A doublecortin containing microtubule-associated protein is implicated in mechanotransduction in Drosophila sensory cilia

2010 | Zeitschriftenartikel. Eine Publikation mit Affiliation zur Georg-August-Universität Göttingen.

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​A doublecortin containing microtubule-associated protein is implicated in mechanotransduction in Drosophila sensory cilia​
Bechstedt, S.; Albert, J. T.; Kreil, D. P.; Mueller-Reichert, T.; Göpfert, M. C.   & Howard, J.​ (2010) 
Nature Communications1 art. 11​.​ DOI: https://doi.org/10.1038/ncomms1007 

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Autor(en)
Bechstedt, Susanne; Albert, Joerg T.; Kreil, D. P.; Mueller-Reichert, T.; Göpfert, Martin C. ; Howard, J.
Zusammenfassung
Mechanoreceptors are sensory cells that transduce mechanical stimuli into electrical signals and mediate the perception of sound, touch and acceleration. Ciliated mechanoreceptors possess an elaborate microtubule cytoskeleton that facilitates the coupling of external forces to the transduction apparatus. In a screen for genes preferentially expressed in Drosophila campaniform mechanoreceptors, we identified DCX-EMAP, a unique member of the EMAP family (echinoderm-microtubule-associated proteins) that contains two doublecortin domains. DCX-EMAP localizes to the tubular body in campaniform receptors and to the ciliary dilation in chordotonal mechanoreceptors in Johnston's organ, the fly's auditory organ. Adult flies carrying a piggyBac insertion in the DCX-EMAP gene are uncoordinated and deaf and display loss of mechanosensory transduction and amplification. Electron microscopy of mutant sensilla reveals loss of electron-dense materials within the microtubule cytoskeleton in the tubular body and ciliary dilation. Our results establish a catalogue of candidate genes for Drosophila mechanosensation and show that one candidate, DCX-EMAP, is likely to be required for mechanosensory transduction and amplification.
Erscheinungsdatum
2010
Status
published
Herausgeber
Nature Publishing Group
Zeitschrift
Nature Communications 
ISSN
2041-1723

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