Literature DB >> 23613530

Harmonin enhances voltage-dependent facilitation of Cav1.3 channels and synchronous exocytosis in mouse inner hair cells.

Frederick D Gregory1, Tina Pangrsic, Irina E Calin-Jageman, Tobias Moser, Amy Lee.   

Abstract

Cav1.3 channels mediate Ca(2+) influx that triggers exocytosis of glutamate at cochlear inner hair cell (IHC) synapses. Harmonin is a PDZ-domain-containing protein that interacts with the C-terminus of the Cav1.3 α1 subunit (α11.3) and controls cell surface Cav1.3 levels by promoting ubiquitin-dependent proteosomal degradation. However, PDZ-domain-containing proteins have diverse functions and regulate other Cav1.3 properties, which could collectively influence presynaptic transmitter release. Here, we report that harmonin binding to the α11.3 distal C-terminus (dCT) enhances voltage-dependent facilitation (VDF) of Cav1.3 currents both in transfected HEK293T cells and in mouse inner hair cells. In HEK293T cells, this effect of harmonin was greater for Cav1.3 channels containing the auxiliary Cav β1 than with the β2 auxiliary subunit. Cav1.3 channels lacking the α11.3 dCT were insensitive to harmonin modulation. Moreover, the 'deaf-circler' dfcr mutant form of harmonin, which does not interact with the α11.3 dCT, did not promote VDF. In mature IHCs from mice expressing the dfcr harmonin mutant, Cav1.3 VDF was less than in control IHCs. This difference was not observed between control and dfcr IHCs prior to hearing onset. Membrane capacitance recordings from dfcr IHCs revealed a role for harmonin in synchronous exocytosis and in increasing the efficiency of Ca(2+) influx for triggering exocytosis. Collectively, our results indicate a multifaceted presynaptic role of harmonin in IHCs in regulating Cav1.3 Ca(2+) channels and exocytosis.

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Year:  2013        PMID: 23613530      PMCID: PMC3717226          DOI: 10.1113/jphysiol.2013.254367

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  56 in total

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Authors:  P Safa; J Boulter; T G Hales
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3.  Cav1.3 (alpha1D) Ca2+ currents in neonatal outer hair cells of mice.

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Journal:  J Physiol       Date:  2003-09-26       Impact factor: 5.182

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Journal:  J Neurosci       Date:  2010-04-14       Impact factor: 6.167

6.  G-protein-coupled receptor modulation of striatal CaV1.3 L-type Ca2+ channels is dependent on a Shank-binding domain.

Authors:  Patricia A Olson; Tatiana Tkatch; Salvador Hernandez-Lopez; Sasha Ulrich; Ema Ilijic; Enrico Mugnaini; Hua Zhang; Ilya Bezprozvanny; D James Surmeier
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Authors:  Kenneth R Johnson; Leona H Gagnon; Lisa S Webb; Luanne L Peters; Norman L Hawes; Bo Chang; Qing Yin Zheng
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9.  Reduced phosphatidylinositol 4,5-bisphosphate synthesis impairs inner ear Ca2+ signaling and high-frequency hearing acquisition.

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Journal:  Proc Natl Acad Sci U S A       Date:  2012-08-13       Impact factor: 11.205

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Journal:  J Physiol       Date:  2012-10-08       Impact factor: 5.182

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  20 in total

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Journal:  Physiol Genomics       Date:  2013-09-10       Impact factor: 3.107

Review 2.  Voltage-Gated Calcium Channels: Key Players in Sensory Coding in the Retina and the Inner Ear.

Authors:  Tina Pangrsic; Joshua H Singer; Alexandra Koschak
Journal:  Physiol Rev       Date:  2018-10-01       Impact factor: 37.312

3.  Intrinsic planar polarity mechanisms influence the position-dependent regulation of synapse properties in inner hair cells.

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5.  Densin-180 Controls the Trafficking and Signaling of L-Type Voltage-Gated Cav1.2 Ca2+ Channels at Excitatory Synapses.

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6.  Single-Channel Resolution of the Interaction between C-Terminal CaV1.3 Isoforms and Calmodulin.

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Review 7.  Emerging Gene Therapies for Genetic Hearing Loss.

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8.  Role of a conserved glutamine in the function of voltage-gated Ca2+ channels revealed by a mutation in human CACNA1D.

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Journal:  J Biol Chem       Date:  2018-07-27       Impact factor: 5.157

Review 9.  Usher syndrome: Hearing loss, retinal degeneration and associated abnormalities.

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Journal:  Biochim Biophys Acta       Date:  2014-12-04

10.  Ca2+-binding protein 2 inhibits Ca2+-channel inactivation in mouse inner hair cells.

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Journal:  Proc Natl Acad Sci U S A       Date:  2017-02-09       Impact factor: 11.205

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