4.8 Article

Sec22b Regulates Phagosomal Maturation and Antigen Crosspresentation by Dendritic Cells

Journal

CELL
Volume 147, Issue 6, Pages 1355-1368

Publisher

CELL PRESS
DOI: 10.1016/j.cell.2011.11.021

Keywords

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Funding

  1. Institut Curie, Institut National de la Sante et de la Recherche Medicale (INSERM)
  2. ARC (Association de la Recherche contre le Cancer) [SFI20101201629]
  3. Ligue National de Lutte contre le Cancer
  4. European Research Council [233062]
  5. Agence National de Recherche (ANR MIME APAT)
  6. Bettencourt-Schueller Foundation (FBS)
  7. Curie Institute
  8. Human Frontier Science Program Organization
  9. Fundacao Luso-Americana para o Desenvolvimento
  10. Fundacao para a Ciencia e a Tecnologia [PTDC/SAU-IMU/110303/2009, PTDC/SAU-MII/100780/2008, PIC/IC/82991/2007]
  11. European Research Council (ERC) [233062] Funding Source: European Research Council (ERC)
  12. Fundação para a Ciência e a Tecnologia [PTDC/SAU-IMU/110303/2009, PTDC/SAU-MII/100780/2008, PIC/IC/82991/2007] Funding Source: FCT

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Antigen (Ag) crosspresentation by dendritic cells (DCs) involves the presentation of internalized Ags on MHC class I molecules to initiate CD8+ T cell-mediated immunity in response to certain pathogens and tumor cells. Here, we identify the SNARE Sec22b as a specific regulator of Ag crosspresentation. Sec22b localizes to the ER-Golgi intermediate compartment (ERGIC) and pairs to the plasma membrane SNARE syntaxin 4, which is present in phagosomes (Phgs). Depletion of Sec22b inhibits the recruitment of ER-resident proteins to Phgs and to the vacuole containing the Toxoplasma gondii parasite. In Sec22b-deficient DCs, crosspresentation is compromised after Ag phagocytosis or endocytosis and after invasion by T. gondii. Sec22b silencing inhibited Ag export to the cytosol and increased phagosomal degradation by accelerating lysosomal recruitment. Our findings provide insight into an intracellular traffic pathway required for crosspresentation and show that Sec22b-dependent recruitment of ER proteins to Phgs critically influences phagosomal functions in DCs.

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