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Updated: May 14, 2026

Purification of the Membrane Compartment for Endoplasmic Reticulum-associated Degradation of Exogenous Antigens in Cross-presentation
Published on: August 21, 2017
Amphisomal route of MHC class I cross-presentation in bacteria-infected dendritic cells
Dorothee Fiegl1, Danny Kägebein, Elisabeth M Liebler-Tenorio
1Institute of Immunology, Federal Research Institute for Animal Health, Friedrich-Loeffler-Institute, 17493 Greifswald-Isle of Riems, Germany.
Abstract:
Dendritic cells (DCs) are among the first professional APCs encountered by the obligate intracellular bacterium Chlamydia during infection. Using an established mouse bone marrow-derived DC line, we show that DCs control chlamydial infection in multiple small inclusions characterized by restricted bacterial growth, impaired cytosolic export of the virulence factor chlamydial protease-like activity factor, and interaction with guanylate-binding protein 1, a host cell factor involved in the initiation of autophagy. During maturation of infected DCs, chlamydial inclusions disintegrate, likely because they lack chlamydial protease-like activity factor-mediated protection. Released cytosolic Chlamydia are taken up by autophagosomes and colocalize with cathepsin-positive amphisomal vacuoles, to which peptide transporter TAP and upregulated MHC class I (MHC I) are recruited. Chlamydial Ags are subsequently generated through routes involving preprocessing in amphisomes via cathepsins and entry into the cytosol for further processing by the proteasome. Finally, bacterial peptides are reimported into the endosomal pathway for loading onto recycling MHC I. Thus, we unravel a novel pathway of MHC I-mediated cross-presentation that is initiated with a host cellular attack physically disrupting the parasitophorous vacuole, involves autophagy to collect cytosolic organisms into autophagosomes, and concludes with complex multistep antigenic processing in separate cellular compartments.
Insights
Dendritic cells (DCs) control Chlamydia by containing it in small inclusions. Upon DC maturation, bacteria are released, engulfed by autophagy, and processed for MHC I presentation.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Dendritic cells (DCs) are key antigen-presenting cells (APCs) encountering Chlamydia.
- DCs restrict Chlamydia growth within small inclusions, impacting virulence factor export and autophagy initiation.
Purpose of the Study:
- To elucidate the novel pathway of Chlamydia antigen processing and presentation by DCs.
- To understand the role of host cell factors and cellular compartments in Chlamydia antigen presentation.
Main Methods:
- Utilized a mouse bone marrow-derived DC line infected with Chlamydia.
- Investigated bacterial growth, virulence factor export, host-pathogen interactions, and antigen processing pathways.
- Employed techniques to track bacterial fate, autophagy, and MHC class I loading.
Main Results:
- DCs contain Chlamydia in restricted inclusions, limiting bacterial growth and virulence factor activity.
- Infected DC maturation leads to inclusion disintegration and bacterial release into the cytosol.
- Cytosolic Chlamydia are captured by autophagosomes, processed in amphisomes, and presented via MHC class I.
Conclusions:
- A novel pathway for MHC class I cross-presentation of Chlamydia antigens is described.
- This pathway involves host-mediated disruption of the vacuole, autophagy, and complex antigen processing.
- DCs utilize autophagy and distinct cellular compartments to process and present Chlamydia antigens effectively.
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