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Protein kinase C beta is required for human monocyte chemotaxis to MCP-1
Kevin A Carnevale1, Martha K Cathcart
1Department of Cell Biology, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, Ohio 44195, USA.
Abstract:
Monocyte chemoattractant protein 1 (MCP-1) is important in attracting monocytes to sites of inflammation. Using predominantly pharmacological approaches, prior studies have indicated that serine/threonine kinases are involved in the MCP-1-induced signaling pathways. We report here that there is substantial inhibition of MCP-1-stimulated chemotaxis of human monocytes treated with inhibitors selective for the subset of serine/threonine kinases, protein kinase C (PKC). Selective inhibitors of PKC such as GF109203X and Calphostin C both caused approximately 80% inhibition of chemotaxis. Because these pharmacological inhibitors do not specifically inhibit individual PKC isoforms, we chose to use antisense oligodeoxyribonucleotides (ODN) to specifically reduce PKC isoform expression, first by inhibiting expression of the conventional PKC family, and next by using specific antisense ODN for PKCalpha and PKCbeta. Conventional PKC-antisense ODN treatment completely and significantly inhibited monocyte chemotaxis to MCP-1, whereas sense-control ODN caused no significant inhibition. PKCbeta-antisense ODN caused 89.2% inhibition of chemotaxis at its highest dose. In contrast, PKCbeta-sense ODN and PKCalpha-antisense and -sense ODN were without effect. Further studies evaluating the calcium response that is triggered upon MCP-1 interaction with its receptor, CCR2, indicate that this response is not altered by antisense or sense ODN treatment, thus supporting our hypothesis that PKCbeta is critical for post-receptor signal transduction downstream of the immediate calcium signal. These data contribute to our developing understanding of the signal transduction pathways involved in the chemotactic response of human monocytes to MCP-1 and uniquely identify the requirement for the PKCbeta isoform in this important process.
Insights
Protein kinase C beta (PKCbeta) is crucial for monocyte migration to inflammation sites. Inhibiting PKCbeta significantly blocks monocyte chemotaxis, revealing its role in inflammatory signaling pathways.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Monocyte chemoattractant protein 1 (MCP-1) recruits monocytes to inflammatory sites.
- Serine/threonine kinases, particularly protein kinase C (PKC), are implicated in MCP-1 signaling.
- Previous studies relied on pharmacological inhibitors, lacking isoform specificity.
Purpose of the Study:
- To investigate the specific role of PKC isoforms in MCP-1-induced human monocyte chemotaxis.
- To elucidate the downstream signaling events in MCP-1-mediated monocyte migration.
Main Methods:
- Pharmacological inhibition of PKC using GF109203X and Calphostin C.
- Antisense oligodeoxynucleotides (ODN) to specifically reduce PKC isoform expression (conventional, PKCalpha, PKCbeta).
- Assessment of monocyte chemotaxis and calcium signaling in response to MCP-1.
Main Results:
- PKC inhibitors caused ~80% inhibition of monocyte chemotaxis.
- Conventional PKC-antisense ODN completely inhibited chemotaxis.
- PKCbeta-specific antisense ODN significantly inhibited chemotaxis (89.2%), while PKCalpha-specific ODN had no effect.
- MCP-1-induced calcium response remained unaltered by antisense ODN treatment.
Conclusions:
- PKCbeta is essential for MCP-1-induced human monocyte chemotaxis.
- PKCbeta acts downstream of the initial calcium signaling event in MCP-1 receptor (CCR2) activation.
- These findings identify PKCbeta as a key regulator in monocyte inflammatory responses.