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Mutagenesis of the putative sterol-sensing domain of yeast Niemann Pick C–related protein reveals a primordial role in subcellular sphingolipid distribution

Lipid movement between organelles is a critical component of eukaryotic membrane homeostasis. Niemann Pick type C (NP-C) disease is a fatal neurodegenerative disorder typified by lysosomal accumulation of cholesterol and sphingolipids. Expression of yeast NP-C–related gene 1 (NCR1), the orthologue o...

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Autores principales: Malathi, Krishnamurthy, Higaki, Katsumi, Tinkelenberg, Arthur H., Balderes, Dina A., Almanzar-Paramio, Dorca, Wilcox, Lisa J., Erdeniz, Naz, Redican, Francis, Padamsee, Mahajabeen, Liu, Ying, Khan, Sohail, Alcantara, Frederick, Carstea, Eugene D., Morris, Jill A., Sturley, Stephen L.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2171978/
https://www.ncbi.nlm.nih.gov/pubmed/14970192
http://dx.doi.org/10.1083/jcb.200310046
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author Malathi, Krishnamurthy
Higaki, Katsumi
Tinkelenberg, Arthur H.
Balderes, Dina A.
Almanzar-Paramio, Dorca
Wilcox, Lisa J.
Erdeniz, Naz
Redican, Francis
Padamsee, Mahajabeen
Liu, Ying
Khan, Sohail
Alcantara, Frederick
Carstea, Eugene D.
Morris, Jill A.
Sturley, Stephen L.
author_facet Malathi, Krishnamurthy
Higaki, Katsumi
Tinkelenberg, Arthur H.
Balderes, Dina A.
Almanzar-Paramio, Dorca
Wilcox, Lisa J.
Erdeniz, Naz
Redican, Francis
Padamsee, Mahajabeen
Liu, Ying
Khan, Sohail
Alcantara, Frederick
Carstea, Eugene D.
Morris, Jill A.
Sturley, Stephen L.
author_sort Malathi, Krishnamurthy
collection PubMed
description Lipid movement between organelles is a critical component of eukaryotic membrane homeostasis. Niemann Pick type C (NP-C) disease is a fatal neurodegenerative disorder typified by lysosomal accumulation of cholesterol and sphingolipids. Expression of yeast NP-C–related gene 1 (NCR1), the orthologue of the human NP-C gene 1 (NPC1) defective in the disease, in Chinese hamster ovary NPC1 mutant cells suppressed lipid accumulation. Deletion of NCR1, encoding a transmembrane glycoprotein predominantly residing in the vacuole of normal yeast, gave no phenotype. However, a dominant mutation in the putative sterol-sensing domain of Ncr1p conferred temperature and polyene antibiotic sensitivity without changes in sterol metabolism. Instead, the mutant cells were resistant to inhibitors of sphingolipid biosynthesis and super sensitive to sphingosine and C2-ceramide. Moreover, plasma membrane sphingolipids accumulated and redistributed to the vacuole and other subcellular membranes of the mutant cells. We propose that the primordial function of these proteins is to recycle sphingolipids and that defects in this process in higher eukaryotes secondarily result in cholesterol accumulation.
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spelling pubmed-21719782008-03-05 Mutagenesis of the putative sterol-sensing domain of yeast Niemann Pick C–related protein reveals a primordial role in subcellular sphingolipid distribution Malathi, Krishnamurthy Higaki, Katsumi Tinkelenberg, Arthur H. Balderes, Dina A. Almanzar-Paramio, Dorca Wilcox, Lisa J. Erdeniz, Naz Redican, Francis Padamsee, Mahajabeen Liu, Ying Khan, Sohail Alcantara, Frederick Carstea, Eugene D. Morris, Jill A. Sturley, Stephen L. J Cell Biol Article Lipid movement between organelles is a critical component of eukaryotic membrane homeostasis. Niemann Pick type C (NP-C) disease is a fatal neurodegenerative disorder typified by lysosomal accumulation of cholesterol and sphingolipids. Expression of yeast NP-C–related gene 1 (NCR1), the orthologue of the human NP-C gene 1 (NPC1) defective in the disease, in Chinese hamster ovary NPC1 mutant cells suppressed lipid accumulation. Deletion of NCR1, encoding a transmembrane glycoprotein predominantly residing in the vacuole of normal yeast, gave no phenotype. However, a dominant mutation in the putative sterol-sensing domain of Ncr1p conferred temperature and polyene antibiotic sensitivity without changes in sterol metabolism. Instead, the mutant cells were resistant to inhibitors of sphingolipid biosynthesis and super sensitive to sphingosine and C2-ceramide. Moreover, plasma membrane sphingolipids accumulated and redistributed to the vacuole and other subcellular membranes of the mutant cells. We propose that the primordial function of these proteins is to recycle sphingolipids and that defects in this process in higher eukaryotes secondarily result in cholesterol accumulation. The Rockefeller University Press 2004-02-16 /pmc/articles/PMC2171978/ /pubmed/14970192 http://dx.doi.org/10.1083/jcb.200310046 Text en Copyright © 2004, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Malathi, Krishnamurthy
Higaki, Katsumi
Tinkelenberg, Arthur H.
Balderes, Dina A.
Almanzar-Paramio, Dorca
Wilcox, Lisa J.
Erdeniz, Naz
Redican, Francis
Padamsee, Mahajabeen
Liu, Ying
Khan, Sohail
Alcantara, Frederick
Carstea, Eugene D.
Morris, Jill A.
Sturley, Stephen L.
Mutagenesis of the putative sterol-sensing domain of yeast Niemann Pick C–related protein reveals a primordial role in subcellular sphingolipid distribution
title Mutagenesis of the putative sterol-sensing domain of yeast Niemann Pick C–related protein reveals a primordial role in subcellular sphingolipid distribution
title_full Mutagenesis of the putative sterol-sensing domain of yeast Niemann Pick C–related protein reveals a primordial role in subcellular sphingolipid distribution
title_fullStr Mutagenesis of the putative sterol-sensing domain of yeast Niemann Pick C–related protein reveals a primordial role in subcellular sphingolipid distribution
title_full_unstemmed Mutagenesis of the putative sterol-sensing domain of yeast Niemann Pick C–related protein reveals a primordial role in subcellular sphingolipid distribution
title_short Mutagenesis of the putative sterol-sensing domain of yeast Niemann Pick C–related protein reveals a primordial role in subcellular sphingolipid distribution
title_sort mutagenesis of the putative sterol-sensing domain of yeast niemann pick c–related protein reveals a primordial role in subcellular sphingolipid distribution
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2171978/
https://www.ncbi.nlm.nih.gov/pubmed/14970192
http://dx.doi.org/10.1083/jcb.200310046
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