Department of Genetics, King Faisal Specialist Hospital and Research Center, Riyadh, Saudi Arabia.
Am J Hum Genet. 2013 Sep 5;93(3):555-60. doi: 10.1016/j.ajhg.2013.07.012. Epub 2013 Aug 22.
Orofaciodigital syndrome (OFD) is a recognized clinical entity with core defining features in the mouth, face, and digits, in addition to various other features that have been proposed to define distinct subtypes. The three genes linked to OFD-OFD1, TMEM216, and TCTN3-play a role in ciliary biology, a finding consistent with the clinical overlap between OFD and other ciliopathies. Most autosomal-recessive cases of OFD, however, remain undefined genetically. In two multiplex consanguineous Arab families affected by OFD, we identified a tight linkage interval in chromosomal region 1q32.1. Exome sequencing revealed a different homozygous variant in DDX59 in each of the two families, and at least one of the two variants was accompanied by marked reduction in the level of DDX59. DDX59 encodes a relatively uncharacterized member of the DEAD-box-containing RNA helicase family of proteins, which are known to play a critical role in all aspects of RNA metabolism. We show that Ddx59 is highly enriched in its expression in the developing murine palate and limb buds. At the cellular level, we show that DDX59 is localized dynamically to the nucleus and the cytoplasm. Consistent with the absence of DDX59 representation in ciliome databases and our demonstration of its lack of ciliary localization, ciliogenesis appears to be intact in mutant fibroblasts but ciliary signaling appears to be impaired. Our data strongly implicate this RNA helicase family member in the pathogenesis of OFD, although the causal mechanism remains unclear.
口面指(趾)综合征(OFD)是一种已被认可的临床实体,其特征主要表现在口腔、面部和指(趾),此外还存在其他一些特征,这些特征被提出用于定义不同的亚型。与 OFD 相关的三个基因(OFD1、TMEM216 和 TCTN3)在纤毛生物学中发挥作用,这一发现与 OFD 与其他纤毛病的临床重叠一致。然而,大多数常染色体隐性遗传的 OFD 病例在遗传上仍然无法确定。在两个受 OFD 影响的阿拉伯多代近亲家庭中,我们在染色体 1q32.1 区域发现了一个紧密连锁的区间。外显子组测序在两个家庭中的每个家庭中都发现了 DDX59 的不同纯合变体,并且至少有两个变体之一伴随着 DDX59 水平的显著降低。DDX59 编码一个相对未被表征的 DEAD-box 含有 RNA 解旋酶家族蛋白的成员,该家族蛋白已知在 RNA 代谢的所有方面都发挥着关键作用。我们表明,DDX59 在发育中的鼠腭和肢芽中高度富集表达。在细胞水平上,我们表明 DDX59 动态定位于细胞核和细胞质。与 ciliaome 数据库中缺乏 DDX59 的表示以及我们证明其缺乏纤毛定位一致,突变型成纤维细胞中的纤毛发生似乎完整,但纤毛信号似乎受损。我们的数据强烈表明该 RNA 解旋酶家族成员与 OFD 的发病机制有关,尽管因果机制尚不清楚。