INSERM U781, Hôpital Necker-Enfants Malades, 75015 Paris, France; Université Paris Descartes, 75006 Paris Sorbonne, France.
Am J Hum Genet. 2012 Aug 10;91(2):372-8. doi: 10.1016/j.ajhg.2012.06.017.
Orofaciodigital syndromes (OFDSs) consist of a group of heterogeneous disorders characterized by abnormalities in the oral cavity, face, and digits and associated phenotypic abnormalities that lead to the delineation of 13 OFDS subtypes. Here, by a combined approach of homozygozity mapping and exome ciliary sequencing, we identified truncating TCTN3 mutations as the cause of an extreme form of OFD associated with bone dysplasia, tibial defect, cystic kidneys, and brain anomalies (OFD IV, Mohr-Majewski syndrome). Analysis of 184 individuals with various ciliopathies (OFD, Meckel, Joubert, and short rib polydactyly syndromes) led us to identify four additional truncating TCTN3 mutations in unrelated fetal cases with overlapping Meckel and OFD IV syndromes and one homozygous missense mutation in a family with Joubert syndrome. By exploring roles of TCTN3 in human ciliary related functions, we found that TCTN3 is necessary for transduction of the sonic hedgehog (SHH) signaling pathway, as revealed by abnormal processing of GLI3 in patient cells. These results are consistent with the suggested role of its murine ortholog, which forms a complex at the ciliary transition zone with TCTN1 and TCTN2, both of which are also implicated in the transduction of SHH signaling. Overall, our data show the involvement of the transition zone protein TCTN3 in the regulation of the key SHH signaling pathway and that its disruption causes a severe form of ciliopathy, combining features of Meckel and OFD IV syndromes.
面口指(趾)综合征(OFDDS)由一组异质性疾病组成,其特征为口腔、面部和指(趾)异常,并伴有相关的表型异常,从而划分为 13 种 OFDDS 亚型。在此,我们通过纯合子作图和外显子组纤毛测序的联合方法,鉴定出截断性 TCTN3 突变是一种与骨发育不良、胫骨缺损、囊性肾脏和脑异常相关的极端形式 OFD(OFD IV,Mohr-Majewski 综合征)的原因。对 184 名患有各种纤毛病(OFD、Meckel、Joubert 和短肋多指综合征)的个体进行分析,我们在具有重叠 Meckel 和 OFD IV 综合征的非相关胎儿病例中发现了另外 4 个截断性 TCTN3 突变,在一个具有 Joubert 综合征的家族中发现了一个纯合错义突变。通过探索 TCTN3 在人类纤毛相关功能中的作用,我们发现 TCTN3 对于 sonic hedgehog(SHH)信号通路的转导是必需的,这是通过患者细胞中 GLI3 的异常加工揭示的。这些结果与它的鼠类同源物的作用一致,其与 TCTN1 和 TCTN2 在纤毛过渡区形成复合物,这两者均与 SHH 信号转导有关。总的来说,我们的数据表明过渡区蛋白 TCTN3 参与了关键的 SHH 信号通路的调节,其破坏导致了一种严重的纤毛病,结合了 Meckel 和 OFD IV 综合征的特征。