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      7-Dehydrocholesterol (7-DHC), But Not Cholesterol, Causes Suppression of Canonical TGF-β Signaling and Is Likely Involved in the Development of Atherosclerotic Cardiovascular Disease (ASCVD)

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          Abstract

          For several decades, cholesterol has been thought to cause ASCVD. Limiting dietary cholesterol intake has been recommended to reduce the risk of the disease. However, several recent epidemiological studies do not support a relationship between dietary cholesterol and/or blood cholesterol and ASCVD. Consequently, the role of cholesterol in atherogenesis is now uncertain. Much evidence indicates that TGF-β, an anti-inflammatory cytokine, protects against ASCVD and that suppression of canonical TGF-β signaling (Smad2-dependent) is involved in atherogenesis. We had hypothesized that cholesterol causes ASCVD by suppressing canonical TGF-β signaling in vascular endothelium. To test this hypothesis, we determine the effects of cholesterol, 7-dehydrocholesterol (7-DHC; the biosynthetic precursor of cholesterol), and other sterols on canonical TGF-β signaling. We use Mv1Lu cells (a model cell system for studying TGF-β activity) stably expressing the Smad2-dependent luciferase reporter gene. We demonstrate that 7-DHC (but not cholesterol or other sterols) effectively suppresses the TGF-β-stimulated luciferase activity. We also demonstrate that 7-DHC suppresses TGF-β-stimulated luciferase activity by promoting lipid raft/caveolae formation and subsequently recruiting cell-surface TGF-β receptors from non-lipid raft microdomains to lipid rafts/caveolae where TGF-β receptors become inactive in transducing canonical signaling and undergo rapid degradation upon TGF-β binding. We determine this by cell-surface 125I-TGF-β-cross-linking and sucrose density gradient ultracentrifugation. We further demonstrate that methyl-β-cyclodextrin (MβCD), a sterol-chelating agent, reverses 7-DHC-induced suppression of TGF-β-stimulated luciferase activity by extrusion of 7-DHC from resident lipid rafts/caveolae. These results suggest that 7-DHC, but not cholesterol, promotes lipid raft/caveolae formation, leading to suppression of canonical TGF-β signaling and atherogenesis. J. Cell. Biochem. 118: 1387–1400, 2017. © 2016 Wiley Periodicals, Inc.

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          Author and article information

          Journal
          8205768
          4590
          J Cell Biochem
          J. Cell. Biochem.
          Journal of cellular biochemistry
          0730-2312
          1097-4644
          27 August 2018
          13 December 2016
          June 2017
          05 September 2018
          : 118
          : 6
          : 1387-1400
          Affiliations
          [1 ]Auxagen Inc., St. Louis, Missouri 63132
          [2 ]Department of Pharmacology, Institute for Drug Evaluation Platform, Development Center for Biotechnology, Taipei, Taiwan
          [3 ]Department of Biological Science, National Sun Yat-Sen University and Doctoral Degree Program in Marine Biotechnology, National Sun Yat-Sen University and Academia Sinica, Kaohsiung, Taiwan
          [4 ]Department of Surgery, Saint Louis University Medical Center, 3635 Vista Ave., St. Louis, Missouri 63110
          [5 ]Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, Doisy Research Center, 1100 S. Grand Blvd., St. Louis, Missouri 63104
          Author notes

          AUTHORS’ CONTRIBUTIONS

          S.S.H. performed TGF-β-stimulated luciferase activity assays. C.L.C, I.H.L., and J.M.C. performed sucrose density gradient ultracentrifugation/Western blotting. F.E.J. critically reviewed the manuscript. J.S.H performed cell-surface I 125-TGF-β-cross-linking.

          [* ]Correspondence to: Prof. Jung S. Huang, Ph.D., Department of Biochemistry and Molecular Biology, Saint Louis, University School of Medicine, Doisy Research Center, Room 413, 1100 S. Grand Blvd., St. Louis, MO 63104. E-mail: huangjs@ 123456slu.ed
          Article
          PMC6123222 PMC6123222 6123222 nihpa986788
          10.1002/jcb.25797
          6123222
          27862220
          4851bf16-445f-4bf2-a1c2-007d493d8eb2
          History
          Categories
          Article

          CHOLESTEROL,7-DHC,LIPID RAFTS/CAVEOLAE,NON-LIPID RAFT MICRODOMAINS,CANONICAL TGF-β SIGNALING

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