The TNF-Like Protein 1A–Death Receptor 3 Pathway Promotes Macrophage Foam Cell Formation In Vitro
James E. McLaren,Claudia Jane Calder,Brian P. McSharry,Keith John Sexton,Rebecca Claire Salter,N. N. Singh,Gavin William Grahame Wilkinson,Edward Chung Yern Wang,Dipak Purshottam Ramji +8 more
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TL;DR: It is demonstrated that TL1A promotes foam cell formation in human macrophages in vitro by increasing both acetylated and oxidized low-density lipoprotein uptake, by enhancing intracellular total and esterified cholesterol levels and reducing cholesterol efflux.
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Abstract: TNF-like protein 1A (TL1A), a TNF superfamily cytokine that binds to death receptor 3 (DR3), is highly expressed in macrophage foam cell-rich regions of atherosclerotic plaques, although its role in foam cell formation has yet to be elucidated. We investigated whether TL1A can directly stimulate macrophage foam cell formation in both THP-1 and primary human monocyte-derived macrophages with the underlying mechanisms involved. We demonstrated that TL1A promotes foam cell formation in human macrophages in vitro by increasing both acetylated and oxidized low-density lipoprotein uptake, by enhancing intracellular total and esterified cholesterol levels and reducing cholesterol efflux. This imbalance in cholesterol homeostasis is orchestrated by TL1A-mediated changes in the mRNA and protein expression of several genes implicated in the uptake and efflux of cholesterol, such as scavenger receptor A and ATP-binding cassette transporter A1. Furthermore, through the use of virally delivered DR3 short-hairpin RNA and bone marrow-derived macrophages from DR3 knockout mice, we demonstrate that DR3 can regulate foam cell formation and contributes significantly to the action of TL1A in this process in vitro. We show, for the first time, a novel proatherogenic role for both TL1A and DR3 that implicates this pathway as a target for the therapeutic intervention of atherosclerosis.
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Citations
Molecular Biology of Atherosclerosis
TL;DR: Key signaling pathways are presented to provide a context for the gene manipulations summarized herein and will undoubtedly provide a rich resource for future innovation toward intervention and prevention of the number one cause of death in the modern world.
545
Cytokines in atherosclerosis: Key players in all stages of disease and promising therapeutic targets.
TL;DR: The current understanding of the roles of different cytokines in atherosclerosis together with therapeutic approaches aimed at manipulating their actions are described.
466
Cytokines, macrophage lipid metabolism and foam cells: implications for cardiovascular disease therapy.
TL;DR: A clear understanding of macrophage foam cell biology will hopefully enable novel foam cell targeting therapies to be developed for use in the clinical intervention of atherosclerosis.
404
Systemic Inflammatory Response and Atherosclerosis: The Paradigm of Chronic Inflammatory Rheumatic Diseases
TL;DR: There is evidence that anti-inflammatory biologic drugs, such as anti-TNF and anti-IL1β agents, can decelerate the atherogenic process, thus setting new therapeutic targets for early and effective disease control and suppression of inflammation, in addition to aggressive management of classical CV risk factors.
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The TNF-family cytokine TL1A promotes allergic immunopathology through group 2 innate lymphoid cells.
Françoise Meylan,Eric T. Hawley,Luke Barron,Jillian L. Barlow,Pallavi Penumetcha,Martin Pelletier,Giuseppe Sciumè,Arianne C. Richard,Erika T. Hayes,Julio Gomez-Rodriguez,Xi Chen,William E. Paul,Thomas A. Wynn,Andrew N. J. McKenzie,Richard M. Siegel +14 more
TL;DR: It is found that allergic pathology driven by constitutive TL1A expression depends on interleukin-13 (IL-13), but not on T, NKT, mast cells, or commensal intestinal flora, and this data identify costimulation of ILC2 as a novel function ofTL1A important for allergic lung disease, and suggest that TL 1A may be a therapeutic target in these settings.
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TL1A Is a TNF-like Ligand for DR3 and TR6/DcR3 and Functions as a T Cell Costimulator
Thi Sau Migone,Jun Zhang,Xia Luo,Li Zhuang,Cecil Chen,Bugen Hu,June S. Hong,James W. Perry,Su Fang Chen,Joe X. H. Zhou,Yun Hee Cho,Stephen Ullrich,Palanisamy Kanakaraj,Jeffrey Carrell,Ernest Boyd,Henrik S. Olsen,Gang Hu,Laurie Pukac,Ding Liu,Jian Ni,Sunghee Kim,Reiner L. Gentz,Ping Feng,Paul A. Moore,Steve Ruben,Ping Wei +25 more
TL;DR: The data suggest that interaction of TL1A with DR3 promotes T cell expansion during an immune response, whereas TR6 has an opposing effect.
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Scavenger Receptors in Atherosclerosis: Beyond Lipid Uptake
TL;DR: Recent advances in knowledge of scavenger receptor regulation and signal transduction are focused on, their roles in sterile inflammation and infection, and the potential impact of these pathways in regulating the balance of lipid accumulation and inflammation in the artery wall.
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TL;DR: New studies highlight the central importance of the ATP-binding cassette (ABC) transporters ABCA1 and ABCG1 in reducing macrophage foam cell formation, inflammation, and atherosclerosis.
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