Intracellular trafficking of the free cholesterol derived from LDL cholesteryl ester is defective in vivo in Niemann-Pick C disease: insights on normal metabolism of HDL and LDL gained from the NP-C mutation

Niemann-Pick C disease (NP-C) is a rare inborn error of metabolism with hepatic involvement and neurological sequelae that usually manifest in childhood. Although in vitro studies have shown that the lysosomal distribution of LDL-derived cholesterol is defective in cultured cells of NP-C subjects, n...

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Main Authors: R D Shamburek, P G Pentchev, L A Zech, J Blanchette-Mackie, E D Carstea, J M VandenBroek, P S Cooper, E B Neufeld, R D Phair, H B Brewer, Jr, R O Brady, C C Schwartz
Format: Article
Language:English
Published: Elsevier 1997-12-01
Series:Journal of Lipid Research
Online Access:http://www.sciencedirect.com/science/article/pii/S0022227520300274
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spelling doaj-55306360d4814767a73496af294e72192021-04-26T05:45:27ZengElsevierJournal of Lipid Research0022-22751997-12-01381224222435Intracellular trafficking of the free cholesterol derived from LDL cholesteryl ester is defective in vivo in Niemann-Pick C disease: insights on normal metabolism of HDL and LDL gained from the NP-C mutationR D Shamburek0P G Pentchev1L A Zech2J Blanchette-Mackie3E D Carstea4J M VandenBroek5P S Cooper6E B Neufeld7R D Phair8H B Brewer, Jr9R O Brady10C C Schwartz11Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Molecular Disease Branch, National Institutes of Health, Bethesda, MD 20892, USA.Niemann-Pick C disease (NP-C) is a rare inborn error of metabolism with hepatic involvement and neurological sequelae that usually manifest in childhood. Although in vitro studies have shown that the lysosomal distribution of LDL-derived cholesterol is defective in cultured cells of NP-C subjects, no unusual characteristics mark the plasma lipoprotein profiles. We set out to determine whether anomalies exist in vivo in the cellular distribution of newly synthesized, HDL-derived or LDL-derived cholesterol under physiologic conditions in NP-C subjects. Three affected and three normal male subjects were administered [14C]mevalonate as a tracer of newly synthesized cholesterol and [3H]cholesteryl linoleate in either HDL or LDL to trace the distribution of lipoprotein-derived free cholesterol. The rate of appearance of free [14C]- and free [3H]cholesterol in the plasma membrane was detected indirectly by monitoring their appearance in plasma and bile. The plasma disappearance of [3H]cholesteryl linoleate was slightly faster in NP-C subjects regardless of its lipoprotein origin. Appearance of free [14C] cholesterol ill the plasma (and in bile) was essentially identical in normal and affected individuals as was the initial appearance of free [3H]cholesterol derived from HDL, observed before extensive exchange occurred of the [3H]cholesteryl linoleate among lipoproteins. In contrast, the rate of appearance of LDL-derived free [3H]cholesterol in the plasma membrane of NP-C subjects, as detected in plasma and bile, was retarded to a similar extent that LDL cholesterol metabolism was defective in cultured fibroblasts of these affected subjects. These findings show that intracellular distribution of both newly synthesized and HDL-derived cholesterol are essentially unperturbed by the NP-C mutation, and therefore occur by lysosomal-independent paths. In contrast, in NP-C there is defective trafficking of LDL-derived cholesterol to the plasma membrane in vivo as well as in vitro. The in vivo assay of intracellular cholesterol distribution developed herein should prove useful to quickly evaluate therapeutic interventions for NP-C.http://www.sciencedirect.com/science/article/pii/S0022227520300274
collection DOAJ
language English
format Article
sources DOAJ
author R D Shamburek
P G Pentchev
L A Zech
J Blanchette-Mackie
E D Carstea
J M VandenBroek
P S Cooper
E B Neufeld
R D Phair
H B Brewer, Jr
R O Brady
C C Schwartz
spellingShingle R D Shamburek
P G Pentchev
L A Zech
J Blanchette-Mackie
E D Carstea
J M VandenBroek
P S Cooper
E B Neufeld
R D Phair
H B Brewer, Jr
R O Brady
C C Schwartz
Intracellular trafficking of the free cholesterol derived from LDL cholesteryl ester is defective in vivo in Niemann-Pick C disease: insights on normal metabolism of HDL and LDL gained from the NP-C mutation
Journal of Lipid Research
author_facet R D Shamburek
P G Pentchev
L A Zech
J Blanchette-Mackie
E D Carstea
J M VandenBroek
P S Cooper
E B Neufeld
R D Phair
H B Brewer, Jr
R O Brady
C C Schwartz
author_sort R D Shamburek
title Intracellular trafficking of the free cholesterol derived from LDL cholesteryl ester is defective in vivo in Niemann-Pick C disease: insights on normal metabolism of HDL and LDL gained from the NP-C mutation
title_short Intracellular trafficking of the free cholesterol derived from LDL cholesteryl ester is defective in vivo in Niemann-Pick C disease: insights on normal metabolism of HDL and LDL gained from the NP-C mutation
title_full Intracellular trafficking of the free cholesterol derived from LDL cholesteryl ester is defective in vivo in Niemann-Pick C disease: insights on normal metabolism of HDL and LDL gained from the NP-C mutation
title_fullStr Intracellular trafficking of the free cholesterol derived from LDL cholesteryl ester is defective in vivo in Niemann-Pick C disease: insights on normal metabolism of HDL and LDL gained from the NP-C mutation
title_full_unstemmed Intracellular trafficking of the free cholesterol derived from LDL cholesteryl ester is defective in vivo in Niemann-Pick C disease: insights on normal metabolism of HDL and LDL gained from the NP-C mutation
title_sort intracellular trafficking of the free cholesterol derived from ldl cholesteryl ester is defective in vivo in niemann-pick c disease: insights on normal metabolism of hdl and ldl gained from the np-c mutation
publisher Elsevier
series Journal of Lipid Research
issn 0022-2275
publishDate 1997-12-01
description Niemann-Pick C disease (NP-C) is a rare inborn error of metabolism with hepatic involvement and neurological sequelae that usually manifest in childhood. Although in vitro studies have shown that the lysosomal distribution of LDL-derived cholesterol is defective in cultured cells of NP-C subjects, no unusual characteristics mark the plasma lipoprotein profiles. We set out to determine whether anomalies exist in vivo in the cellular distribution of newly synthesized, HDL-derived or LDL-derived cholesterol under physiologic conditions in NP-C subjects. Three affected and three normal male subjects were administered [14C]mevalonate as a tracer of newly synthesized cholesterol and [3H]cholesteryl linoleate in either HDL or LDL to trace the distribution of lipoprotein-derived free cholesterol. The rate of appearance of free [14C]- and free [3H]cholesterol in the plasma membrane was detected indirectly by monitoring their appearance in plasma and bile. The plasma disappearance of [3H]cholesteryl linoleate was slightly faster in NP-C subjects regardless of its lipoprotein origin. Appearance of free [14C] cholesterol ill the plasma (and in bile) was essentially identical in normal and affected individuals as was the initial appearance of free [3H]cholesterol derived from HDL, observed before extensive exchange occurred of the [3H]cholesteryl linoleate among lipoproteins. In contrast, the rate of appearance of LDL-derived free [3H]cholesterol in the plasma membrane of NP-C subjects, as detected in plasma and bile, was retarded to a similar extent that LDL cholesterol metabolism was defective in cultured fibroblasts of these affected subjects. These findings show that intracellular distribution of both newly synthesized and HDL-derived cholesterol are essentially unperturbed by the NP-C mutation, and therefore occur by lysosomal-independent paths. In contrast, in NP-C there is defective trafficking of LDL-derived cholesterol to the plasma membrane in vivo as well as in vitro. The in vivo assay of intracellular cholesterol distribution developed herein should prove useful to quickly evaluate therapeutic interventions for NP-C.
url http://www.sciencedirect.com/science/article/pii/S0022227520300274
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