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The AP-1 clathrin adaptor facilitates cilium formation and functions with RAB-8 in C. elegans ciliary membrane transport
Author(s) -
Oktay I. Kaplan,
Anahi Mollà-Herman,
Sebiha Cevik,
Rania Ghossoub,
Katarzyna Kida,
Yoshishige Kimura,
Paul M. Jenkins,
Jeffrey R. Martens,
Mitsutoshi Setou,
Alexandre Benmerah,
Oliver E. Blacque
Publication year - 2010
Publication title -
journal of cell science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.384
H-Index - 278
eISSN - 1477-9137
pISSN - 0021-9533
DOI - 10.1242/jcs.073908
Subject(s) - cilium , biology , microbiology and biotechnology , clathrin , rab , ciliopathies , clathrin adaptor proteins , signal transducing adaptor protein , microtubule , transmembrane protein , caenorhabditis elegans , dynein , transport protein , endosome , intraflagellar transport , endocytosis , flagellum , cell , receptor , signal transduction , gtpase , phenotype , genetics , gene , intracellular
Clathrin adaptor (AP) complexes facilitate membrane trafficking between subcellular compartments. One such compartment is the cilium, whose dysfunction underlies disorders classified as ciliopathies. Although AP-1mu subunit (UNC-101) is linked to cilium formation and targeting of transmembrane proteins (ODR-10) to nematode sensory cilia at distal dendrite tips, these functions remain poorly understood. Here, using Caenorhabditis elegans sensory neurons and mammalian cell culture models, we find conservation of AP-1 function in facilitating cilium morphology, positioning and orientation, and microtubule stability and acetylation. These defects appear to be independent of IFT, because AP-1-depleted cells possess normal IFT protein localisation and motility. By contrast, disruption of chc-1 (clathrin) or rab-8 phenocopies unc-101 worms, preventing ODR-10 vesicle formation and causing misrouting of ODR-10 to all plasma membrane destinations. Finally, ODR-10 colocalises with RAB-8 in cell soma and they cotranslocate along dendrites, whereas ODR-10 and UNC-101 signals do not overlap. Together, these data implicate conserved roles for metazoan AP-1 in facilitating cilium structure and function, and suggest cooperation with RAB-8 to coordinate distinct early steps in neuronal ciliary membrane sorting and trafficking.

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