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Ceramide Kinase Regulates TNF-α-induced Immune Responses in Human Monocytic Cells
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Abstract
Ceramide kinase (CERK) phosphorylates ceramide to produce ceramide-1-phosphate (C1P), which is involved in the development of metabolic inflammation. TNF-α modulates inflammatory responses in monocytes associated with various inflammatory disorders; however, the underlying mechanisms remain not fully understood. Here, we investigated the role of CERK in TNF-α-induced inflammatory responses in monocytes. Our results show that disruption of CERK activity in monocytes either by the chemical inhibitor NVP- 231 or by small interfering RNA (siRNA) results in the defective expression of inflammatory markers including CD11c, CD11b and HLA-DR in response to TNF-α. Our data show that TNF-α upregulates ceramide phosphorylation. Inhibition of CERK in monocytes significantly reduced the secretion of IL-1β and MCP-1. Similar results were observed in CERK deficient cells. Phosphorylation of JNK, p38 and NF-κB resulting from TNF-α stimulation was reduced by inhibition of CERK. Additionally, NF-κB/AP-1 activity was suppressed by the inhibition of CERK. Clinically, obese individuals had higher levels of CERK expression in PBMCs compared to lean individuals, which correlated with TNF-α levels. Taken together, these results suggest that CERK plays a key role in regulating inflammatory responses in human monocytes during TNF-α stimulation. CERK may be a relevant target for developing novel therapies for chronic inflammatory diseases.
Research Square Platform LLC
Title: Ceramide Kinase Regulates TNF-α-induced Immune Responses in Human Monocytic Cells
Description:
Abstract
Ceramide kinase (CERK) phosphorylates ceramide to produce ceramide-1-phosphate (C1P), which is involved in the development of metabolic inflammation.
TNF-α modulates inflammatory responses in monocytes associated with various inflammatory disorders; however, the underlying mechanisms remain not fully understood.
Here, we investigated the role of CERK in TNF-α-induced inflammatory responses in monocytes.
Our results show that disruption of CERK activity in monocytes either by the chemical inhibitor NVP- 231 or by small interfering RNA (siRNA) results in the defective expression of inflammatory markers including CD11c, CD11b and HLA-DR in response to TNF-α.
Our data show that TNF-α upregulates ceramide phosphorylation.
Inhibition of CERK in monocytes significantly reduced the secretion of IL-1β and MCP-1.
Similar results were observed in CERK deficient cells.
Phosphorylation of JNK, p38 and NF-κB resulting from TNF-α stimulation was reduced by inhibition of CERK.
Additionally, NF-κB/AP-1 activity was suppressed by the inhibition of CERK.
Clinically, obese individuals had higher levels of CERK expression in PBMCs compared to lean individuals, which correlated with TNF-α levels.
Taken together, these results suggest that CERK plays a key role in regulating inflammatory responses in human monocytes during TNF-α stimulation.
CERK may be a relevant target for developing novel therapies for chronic inflammatory diseases.
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