Related Experiment Video
Updated: Jun 1, 2026

A Microphysiological System to Study Leukocyte-Endothelial Cell Interaction during Inflammation
Published on: December 9, 2021
Protein kinase Cδ is a critical component of Dectin-1 signaling in primary human monocytes
Deena H Elsori1, Valentin P Yakubenko, Talat Roome
1Cleveland Clinic, Cleveland, OH 44195, USA.
Abstract:
Zymosan, a mimic of fungal pathogens, and its opsonized form (ZOP) are potent stimulators of monocyte NADPH oxidase, resulting in the production of O(2)(.-), which is critical for host defense against fungal and bacterial pathogens and efficient immune responses; however, uncontrolled O(2)(.-) production may contribute to chronic inflammation and tissue injury. Our laboratory has focused on characterizing the signal transduction pathways that regulate NADPH oxidase activity in primary human monocytes. In this study, we examined the involvement of various pattern recognition receptors and found that Dectin-1 is the primary receptor for zymosan stimulation of O(2)(.-) via NADPH oxidase in human monocytes, whereas Dectin-1 and CR3 mediate the activation by ZOP. Further studies identified Syk and Src as important signaling components downstream of Dectin-1 and additionally identified PKCδ as a novel downstream signaling component for zymosan-induced O(2)(.-) as well as phagocytosis. Our results show that Syk and Src association with Dectin-1 is dependent on PKCδ activity and expression and demonstrate direct binding between Dectin-1 and PKCδ. Finally, our data show that PKCδ and Syk but not Src are required for Dectin-1-mediated phagocytosis. Taken together, our data identify Dectin-1 as the major PRR for zymosan in primary human monocytes and identify PKCδ as a novel downstream signaling kinase for Dectin-1-mediated regulation of monocyte NADPH oxidase and zymosan phagocytosis.
Insights
Dectin-1 is the main receptor for zymosan in human monocytes, activating NADPH oxidase. Protein kinase C delta (PKCδ) is a novel signaling molecule essential for Dectin-1-mediated responses, including phagocytosis.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Zymosan stimulates monocyte NADPH oxidase, producing superoxide (O2(.-)) vital for host defense.
- Uncontrolled superoxide production can lead to chronic inflammation and tissue damage.
Purpose of the Study:
- To characterize signaling pathways regulating NADPH oxidase activity in human monocytes.
- To identify pattern recognition receptors (PRRs) involved in zymosan and zymosan opsonized (ZOP) activation.
Main Methods:
- Investigated Dectin-1, CR3, Syk, Src, and PKCδ involvement in monocyte signaling.
- Utilized human primary monocytes and zymosan/ZOP stimulation.
- Assessed NADPH oxidase activity, O2(.-) production, and phagocytosis.
Main Results:
- Dectin-1 is the primary receptor for zymosan; Dectin-1 and CR3 mediate ZOP activation.
- Syk and Src are downstream of Dectin-1; PKCδ is a novel signaling component.
- PKCδ activity is required for Syk and Src association with Dectin-1.
- PKCδ and Syk, but not Src, are essential for Dectin-1-mediated phagocytosis.
Conclusions:
- Dectin-1 is the major PRR for zymosan in human monocytes.
- PKCδ is a novel kinase regulating Dectin-1-mediated NADPH oxidase activity and phagocytosis.
Related Concept Videos
Calmodulin-dependent Signaling
The Ca2+-CaM complex does not have enzymatic activity by itself. Instead, the complex binds downstream target proteins, including membrane proteins or enzymes,...
cAMP-dependent Protein Kinase Pathways
The JAK-STAT Signaling Pathway
Amplifying Signals via Enzymatic Cascade
MAPK Signaling Cascades
IP3/DAG Signaling Pathway

