Mycobacterium tuberculosis Inhibits Neutrophil Apoptosis, Leading to Delayed Activation of Naive CD4 T cells
Mycobacterium tuberculosis promotes its replication by inhibiting the apoptosis of infected macrophages. A proapoptotic M. tuberculosis mutant lacking nuoG, a subunit of the type I NADH dehydrogenase complex, exhibits attenuated growth in vivo, indicating that this virulence mechanism is essential....
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Veröffentlicht in: | Cell host & microbe 2012-01, Vol.11 (1), p.81-90 |
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Sprache: | eng |
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Zusammenfassung: | Mycobacterium tuberculosis promotes its replication by inhibiting the apoptosis of infected macrophages. A proapoptotic
M. tuberculosis mutant lacking
nuoG, a subunit of the type I NADH dehydrogenase complex, exhibits attenuated growth in vivo, indicating that this virulence mechanism is essential. We show that
M. tuberculosis also suppresses neutrophil apoptosis. Compared to wild-type, the
nuoG mutant spread to a larger number of lung phagocytic cells. Consistent with the shorter lifespan of infected neutrophils, infection with the
nuoG mutant resulted in fewer bacteria per infected neutrophil, accelerated bacterial acquisition by dendritic cells, earlier trafficking of these dendritic cells to lymph nodes, and faster CD4 T cell priming. Neutrophil depletion abrogated accelerated CD4 T cell priming by the
nuoG mutant, suggesting that inhibiting neutrophil apoptosis delays adaptive immunity in tuberculosis. Thus, pathogen modulation of apoptosis is beneficial at multiple levels, and enhancing phagocyte apoptosis promotes CD4 as well as CD8 T cell responses.
► M. tuberculosis inhibits apoptosis of diverse myeloid cells, including neutrophils ► Inhibition of apoptosis delays acquisition of
M. tuberculosis by dendritic cells ► Inhibition of neutrophil apoptosis contributes to delayed priming of CD4 T cells ► Promoting phagocyte apoptosis enhances CD4, as well as CD8, T cell responses |
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ISSN: | 1931-3128 1934-6069 1934-6069 |
DOI: | 10.1016/j.chom.2011.11.012 |