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The TICE Pathway: Mechanisms and Lipid-Lowering Therapies Cover

The TICE Pathway: Mechanisms and Lipid-Lowering Therapies

Open Access
|Jan 2019

References

  1. Dietschy JM Turley SD Spady DK Role of liver in the maintenance of cholesterol and low density lipoprotein homeostasis in different animal species, including humans J Lipid Res 1993 Oct 34 10 1637 59
  2. Ikonen E Cellular cholesterol trafficking and compartmentalization Nat Rev Mol Cell Biol 2008 Feb 9 2 125 38
  3. Tabas I García-Cardeña G Owens GK Recent insights into the cellular biology of atherosclerosis J Cell Biol 2015 Apr 13 209 1 13 22
  4. Brousseau ME Diffenderfer MR Millar JS Effects of Cholesteryl Ester Transfer Protein Inhibition on High-Density Lipoprotein Subspecies, Apolipoprotein A-I Metabolism, and Fecal Sterol Excretion Arterioscler Thromb Vasc Biol 2005 Feb 24 25 5 1057 64
  5. Groen AK Oude Elferink RP Lipid transport into bile and role in bile formation Curr Drug Targets Immune Endocr Metabol Disord 2005 Jun 5 2 131 5
  6. Dawson PA Role of the intestinal bile acid transporters in bile acid and drug disposition Handb Exp Pharmacol 2011 201 169 203
  7. Bosner MS Lange LG Stenson WF Ostlund RE Percent cholesterol absorption in normal women and men quantified with dual stable isotopic tracers and negative ion mass spectrometry J Lipid Res 1999 Feb 40 2 302 8
  8. Sperry WM Lipid Excretion: IV. A Study Of The Relationship Of The Bile To The Fecal Lipids With Special Reference To Certain Problems Of Sterol Metabolism J Biol Chem 1927 71 351 78
  9. Simmonds WJ Hofmann AF Theodor E Absorption of Cholesterol from a Micellar Solution: Intestinal Perfusion Studies in Man J Clin Invest 1967 May 46 5 874 90
  10. Kruit JK Plosch T Havinga R Increased fecal neutral sterol loss upon liver X receptor activation is independent of biliary sterol secretion in mice Gastroenterology 2005 Jan 128 1 147 56
  11. Yu L Hammer RE Li-Hawkins J Disruption of Abcg5 and Abcg8 in mice reveals their crucial role in biliary cholesterol secretion Proc Natl Acad Sci U S A 2002 Dec 10 99 25 16237 42
  12. Temel RE Sawyer JK Yu L Biliary sterol secretion is not required for macrophage reverse cholesterol transport Cell Metab 2010 Jul 7 12 1 96 102
  13. van der Velde AE Vrins CLJ van den Oever K Direct intestinal cholesterol secretion contributes significantly to total fecal neutral sterol excretion in mice Gastroenterology 2007 Sep 133 3 967 75
  14. Jakulj L van Dijk TH de Boer JF Transintestinal Cholesterol Transport Is Active in Mice and Humans and Controls Ezetimibe-Induced Fecal Neutral Sterol Excretion Cell Metab 2016 Dec 24 6 783 94
  15. de Boer JF Kuipers F Groen AK Cholesterol Transport Revisited: A New Turbo Mechanism to Drive Cholesterol Excretion Trends Endocrinol Metab 2018 Feb 29 2 123 33
  16. Zhao Y Pennings M Vrins CLJ Hypocholesterolemia, foam cell accumulation, but no atherosclerosis in mice lacking ABC-transporter A1 and scavenger receptor BI Atherosclerosis 2011 Oct 218 2 314 22
  17. Vrins CLJ Ottenhoff R van den Oever K Trans-intestinal cholesterol efflux is not mediated through high density lipoprotein J Lipid Res 2012 Oct 53 10 2017 23
  18. Le May C Berger JM Lespine A Transintestinal cholesterol excretion is an active metabolic process modulated by PCSK9 and statin involving ABCB1 Arterioscler Thromb Vasc Biol 2013 Jul 33 7 1484 93
  19. Repa JJ Berge KE Pomajzl C Richardson JA Hobbs H Mangelsdorf DJ Regulation of ATP-binding Cassette Sterol Transporters ABCG5 and ABCG8 by the Liver X Receptors α and β J Biol Chem 2002 May 277 21 18793 800
  20. van der Veen JN van Dijk TH Vrins CL Activation of the liver X receptor stimulates trans-intestinal excretion of plasma cholesterol J Biol Chem 2009 Jul 17 284 29 19211 9
  21. de Boer JF Schonewille M Boesjes M Intestinal Farnesoid X Receptor Controls Transintestinal Cholesterol Excretion in Mice Gastroenterology 2017 Apr 152 5 1126 1138.e6
  22. Brufau G Kuipers F Lin Y Trautwein EA Groen AK A reappraisal of the mechanism by which plant sterols promote neutral sterol loss in mice PLoS One 2011 Jun 6 6 e21576
  23. Jakulj L Vissers MN van Roomen CP Ezetimibe stimulates faecal neutral sterol excretion depending on abcg8 function in mice FEBS Lett 2010 Aug 584 16 3625 8
  24. Oosterveer MH Grefhorst A Groen AK Kuipers F The liver X receptor: control of cellular lipid homeostasis and beyond Implications for drug design. Prog Lipid Res 2010 Oct 49 4 343 52
  25. Lefebvre P Cariou B Lien F Kuipers F Staels B Role of bile acids and bile acid receptors in metabolic regulation Physiol Rev 2009 Jan 1 89 1 147 91
  26. Nakano T Inoue I Takenaka Y Ezetimibe Promotes Brush Border Membrane-to-Lumen Cholesterol Efflux in the Small Intestine PLoS One 2016 Mar 11 3 e0152207
  27. Clader JW The discovery of ezetimibe: a view from outside the receptor J Med Chem 2004 Jan 1 47 1 1 9
  28. Infante RE Wang ML Radhakrishnan A Kwon HJ Brown MS Goldstein JL NPC2 facilitates bidirectional transfer of cholesterol between NPC1 and lipid bilayers, a step in cholesterol egress from lysosomes Proc Natl Acad Sci U S A 2008 Oct 7 105 40 15287 92
  29. Wong LH Čopič A Levine TP Advances on the Transfer of Lipids by Lipid Transfer Proteins Trends Biochem Sci 2017 Jul 42 7 516 30
  30. Hanada K Lipid-transfer proteins rectify inter-organelle flux and accurately deliver lipids at membrane contact sites J Lipid Res 2018 Aug 59 8 1341 66
  31. BioGPS [Internet] La Jolla, CA The Scripps Research Institute c2018 Dataset: GeneAtlas MOE430; 2018 [cited 2018 Oct 31]. Available from: www.biogps.org
  32. BioGPS [Internet] La Jolla, CA The Scripps Research Institute c2018 Dataset: GeneAtlas U133A, gcrma; 2018 [cited 2018 Oct 31]. Available from: www.biogps.org
  33. The Human Protein Atlas [Internet] Stockholm The Knut & Alice Wallenberg Foundation 2017 Dec 1 [cited 2018 Oct 31]. Available from: www.protein-atlas.org
  34. Prinz WA Bridging the gap: Membrane contact sites in signaling, metabolism, and organelle dynamics J Cell Biol 2014 Jun 23 205 6 759 69
  35. Helle SCJ Kanfer G Kolar K Lang A Michel AH Kornmann B Organization and function of membrane contact sites Biochim Biophys Acta - Mol Cell Res 2013 Nov 1833 11 2526 41
  36. Besprozvannaya M Dickson E Li H GRAM domain proteins specialize functionally distinct ER-PM contact sites in human cells Elife 2018 Feb 22 7
  37. Murley A Sarsam RD Toulmay A Yamada J Prinz WA Nunnari J Ltc1 is an ER-localized sterol transporter and a component of ER-mitochondria and ER-vacuole contacts J Cell Biol 2015 May 25 209 4 539 48
  38. Gatta AT Wong LH Sere YY A new family of StART domain proteins at membrane contact sites has a role in ER-PM sterol transport Elife 2015 May 22 4
  39. Horenkamp FA Valverde DP Nunnari J Reinisch KM Molecular basis for sterol transport by StART-like lipid transfer domains EMBO J 2018 Mar 15 37 6 e98002
  40. Pietrangelo A Ridgway ND Bridging the molecular and biological functions of the oxysterol-binding protein family Cell Mol Life Sci 2018 Sep 75 17 3079 98
  41. Mesmin B Bigay J Moser von Filseck J Lacas-Gervais S Drin G Antonny B A four-step cycle driven by PI(4)P hydrolysis directs sterol/PI(4)P exchange by the ER-Golgi tether OSBP Cell 2013 Nov 7 155 4 830 43
  42. Motazacker MM Pirhonen J van Capelleveen JC A loss-of-function variant in OSBPL1A predisposes to low plasma HDL cholesterol levels and impaired cholesterol efflux capacity Atherosclerosis 2016 Jun 249 140 7
  43. Yan D Jauhiainen M Hildebrand RB Expression of human OSBP-related protein 1L in macrophages enhances atherosclerotic lesion development in LDL receptor-deficient mice Arter Thromb Vasc Biol 2007 27 7 1618 24
  44. Arita M Kojima H Nagano T Okabe T Wakita T Shimizu H Oxysterol-Binding Protein Family I Is the Target of Minor Enviroxime-Like Compounds J Virol 2013 Apr 15 87 8 4252 60
  45. Burgett AWG Poulsen TB Wangkanont K Natural products reveal cancer cell dependence on oxysterol-binding proteins Nat Chem Biol 2011 Aug 7 7 9 639 47
  46. Kallen CB Billheimer JT Summers SA Stayrook SE Lewis M Strauss JF Steroidogenic acute regulatory protein (StAR) is a sterol transfer protein J Biol Chem 1998 Oct 9 273 41 26285 8
  47. Soccio RE Breslow JL StAR-related lipid transfer (START) proteins: mediators of intracellular lipid metabolism J Biol Chem 2003 Jun 20 278 25 22183 6
  48. Wilhelm LP Wendling C Védie B STARD3 mediates endoplasmic reticulum-to-endosome cholesterol transport at membrane contact sites EMBO J 2017 May 15 36 10 1412 33
  49. Kanno K Wu MK Scapa EF Roderick SL Cohen DE Structure and function of phosphatidylcholine transfer protein (PC-TP)/StarD2 Biochim Biophys Acta - Mol Cell Biol Lipids 2007 Jun 1771 6 654 62
  50. Barter PJ Hugh sinclair lecture: the regulation and remodelling of HDL by plasma factors Atheroscler Suppl 2002 Dec 3 4 39 47
  51. Toulmay A Prinz WA A conserved membrane-binding domain targets proteins to organelle contact sites J Cell Sci 2012 Jan 1 125 Pt 1 49 58
  52. Liu L-K Choudhary V Toulmay A Prinz WA An inducible ER-Golgi tether facilitates ceramide transport to alleviate lipotoxicity J Cell Biol 2017 Jan 2 216 1 131 47
Language: English
Page range: 70 - 76
Published on: Jan 1, 2019
Published by: Houston Methodist DeBakey Heart & Vascular Center
In partnership with: Paradigm Publishing Services

© 2019 Aldo Grefhorst, Henkjan J. Verkade, Albert K. Groen, published by Houston Methodist DeBakey Heart & Vascular Center
This work is licensed under the Creative Commons Attribution-NonCommercial 4.0 License.