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Published on: November 28, 2015
Adenylate Kinase 4 Promotes Inflammatory Gene Expression via Hif1α and AMPK in Macrophages
Wei-Yao Chin1, Chi-Ying He1, Tsun Wai Chow1
1Graduate Institute of Immunology, National Taiwan University College of Medicine, Taipei, Taiwan.
Abstract:
Macrophages comprise the front line of defense against various pathogens. Classically activated macrophages (M1), induced by IFN-γ and LPS, highly express inflammatory cytokines and contribute to inflammatory processes. By contrast, alternatively activated macrophages (M2) are induced by IL-4 and IL-13, produce IL-10, and display anti-inflammatory activity. Adenylate kinase 4 (Ak4), an enzyme that transfers phosphate group among ATP/GTP, AMP, and ADP, is a key modulator of ATP and maintains the homeostasis of cellular nucleotides which is essential for cell functions. However, its role in regulating the function of macrophages is not fully understood. Here we report that Ak4 expression is induced in M1 but not M2 macrophages. Suppressing the expression of Ak4 in M1 macrophages with shRNA or siRNA enhances ATP production and decreases ROS production, bactericidal ability and glycolysis in M1 cells. Moreover, Ak4 regulates the expression of inflammation genes, including Il1b, Il6, Tnfa, Nos2, Nox2, and Hif1a, in M1 macrophages. We further demonstrate that Ak4 inhibits the activation of AMPK and forms a positive feedback loop with Hif1α to promote the expression of inflammation-related genes in M1 cells. Furthermore, RNA-seq analysis demonstrates that Ak4 also regulates other biological processes in addition to the expression of inflammation-related genes in M1 cells. Interestingly, Ak4 does not regulate M1/M2 polarization. Taken together, our study uncovers a potential mechanism linking energy consumption and inflammation in macrophages.
Insights
Adenylate kinase 4 (Ak4) promotes inflammation in M1 macrophages by regulating energy metabolism and gene expression. Suppressing Ak4 enhances ATP production and reduces inflammation, revealing a link between energy and macrophage function.
Area of Science:
- Immunology
- Cell Biology
- Metabolism
Background:
- Macrophages are crucial immune cells, with M1 and M2 subtypes having distinct inflammatory roles.
- Adenylate kinase 4 (Ak4) is an enzyme involved in cellular nucleotide homeostasis.
- The role of Ak4 in macrophage function remains largely unexplored.
Purpose of the Study:
- To investigate the role of Ak4 in regulating M1 macrophage function and inflammation.
- To elucidate the molecular mechanisms by which Ak4 influences macrophage inflammatory responses.
Main Methods:
- Utilized shRNA and siRNA to suppress Ak4 expression in M1 macrophages.
- Assessed ATP production, ROS generation, bactericidal ability, and glycolysis.
- Analyzed the expression of inflammation-related genes and AMPK activation.
- Performed RNA-seq analysis to identify Ak4-regulated biological processes.
Main Results:
- Ak4 expression is specifically induced in M1 macrophages.
- Ak4 suppression in M1 cells enhanced ATP production and decreased ROS, bacterial killing, and glycolysis.
- Ak4 regulates key inflammation genes (e.g., Il1b, Il6, Tnfa) and Hif1a.
- Ak4 inhibits AMPK activation and forms a positive feedback loop with Hif1α.
- Ak4 does not influence M1/M2 polarization.
Conclusions:
- Ak4 plays a significant role in promoting inflammation in M1 macrophages.
- Ak4 links cellular energy metabolism to inflammatory gene expression in M1 cells.
- Ak4 represents a potential therapeutic target for modulating macrophage-driven inflammation.
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