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Published on: July 26, 2017
Complement receptor 3 influences toll-like receptor 7/8-dependent inflammation: implications for autoimmune diseases
Joanne H Reed1, Manish Jain, Kristen Lee
1Division of Rheumatology, Department of Medicine, New York University School of Medicine, New York, NY 10016, USA. Joanne.Reed@nyumc.org
Abstract:
Toll-like receptor (TLR) signaling is an important component in the inflammatory response generated in diseases characterized by autoantibody reactivity to proteins such as SSA/Ro in complex with endogenous nucleic acids. Complement receptor 3 (CR3), a genetic variant of which has been identified as a risk factor in systemic lupus erythematosus, has been shown to induce tolerogenic responses in dendritic cells and suppress TLR4 responses in a murine sepsis model. Accordingly, this study addressed the hypothesis that activation of CR3, influenced by genotype of CD11b, negatively regulates TLR7/8-dependent effector function. Allosteric activation of CD11b via pretreatment with the small molecule, leukadhedrin 1 (LA1), significantly attenuated TLR7/8-induced (hY3 RNA, R848) secretion of TNFα in THP-1 cells and human macrophages isolated from donors homozygous for the ancestral common ITGAM allele at rs1143679. This inhibition was accompanied by profound degradation of the adaptor protein MyD88, an effect not observed with direct inhibition of TLR ligation by an antagonist oligonucleotide. In contrast, the addition of LA1 after incubation with the TLR agonists did not result in MyD88 degradation and subsequent attenuation of TNFα secretion. In TLR7/8-stimulated macrophages isolated from donors heterozygous for the CD11b variant, pretreatment with LA1 did not down-regulate TNFα release. These novel findings support a negative cross-talk between CR3 and TLR pathways likely to be induced by antibodies reactive with ribonucleoproteins and point to the development of CR3-specific agonists as potential therapeutics for diseases such as neonatal lupus.
Insights
Complement receptor 3 (CR3) activation inhibits Toll-like receptor 7/8 (TLR7/8) signaling by degrading MyD88. This CR3-TLR pathway cross-talk offers therapeutic potential for autoimmune diseases like neonatal lupus.
Area of Science:
- Immunology
- Molecular Biology
Background:
- Toll-like receptor (TLR) signaling drives inflammation in autoimmune diseases involving autoantibodies like SSA/Ro.
- Complement receptor 3 (CR3) modulates immune responses, with genetic variants linked to systemic lupus erythematosus (SLE).
Purpose of the Study:
- To investigate if CR3 activation negatively regulates TLR7/8-dependent immune responses, influenced by CD11b genotype.
- To explore the mechanism of CR3-mediated regulation of TLR signaling.
Main Methods:
- Utilized THP-1 cells and human macrophages from donors with specific CD11b genotypes (rs1143679).
- Pretreated cells with leukadhedrin 1 (LA1) to activate CR3 before or after stimulation with TLR7/8 agonists (hY3 RNA, R848).
- Assessed TNFα secretion and MyD88 protein levels via Western blotting.
Main Results:
- CR3 activation with LA1 before TLR7/8 stimulation significantly reduced TNFα secretion in cells with the common ITGAM allele.
- This inhibition correlated with substantial degradation of the MyD88 adaptor protein.
- LA1 treatment after TLR agonist exposure did not affect TNFα or MyD88 levels.
- LA1 failed to inhibit TNFα release in macrophages from donors heterozygous for the CD11b variant.
Conclusions:
- CR3 activation negatively regulates TLR7/8 signaling pathways, likely through MyD88 degradation.
- This cross-talk is dependent on CD11b genotype and the timing of CR3 activation.
- Targeting CR3 may offer a novel therapeutic strategy for autoimmune conditions like neonatal lupus.
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