RRC ID 3422
Author Evans JE, Snow JJ, Gunnarson AL, Ou G, Stahlberg H, McDonald KL, Scholey JM.
Title Functional modulation of IFT kinesins extends the sensory repertoire of ciliated neurons in Caenorhabditis elegans.
Journal J Cell Biol
Abstract The diversity of sensory cilia on Caenorhabditis elegans neurons allows the animal to detect a variety of sensory stimuli. Sensory cilia are assembled by intraflagellar transport (IFT) kinesins, which transport ciliary precursors, bound to IFT particles, along the ciliary axoneme for incorporation into ciliary structures. Using fluorescence microscopy of living animals and serial section electron microscopy of high pressure-frozen, freeze-substituted IFT motor mutants, we found that two IFT kinesins, homodimeric OSM-3 kinesin and heterotrimeric kinesin II, function in a partially redundant manner to build full-length amphid channel cilia but are completely redundant for building full-length amphid wing (AWC) cilia. This difference reflects cilia-specific differences in OSM-3 activity, which serves to extend distal singlets in channel cilia but not in AWC cilia, which lack such singlets. Moreover, AWC-specific chemotaxis assays reveal novel sensory functions for kinesin II in these wing cilia. We propose that kinesin II is a "canonical" IFT motor, whereas OSM-3 is an "accessory" IFT motor, and that subtle changes in the deployment or actions of these IFT kinesins can contribute to differences in cilia morphology, cilia function, and sensory perception.
Volume 172(5)
Pages 663-9
Published 2006-2-27
DOI 10.1083/jcb.200509115
PII jcb.200509115
PMID 16492809
PMC PMC2063699
MeSH Animals Biological Transport Caenorhabditis elegans / physiology* Caenorhabditis elegans / ultrastructure Caenorhabditis elegans Proteins / physiology* Cilia / physiology Cilia / ultrastructure Crosses, Genetic Kinesins / physiology* Microscopy, Fluorescence Neurons, Afferent / physiology* Neurons, Afferent / ultrastructure
IF 8.811
Times Cited 93
WOS Category CELL BIOLOGY
Resource
C.elegans tm324