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Studying the Effects of Tumor-Secreted Paracrine Ligands on Macrophage Activation using Co-Culture with Permeable Membrane Supports
Published on: November 28, 2019
Fibronectin inhibits cytokine production induced by CpG DNA in macrophages without direct binding to DNA
Hiroyuki Yoshida1, Makiya Nishikawa, Sachiyo Yasuda
1Department of Biopharmaceutics and Drug Metabolism, Graduate School of Pharmaceutical Sciences, Kyoto University, Yoshida-Shimo-Adachi-cho, Sakyo-ku, Kyoto 606-8501, Japan. h.yoshida@nihs.go.jp
Abstract:
Fibronectin (FN) is known to have four DNA-binding domains although their physiological significance is unknown. Primary murine peritoneal macrophages have been shown to exhibit markedly lower responsiveness to CpG motif-replete plasmid DNA (pDNA), Toll-like receptor-9 (TLR9) ligand, compared with murine macrophage-like cell lines. The present study was conducted to examine whether FN having DNA-binding domains is involved in this phenomenon. The expression of FN was significantly higher in primary macrophages than in a macrophage-like cell line, RAW264.7, suggesting that abundant FN might suppress the responsiveness in the primary macrophages. However, electrophoretic analysis revealed that FN did not bind to pDNA in the presence of a physiological concentration of divalent cations. Surprisingly, marked tumor necrosis factor - (TNF-)α production from murine macrophages upon CpG DNA stimulation was significantly reduced by exogenously added FN in a concentration-dependent manner but not by BSA, laminin or collagen. FN did not affect apparent pDNA uptake by the cells. Moreover, FN reduced TNF-α production induced by polyI:C (TLR3 ligand), and imiquimod (TLR7 ligand), but not by LPS (TLR4 ligand), or a non-CpG pDNA/cationic liposome complex. The confocal microscopic study showed that pDNA was co-localized with FN in the same intracellular compartment in RAW264.7, suggesting that FN inhibits cytokine signal transduction in the endosomal/lysosomal compartment. Taken together, the results of the present study has revealed, for the first time, a novel effect of FN whereby the glycoprotein modulates cytokine signal transduction via CpG-DNA/TLR9 interaction in macrophages without direct binding to DNA through its putative DNA-binding domains.
Insights
Fibronectin (FN) suppresses immune responses to CpG DNA in macrophages. This glycoprotein modulates cytokine signaling via Toll-like receptor-9 (TLR9) interaction without directly binding DNA.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- Fibronectin (FN) possesses DNA-binding domains, but their in vivo function remains unclear.
- Primary macrophages show reduced responsiveness to CpG DNA (Toll-like receptor-9 ligand) compared to cell lines.
- Higher FN expression in primary macrophages suggests a potential role in suppressing immune responses.
Purpose of the Study:
- To investigate the role of fibronectin (FN) in the differential responsiveness of macrophages to CpG DNA.
- To determine if FN's DNA-binding domains are involved in modulating immune cell activation.
Main Methods:
- Comparing FN expression in primary macrophages and RAW264.7 cell lines.
- Electrophoretic analysis of FN-DNA binding under physiological conditions.
- Assessing TNF-α production in response to various TLR ligands with and without exogenous FN.
- Confocal microscopy to visualize pDNA and FN co-localization within cells.
Main Results:
- FN did not bind to CpG DNA in the presence of divalent cations.
- Exogenous FN significantly reduced TNF-α production induced by CpG DNA, polyI:C, and imiquimod, but not LPS.
- FN did not affect pDNA uptake.
- pDNA and FN co-localized in intracellular compartments, suggesting inhibition of signaling pathways.
Conclusions:
- Fibronectin (FN) inhibits cytokine signaling in macrophages stimulated with TLR ligands, particularly CpG DNA.
- This modulation occurs within endosomal/lysosomal compartments without direct DNA binding by FN.
- FN represents a novel regulator of innate immune responses mediated by Toll-like receptors.
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