Department of Medicine IV, Faculty of Medicine, Medical Center-University of Freiburg, Freiburg, Germany.
Medizinische Genetik Mainz, Limbach Genetics, Mainz, Germany.
Hum Mol Genet. 2022 Jul 21;31(14):2295-2306. doi: 10.1093/hmg/ddac027.
Mutations in genes that lead to dysfunctional cilia can cause a broad spectrum of human disease phenotypes referred to as ciliopathies. Many ciliopathy-associated proteins are localized to the evolutionary conserved ciliary transition zone (TZ) subdomain. We identified biallelic missense and nonsense mutations in the gene encoding the transmembrane protein TMEM218 in unrelated patients with features related to Bardet-Biedl, Joubert and Meckel-Gruber syndrome (MKS) and characterized TMEM218 as a major component of the ciliary TZ module. Co-immunoprecipitation assays resulted in the physical interaction of TMEM218 with the MKS module member TMEM67/Meckelin that was significantly reduced by the TMEM218 missense change harboured by one of our patients. We could further validate its pathogenicity by functional in vivo analysis in zebrafish (Danio rerio) as a well-established vertebrate model for ciliopathies. Notably, ciliopathy-related phenotypes were most prominent by genetic interactions with the NPHP module component Nphp4. Conclusively, we describe TMEM218 as a new disease gene for patients with a wide spectrum of syndromic ciliopathy phenotypes and provide evidence for a synergistic interaction of TMEM218 and the NPHP module crucial for proper ciliary function.
导致纤毛功能障碍的基因突变可导致广泛的人类疾病表型,称为纤毛病。许多纤毛病相关蛋白定位于进化保守的纤毛过渡区(TZ)亚域。我们在与 Bardet-Biedl、Joubert 和 Meckel-Gruber 综合征(MKS)相关的特征无关的患者中发现了编码跨膜蛋白 TMEM218 的基因中的双等位错义突变和无义突变,并将 TMEM218 鉴定为纤毛 TZ 模块的主要组成部分。共免疫沉淀测定导致 TMEM218 与 MKS 模块成员 TMEM67/Meckelin 的物理相互作用,而我们的一位患者所携带的 TMEM218 错义变化显著降低了这种相互作用。我们可以通过斑马鱼(Danio rerio)体内功能分析进一步验证其致病性,斑马鱼是纤毛病的一种成熟的脊椎动物模型。值得注意的是,纤毛病相关表型通过与 NPHP 模块成分 Nphp4 的遗传相互作用最为明显。总之,我们将 TMEM218 描述为具有广泛综合征性纤毛病表型的患者的新疾病基因,并提供了 TMEM218 与 NPHP 模块协同相互作用对正常纤毛功能至关重要的证据。