| Literature DB >> 26446278 |
SangYong Jung1, Tanja Maritzen2, Carolin Wichmann3, Zhizi Jing4, Andreas Neef5, Natalia H Revelo6, Hanan Al-Moyed3, Sandra Meese7, Sonja M Wojcik8, Iliana Panou9, Haydar Bulut10, Peter Schu11, Ralf Ficner7, Ellen Reisinger12, Silvio O Rizzoli13, Jakob Neef1, Nicola Strenzke4, Volker Haucke14, Tobias Moser15.
Abstract
Active zones (AZs) of inner hair cells (IHCs) indefatigably release hundreds of vesicles per second, requiring each release site to reload vesicles at tens per second. Here, we report that the endocytic adaptor protein 2μ (AP-2μ) is required for release site replenishment and hearing. We show that hair cell-specific disruption of AP-2μ slows IHC exocytosis immediately after fusion of the readily releasable pool of vesicles, despite normal abundance of membrane-proximal vesicles and intact endocytic membrane retrieval. Sound-driven postsynaptic spiking was reduced in a use-dependent manner, and the altered interspike interval statistics suggested a slowed reloading of release sites. Sustained strong stimulation led to accumulation of endosome-like vacuoles, fewer clathrin-coated endocytic intermediates, and vesicle depletion of the membrane-distal synaptic ribbon in AP-2μ-deficient IHCs, indicating a further role of AP-2μ in clathrin-dependent vesicle reformation on a timescale of many seconds. Finally, we show that AP-2 sorts its IHC-cargo otoferlin. We propose that binding of AP-2 to otoferlin facilitates replenishment of release sites, for example, via speeding AZ clearance of exocytosed material, in addition to a role of AP-2 in synaptic vesicle reformation.Entities:
Keywords: active zone; endocytosis; release site clearance; synaptic ribbon; vesicle reformation
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Year: 2015 PMID: 26446278 PMCID: PMC4641533 DOI: 10.15252/embj.201591885
Source DB: PubMed Journal: EMBO J ISSN: 0261-4189 Impact factor: 11.598