Children's Hospital of Eastern Ontario Research Institute, University of Ottawa, Ottawa, Ontario, Canada.
Am J Hum Genet. 2011 Dec 9;89(6):713-30. doi: 10.1016/j.ajhg.2011.11.005.
Joubert syndrome related disorders (JSRDs) have broad but variable phenotypic overlap with other ciliopathies. The molecular etiology of this overlap is unclear but probably arises from disrupting common functional module components within primary cilia. To identify additional module elements associated with JSRDs, we performed homozygosity mapping followed by next-generation sequencing (NGS) and uncovered mutations in TMEM237 (previously known as ALS2CR4). We show that loss of the mammalian TMEM237, which localizes to the ciliary transition zone (TZ), results in defective ciliogenesis and deregulation of Wnt signaling. Furthermore, disruption of Danio rerio (zebrafish) tmem237 expression produces gastrulation defects consistent with ciliary dysfunction, and Caenorhabditis elegans jbts-14 genetically interacts with nphp-4, encoding another TZ protein, to control basal body-TZ anchoring to the membrane and ciliogenesis. Both mammalian and C. elegans TMEM237/JBTS-14 require RPGRIP1L/MKS5 for proper TZ localization, and we demonstrate additional functional interactions between C. elegans JBTS-14 and MKS-2/TMEM216, MKSR-1/B9D1, and MKSR-2/B9D2. Collectively, our findings integrate TMEM237/JBTS-14 in a complex interaction network of TZ-associated proteins and reveal a growing contribution of a TZ functional module to the spectrum of ciliopathy phenotypes.
巨脑回-基底节-视网膜-多指(趾)综合征相关疾病(JSRDs)与其他纤毛病具有广泛但可变的表型重叠。这种重叠的分子病因尚不清楚,但可能是由于初级纤毛内常见功能模块成分的破坏引起的。为了确定与 JSRDs 相关的其他模块元素,我们进行了纯合性作图,随后进行了下一代测序(NGS),并发现了 TMEM237(以前称为 ALS2CR4)的突变。我们表明,哺乳动物 TMEM237 的缺失(定位于纤毛过渡区(TZ))导致纤毛发生缺陷和 Wnt 信号转导失调。此外,破坏 Danio rerio(斑马鱼)tmem237 的表达会导致胚层化缺陷,与纤毛功能障碍一致,并且 Caenorhabditis elegans jbts-14 与编码另一个 TZ 蛋白的 nphp-4 遗传相互作用,以控制基底体-TZ 锚定到膜和纤毛发生。哺乳动物和 C. elegans TMEM237/JBTS-14 都需要 RPGRIP1L/MKS5 来正确定位 TZ,并且我们证明了 C. elegans JBTS-14 与 MKS-2/TMEM216、MKSR-1/B9D1 和 MKSR-2/B9D2 之间存在额外的功能相互作用。总的来说,我们的研究结果将 TMEM237/JBTS-14 整合到 TZ 相关蛋白的复杂相互作用网络中,并揭示了 TZ 功能模块对纤毛病表型谱的日益贡献。
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