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Citations to this article

Molecular organization of the cholesteryl ester droplets in the fatty streaks of human aorta.
D M Engelman, G M Hillman
D M Engelman, G M Hillman
Published October 1, 1976
Citation Information: J Clin Invest. 1976;58(4):997-1007. https://doi.org/10.1172/JCI108554.
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Research Article

Molecular organization of the cholesteryl ester droplets in the fatty streaks of human aorta.

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Abstract

X-ray diffraction patterns from human arterial specimens containing atherosclerotic fatty streak lesions exhibited a single sharp reflection, corresponding to a structural spacing of about 35 A. Specimens without lesions did not. When specimens with fatty streaks were heated, an order-to-disorder phase transition was revealed by the disappearance of the sharp reflection. The transition was thermally reversible and its temperature varied from aorta to aorta over a range from 28 degrees to 42 degrees C. Since cholesteryl ester droplets are a major component of fatty streaks, comparison studies were made of the diffraction behavior from pure cholesteryl esters. We found that the diffraction patterns of the fatty streak material could be accounted for by the organization of the cholesteryl esters into a liquid-crystalline smectic phase that melts from the smectic to a less ordered phase upon heating. When combined with the conclusions of others from polarized light microscopy, our study shows that a droplet in the smectic phase has well-defined concentric layers of lipid molecules. In each layer, the long axes of the molecules have a net radial orientation with respect to the droplet, but the side-to-side organization is disordered. We suggest that the accessibility of portions of the lipids for specific binding to enzymes or transport proteins may be restricted when they are in the smectic state, and that exchange of lipids with surrounding membranes or other potential binding sites may likewise be inhibited. The restriction in the smectic phase should be greater than in the less ordered phases that exist at higher temperatures.

Authors

D M Engelman, G M Hillman

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Total citations by year

Year: 2023 2022 2019 2014 2011 2002 1998 1997 1994 1990 1989 1988 1987 1984 1983 1982 1981 1980 1979 1978 1977 1976 Total
Citations: 1 3 1 2 1 1 1 1 1 1 1 1 2 1 1 1 2 1 1 1 2 1 28
Citation information
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Citations to this article (28)

Title and authors Publication Year
Addressing the Structural Organization of Silicone Alternatives in Formulations by Molecular Dynamics Simulations and a Novel Equilibration Protocol.
Ferreira T, Loureiro A, Noro J, Cavaco-Paulo A, Castro TG
Polymers 2023
Triglyceride lipolysis triggers liquid crystalline phases in lipid droplets and alters the LD proteome.
Rogers S, Gui L, Kovalenko A, Zoni V, Carpentier M, Ramji K, Ben Mbarek K, Bacle A, Fuchs P, Campomanes P, Reetz E, Speer NO, Reynolds E, Thiam AR, Vanni S, Nicastro D, Henne WM
The Journal of Cell Biology 2022
Lipid droplets go through a (liquid crystalline) phase.
Windham IA, Cohen S
The Journal of Cell Biology 2022
Capturing the Liquid-Crystalline Phase Transformation: Implications for Protein Targeting to Sterol Ester-Rich Lipid Droplets.
Braun RJ, Swanson JMJ
Membranes 2022
Liquid-crystalline phase transitions in lipid droplets are related to cellular states and specific organelle association
J Mahamid, D Tegunov, A Maiser, J Arnold, H Leonhardt, JM Plitzko, W Baumeister
Proceedings of the National Academy of Sciences 2019
Polarized THG Microscopy Identifies Compositionally Different Lipid Droplets in Mammalian Cells
G Bautista, SG Pfisterer, MJ Huttunen, S Ranjan, K Kanerva, E Ikonen, M Kauranen
Biophysical Journal 2014
Biophysical characteristics of cells cultured on cholesteryl ester liquid crystals
CF Soon, WI Omar, RF Berends, N Nayan, H Basri, KS Tee, M Youseffi, N Blagden, MC Denyer
Micron 2014
Ultrasound and Carotid Bifurcation Atherosclerosis
A Nicolaides, KW Beach, E Kyriacou, CS Pattichis
2011
Triglyceride depletion in THP-1 cells alters cholesteryl ester physical state and cholesterol efflux
AT Lada, MC Willingham, RW Clair
Journal of lipid research 2002
Lipofuscin and Lipid Oxidation in Human Coronary Endothelium
I Joris, ME Billingham, JM Underwood, G Majno
Cardiovascular Pathology 1998
MRI and NMR spectroscopy of the lipids of atherosclerotic plaque in rabbits and humans
TP Trouard, MI Altbach, GC Hunter, CD Eskelson, AF Gmitro
Magnetic Resonance in Medicine 1997
13C-NMR spectroscopy of human atherosclerotic lesions. Relation between fatty acid saturation, cholesteryl ester content, and luminal obstruction
JF Toussaint, JF Southern, V Fuster, HL Kantor
Arteriosclerosis Thrombosis and Vascular Biology 1994
Evaluation of atherosclerotic lesions using NMR microimaging
M Asdente, L Pavesi, PL Oreste, A Colombo, W Kuhn, E Tremoli
Atherosclerosis 1990
Limitations of the lipid state hypothesis for atherosclerosis are revealed by X-ray diffraction measurements
C Burks, S Hong, M Ho, DM Engelman
Atherosclerosis 1989
High-resolutionH NMR spectral signature from human atheroma
JD Pearlman, J Zajicek, MB Merickel, CS Carman, CR Ayers, JR Brookeman, MF Brown
Magnetic Resonance in Medicine 1988
High-resolution proton NMR spectra of human arterial plaque
J Zajicek, JD Pearlman, MB Merickel, CR Ayers, JR Brookeman, MF Brown
Biochemical and Biophysical Research Communications 1987
Studies on fine structure and location of lipids in quick-freeze replicas of atherosclerotic aorta of WHHL rabbits
K Amanuma, T Kanaseki, Y Ikeuchi, S Ohkuma, T Takano
Virchows Archiv A Pathological Anatomy and Histopathology 1987
The Healing and Scarring of Atheroma
M Wolman
1984
Ultrastructure of Hepatic Cholesterol Crystals in the Hypercholesterolemic — Diabetic Rat
DA Handley, S Chien, CM Arbeeny
Pathology - Research and Practice 1983
Mobilization of cholesterol from cholesterol ester-enriched tissue culture cells by phospholipid dispersions
AO Yau-Young, GH Rothblat, DM Small
Biochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism 1982
Cholesteryl myristate conformation in liquid crystalline mesophases determined by neutron scattering
C Burks, DM Engelman
Proceedings of the National Academy of Sciences 1981
Hepatic Lipid Accumulation and Intracellular Cholesterol Crystal Formation in Hypercholesterolemic Diabetic Rats
DA Handley, S Chien, CM Arbeeny
1981
Micellar organization of lipid droplets in human atherosclerotic lesions
D Kaul, V Kothekar, RK Mishra
Atherosclerosis 1980
Lipid dynamics in human low density lipoproteins and human aortic tissue with fibrous plaques. A study by high field 13C NMR spectroscopy
JA Hamilton, EH Cordes, CJ Glueck
The Journal of biological chemistry 1979
Interaction of collagen with the lipids of tendon xanthomata
AR Tall, DM Small, RS Lees
Journal of Clinical Investigation 1978
Cellular Mechanisms for Lipid Deposition in Atherosclerosis
HL Bleich, ES Boro, DM Small
New England Journal of Medicine 1977
Carbon-13 nuclear magnetic resonance studies of cholesteryl esters and cholesteryl ester/triglyceride mixtures
JA Hamilton, N Oppenheimer, EH Cordes
The Journal of biological chemistry 1977
Compositional mapping of cholesteryl ester droplets in the fatty streaks of human aorta
GM Hillman, DM Engelman
Journal of Clinical Investigation 1976

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