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Novel PKC signaling is required for LPS-induced soluble Flt-1 expression in macrophages
Ming-Cheng Lee1, Shu-Chen Wei, Jyy-Jih Tsai-Wu
1Departments of Pediatrics, National Taiwan University Hospital, Taipei 100, Taiwan.
Abstract:
In vitro activation of macrophages by LPS induces rapid release of vascular endothelial growth factor (VEGF) and soluble fms-like tyrosine kinase-1 receptor (sFlt-1), which are thought to be the effectors to cause sepsis. However, the signal pathway that controls the VEGF and sFlt-1 expressions in LPS-activated macrophages remains unclear. In this study, we demonstrated that phosphorylation of protein kinase C (PKC)delta played a key role in the VEGF and sFlt-1 signaling pathway of LPS-activated macrophages. PKC is a family of serine-threonine kinases, which are classified into three major groups based on homology and cofactor requirements: conventional PKCs, novel PKCs, and atypical PKCs. In the murine RAW264.7 cells, as well as in primary human monocytes/macrophages, pretreatment with a general PKC inhibitor GF109203X or with a novel PKCdelta inhibitor rottlerin or overexpression of a kinase-inactive form of PKCdelta (K376R) eliminated LPS-induced sFlt-1 expression and augmented LPS-induced VEGF expression at the protein and the transcription levels. In contrast, Gö6976, an inhibitor for the conventional PKCs, or myristoylated PKCzeta pseudosubstrate peptide, an inhibitor for the atypical PKCs, failed to exert the same effects. These data suggest that PKCdelta signaling is involved in LPS-induced sFlt-1 expression and serves as a negative mediator in LPS-induced VEGF expression in macrophages. A novel strategy controlling the LPS-induced PKC pathways, especially the PKCdelta isoform, may be developed based on this study.
Insights
Protein kinase C (PKC)delta signaling is crucial in LPS-activated macrophages, regulating vascular endothelial growth factor (VEGF) and soluble fms-like tyrosine kinase-1 receptor (sFlt-1) release, key factors in sepsis.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Lipopolysaccharide (LPS) activation of macrophages releases vascular endothelial growth factor (VEGF) and soluble fms-like tyrosine kinase-1 receptor (sFlt-1), implicated in sepsis.
- The precise signaling pathways governing VEGF and sFlt-1 expression in LPS-stimulated macrophages are not fully understood.
Purpose of the Study:
- To elucidate the role of protein kinase C (PKC) signaling in regulating VEGF and sFlt-1 expression in LPS-activated macrophages.
- To identify specific PKC isoforms involved in these pathways.
Main Methods:
- Utilized murine RAW264.7 cells and primary human monocytes/macrophages.
- Employed PKC inhibitors (GF109203X, rottlerin, Gö6976) and a dominant-negative PKCdelta construct (K376R).
- Assessed protein and transcript levels of VEGF and sFlt-1 following LPS stimulation.
Main Results:
- PKCdelta phosphorylation was identified as a key player in the VEGF and sFlt-1 signaling pathway.
- Inhibition of PKCdelta (using rottlerin or K376R) reduced sFlt-1 expression and enhanced VEGF expression.
- Inhibitors of conventional (Gö6976) and atypical (PKCzeta pseudosubstrate) PKCs did not produce similar effects.
Conclusions:
- PKCdelta signaling mediates LPS-induced sFlt-1 expression in macrophages.
- PKCdelta acts as a negative regulator of LPS-induced VEGF expression.
- Targeting PKCdelta pathways offers a potential therapeutic strategy for LPS-induced conditions like sepsis.
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