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Published on: October 12, 2017
Macrophage-Associated Lipin-1 Enzymatic Activity Contributes to Modified Low-Density Lipoprotein-Induced
Aimee E Vozenilek1, Aaron R Navratil1, Jonette M Green1
1From the Department of Microbiology and Immunology (A.E.V., C.M.R.B., M.D.W.), Department of Pathology and Translational Pathobiology (J.M.G., B.H.P., A.W.O.), Department of Cell Biology and Anatomy (A.C.F.), Feist-Weiller Cancer Center (D.T.C.), and Pharmacology, Toxicology, and Neuroscience (R.L.K.), Louisiana State University Health Sciences Center, Shreveport; Department of Pharmacology, University of California San Diego, La Jolla (A.R.N.); Department of Neuroscience, Karolinska Institutet, Stockholm, Sweden (R.C.); and Division of Geriatrics and Nutritional Science, Washington University School of Medicine, St. Louis, MO (B.N.F.).
Objective:
Macrophage proinflammatory responses induced by modified low-density lipoproteins (modLDL) contribute to atherosclerotic progression. How modLDL causes macrophages to become proinflammatory is still enigmatic. Macrophage foam cell formation induced by modLDL requires glycerolipid synthesis. Lipin-1, a key enzyme in the glycerolipid synthesis pathway, contributes to modLDL-elicited macrophage proinflammatory responses in vitro. The objective of this study was to determine whether macrophage-associated lipin-1 contributes to atherogenesis and to assess its role in modLDL-mediated signaling in macrophages.
Approach And Results:
We developed mice lacking lipin-1 in myeloid-derived cells and used adeno-associated viral vector 8 expressing the gain-of-function mutation of mouse proprotein convertase subtilisin/kexin type 9 (adeno-associated viral vector 8-proprotein convertase subtilisin/kexin type 9) to induce hypercholesterolemia and plaque formation. Mice lacking myeloid-associated lipin-1 had reduced atherosclerotic burden compared with control mice despite similar plasma lipid levels. Stimulation of bone marrow-derived macrophages with modLDL activated a persistent protein kinase Cα/βII-extracellular receptor kinase1/2-jun proto-oncogene signaling cascade that contributed to macrophage proinflammatory responses that was dependent on lipin-1 enzymatic activity.
Conclusions:
Our data demonstrate that macrophage-associated lipin-1 is atherogenic, likely through persistent activation of a protein kinase Cα/βII-extracellular receptor kinase1/2-jun proto-oncogene signaling cascade that contributes to foam cell proinflammatory responses. Taken together, these results suggest that modLDL-induced foam cell formation and modLDL-induced macrophage proinflammatory responses are not independent consequences of modLDL stimulation but rather are both directly influenced by enhanced lipid synthesis.
Insights
Lipin-1 in macrophages promotes atherosclerosis by enhancing lipid synthesis and activating inflammatory signaling pathways. Targeting lipin-1 may offer a novel therapeutic strategy for preventing cardiovascular disease progression.
Area of Science:
- Cardiovascular Biology
- Lipid Metabolism
- Immunology
Background:
- Modified low-density lipoproteins (modLDL) trigger macrophage inflammation, contributing to atherosclerosis.
- Lipin-1, crucial for glycerolipid synthesis, is implicated in modLDL-induced macrophage inflammation.
- The precise role of macrophage lipin-1 in atherogenesis remains unclear.
Purpose of the Study:
- To investigate the role of macrophage-associated lipin-1 in atherosclerosis.
- To determine lipin-1's involvement in modLDL-mediated signaling pathways within macrophages.
Main Methods:
- Generated mice with myeloid-specific lipin-1 deficiency.
- Induced hypercholesterolemia and atherosclerosis using adeno-associated viral vector 8-proprotein convertase subtilisin/kexin type 9.
- Stimulated bone marrow-derived macrophages with modLDL to analyze signaling pathways.
Main Results:
- Mice lacking myeloid lipin-1 exhibited reduced atherosclerotic burden.
- modLDL induced a sustained protein kinase Cα/βII-extracellular receptor kinase1/2-jun proto-oncogene cascade in macrophages, dependent on lipin-1 activity.
- This cascade mediated macrophage proinflammatory responses.
Conclusions:
- Macrophage lipin-1 is atherogenic, promoting inflammation and foam cell responses.
- Lipin-1 facilitates modLDL-induced macrophage inflammation via a persistent signaling cascade.
- Enhanced lipid synthesis, mediated by lipin-1, directly influences modLDL-induced foam cell formation and inflammation.
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