MRC Human Genetics Unit, Institute of Genetics and Cancer, University of Edinburgh, Edinburgh, Scotland.
Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Nat Rev Genet. 2023 Jul;24(7):421-441. doi: 10.1038/s41576-023-00587-9. Epub 2023 Apr 18.
Primary cilia, antenna-like sensory organelles protruding from the surface of most vertebrate cell types, are essential for regulating signalling pathways during development and adult homeostasis. Mutations in genes affecting cilia cause an overlapping spectrum of >30 human diseases and syndromes, the ciliopathies. Given the immense structural and functional diversity of the mammalian cilia repertoire, there is a growing disconnect between patient genotype and associated phenotypes, with variable severity and expressivity characteristic of the ciliopathies as a group. Recent technological developments are rapidly advancing our understanding of the complex mechanisms that control biogenesis and function of primary cilia across a range of cell types and are starting to tackle this diversity. Here, we examine the structural and functional diversity of primary cilia, their dynamic regulation in different cellular and developmental contexts and their disruption in disease.
原发性纤毛,一种类似天线的感觉细胞器,从大多数脊椎动物细胞类型的表面伸出,对于调节发育和成年期内稳态期间的信号通路至关重要。影响纤毛的基因突变会导致超过 30 种人类疾病和综合征,即纤毛病。鉴于哺乳动物纤毛库的巨大结构和功能多样性,患者的基因型与其相关表型之间存在越来越大的脱节,纤毛病作为一个群体的特征是严重程度和表现度可变。最近的技术发展正在迅速提高我们对控制各种细胞类型中初级纤毛发生和功能的复杂机制的理解,并开始解决这种多样性。在这里,我们研究了原发性纤毛的结构和功能多样性、它们在不同细胞和发育环境中的动态调节以及它们在疾病中的破坏。