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Published on: January 7, 2019
Neutrophils Require Activation to Express Functional Cell-Surface Complement Receptor Immunoglobulin
Annabelle G Small1,2,3,4, Khalida Perveen1,3, Trishni Putty1,3
1Department of Immunopathology, South Australia (SA) Pathology, Women's and Children's Hospital, North Adelaide, SA, Australia.
Insights
Neutrophils express Complement Receptor Immunoglobulin (CRIg), a phagocytosis promoter. Inflammatory mediators increase CRIg on neutrophils, enhancing their antimicrobial function against Staphylococcus aureus.
Area of Science:
- Immunology
- Cell Biology
Background:
- Complement Receptor Immunoglobulin (CRIg) is primarily expressed on macrophages and promotes phagocytosis.
- Its expression can be modulated by inflammatory mediators, suggesting potential roles in other phagocytes.
Purpose of the Study:
- To investigate whether neutrophils express CRIg and if its expression is regulated by inflammatory mediators.
- To determine the functional consequences of CRIg expression on neutrophils.
Main Methods:
- Western blot and RT-PCR to detect CRIg expression in neutrophils.
- Flow cytometry to quantify cell surface and intracellular CRIg levels.
- Stimulation of neutrophils with various inflammatory mediators and activators.
- Assessment of CRIg-mediated neutrophil functions, including superoxide release, MAP kinase activation, bacterial killing, and neutrophil extracellular trap formation.
Main Results:
- Resting neutrophils express a 35 kDa CRIg isoform, detectable by Western blot and RT-PCR.
- CRIg is primarily intracellular but significantly increases on the neutrophil surface upon activation with inflammatory mediators (e.g., TNF, GM-CSF, LPS).
- Upregulation of CRIg requires p38 MAP kinase, protein kinase C, intracellular calcium, actin cytoskeleton, and exocytosis.
- Engagement of CRIg enhances neutrophil superoxide release, p38 activation, and Staphylococcus aureus killing, while GM-CSF priming induces neutrophil extracellular trap release.
- The anti-inflammatory cytokine IL-10 decreased basal and GM-CSF-induced CRIg expression.
Conclusions:
- Neutrophils express and upregulate CRIg in response to inflammatory signals.
- Neutrophil CRIg plays a crucial role in antimicrobial defense, requiring priming for optimal function.
- CRIg represents a potential therapeutic target for modulating neutrophil-mediated immune responses.
Abstract:
The phagocytosis-promoting complement receptor, Complement Receptor Immunoglobulin (CRIg), is exclusively expressed on macrophages. It has been demonstrated that expression in macrophages could be modulated by inflammatory mediators, including cytokines. This raised the possibility that a major phagocyte, the neutrophil, may also express CRIg following activation with inflammatory mediators. Here we show that resting peripheral blood neutrophil lysates subjected to protein analysis by Western blot revealed a 35 kDa CRIg isoform, consistent with the expression of CRIg mRNA by RT-PCR. By flow cytometry, CRIg was detected intracellularly and in very minor amounts on the cell surface. Interestingly, expression on the cell surface was significantly increased to functional levels after activation with inflammatory mediators/neutrophil activators; N-Formylmethionine-leucyl-phenylalanine, tumor necrosis factor (TNF), Granulocyte-Macrophage Colony stimulating Factor (GM-CSF), bacterial lipopolysaccharide, leukotriene B4 and phorbol myristate acetate. The increase in expression required p38 MAP kinase and protein kinase C activation, as well as intracellular calcium. Neutrophils which were defective in actin microfilament reorganization due to a mutation in ARPC1B or inhibition of its upstream regulator, Rac2 lose their ability to upregulate CRIg expression. Inhibition of another small GTPase, Rab27a, with pharmacological inhibitors prevented the increase in CRIg expression, suggesting a requirement for the actin cytoskeleton and exocytosis. Engagement of CRIg on TNF-primed neutrophils with an anti-CRIg monoclonal antibody increased the release of superoxide and promoted the activation of p38 but not ERK1/ERK2 or JNK MAP kinases. The TNF-induced increase in killing of Staphylococcus aureus was blocked by the anti-CRIg antibody. Adding to the anti-microbial role of CRIg, it was found that GM-CSF priming lead to the release of neutrophil extracellular traps. Interestingly in contrast to the above mediators the anti-inflammatory cytokine IL-10 caused a decrease in basal expression and GM-CSF induced increase in CRIg expression. The data demonstrate that neutrophils also express CRIg which is regulated by inflammatory mediators and cytokines. The findings show that the neutrophil antimicrobial function involving CRIg requires priming as a means of arming the cell strategically with microbial invasion of tissues and the bloodstream.
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