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   Active Transport and Diffusion Barriers Restrict Joubert Syndrome-Associated ARL13B/ARL-13 to an Inv-like Ciliary Membrane Subdomain  
   
نویسنده cevik s. ,sanders a.a.w.m. ,van wijk e. ,boldt k. ,clarke l. ,van reeuwijk j. ,hori y. ,horn n. ,hetterschijt l. ,wdowicz a. ,mullins a. ,kida k. ,kaplan o.i. ,van beersum s.e.c. ,man wu k. ,letteboer s.j.f. ,mans d.a. ,katada t. ,kontani k. ,ueffing m. ,roepman r. ,kremer h. ,blacque o.e.
منبع plos genetics - 2013 - دوره : 9 - شماره : 12
چکیده    Cilia are microtubule-based cell appendages,serving motility,chemo-/mechano-/photo- sensation,and developmental signaling functions. cilia are comprised of distinct structural and functional subregions including the basal body,transition zone (tz) and inversin (inv) compartments,and defects in this organelle are associated with an expanding spectrum of inherited disorders including bardet-biedl syndrome (bbs),meckel-gruber syndrome (mks),joubert syndrome (js) and nephronophthisis (nphp). despite major advances in understanding ciliary trafficking pathways such as intraflagellar transport (ift),how proteins are transported to subciliary membranes remains poorly understood. using caenorhabditis elegans and mammalian cells,we investigated the transport mechanisms underlying compartmentalization of js-associated arl13b/arl-13,which we previously found is restricted at proximal ciliary membranes. we now show evolutionary conservation of arl13b/arl-13 localisation to an inv-like subciliary membrane compartment,excluding the tz,in many c. elegans ciliated neurons and in a subset of mammalian ciliary subtypes. compartmentalisation of c. elegans arl-13 requires a c-terminal rvvp motif and membrane anchoring to prevent distal cilium and nuclear targeting,respectively. quantitative imaging in more than 20 mutants revealed differential contributions for ift and ciliopathy modules in defining the arl-13 compartment; ift-a/b,ift-dynein and bbs genes prevent arl-13 accumulation at periciliary membranes,whereas mks/nphp modules additionally inhibit arl-13 association with tz membranes. furthermore,in vivo frap analyses revealed distinct roles for ift and mks/nphp genes in regulating a tz barrier to arl-13 diffusion,and intraciliary arl-13 diffusion. finally,c. elegans arl-13 undergoes ift-like motility and quantitative protein complex analysis of human arl13b identified functional associations with ift-b complexes,mapped to ift46 and ift74 interactions. together,these findings reveal distinct requirements for sequence motifs,ift and ciliopathy modules in defining an arl-13 subciliary membrane compartment. we conclude that mks/nphp modules comprise a tz barrier to arl-13 diffusion,whereas ift genes predominantly facilitate arl-13 ciliary entry and/or retention via active transport mechanisms. © 2013 cevik et al.
آدرس school of biomolecular and biomedical science,university college dublin,belfield,dublin, Ireland, school of biomolecular and biomedical science,university college dublin,belfield,dublin, Ireland, department of otorhinolaryngology,radboud university medical center,nijmegen,netherlands,nijmegen centre for molecular life sciences,radboud university medical center,nijmegen,netherlands,donders institute for brain,cognition and behaviour,radboud university medical center,nijmegen, Netherlands, division of experimental ophthalmology and medical proteome center,center of ophthalmology,university of tübingen,tübingen, Germany, school of biomolecular and biomedical science,university college dublin,belfield,dublin, Ireland, nijmegen centre for molecular life sciences,radboud university medical center,nijmegen,netherlands,department of human genetics,radboud university medical center,nijmegen,netherlands,institute for genetic and metabolic disease,radboud university medical center,nijmegen, Netherlands, department of physiological chemistry,graduate school of pharmaceutical sciences,university of tokyo,bunkyo-ku,tokyo, Japan, division of experimental ophthalmology and medical proteome center,center of ophthalmology,university of tübingen,tübingen, Germany, department of human genetics,radboud university medical center,nijmegen, Netherlands, school of biomolecular and biomedical science,university college dublin,belfield,dublin, Ireland, school of biomolecular and biomedical science,university college dublin,belfield,dublin, Ireland, school of biomolecular and biomedical science,university college dublin,belfield,dublin, Ireland, school of biomolecular and biomedical science,university college dublin,belfield,dublin,ireland,berlin institute for medical systems biology (bimsb),max-delbrück-center for molecular medicine (mdc),berlin, Germany, nijmegen centre for molecular life sciences,radboud university medical center,nijmegen,netherlands,department of human genetics,radboud university medical center,nijmegen,netherlands,institute for genetic and metabolic disease,radboud university medical center,nijmegen, Netherlands, nijmegen centre for molecular life sciences,radboud university medical center,nijmegen,netherlands,department of human genetics,radboud university medical center,nijmegen,netherlands,institute for genetic and metabolic disease,radboud university medical center,nijmegen, Netherlands, nijmegen centre for molecular life sciences,radboud university medical center,nijmegen,netherlands,department of human genetics,radboud university medical center,nijmegen,netherlands,institute for genetic and metabolic disease,radboud university medical center,nijmegen, Netherlands, nijmegen centre for molecular life sciences,radboud university medical center,nijmegen,netherlands,department of human genetics,radboud university medical center,nijmegen,netherlands,institute for genetic and metabolic disease,radboud university medical center,nijmegen, Netherlands, department of physiological chemistry,graduate school of pharmaceutical sciences,university of tokyo,bunkyo-ku,tokyo, Japan, department of physiological chemistry,graduate school of pharmaceutical sciences,university of tokyo,bunkyo-ku,tokyo, Japan, division of experimental ophthalmology and medical proteome center,center of ophthalmology,university of tübingen,tübingen,germany,research unit protein science,helmholtz zentrum münchen,german research center for environmental health (gmbh),neuherberg, Germany, nijmegen centre for molecular life sciences,radboud university medical center,nijmegen,netherlands,department of human genetics,radboud university medical center,nijmegen,netherlands,institute for genetic and metabolic disease,radboud university medical center,nijmegen, Netherlands, department of otorhinolaryngology,radboud university medical center,nijmegen,netherlands,nijmegen centre for molecular life sciences,radboud university medical center,nijmegen,netherlands,donders institute for brain,cognition and behaviour,radboud university medical center,nijmegen,netherlands,department of human genetics,radboud university medical center,nijmegen, Netherlands, school of biomolecular and biomedical science,university college dublin,belfield,dublin, Ireland
 
     
   
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