The kinesin-4 protein KIF27 forms a cytoskeletal scaffold at the transition zone to promote motile cilia structural
成果类型:
Article
署名作者:
Park, Hyunji; Choi, Minjun; Zhang, Yu; Cheung, Helen Oi- Lam; Makino, Shigeru; Yoshikawa, Yoshiaki; Qi, Haoran; Liu, Zheng; Lan, Guocheng; Fu, Guoling; Wang, Qian; Guo, Shiny Shengzhen; Liu, Pengtao; Liu, Zhen; Ti, Shih - Chieh; Wang, Won - Jing; Li, Xiang David; Ni, Tao; Hui, Chi - Chung; He, Mu
署名单位:
University of Hong Kong; University of Toronto; Hospital for Sick Children (SickKids); University of Toronto; University of Hong Kong; Hong Kong University of Science & Technology; Max Planck Society; National Yang Ming Chiao Tung University; University of Hong Kong; The University of Hong Kong Shenzhen Institute of Research & Innovation; Shizuoka University
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2515392122
发表日期:
2025-12-23
页码:
e2515392122
关键词:
motile cilia
ciliopathy
kinesin
ciliary dyskinesia
mucociliary clearance
Mutation
disruption
dyskinesia
membrane
DYNAMICS
reveals
genes
phosphorylation
ciliogenesis
CENTRIOLE
摘要:
Motile cilia are eukaryotic organelles with essential chemo-and mechanosensing functions across evolution, from single cell organisms to humans. Motile cilia of the mammalian nervous, respiratory, and reproductive systems are characterized by unique motility proteins to generate fluid flow essential for transporting metabolites and removing mucus. The molecular mechanism underlying motile cilia assembly remains unknown. Here, we use high-resolution imaging, proteomics, in situ cryotomography, and single-molecule motility assays to identify mammalian KIF27, a motor protein of the Kinesin-4 family and homologue of the Hedgehog pathway regulator COS2/KIF7, as a key regulator of motile cilia assembly in vivo. We show that KIF27 promotes the integrity of the transition zone (TZ), a diffusion barrier situated at the cilium base. Loss of KIF27 results in specific and profound defects in axonemal structure and disrupts cilia beating, which collectively lead to organismal phenotypes that recapitulate primary ciliary dyskinesia (PCD). We show that the motile properties of KIF27 are dispensable for its function in motile cilia assembly. Instead, KIF27 acts as a microtubule scaffold to regulate the TZ architecture and enable correct ciliary incorporation of motility-generating proteins. Given that KIF27 orthologues exist in different evolutionarily lineages, we propose that the ancestral activity of KIF27/KIF7 kinesins was to form a microtubule-associated scaffold for protein-protein interactions pertinent to cilia formation and signaling. The transition-zone-associated KIF27 activities may represent a general building principle for the motile cilia assembly in diverse species and cell types.
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