Department of Cellular and Genetic Medicine, School of Basic Medical Sciences, Fudan University, Shanghai, China.
Department of Physiology, Southern Illinois University School of Medicine, Carbondale, Illinois.
Hum Mutat. 2017 Dec;38(12):1774-1785. doi: 10.1002/humu.23339. Epub 2017 Sep 23.
Deformed epidermal autoregulatory factor-1 (DEAF1), a transcription factor essential for central nervous system and early embryonic development, has recently been implicated in a series of intellectual disability-related neurodevelopmental anomalies termed, in this study, as DEAF1-associated neurodevelopmental disorder (DAND). We identified six potentially deleterious DEAF1 variants in a cohort of individuals with DAND via clinical exome sequencing (CES) and in silico analysis, including two novel de novo variants: missense variant c.634G > A p.Gly212Ser in the SAND domain and deletion variant c.913_915del p.Lys305del in the NLS domain, as well as c.676C > T p.Arg226Trp, c.700T > A p.Trp234Arg, c.737G > C p.Arg246Thr, and c.791A > C p.Gln264Pro. Luciferase reporter, immunofluorescence staining, and electrophoretic mobility shift assays revealed that these variants had decreased transcriptional repression activity at the DEAF1 promoter and reduced affinity to consensus DEAF1 DNA binding sequences. In addition, c.913_915del p.K305del localized primarily to the cytoplasm and interacted with wild-type DEAF1. Our results demonstrate that variants located within the SAND or NLS domains significantly reduce DEAF1 transcriptional regulatory activities and are thus, likely to contribute to the underlying clinical concerns in DAND patients. These findings illustrate the importance of experimental characterization of variants with uncertain significance identified by CES to assess their potential clinical significance and possible use in diagnosis.
变形表皮自调节因子-1(DEAF1)是一种对中枢神经系统和早期胚胎发育至关重要的转录因子,最近与一系列被称为 DEAF1 相关神经发育障碍(DAND)的智力障碍相关神经发育异常有关。我们通过临床外显子组测序(CES)和计算机分析,在 DAND 患者的队列中发现了六个潜在的有害 DEAF1 变体,包括两个新的从头变体:在 SAND 结构域中的错义变体 c.634G > A p.Gly212Ser 和在 NLS 结构域中的缺失变体 c.913_915del p.Lys305del,以及 c.676C > T p.Arg226Trp、c.700T > A p.Trp234Arg、c.737G > C p.Arg246Thr 和 c.791A > C p.Gln264Pro。荧光素酶报告基因、免疫荧光染色和电泳迁移率变动分析显示,这些变体在 DEAF1 启动子处的转录抑制活性降低,并且与共识 DEAF1 DNA 结合序列的亲和力降低。此外,c.913_915del p.K305del 主要定位于细胞质中,并与野生型 DEAF1 相互作用。我们的研究结果表明,位于 SAND 或 NLS 结构域内的变体显著降低了 DEAF1 的转录调控活性,因此可能导致 DAND 患者的潜在临床问题。这些发现说明了通过 CES 识别的不确定意义的变体进行实验特征描述以评估其潜在临床意义和可能用于诊断的重要性。