Haïm David, Roux Nathalie, Boutaud Lucile, Verlin Laure, Quélin Chloé, Moncler Candice, Bourgon Nicolas, Achaiia Amale, Roth Philippe, Marijon Pierre, Vanlieferinghen Sarah, Thomas Sophie, Attié-Bitach Tania
Consultations d'Échographies Prénatales, Centre Hospitalier de Roubaix, Roubaix, France.
Service de Médecine Génomique des Maladies Rares, Hôpital Necker-Enfants Malades, Assistance Publique-Hôpitaux de Paris (AP-HP), Paris, France.
Eur J Hum Genet. 2025 Mar;33(3):387-392. doi: 10.1038/s41431-025-01810-3. Epub 2025 Feb 15.
Ciliopathies are rare genetic diseases marked by considerable phenotypic heterogeneity and overlap. Among the key mechanisms of cilium biology, its compartmentalization is achieved through gating complexes and active transport such as intraflagellar transport (IFT). Among the IFT components, IFT27 plays a role in BBSome-mediated transport of ciliary membrane proteins required for ciliary signaling. While this gene was first linked to Bardet-Biedl syndrome, we next expanded its phenotypic spectrum to a fetal lethal ciliopathy. Here, we identified a second fetal case with short ribs, polydactyly, hypodysplastic kidneys, imperforate anus, and situs inversus. Genome sequencing identified novel biallelic variants in IFT27. Functional analysis of tissues from both fetal cases revealed that all the identified variants lead to mRNA decay. Immunohistochemistry on fetal kidney sections showed that those variants are associated with altered ciliogenesis. Overall, we showed that complete loss of IFT27 function leads to a severe phenotypic spectrum overlapping with short ribs polydactyly and Pallister-Hall syndromes. In addition, our results argue for a role of IFT27 in ciliogenesis in humans.
纤毛病是一类罕见的遗传性疾病,具有显著的表型异质性和重叠性。在纤毛生物学的关键机制中,其区室化是通过门控复合体和主动运输(如鞭毛内运输,IFT)实现的。在IFT组分中,IFT27在纤毛信号传导所需的纤毛膜蛋白的BBSome介导运输中发挥作用。虽然该基因最初与巴德-比德尔综合征相关,但我们接下来将其表型谱扩展到一种致死性胎儿纤毛病。在此,我们鉴定出第二例患有短肋、多指(趾)、肾发育不全、肛门闭锁和内脏反位的胎儿病例。全基因组测序在IFT27中鉴定出新型双等位基因变异。对两例胎儿病例的组织进行功能分析发现,所有鉴定出的变异均导致mRNA降解。对胎儿肾脏切片进行免疫组织化学分析表明,这些变异与纤毛发生改变有关。总体而言,我们表明IFT27功能的完全丧失会导致严重的表型谱,与短肋多指(趾)综合征和帕利斯特-霍尔综合征重叠。此外,我们的结果证明了IFT27在人类纤毛发生中的作用。