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    The TLR signaling adaptor TRAM interacts with TRAF6 to mediate activation of the inflammatory response by TLR4 (Pre-published version)

    Citation

    Verstak, B. et al. (2014) The TLR signaling adaptor TRAM interacts with TRAF6 to mediate activation of the inflammatory response by TLR4. J. Leukoc. Biol. 96(3): 427-36.
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    Date
    2014
    Author
    Stack, Julianne
    Verstak, Brett
    Ve, Thomas
    Mangan, Matthew
    Hjerrild, Kathryn
    Jeon, Jannah
    Stahl, Rainer
    Latz, Eicke
    Gay, Nick
    Kobe, Bostjan
    Bowie, Andrew G.
    Mansell, Ashley
    Peer Reviewed
    Yes
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    Verstak, B. et al. (2014) The TLR signaling adaptor TRAM interacts with TRAF6 to mediate activation of the inflammatory response by TLR4. J. Leukoc. Biol. 96(3): 427-36.
    Abstract
    TLRs act as sentinels in professional immune cells to detect and initiate the innate immune response to pathogen challenge. TLR4 is a widely expressed TLR, responsible for initiating potent immune responses to LPS. TRAM acts to bridge TLR4 with TRIF, orchestrating the inflammatory response to pathogen challenge. We have identified a putative TRAF6-binding motif in TRAM that could mediate a novel signaling function for TRAM in TLR4 signaling. TRAM and TRAF6 association was confirmed by immunoprecipitation of endogenous, ectopically expressed and recombinant proteins, which was ablated upon mutation of a key Glu residue in TRAM (TRAM E183A). TRAF6 and TRAM were observed colocalizing using confocal microscopy following ectopic expression in cells and the ability of TRAM and TRAM E183A to activate luciferase-linked reporter assays was determined in HEK293 and TRAF6- deficient cells. Importantly, TRAM-deficient macrophages reconstituted with TRAM E183A display significantly reduced inflammatory TNF-a, IL-6, and RANTES protein production compared with WT TRAM. These results demonstrate a novel role for TRAM in TLR4-mediated signaling in regulating inflammatory responses via its interaction with TRAF6, distinct from its role as a bridging adaptor between TLR4 and TRIF.
    Keywords
    Toll-like receptors
    Innate immunity
    Inflammation
    Signal transduction
    Language (ISO 639-3)
    eng
    Publisher
    John Wiley & Sons
    License URI
    https://doi.org/10.1189/jlb.2A0913-487R
    DOI
    10.1189/jlb.2A0913-487R
    URI
    http://hdl.handle.net/10395/2686
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    • Research & Graduate School (Peer-reviewed publications)

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