Selected article for: "activation trigger and IFN production"

Author: van Zuylen, Wendy J.; Doyon, Priscilla; Clément, Jean-François; Khan, Kashif Aziz; D'Ambrosio, Lisa M.; Dô, Florence; St-Amant-Verret, Myriam; Wissanji, Tasheen; Emery, Gregory; Gingras, Anne-Claude; Meloche, Sylvain; Servant, Marc J.
Title: Proteomic Profiling of the TRAF3 Interactome Network Reveals a New Role for the ER-to-Golgi Transport Compartments in Innate Immunity
  • Document date: 2012_7_5
  • ID: 1m5dbwjv_28
    Snippet: Gene disruption strategies have revealed that TRAF3 plays a major role in the type I IFN response [12, 13] . However, how TRAF3 assembles into functional signalling complexes is still not fully understood. In general, TRAF3 is thought to reside in the cytosol and translocate to surface membrane receptors upon engagement of CD40 or other TNFR family members [54] . Akin to its role in MyD88-dependent cytokine production and TRIFdependent type I IFN.....
    Document: Gene disruption strategies have revealed that TRAF3 plays a major role in the type I IFN response [12, 13] . However, how TRAF3 assembles into functional signalling complexes is still not fully understood. In general, TRAF3 is thought to reside in the cytosol and translocate to surface membrane receptors upon engagement of CD40 or other TNFR family members [54] . Akin to its role in MyD88-dependent cytokine production and TRIFdependent type I IFN production [55] , TRAF3 conceivably also has the capacity to associate with endosomal compartments enriched in TLR3, TLR4, TLR7, TLR8 and TLR9 receptors [56] . Additionally, upon RLH activation TRAF3 interacts with MAVS and TRADD to trigger IRF-3 phosphorylation through the adaptor molecule TANK and the IKK-related kinases TBK1 and IKKi [20, 21] . However, how TRAF3 associates with MAVS upon RLH activation remains unanswered.

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