Cargando…

A randomized trial and novel SPR technique identifies altered lipoprotein-LDL receptor binding as a mechanism underlying elevated LDL-cholesterol in APOE4s

At a population level APOE4 carriers (~25% Caucasians) are at higher risk of cardiovascular diseases. The penetrance of genotype is however variable and influenced by dietary fat composition, with the APOE4 allele associated with greater LDL-cholesterol elevation in response to saturated fatty acids...

Descripción completa

Detalles Bibliográficos
Autores principales: Calabuig-Navarro, M. V., Jackson, K. G., Kemp, C. F., Leake, D. S., Walden, C. M., Lovegrove, J. A., Minihane, A. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5343425/
https://www.ncbi.nlm.nih.gov/pubmed/28276521
http://dx.doi.org/10.1038/srep44119
_version_ 1782513362071977984
author Calabuig-Navarro, M. V.
Jackson, K. G.
Kemp, C. F.
Leake, D. S.
Walden, C. M.
Lovegrove, J. A.
Minihane, A. M.
author_facet Calabuig-Navarro, M. V.
Jackson, K. G.
Kemp, C. F.
Leake, D. S.
Walden, C. M.
Lovegrove, J. A.
Minihane, A. M.
author_sort Calabuig-Navarro, M. V.
collection PubMed
description At a population level APOE4 carriers (~25% Caucasians) are at higher risk of cardiovascular diseases. The penetrance of genotype is however variable and influenced by dietary fat composition, with the APOE4 allele associated with greater LDL-cholesterol elevation in response to saturated fatty acids (SFA). The etiology of this greater responsiveness is unknown. Here a novel surface plasmon resonance technique (SPR) is developed and used, along with hepatocyte (with the liver being the main organ modulating lipoprotein metabolism and plasma lipid levels) uptake studies to establish the impact of dietary fatty acid composition on, lipoprotein-LDL receptor (LDLR) binding, and hepatocyte uptake, according to APOE genotype status. In men prospectively recruited according to APOE genotype (APOE3/3 common genotype, or APOE3/E4), triglyceride-rich lipoproteins (TRLs) were isolated at fasting and 4–6 h following test meals rich in SFA, unsaturated fat and SFA with fish oil. In APOE4s a greater LDLR binding affinity of postprandial TRL after SFA, and lower LDL binding and hepatocyte internalization, provide mechanisms for the greater LDL-cholesterol raising effect. The SPR technique developed may be used for the future study of the impact of genotype, and physiological and behavioral variables on lipoprotein metabolism. Trial registration number NCT01522482.
format Online
Article
Text
id pubmed-5343425
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-53434252017-03-14 A randomized trial and novel SPR technique identifies altered lipoprotein-LDL receptor binding as a mechanism underlying elevated LDL-cholesterol in APOE4s Calabuig-Navarro, M. V. Jackson, K. G. Kemp, C. F. Leake, D. S. Walden, C. M. Lovegrove, J. A. Minihane, A. M. Sci Rep Article At a population level APOE4 carriers (~25% Caucasians) are at higher risk of cardiovascular diseases. The penetrance of genotype is however variable and influenced by dietary fat composition, with the APOE4 allele associated with greater LDL-cholesterol elevation in response to saturated fatty acids (SFA). The etiology of this greater responsiveness is unknown. Here a novel surface plasmon resonance technique (SPR) is developed and used, along with hepatocyte (with the liver being the main organ modulating lipoprotein metabolism and plasma lipid levels) uptake studies to establish the impact of dietary fatty acid composition on, lipoprotein-LDL receptor (LDLR) binding, and hepatocyte uptake, according to APOE genotype status. In men prospectively recruited according to APOE genotype (APOE3/3 common genotype, or APOE3/E4), triglyceride-rich lipoproteins (TRLs) were isolated at fasting and 4–6 h following test meals rich in SFA, unsaturated fat and SFA with fish oil. In APOE4s a greater LDLR binding affinity of postprandial TRL after SFA, and lower LDL binding and hepatocyte internalization, provide mechanisms for the greater LDL-cholesterol raising effect. The SPR technique developed may be used for the future study of the impact of genotype, and physiological and behavioral variables on lipoprotein metabolism. Trial registration number NCT01522482. Nature Publishing Group 2017-03-09 /pmc/articles/PMC5343425/ /pubmed/28276521 http://dx.doi.org/10.1038/srep44119 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Calabuig-Navarro, M. V.
Jackson, K. G.
Kemp, C. F.
Leake, D. S.
Walden, C. M.
Lovegrove, J. A.
Minihane, A. M.
A randomized trial and novel SPR technique identifies altered lipoprotein-LDL receptor binding as a mechanism underlying elevated LDL-cholesterol in APOE4s
title A randomized trial and novel SPR technique identifies altered lipoprotein-LDL receptor binding as a mechanism underlying elevated LDL-cholesterol in APOE4s
title_full A randomized trial and novel SPR technique identifies altered lipoprotein-LDL receptor binding as a mechanism underlying elevated LDL-cholesterol in APOE4s
title_fullStr A randomized trial and novel SPR technique identifies altered lipoprotein-LDL receptor binding as a mechanism underlying elevated LDL-cholesterol in APOE4s
title_full_unstemmed A randomized trial and novel SPR technique identifies altered lipoprotein-LDL receptor binding as a mechanism underlying elevated LDL-cholesterol in APOE4s
title_short A randomized trial and novel SPR technique identifies altered lipoprotein-LDL receptor binding as a mechanism underlying elevated LDL-cholesterol in APOE4s
title_sort randomized trial and novel spr technique identifies altered lipoprotein-ldl receptor binding as a mechanism underlying elevated ldl-cholesterol in apoe4s
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5343425/
https://www.ncbi.nlm.nih.gov/pubmed/28276521
http://dx.doi.org/10.1038/srep44119
work_keys_str_mv AT calabuignavarromv arandomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT jacksonkg arandomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT kempcf arandomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT leakeds arandomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT waldencm arandomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT lovegroveja arandomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT minihaneam arandomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT calabuignavarromv randomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT jacksonkg randomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT kempcf randomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT leakeds randomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT waldencm randomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT lovegroveja randomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s
AT minihaneam randomizedtrialandnovelsprtechniqueidentifiesalteredlipoproteinldlreceptorbindingasamechanismunderlyingelevatedldlcholesterolinapoe4s