADER-WILLI综合征(PWS)和Angelman综合征(AS)是由于印记基因在15 Q1113的功能丧失引起的神经发生障碍。 5-7 MB父母/母亲缺失的染色体区域15Q11.2Q13是PWS的主要遗传原因/ as,但在一小组患者中,PWS /作为表型可以由母体/父目发单调性强化(UPD)产生染色体15.导致更新的各种机制包括游戏互补,三胞质救援和补偿性抑制,可以从装载量异调(UPLETOUPD)或装载一向Insodisomy(昆唆)的模式推断出来。然而,PURS / AS的患者患者患者非常罕见,尤其是混合的异粮和昆汁群体。在这里,我们报告2个患有PWS的儿童/原由混合的节段性杂类15和昆时期15引起的,其未被染色体微阵列(CMA)鉴定,但可以通过其他分子遗传方法检测。本报告将混合ISO /异粮15中的机制释放出PWS / AS和AS和表型型相关性。此外,我们的研究表明,CMA易于对印记障碍等PWS / AS的紊乱,但它被认为是拷贝数变异的高度有用的工具。结果,在这种情况下,其他分子检测方法如甲基化分析和STR标记分析,应该是补充的。 (c)2017年S. Karger AG,巴塞尔

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