Créton Marijn, Wagener Frank, Massink Maarten, Fennis Willem, Bloemen Marjon, Schols Jan, Aarts Miranda, van der Molen Aebele Mink, van Haaften Gijs, van den Boogaard Marie José
Department of Dentistry - Orthodontics and Craniofacial Biology, Radboud University Medical Centre, Nijmegen, The Netherlands.
Radboud Institute for Molecular Life Sciences, Radboud University Medical Centre, Nijmegen, The Netherlands.
Am J Med Genet A. 2023 Apr;191(4):1083-1088. doi: 10.1002/ajmg.a.63101. Epub 2023 Jan 3.
A girl with a unilateral cleft lip, alveolus and palate, tooth agenesis, and mild dysmorphic features, without a specific underlying syndrome diagnosis, was genotypically characterized and phenotypically described. Cleft gene panel analysis, single-nucleotide polymorphism (SNP) array, whole genome sequencing (WGS), whole exome sequencing, and quantitative PCR (Q-PCR) analysis were used as diagnostic tests. SNP array revealed a maternal deletion at 16q24.1, encompassing the cleft candidate gene USP10. WES revealed an additional de novo Loss-of-Function variant (p.(Asn838fs)) in the Zinc-Finger-Homeobox-4 (ZFHX4) gene. Q-PCR was performed to explore the effect of the ZFHX4 variant and the deletion in 16q24.1. The mRNA expression of a selection of putative target genes involved in orofacial clefting showed a lowered expression of USP10 (52%), CRISPLD2 (31%), and CRISPLD1 (1%) compared to the control. IRF6 showed no difference in gene expression. This case supports ZFHX4 as a novel cleft gene and suggests USP10 may contribute to the etiology of orofacial clefts in humans.
一名患有单侧唇裂、牙槽突裂和腭裂、牙齿发育不全且有轻度畸形特征但无特定潜在综合征诊断的女孩,进行了基因分型和表型描述。采用腭裂基因panel分析、单核苷酸多态性(SNP)阵列、全基因组测序(WGS)、全外显子组测序和定量PCR(Q-PCR)分析作为诊断测试。SNP阵列显示16q24.1存在母源缺失,包含腭裂候选基因USP10。全外显子组测序显示锌指同源盒4(ZFHX4)基因存在另一个新生功能丧失变异(p.(Asn838fs))。进行Q-PCR以探究ZFHX4变异和16q24.1缺失的影响。与对照相比,一组参与口腔颌面部裂隙形成的假定靶基因的mRNA表达显示USP10(52%)、CRISPLD2(31%)和CRISPLD1(1%)表达降低。IRF6基因表达无差异。该病例支持ZFHX4作为一种新的腭裂基因,并提示USP10可能在人类口腔颌面部裂隙的病因学中起作用。