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BACTERIAL PATHOGEN-ASSOCIATED MOLECULAR PATTERNS UPREGULATE HUMAN GLUCOCORTICOID RECEPTOR EXPRESSION IN PERIPHERAL
David G Greenhalgh, Tajia L Green1, Debora Lim2
1Shriners Children's Northern California, Sacramento, California.
Abstract:
It is well known that bacterial components (pathogen-associated molecular patterns [PAMPs]) induce a proinflammatory response through pattern recognition receptor signaling. What is not known, however, is how the inflammatory response is downregulated. We hypothesize that bacterial products initiate compensatory anti-inflammatory responses by inducing expression of the human glucocorticoid receptor (hGR). Peripheral blood mononuclear cells (PBMCs) were isolated from leukocytes concentrated from single human donors (Leukopaks). PBMCs were treated with a gram-negative bacterial component, LPS, or gram-positive bacterial components, lipoteichoic acid (LTA) or peptidoglycan (PGN), for 1, 3, or 13 h. Protein expression of hGR was evaluated by Western blot analysis. RNA was extracted from similarly treated cells for reverse transcription-polymerase chain reaction analysis of hGR and cytokine expression. At 13 h after LPS treatment, there was an increase in the reference hGR protein (hGRα) expressed within some but not all PBMCs isolated from Leukopaks. There was also a dose-dependent increase in hGRα expression with increasing concentrations of PGN (10 and 50 μg/mL). LTA, however, did not affect hGRα expression. PGN also increased the mRNA expression of an hGR splice variant, hGR-B(54). The mRNA expression changes for the inflammatory cytokines were Leukopak specific. We found that cell wall components of both gram-positive and gram-negative bacteria can increase the expression of hGRα. Although these PAMPs augment the inflammatory response, it seems that there is a simultaneous upregulation of hGRα expression. Because binding of cortisol to hGRα typically induces anti-inflammatory proteins, the same PAMPs that induce an inflammatory response seem to also initiate a negative feedback system by inducing hGRα expression in PBMCs.
Insights
Bacterial components, like LPS and PGN, can increase human glucocorticoid receptor (hGR) expression in immune cells. This suggests PAMPs initiate a negative feedback system to control inflammation.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- Pathogen-associated molecular patterns (PAMPs) trigger pro-inflammatory responses via pattern recognition receptors.
- The mechanisms for downregulating inflammation initiated by bacterial components are not fully understood.
Purpose of the Study:
- To investigate whether bacterial products induce compensatory anti-inflammatory responses.
- To test the hypothesis that bacterial products induce the expression of the human glucocorticoid receptor (hGR).
Main Methods:
- Peripheral blood mononuclear cells (PBMCs) were isolated from human Leukopaks.
- PBMCs were treated with lipopolysaccharide (LPS), lipoteichoic acid (LTA), or peptidoglycan (PGN).
- hGR protein and mRNA expression were analyzed using Western blot and RT-PCR.
Main Results:
- LPS and PGN treatment increased hGRα protein expression in some PBMCs.
- PGN demonstrated a dose-dependent increase in hGRα expression.
- PGN also increased mRNA expression of an hGR splice variant, hGR-B(54).
- LTA did not affect hGRα expression.
Conclusions:
- Cell wall components from both gram-negative (LPS) and gram-positive (PGN) bacteria can upregulate hGRα expression.
- The same PAMPs that augment inflammation appear to initiate a negative feedback loop by inducing hGRα.
- This upregulation of hGRα may lead to the induction of anti-inflammatory proteins, helping to resolve inflammation.
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