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FPRL-1 induces modifications of migration-associated proteins in human neutrophils
Karsten Boldt1, Wolfgang Rist, Stefanie M Weiss
1Boehringer Ingelheim Pharma GmbH & Co. KG, Department of Respiratory Research, Genomics Group, Biberach an der Riss, Germany.
Abstract:
Human polymorphonuclear neutrophils (PMNs) are an important cell population of the innate immune system, which migrates following concentration gradients of chemokines or chemoattractants to locations of infection and inflammation in order to eliminate invading microorganisms and cell debris. For both migration and adhesion of PMNs to various tissues, the dynamic remodeling of the cytoskeleton is key prerequisite. In this context, the formyl peptide receptor-like 1 (FPRL-1) is an important chemoattractant receptor expressed on PMNs. In this study, we show that a short stimulation of FPRL-1 with either a synthetic peptide ligand (W-peptide) or a natural ligand (sCKbeta8-1) changes the protein pattern of PMNs as assessed by 2-D-DIGE. MS analysis of selected deregulated protein species resulted in the identification of proteins that are involved in the remodeling process of the actin- and tubulin-based cytoskeleton, such as L-plastin, moesin, cofilin, and stathmin. Subsequent validation experiments performed either by Western blotting or phosphoprotein-specific gel staining (Pro-Q Diamond) revealed that L-plastin is phosphorylated, whereas moesin, cofilin, and stathmin are dephosphorylated in PMNs upon FPRL-1 stimulation. These findings suggest that FPRL-1 signaling targets proteins that regulate the motility of PMNs and moreover show that 2-D-DIGE is a technique capable of detecting and quantifying differently modified (e.g., phosphorylated) protein variants.
Insights
Human neutrophils utilize formyl peptide receptor-like 1 (FPRL-1) to sense infection. FPRL-1 stimulation alters cytoskeleton proteins, impacting neutrophil migration and innate immunity.
Area of Science:
- Immunology
- Cell Biology
- Proteomics
Background:
- Human polymorphonuclear neutrophils (PMNs) are crucial for innate immunity, migrating to infection sites.
- Cytoskeleton remodeling is essential for PMN migration and adhesion.
- Formyl peptide receptor-like 1 (FPRL-1) is a key chemoattractant receptor on PMNs.
Purpose of the Study:
- To investigate the protein pattern changes in PMNs upon FPRL-1 stimulation.
- To identify proteins involved in cytoskeleton remodeling regulated by FPRL-1 signaling.
- To validate post-translational modifications of identified proteins.
Main Methods:
- Stimulation of PMNs with FPRL-1 ligands (W-peptide or sCKbeta8-1).
- Proteomic analysis using 2-D-DIGE and Mass Spectrometry (MS).
- Validation of protein changes via Western blotting and Pro-Q Diamond staining.
Main Results:
- FPRL-1 stimulation altered the protein profile of PMNs.
- Identified proteins involved in actin and tubulin cytoskeleton remodeling, including L-plastin, moesin, cofilin, and stathmin.
- Confirmed L-plastin phosphorylation and moesin, cofilin, stathmin dephosphorylation.
Conclusions:
- FPRL-1 signaling modulates proteins regulating PMN motility.
- Demonstrated 2-D-DIGE's capability in detecting and quantifying protein modifications like phosphorylation.
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