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Published on: May 4, 2021
Small Molecule Inhibitor of Protein Kinase C DeltaI (PKCδI) Decreases Inflammatory Pathways and Gene Expression and
Brenna Osborne1,2, Rekha S Patel1, Meredith Krause-Hauch1
1Research Service, James A. Haley Veteran's Hospital, 13000 Bruce B Downs Blvd, Tampa, FL 33612, USA.
Abstract:
Obesity promotes metabolic diseases such as type 2 diabetes and cardiovascular disease. PKCδI is a serine/threonine kinase which regulates cell growth, differentiation, and survival. Caspase-3 cleavage of PKCδI releases the C-terminal catalytic fragment (PKCδI_C), which promotes inflammation and apoptosis. We previously demonstrated an increase in PKCδI_C in human obese adipose tissue (AT) and adipocytes. Subsequently, we designed a small molecule drug called NP627 and demonstrated that NP627 specifically inhibited the release of PKCδI_C in vitro. Here, we evaluate the in vivo safety and efficacy of NP627 in a diet-induced obese (DIO) mouse model. The results demonstrate that NP627 treatment in DIO mice increased glucose uptake and inhibited the cleavage of PKCδI_C in the AT as well as in the kidney, spleen, and liver. Next, RNAseq analysis was performed on the AT from the NP627-treated DIO mice. The results show increases in ADIPOQ and CIDEC, upregulation of AMPK, PI3K-AKT, and insulin signaling pathways, while inflammatory pathways were decreased post-NP627 administration. Further, levels of lncRNAs associated with metabolic pathways were affected by NP627 treatment. In conclusion, the study demonstrates that NP627, a small-molecule inhibitor of PKCδI activity, is not toxic and that it improves the metabolic function of DIO mice in vivo.
Insights
A novel drug, NP627, effectively treats obesity-related metabolic dysfunction in mice. It inhibits protein kinase C delta (PKCδI) cleavage, improving glucose uptake and reducing inflammation without toxicity.
Area of Science:
- Biochemistry
- Metabolic Diseases
- Pharmacology
Background:
- Obesity is a major risk factor for metabolic diseases like type 2 diabetes and cardiovascular disease.
- Protein kinase C delta (PKCδI) cleavage releases a fragment (PKCδI_C) that promotes inflammation and apoptosis.
- Increased PKCδI_C levels were observed in human obese adipose tissue.
Purpose of the Study:
- To evaluate the in vivo safety and efficacy of NP627, a small molecule inhibitor of PKCδI cleavage.
- To investigate the effects of NP627 on metabolic function and inflammatory pathways in a diet-induced obese (DIO) mouse model.
Main Methods:
- NP627 was administered to DIO mice.
- Glucose uptake, PKCδI_C levels in various tissues, and RNA sequencing of adipose tissue were analyzed.
- Key signaling pathways and lncRNA levels were assessed post-treatment.
Main Results:
- NP627 treatment increased glucose uptake and inhibited PKCδI_C cleavage in adipose tissue, kidney, spleen, and liver.
- RNAseq revealed increased ADIPOQ and CIDEC, upregulated AMPK, PI3K-AKT, and insulin signaling pathways.
- Inflammatory pathways were decreased, and lncRNAs associated with metabolic pathways were modulated by NP627.
Conclusions:
- NP627 is a safe and effective small-molecule inhibitor of PKCδI activity.
- NP627 improves metabolic function in DIO mice by modulating key signaling and inflammatory pathways.
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