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首页> 外文期刊>Molecular cytogenetics >A case with concurrent duplication, triplication, and uniparental isodisomy at 1q42.12-qter supporting microhomology-mediated break-induced replication model for replicative rearrangements
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A case with concurrent duplication, triplication, and uniparental isodisomy at 1q42.12-qter supporting microhomology-mediated break-induced replication model for replicative rearrangements

机译:在1q42.12-qter处同时发生重复,三重和单亲等位线切割的病例,支持微同源性介导的断裂诱导的复制模型的复制重排

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BackgroundComplex genomic rearrangements (CGRs) consisting of interstitial triplications in conjunction with uniparental isodisomy (isoUPD) have rarely been reported in patients with multiple congenital anomalies (MCA)/intellectual disability (ID). One-ended DNA break repair coupled with microhomology-mediated break-induced replication (MMBIR) has been recently proposed as a possible mechanism giving rise to interstitial copy number gains and distal isoUPD, although only a few cases providing supportive evidence in human congenital diseases with MCA have been documented. Case presentationHere, we report on the chromosomal microarray (CMA)-based identification of the first known case with concurrent interstitial duplication at 1q42.12-q42.2 and triplication at 1q42.2-q43 followed by isoUPD for the remainder of chromosome 1q (at 1q43-qter). In distal 1q duplication/triplication overlapping with 1q42.12-q43, variable clinical features have been reported, and our 25-year-old patient with MCA/ID presented with some of these frequently described features. Further analyses including the precise mapping of breakpoint junctions within the CGR in a sequence level suggested that the CGR found in association with isoUPD in our case is a triplication with flanking duplications, characterized as a triplication with a particularly long duplication-inverted triplication-duplication (DUP-TRP/INV-DUP) structure. Because microhomology was observed in both junctions between the triplicated region and the flanking duplicated regions, our case provides supportive evidence for recently proposed replication-based mechanisms, such as MMBIR, underlying the formation of CGRs?+?isoUPD implicated in chromosomal disorders. ConclusionsTo the best of our knowledge, this is the first case of CGRs?+?isoUPD observed in 1q and having DUP-TRP/INV-DUP structure with a long proximal duplication, which supports MMBIR-based model for genomic rearrangements. Molecular cytogenetic analyses using CMA containing single-nucleotide polymorphism probes with further analyses of the breakpoint junctions are recommended in cases suspected of having complex chromosomal abnormalities based on discrepancies between clinical and conventional cytogenetic findings.
机译:背景患有多发性先天性异常(MCA)/智力残疾(ID)的患者很少报道由间质重复和单亲等位线切割(isoUPD)组成的复杂基因组重排(CGR)。最近有人提出了单端DNA断裂修复与微同源性介导的断裂诱导复制(MMBIR)结合作为间质拷贝数增加和远端isoUPD的可能机制,尽管只有少数情况为人类先天性疾病提供了支持证据。 MCA已被记录在案。病例介绍这里,我们报告基于染色体微阵列(CMA)的第一个已知病例的鉴定,该病例在1q42.12-q42.2处同时进行间质重复,在1q42.2-q43处进行三倍重复,然后对其余1q染色体进行isoUPD处理(在1q43-qter处)。在与1q42.12-q43重叠的远端1q复制/重复中,已报道了多种临床特征,而我们25岁的MCA / ID患者表现出其中一些经常描述的特征。进一步的分析(包括在序列水平上CGR中的断点连接的精确映射)表明,在我们的案例中与isoUPD关联的CGR是带有侧翼重复的三重复,其特征是具有特别长的重复-倒三重复-( DUP-TRP / INV-DUP)结构。由于在三重区域和侧翼重复区域之间的两个连接处都观察到微同源性,因此我们的案例为最近提出的基于复制的机制(如MMBIR)提供了支持性证据,该机制是涉及染色体异常的CGRs?+ isoUPD形成的基础。结论据我们所知,这是在1q中观察到的第一例CGRs?+?isoUPD,具有DUP-TRP / INV-DUP结构,具有长的近端重复,支持基于MMBIR的基因组重排模型。根据临床和常规细胞遗传学发现之间的差异,如果怀疑具有复杂的染色体异常,建议使用含CMA的单核苷酸多态性探针进行分子细胞遗传学分析,并对断裂点进行进一步分析。

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