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Research article

Dopamine D1A directly interacts with otoferlin synaptic pathway proteins: Ca2+ and phosphorylation underlie an NSF-to-AP2mu1 molecular switch

Dakshnamurthy Selvakumar, Marian J. Drescher, Nathan A. Deckard, Neeliyath A. Ramakrishnan, Barbara J. Morley, Dennis G. Drescher
Biochemical Journal Dec 22, 2016, 474 (1) 79-104; DOI: 10.1042/BCJ20160690
Dakshnamurthy Selvakumar
Laboratory of Bio-otology, Department of Otolaryngology, Wayne State University School of Medicine, Detroit, MI 48201, U.S.A.
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Marian J. Drescher
Laboratory of Bio-otology, Department of Otolaryngology, Wayne State University School of Medicine, Detroit, MI 48201, U.S.A.
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  • For correspondence: mdresche@med.wayne.edu
Nathan A. Deckard
Laboratory of Bio-otology, Department of Otolaryngology, Wayne State University School of Medicine, Detroit, MI 48201, U.S.A.
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Neeliyath A. Ramakrishnan
Laboratory of Bio-otology, Department of Otolaryngology, Wayne State University School of Medicine, Detroit, MI 48201, U.S.A.
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Barbara J. Morley
Boys Town National Research Hospital, Omaha, Nebraska 68131, U.S.A.
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Dennis G. Drescher
Laboratory of Bio-otology, Department of Otolaryngology, Wayne State University School of Medicine, Detroit, MI 48201, U.S.A.Department of Biochemistry and Molecular Biology, Wayne State University School of Medicine, Detroit, MI 48201, U.S.A.
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Abstract

Dopamine receptors regulate exocytosis via protein–protein interactions (PPIs) as well as via adenylyl cyclase transduction pathways. Evidence has been obtained for PPIs in inner ear hair cells coupling D1A to soluble N-ethylmaleimide-sensitive factor (NSF) attachment protein receptor (SNARE)-related proteins snapin, otoferlin, N-ethylmaleimide-sensitive factor (NSF), and adaptor-related protein complex 2, mu 1 (AP2mu1), dependent on [Ca2+] and phosphorylation. Specifically, the carboxy terminus of dopamine D1A was found to directly bind t-SNARE-associated protein snapin in teleost and mammalian hair cell models by yeast two-hybrid (Y2H) and pull-down assays, and snapin directly interacts with hair cell calcium-sensor otoferlin. Surface plasmon resonance (SPR) analysis, competitive pull-downs, and co-immunoprecipitation indicated that these interactions were promoted by Ca2+ and occur together. D1A was also found to separately interact with NSF, but with an inverse dependence on Ca2+. Evidence was obtained, for the first time, that otoferlin domains C2A, C2B, C2D, and C2F interact with NSF and AP2mu1, whereas C2C or C2E do not bind to either protein, representing binding characteristics consistent with respective inclusion or omission in individual C2 domains of the tyrosine motif YXXΦ. In competitive pull-down assays, as predicted by KD values from SPR (+Ca2+), C2F pulled down primarily NSF as opposed to AP2mu1. Phosphorylation of AP2mu1 gave rise to a reversal: an increase in binding by C2F to phosphorylated AP2mu1 was accompanied by a decrease in binding to NSF, consistent with a molecular switch for otoferlin from membrane fusion (NSF) to endocytosis (AP2mu1). An increase in phosphorylated AP2mu1 at the base of the cochlear inner hair cell was the observed response elicited by a dopamine D1A agonist, as predicted.

  • AP2mu1
  • dopamine D1A
  • hair cell
  • NSF
  • otoferlin synaptic complex
  • surface plasmon resonance
  • Abbreviations

    AAK1,
    adaptor-associated kinase 1;
    AC,
    adenylyl cyclase;
    aa,
    amino acid;
    AP2,
    adapter protein-2;
    AP2mu1,
    adaptor-related protein complex 2, mu 1;
    CNGA3,
    cyclic nucleotide-gated channel alpha 3;
    CtBP2,
    C-terminal-binding protein 2;
    DAB,
    3,3′-diaminobenzidine;
    DAT,
    dopamine active transporter;
    DRIPs,
    dopamine receptor-interacting proteins;
    GST,
    glutathione S-transferase;
    IHC,
    inner hair cell;
    IPTG,
    isopropyl-β-d-1-thiogalactopyranoside;
    NSF,
    N-ethylmaleimide-sensitive factor;
    OAEs,
    otoacoustic emissions;
    OC,
    organ of Corti;
    OHC,
    outer hair cell;
    pAP2mu1,
    phosphorylated form of AP2mu1;
    PBST,
    phosphate-buffered saline containing 0.1% Tween;
    PPI,
    protein–protein interaction;
    RT-PCR,
    reverse transcription-polymerase chain reaction;
    RU,
    response unit;
    SNARE,
    soluble NSF attachment protein receptor;
    SPR,
    surface plasmon resonance;
    thc,
    trout saccular hair cell;
    Y2H,
    yeast two-hybrid.
    • © 2017 The Author(s); published by Portland Press Limited on behalf of the Biochemical Society
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    January 2017

    Volume: 474 Issue: 1

    Biochemical Journal: 474 (1)
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    Dopamine D1A directly interacts with otoferlin synaptic pathway proteins: Ca2+ and phosphorylation underlie an NSF-to-AP2mu1 molecular switch
    Dakshnamurthy Selvakumar, Marian J. Drescher, Nathan A. Deckard, Neeliyath A. Ramakrishnan, Barbara J. Morley, Dennis G. Drescher
    Biochemical Journal Jan 2017, 474 (1) 79-104; DOI: 10.1042/BCJ20160690
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    Dopamine D1A directly interacts with otoferlin synaptic pathway proteins: Ca2+ and phosphorylation underlie an NSF-to-AP2mu1 molecular switch
    Dakshnamurthy Selvakumar, Marian J. Drescher, Nathan A. Deckard, Neeliyath A. Ramakrishnan, Barbara J. Morley, Dennis G. Drescher
    Biochemical Journal Jan 2017, 474 (1) 79-104; DOI: 10.1042/BCJ20160690

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    Keywords

    AP2mu1
    dopamine D1A
    hair cell
    NSF
    otoferlin synaptic complex
    surface plasmon resonance

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