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Structure and function of otoferlin, a synaptic protein of sensory hair cells essential for hearing
by
Feldmann, Laura
, Grubmüller, Helmut
, Mutschall, Sophia
, Pape, Constantin
, Preobraschenski, Julia
, Kibedi Szabo, Csaba Zoltan
, Pena, Vladimir
, Evdokimova, Natalia
, Wichmann, Carolin
, Trebilcock, Abigail
, Leidner, Florian
, Benseler, Fritz
, Strenzke, Nicola
, Brose, Nils
, Chen, Han
, Esch, Klara
, Moser, Tobias
, Cretu, Constantin
, Babai, Norbert
in
Neuroscience
2025
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Structure and function of otoferlin, a synaptic protein of sensory hair cells essential for hearing
by
Feldmann, Laura
, Grubmüller, Helmut
, Mutschall, Sophia
, Pape, Constantin
, Preobraschenski, Julia
, Kibedi Szabo, Csaba Zoltan
, Pena, Vladimir
, Evdokimova, Natalia
, Wichmann, Carolin
, Trebilcock, Abigail
, Leidner, Florian
, Benseler, Fritz
, Strenzke, Nicola
, Brose, Nils
, Chen, Han
, Esch, Klara
, Moser, Tobias
, Cretu, Constantin
, Babai, Norbert
in
Neuroscience
2025
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Structure and function of otoferlin, a synaptic protein of sensory hair cells essential for hearing
by
Feldmann, Laura
, Grubmüller, Helmut
, Mutschall, Sophia
, Pape, Constantin
, Preobraschenski, Julia
, Kibedi Szabo, Csaba Zoltan
, Pena, Vladimir
, Evdokimova, Natalia
, Wichmann, Carolin
, Trebilcock, Abigail
, Leidner, Florian
, Benseler, Fritz
, Strenzke, Nicola
, Brose, Nils
, Chen, Han
, Esch, Klara
, Moser, Tobias
, Cretu, Constantin
, Babai, Norbert
in
Neuroscience
2025
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Structure and function of otoferlin, a synaptic protein of sensory hair cells essential for hearing
Paper
Structure and function of otoferlin, a synaptic protein of sensory hair cells essential for hearing
2025
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Overview
Our sense of hearing relies upon speedy synaptic transmission of sound information from cochlear inner hair cells (IHCs) to spiral ganglion neurons (SGNs). To accomplish this, IHCs employ a sophisticated presynaptic machinery including the multi-C2-domain protein otoferlin which is affected by human deafness mutations. Otoferlin is essential for IHC-exocytosis but how it binds Ca2+ and the target membrane to serve synaptic vesicle (SV) tethering, docking and fusion remained unclear. Here, we obtained cryo-electron-microscopy structures of Ca2+-bound otoferlin and employed molecular dynamics simulations of membrane binding. We show that membrane binding involves C2B-C2G-domains and repositions C2F- and C2G-domains. Progressive disruption of Ca2+-binding by the C2D-domain in mice increasingly altered synaptic sound encoding and eliminated the Ca2+-cooperativity of SV-exocytosis, indicating that this Ca2+-cooperativity reflects binding of several Ca2+-ions to otoferlin. Together, our findings elucidate molecular mechanisms underlying otoferlin-mediated SV-docking and support a role of otoferlin as Ca2+-sensor of SV-fusion in IHCs.
Publisher
Cold Spring Harbor Laboratory
Subject
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