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Copy Number Variation Analysis in Single-Suture Craniosynostosis: Multiple Rare Variants Including RUNX2 Duplication in Two Cousins With Metopic Craniosynostosis

机译:单线颅骨融合症中的拷贝数变异分析:包括罕见的变异,包括在两个具有同位颅骨融合症的表亲中RUNX2复制

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摘要

Little is known about genes that underlie isolated single-suture craniosynostosis. In this study, we hypothesize that rare copy number variants (CNV) in patients with isolated single-suture craniosynostosis contain genes important for cranial development. Using whole genome array comparative genomic hybridization (CGH), we evaluated DNA from 186 individuals with single-suture craniosynostosis for submicroscopic deletions and duplications. We identified a 1.1 Mb duplication encompassing RUNX2 in two affected cousins with metopic synostosis and hypodontia. Given that RUNX2 is required as a master switch for osteoblast differentiation and interacts with TWIST I, mutations in which also cause craniosynostosis, we conclude that the duplication in this family is pathogenic, albeit with reduced penetrance. In addition, we find that a total of 7.5% of individuals with single-suture synostosis in our series have at least one rare deletion or duplication that contains genes and that has not been previously reported in unaffected individuals. The genes within and disrupted by CNVs in this cohort are potential novel candidate genes for craniosynostosis. (C) 2010 Wiley-Liss, Inc.
机译:关于分离的单线颅骨融合症的基础基因知之甚少。在这项研究中,我们假设孤立的单缝合颅突神经病患者的罕见拷贝数变异(CNV)包含对颅骨发育很重要的基因。使用全基因组阵列比较基因组杂交(CGH),我们评估了来自186例单线颅骨融合症患者的DNA的亚显微缺失和重复。我们在两个受影响的堂兄弟中发生了1.1 Mb重复,其中包含RUNX2,这些同伴患有异位性骨质增生和牙髓不足。鉴于RUNX2是成骨细胞分化的主要开关,并且与TWIST I相互作用(其中也引起颅骨前突的突变)相互作用,我们得出的结论是,该家族中的复制是致病的,尽管外显率降低。此外,我们发现,在我们的系列中,总共有7.5%的患有单缝线突触的个体具有至少一个罕见的缺失或重复,这些缺失或重复包含基因,并且以前在未受影响的个体中未见报道。在这个队列中,CNV内的基因以及被CNV破坏的基因可能是颅骨突触的新候选基因。 (C)2010 Wiley-Liss,Inc.

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