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Myeloid Innate Signaling Pathway Regulation by MALT1 Paracaspase Activity
Published on: January 7, 2019
Differential regulation of DAP12 and molecules associated with DAP12 during host responses to mycobacterial infection
Naoko Aoki1, Anna Zganiacz, Peter Margetts
1Department of Pathology and Molecular Medicine, McMaster University, Hamilton, Ontario, Canada L8N 3Z5.
Abstract:
DAP12 and its associating molecules MDL-1, TREM-1, and TREM-2 are the recently identified immune regulatory molecules, expressed primarily on myeloid cells including monocytes/macrophages, dendritic cells, NK cells, and neutrophils. However, little is known about the regulation of their expression during host antimicrobial responses. We have investigated the effect of pulmonary mycobacterial infection and type 1 cytokines on the expression of these molecules both in vivo and in vitro. While DAP12 was constitutively expressed at high levels in the lungs, the MDL-1, TREM-1, and TREM-2 molecules were inducible during mycobacterial infection. Their kinetic expression was correlated with that of the type 1 cytokines tumor necrosis factor alpha (TNF-alpha) and gamma interferon (IFN-gamma). In primary lung macrophage cultures, high constitutive levels of DAP12 and TREM-2 were not modulated by mycobacterial or type 1 cytokine exposure. In contrast, expression of both MDL-1 and TREM-1 was markedly induced by mycobacterial infection and such induction was inhibited by concurrent exposure to IFN-gamma. On mycobacterial infection of TNF-alpha(-/-) and IFN-gamma(-/-) mice in vivo or their lung macrophages in vitro, TNF-alpha was found to be critical for mycobacterially induced MDL-1, but not TREM-1, expression whereas IFN-gamma negatively regulated mycobacterially induced MDL-1 and TREM-1 expression. Our findings thus suggest that DAP12 and its associating molecules are differentially regulated by mycobacterial infection and type 1 cytokines and that MDL-1- and TREM-1-triggered DAP12 signaling may play an important role in antimicrobial type 1 immunity.
Insights
Immune molecules DAP12, MDL-1, TREM-1, and TREM-2 are regulated differently during mycobacterial infection. Type 1 cytokines influence their expression, impacting antimicrobial immunity.
Area of Science:
- Immunology
- Cell Biology
- Infectious Disease
Background:
- DAP12 and its associated molecules (MDL-1, TREM-1, TREM-2) are immune regulators on myeloid cells.
- Their expression regulation during antimicrobial responses is not well understood.
Purpose of the Study:
- Investigate the impact of mycobacterial infection and type 1 cytokines on DAP12, MDL-1, TREM-1, and TREM-2 expression.
- Elucidate the roles of TNF-alpha and IFN-gamma in regulating these molecules during infection.
Main Methods:
- In vivo studies using wild-type and knockout mice (TNF-alpha(-/-), IFN-gamma(-/-)).
- In vitro studies using primary lung macrophage cultures.
- Analysis of molecule expression kinetics and cytokine correlations.
Main Results:
- MDL-1, TREM-1, and TREM-2 were inducible during mycobacterial infection, correlating with TNF-alpha and IFN-gamma.
- IFN-gamma inhibited mycobacterial induction of MDL-1 and TREM-1 in macrophages.
- TNF-alpha was crucial for mycobacterial induction of MDL-1, but not TREM-1.
- IFN-gamma negatively regulated both MDL-1 and TREM-1 induction.
Conclusions:
- DAP12-associated molecules exhibit differential regulation by mycobacterial infection and type 1 cytokines.
- MDL-1 and TREM-1 signaling via DAP12 may be significant in type 1 antimicrobial immunity.

