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Publication : Activity-Dependent Phosphorylation by CaMKIIδ Alters the Ca(2+) Affinity of the Multi-C(2)-Domain Protein Otoferlin.

First Author  Meese S Year  2017
Journal  Front Synaptic Neurosci Volume  9
Pages  13 PubMed ID  29046633
Mgi Jnum  J:347295 Mgi Id  MGI:7622099
Doi  10.3389/fnsyn.2017.00013 Citation  Meese S, et al. (2017) Activity-Dependent Phosphorylation by CaMKIIdelta Alters the Ca(2+) Affinity of the Multi-C(2)-Domain Protein Otoferlin. Front Synaptic Neurosci 9:13
abstractText  Otoferlin is essential for fast Ca(2+)-triggered transmitter release from auditory inner hair cells (IHCs), playing key roles in synaptic vesicle release, replenishment and retrieval. Dysfunction of otoferlin results in profound prelingual deafness. Despite its crucial role in cochlear synaptic processes, mechanisms regulating otoferlin activity have not been studied to date. Here, we identified Ca(2+)/calmodulin-dependent serine/threonine kinase II delta (CaMKIIdelta) as an otoferlin binding partner by pull-downs from chicken utricles and reassured interaction by a co-immunoprecipitation with heterologously expressed proteins in HEK cells. We confirmed the expression of CaMKIIdelta in rodent IHCs by immunohistochemistry and real-time PCR. A proximity ligation assay indicates close proximity of the two proteins in rat IHCs, suggesting that otoferlin and CaMKIIdelta also interact in mammalian IHCs. In vitro phosphorylation of otoferlin by CaMKIIdelta revealed ten phosphorylation sites, five of which are located within C(2)-domains. Exchange of serines/threonines at phosphorylated sites into phosphomimetic aspartates reduces the Ca(2+) affinity of the recombinant C(2)F domain 10-fold, and increases the Ca(2+) affinity of the C(2)C domain. Concordantly, we show that phosphorylation of otoferlin and/or its interaction partners are enhanced upon hair cell depolarization and blocked by pharmacological CaMKII inhibition. We therefore propose that otoferlin activity is regulated by CaMKIIdelta in IHCs.
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