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PMID: 10490990 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Mycobacterium tuberculosis inhibits IFN-gamma transcriptional responses without inhibiting activation of STAT1.

Journal of immunology (Baltimore, Md. : 1950) ·Vol. 163 ·No. 7 ·1999-10-01 ·Pages 3898-906

Ting LM, Kim AC, Cattamanchi A, Ernst JD

Abstract

IFN-gamma activates macrophages to kill diverse intracellular pathogens, but does not activate human macrophages to kill virulent Mycobacterium tuberculosis. We tested the hypothesis that this is due to inhibition of IFN-gamma signaling by M. tuberculosis and found that M. tuberculosis infection of human macrophages blocks several responses to IFN-gamma, including killing of Toxoplasma gondii and induction of FcgammaRI. The inhibitory effect of M. tuberculosis is directed at transcription of IFN-gamma-responsive genes, but does not affect proximal steps in the Janus kinase-STAT pathway, as STAT1alpha tyrosine and serine phosphorylation, dimerization, nuclear translocation, and DNA binding are intact in M. tuberculosis-infected cells. In contrast, there is a marked decrease in IFN-gamma-induced association of STAT1 with the transcriptional coactivators CREB binding protein and p300 in M. tuberculosis-infected macrophages, indicating that M. tuberculosis directly or indirectly disrupts this protein-protein interaction that is essential for transcriptional responses to IFN-gamma. Gamma-irradiated M. tuberculosis and isolated cell walls reproduce the effects of live bacteria, indicating that the bacterial component(s) that initiates inhibition of IFN-gamma responses is constitutively expressed. Although lipoarabinomannan has been found to exert effects on macrophages, it does not account for the inhibitory effects of cell walls. These results indicate that one mechanism for M. tuberculosis to evade the human immune response is to inhibit the IFN-gamma signaling pathway, and that the mechanism of inhibition is distinct from that reported for Leishmania donovani or CMV, in that it targets the interaction of STAT1 with the basal transcriptional apparatus.

MeSH Terms
Animals Antibodies, Monoclonal/pharmacology Biological Transport CREB-Binding Protein Cell Nucleus/metabolism Cells, Cultured DNA-Binding Proteins/antagonists & inhibitors,metabolism Humans Interferon-Stimulated Gene Factor 3 Interferon-gamma/antagonists & inhibitors,physiology Macrophages/immunology,metabolism,microbiology,parasitology Mycobacterium tuberculosis/growth & development,immunology Nuclear Proteins/metabolism Phosphorylation RNA, Messenger/biosynthesis Receptors, IgG/antagonists & inhibitors,biosynthesis,genetics STAT1 Transcription Factor Serine/metabolism Signal Transduction/immunology Subcellular Fractions/immunology,microbiology Toxoplasma/growth & development,immunology Trans-Activators/antagonists & inhibitors,metabolism Transcription Factors/antagonists & inhibitors,metabolism Transcription, Genetic/immunology Transcriptional Activation/immunology Transforming Growth Factor beta/antagonists & inhibitors,immunology Tyrosine/antagonists & inhibitors,metabolism
Chemicals
Antibodies, Monoclonal DNA-Binding Proteins Interferon-Stimulated Gene Factor 3 Nuclear Proteins RNA, Messenger Receptors, IgG STAT1 Transcription Factor STAT1 protein, human Trans-Activators Transcription Factors Transforming Growth Factor beta gamma interferon activation factor Tyrosine Serine Interferon-gamma CREB-Binding Protein CREBBP protein, human
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Ting L M
Division of Infectious Diseases, University of California, San Francisco 94143, USA.
Kim A C
Cattamanchi A
Ernst J D
Article Info
Journal
Journal of immunology (Baltimore, Md. : 1950)
Abbr.
J Immunol
ISSN
0022-1767
Published
1999-10-01
Pages
3898-906
Language
English
Region
United States
NLM ID
2985117R
Subset
IM
Grants
NHLBI NIH HHS · HL51992 · United States
NHLBI NIH HHS · HL56001 · United States
NIAID NIH HHS · N01-AI75320 · United States
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