NPC1 late endosomes contain elevated levels of non-esterified (‘free’) fatty acids and an abnormally glycosylated form of the NPC2 protein
- 23 August 2005
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 390 (2) , 549-561
- https://doi.org/10.1042/bj20050236
Abstract
NPC (Niemann–Pick type C) disease is a rare lipidosis characterized by the accumulation of LDL (low-density lipoprotein)-derived non-esterified cholesterol in the E/L (endosomal/lysosomal) system. The gene products that are responsible for the two NPC complementation groups are distinct and dissimilar, yet their cellular and disease phenotypes are virtually indistinguishable. To investigate the relationship between NPC1 and NPC2 and their potential role in NPC disease pathogenesis, we have developed a method for the rapid and efficient isolation of late endocytic vesicles from mouse liver by magnetic chromatography. Late endosomes from Wt (wild-type) and NPC1 mice were found to differ not only in their cholesterol and sphingomyelin content, as expected, but also in their non-esterified (‘free’) fatty acid content, with NPC1 vesicles showing an approx. 7-fold increase in non-esterified fatty acid levels compared with Wt vesicles. Furthermore, we show that the NPC2 protein is in an incompletely deglycosylated form in NPC1 late endosomes by a mechanism that is specific to the NPC2 protein and not a global aberration of protein glycosylation/deglycosylation or trafficking, since NPC2 secreted from NPC1 cells is indistinguishable from that secreted from Wt cells. Also, a greater proportion of the normally soluble cellular NPC2 protein partitions with detergent-insoluble late endosomal internal membrane domains in NPC1 vesicles. In addition, we show that, although a small amount of the NPC2 protein associates with these membranes in Wt vesicles, this localization becomes much more pronounced in NPC1 vesicles. These results suggest that the function of the NPC2 protein may be compromised as well in NPC1 endosomes, which might explain the paradoxical phenotypic similarities of the two NPC disease complementation groups.Keywords
This publication has 65 references indexed in Scilit:
- Flux of Fatty Acids through NPC1 LysosomesPublished by Elsevier ,2005
- Distribution and trafficking of MPR300 is normal in cells with cholesterol accumulated in late endocytic compartmentsJournal of Lipid Research, 2003
- Telomerase immortalization upregulates Rab9 expression and restores LDL cholesterol egress from Niemann-Pick C1 late endosomesJournal of Lipid Research, 2003
- Immunoelectron Microscopic Localization of Cholesterol Using Biotinylated and Non-cytolytic Perfringolysin OJournal of Histochemistry & Cytochemistry, 2002
- Transmembrane Molecular Pump Activity of Niemann-Pick C1 ProteinScience, 2000
- Niemann-Pick C1 Disease Gene: Homology to Mediators of Cholesterol HomeostasisScience, 1997
- Molecular cloning and characterization of HE1, a major secretory protein of the human epididymisBiology of Reproduction, 1996
- The Niemann-Pick C lesion and its relationship to the intracellular distribution and utilization of LDL cholesterolBiochimica et Biophysica Acta (BBA) - Molecular Basis of Disease, 1994
- Overexpression of human alpha-galactosidase A results in its intracellular aggregation, crystallization in lysosomes, and selective secretion.The Journal of cell biology, 1992
- Studies on sphingomyelinase and β-glucosidase activities in Niemann-Pick disease variantsBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1983