School of Biomolecular and Biomedical Science, Conway Institute, University College Dublin, Dublin 4, Ireland.
Dis Model Mech. 2021 Jan 1;14(1). doi: 10.1242/dmm.046631. Epub 2021 Jan 26.
Ciliopathies are inherited disorders caused by defects in motile and non-motile (primary) cilia. Ciliopathy syndromes and associated gene variants are often highly pleiotropic and represent exemplars for interrogating genotype-phenotype correlations. Towards understanding disease mechanisms in the context of ciliopathy mutations, we have used a leading model organism for cilia and ciliopathy research, Caenorhabditis elegans, together with gene editing, to characterise two missense variants (P74S and G155S) in mksr-2/B9D2 associated with Joubert syndrome (JBTS). B9D2 functions within the Meckel syndrome (MKS) module at the ciliary base transition zone (TZ) compartment and regulates the molecular composition and sensory/signalling functions of the cilium. Quantitative assays of cilium/TZ structure and function, together with knock-in reporters, confirm that both variant alleles are pathogenic in worms. G155S causes a more severe overall phenotype and disrupts endogenous MKSR-2 organisation at the TZ. Recapitulation of the patient biallelic genotype shows that compound heterozygous worms phenocopy worms homozygous for P74S. The P74S and G155S alleles also reveal evidence of a very close functional association between the B9D2-associated B9 complex and MKS-2/TMEM216. Together, these data establish C. elegans as a model for interpreting JBTS mutations and provide further insight into MKS module organisation. This article has an associated First Person interview with the first author of the paper.
纤毛病是由运动和非运动(初级)纤毛缺陷引起的遗传性疾病。纤毛病综合征和相关基因变异通常具有高度的多效性,是研究基因型-表型相关性的典范。为了在纤毛病突变的背景下了解疾病机制,我们使用了秀丽隐杆线虫这一纤毛和纤毛病研究的主要模式生物,并结合基因编辑,对与杰特综合征(JBTS)相关的 mksr-2/B9D2 中的两个错义变体(P74S 和 G155S)进行了表征。B9D2 在纤毛基转换区(TZ)室的迈克尔综合征(MKS)模块内发挥作用,调节纤毛的分子组成和感觉/信号功能。纤毛/TZ 结构和功能的定量分析,以及敲入报告,证实了这两种变体等位基因在蠕虫中都是致病的。G155S 导致更严重的整体表型,并破坏了 TZ 处内源性 MKSR-2 的组织。患者双等位基因突变的复现表明,杂合子蠕虫表型类似于 P74S 纯合子蠕虫。P74S 和 G155S 等位基因还揭示了 B9D2 相关 B9 复合物和 MKS-2/TMEM216 之间非常密切的功能关联的证据。这些数据共同确立了秀丽隐杆线虫作为解释 JBTS 突变的模型,并为 MKS 模块组织提供了进一步的见解。本文附有该论文第一作者的第一人称采访。