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Published on: October 12, 2017
Myeloid-associated lipin-1 transcriptional co-regulatory activity is atheroprotective
Cassidy M R Blackburn1, Robert M Schilke1, Aimee E Vozenilek1
1Department of Microbiology and Immunology, Louisiana State University Health Sciences Center, Shreveport, LA, United States.
Insights
Lipin-1
Area of Science:
- Cardiovascular Biology
- Molecular Metabolism
Background:
- Atherosclerosis, a primary cause of cardiovascular disease, stems from arterial cholesterol deposition and inflammation.
- Lipin-1's dual role as a phosphatase and transcriptional co-regulator impacts macrophage inflammation and lipid metabolism.
- Previous work indicated lipin-1 phosphatase activity accelerates atherosclerosis.
Purpose of the Study:
- To investigate the role of lipin-1's transcriptional co-regulatory function in myeloid cells on atherosclerosis progression.
- To test the hypothesis that myeloid-derived lipin-1 transcriptional co-regulatory activity is atheroprotective.
Main Methods:
- Utilized myeloid-derived lipin-1 knockout (lipin-1mKO) mice and littermate controls.
- Induced atherosclerosis using a high-fat diet and adeno-associated virus serotype 8 expressing PCSK9 (AAV8-PCSK9).
Main Results:
- Lipin-1mKO mice exhibited larger aortic root plaques compared to controls after 8 and 12 weeks.
- Knockout mice showed increased serum pro-inflammatory cytokines and larger necrotic cores in plaques.
- Reduced apoptosis was observed in plaques of lipin-1mKO mice.
Conclusions:
- Myeloid-derived lipin-1's transcriptional co-regulatory activity is atheroprotective.
- Targeting lipin-1 in myeloid cells may offer a therapeutic strategy for atherosclerosis.
- Lipin-1's role in regulating inflammation and lipid metabolism is crucial in cardiovascular disease.
Background And Aims:
Atherosclerosis is the most prominent underlying cause of cardiovascular disease (CVD). It is initiated by cholesterol deposition in the arterial intima, which causes macrophage recruitment and proinflammatory responses that promote plaque growth, necrotic core formation, and plaque rupture. Lipin-1 is a phosphatidic acid phosphohydrolase for glycerolipid synthesis. We have shown that lipin-1 phosphatase activity promotes macrophage pro-inflammatory responses when stimulated with modified low-density lipoprotein (modLDL) and accelerates atherosclerosis. Lipin-1 also independently acts as a transcriptional co-regulator where it enhances the expression of genes involved in β-oxidation. In hepatocytes and adipocytes, lipin-1 augments the activity of transcription factors such as peroxisome proliferator-activated receptor (PPARs). PPARs control the expression of anti-inflammatory genes in macrophages and slow or reduce atherosclerotic progression. Therefore, we hypothesize myeloid-derived lipin-1 transcriptional co-regulatory activity reduces atherosclerosis.
Methods:
We used myeloid-derived lipin-1 knockout (lipin-1mKO) and littermate control mice and AAV8-PCSK9 along with high-fat diet to elicit atherosclerosis.
Results:
Lipin-1mKO mice had larger aortic root plaques than littermate control mice after 8 and 12 weeks of a high-fat diet. Lipin-1mKO mice also had increased serum proinflammatory cytokine concentrations, reduced apoptosis in plaques, and larger necrotic cores in the plaques compared to control mice.
Conclusions:
Combined, the data suggest lipin-1 transcriptional co-regulatory activity in myeloid cells is atheroprotective.
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