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PMID: 22885411 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

ESX-1 dependent impairment of autophagic flux by Mycobacterium tuberculosis in human dendritic cells.

Autophagy ·Vol. 8 ·No. 9 ·2012-09-00 ·Pages 1357-70

Romagnoli A, Etna MP, Giacomini E, Pardini M, Remoli ME, Corazzari M, Falasca L, Goletti D, Gafa V, Simeone R, Delogu G, Piacentini M, Brosch R, Fimia GM, Coccia EM

Abstract

Emerging evidence points to an important role of autophagy in the immune response mediated by dendritic cells (DC) against Mycobacterium tuberculosis (Mtb). Since current vaccination based on Bacillus Calmette-Guerin (BCG) is unable to stop the tuberculosis epidemic, a deeper comprehension of the alterations induced by Mtb in DC is essential for setting new vaccine strategies. Here, we compared the capacity of virulent (H37Rv) and avirulent (H37Ra) Mtb strains as well as BCG to modulate autophagy in human primary DC. We found that Mtb H37Rv impairs autophagy at the step of autophagosome-lysosome fusion. In contrast, neither Mtb H37Ra nor BCG strains were able to hamper autophagosome maturation. Both these attenuated strains have a functional inhibition of the 6kD early secreted antigenic target ESAT-6, an effector protein of the ESAT-6 Secretion System-1(ESX-1)/type VII secretion system. Notably, the ability to inhibit autophagy was fully restored in recombinant BCG and Mtb H37Ra strains in which ESAT-6 secretion was re-established by genetic complementation using either the ESX-1 region from Mtb (BCG::ESX-1) or the PhoP gene (Mtb H37Ra::PhoP), a regulator of ESAT-6 secretion. Importantly, the autophagic block induced by Mtb was overcome by rapamycin treatment leading to an increased interleukin-12 expression and, in turn, to an enhanced capacity to expand a Th1-oriented response. Collectively, our study demonstrated that Mtb alters the autophagic machinery through the ESX-1 system, and thereby opens new exciting perspectives to better understand the relationship between Mtb virulence and its ability to escape the DC-mediated immune response.

MeSH Terms
Autophagy/drug effects Bacterial Secretion Systems/drug effects Biomarkers/metabolism Cell Differentiation/drug effects Cells, Cultured Dendritic Cells/drug effects,microbiology,pathology,ultrastructure Humans Mycobacterium bovis/drug effects,physiology Mycobacterium tuberculosis/drug effects,physiology,ultrastructure Phagosomes/drug effects,metabolism,ultrastructure Sirolimus/pharmacology Th1 Cells/drug effects,immunology Tuberculosis/immunology,microbiology,pathology
Chemicals
Bacterial Secretion Systems Biomarkers Sirolimus
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Romagnoli Alessandra
Department of Epidemiology and Preclinical Research, National Institute for Infectious Diseases L. Spallanzani, Rome, Italy.
Etna Marilena P
Giacomini Elena
Pardini Manuela
Remoli Maria Elena
Corazzari Marco
Falasca Laura
Goletti Delia
Gafa Valérie
Simeone Roxane
Delogu Giovanni
Piacentini Mauro
Brosch Roland
Fimia Gian Maria
Coccia Eliana M
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Article Info
Journal
Autophagy
Abbr.
Autophagy
ISSN
1554-8635
Published
2012-09-00
Epub
2012-00-13
Pages
1357-70
Language
English
Region
United States
NLM ID
101265188
PMCID
PMC3442882
Subset
IM
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