Probing the Functional Equivalence of Otoferlin and Synaptotagmin 1 in Exocytosis

2011 | journal article; research paper. A publication with affiliation to the University of Göttingen.

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​Probing the Functional Equivalence of Otoferlin and Synaptotagmin 1 in Exocytosis​
Reisinger, E. ; Bresee, C.; Neef, J. ; Nair, R.; Reuter, K.; Bulankina, A. & Nouvian, R.  et al.​ (2011) 
The Journal of Neuroscience31(13) pp. 4886​-4895​.​ DOI: https://doi.org/10.1523/JNEUROSCI.5122-10.2011 

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Authors
Reisinger, Ellen ; Bresee, Chris; Neef, Jakob ; Nair, Ramya; Reuter, Kirsten; Bulankina, Anna; Nouvian, Régis ; Koch, Manuel; Bückers, Johanna ; Kastrup, Lars ; Roux, Isabelle; Petit, Christine; Hell, Stefan W. ; Brose, Nils ; Rhee, Jeong-Seop ; Kügler, Sebastian ; Brigande, John V.; Moser, Tobias 
Abstract
Cochlear inner hair cells (IHCs) use Ca(2+)-dependent exocytosis of glutamate to signal sound information. Otoferlin (Otof), a C(2) domain protein essential for IHC exocytosis and hearing, may serve as a Ca(2+) sensor in vesicle fusion in IHCs that seem to lack the classical neuronal Ca(2+) sensors synaptotagmin 1 (Syt1) and Syt2. Support for the Ca(2+) sensor of fusion hypothesis for otoferlin function comes from biochemical experiments, but additional roles in late exocytosis upstream of fusion have been indicated by physiological studies. Here, we tested the functional equivalence of otoferlin and Syt1 in three neurosecretory model systems: auditory IHCs, adrenal chromaffin cells, and hippocampal neurons. Long- term and short- term ectopic expression of Syt1 in IHCs of Otof(-/-) mice by viral gene transfer in the embryonic inner ear and organotypic culture failed to rescue their Ca(2+) influx- triggered exocytosis. Conversely, virally mediated overexpression of otoferlin did not restore phasic exocytosis in Syt1- deficient chromaffin cells or neurons but enhanced asynchronous release in the latter. We further tested exocytosis in Otof(-/-) hippocampal neurons and in Syt1(-/-) IHCs but found no deficits in vesicle fusion. Expression analysis of different synaptotagminisoforms indicated that Syt1andSyt2 are absentfrommatureIHCs. Ourdata argue againstasimple functional equivalence of the two C(2) domain proteins in exocytosis of IHC ribbon synapses, chromaffin cells, and hippocampal synapses.
Issue Date
2011
Journal
The Journal of Neuroscience 
ISSN
0270-6474
Language
English

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