Pdro, a protein associated with late endosomes and lysosomes and implicated in cellular cholesterol homeostasis.

BACKGROUND: Cellular cholesterol is a vital component of the cell membrane. Its concentration is tightly controlled by mechanisms that remain only partially characterized. In this study, we describe a late endosome/lysosomes-associated protein whose expression level affects cellular free cholesterol...

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Main Authors: Patricia Guillaumot, Céline Luquain, Mouhannad Malek, Anne-Laure Huber, Sabine Brugière, Jérome Garin, Didier Grunwald, Daniel Régnier, Virginie Pétrilli, Etienne Lefai, Serge N Manié
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2882324?pdf=render
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spelling doaj-5cb58bc3fa154c9db2845b192e031dc02020-11-24T21:49:07ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-01-0156e1097710.1371/journal.pone.0010977Pdro, a protein associated with late endosomes and lysosomes and implicated in cellular cholesterol homeostasis.Patricia GuillaumotCéline LuquainMouhannad MalekAnne-Laure HuberSabine BrugièreJérome GarinDidier GrunwaldDaniel RégnierVirginie PétrilliEtienne LefaiSerge N ManiéBACKGROUND: Cellular cholesterol is a vital component of the cell membrane. Its concentration is tightly controlled by mechanisms that remain only partially characterized. In this study, we describe a late endosome/lysosomes-associated protein whose expression level affects cellular free cholesterol content. METHODOLOGY/PRINCIPAL FINDINGS: Using a restricted proteomic analysis of detergent-resistant membranes (DRMs), we have identified a protein encoded by gene C11orf59. It is mainly localized to late endosome/lysosome (LE/LY) compartment through N-terminal myristoylation and palmitoylation. We named it Pdro for protein associated with DRMs and endosomes. Very recently, three studies have reported on the same protein under two other names: the human p27RF-Rho that regulates RhoA activation and actin dynamics, and its rodent orthologue p18 that controls both LE/LY dynamics through the MERK-ERK pathway and the lysosomal activation of mammalian target of rapamycin complex 1 by amino acids. We found that, consistent with the presence of sterol-responsive element consensus sequences in the promoter region of C11orf59, Pdro mRNA and protein expression levels are regulated positively by cellular cholesterol depletion and negatively by cellular cholesterol loading. Conversely, Pdro is involved in the regulation of cholesterol homeostasis, since its depletion by siRNA increases cellular free cholesterol content that is accompanied by an increased cholesterol efflux from cells. On the other hand, cells stably overexpressing Pdro display reduced cellular free cholesterol content. Pdro depletion-mediated excess cholesterol results, at least in part, from a stimulated low-density lipoprotein (LDL) uptake and an increased cholesterol egress from LE/LY. CONCLUSIONS/SIGNIFICANCE: LDL-derived cholesterol release involves LE/LY motility that is linked to actin dynamics. Because Pdro regulates these two processes, we propose that modulation of Pdro expression in response to sterol levels regulates LDL-derived cholesterol through both LDL uptake and LE/LY dynamics, to ultimately control free cholesterol homeostasis.http://europepmc.org/articles/PMC2882324?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Patricia Guillaumot
Céline Luquain
Mouhannad Malek
Anne-Laure Huber
Sabine Brugière
Jérome Garin
Didier Grunwald
Daniel Régnier
Virginie Pétrilli
Etienne Lefai
Serge N Manié
spellingShingle Patricia Guillaumot
Céline Luquain
Mouhannad Malek
Anne-Laure Huber
Sabine Brugière
Jérome Garin
Didier Grunwald
Daniel Régnier
Virginie Pétrilli
Etienne Lefai
Serge N Manié
Pdro, a protein associated with late endosomes and lysosomes and implicated in cellular cholesterol homeostasis.
PLoS ONE
author_facet Patricia Guillaumot
Céline Luquain
Mouhannad Malek
Anne-Laure Huber
Sabine Brugière
Jérome Garin
Didier Grunwald
Daniel Régnier
Virginie Pétrilli
Etienne Lefai
Serge N Manié
author_sort Patricia Guillaumot
title Pdro, a protein associated with late endosomes and lysosomes and implicated in cellular cholesterol homeostasis.
title_short Pdro, a protein associated with late endosomes and lysosomes and implicated in cellular cholesterol homeostasis.
title_full Pdro, a protein associated with late endosomes and lysosomes and implicated in cellular cholesterol homeostasis.
title_fullStr Pdro, a protein associated with late endosomes and lysosomes and implicated in cellular cholesterol homeostasis.
title_full_unstemmed Pdro, a protein associated with late endosomes and lysosomes and implicated in cellular cholesterol homeostasis.
title_sort pdro, a protein associated with late endosomes and lysosomes and implicated in cellular cholesterol homeostasis.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-01-01
description BACKGROUND: Cellular cholesterol is a vital component of the cell membrane. Its concentration is tightly controlled by mechanisms that remain only partially characterized. In this study, we describe a late endosome/lysosomes-associated protein whose expression level affects cellular free cholesterol content. METHODOLOGY/PRINCIPAL FINDINGS: Using a restricted proteomic analysis of detergent-resistant membranes (DRMs), we have identified a protein encoded by gene C11orf59. It is mainly localized to late endosome/lysosome (LE/LY) compartment through N-terminal myristoylation and palmitoylation. We named it Pdro for protein associated with DRMs and endosomes. Very recently, three studies have reported on the same protein under two other names: the human p27RF-Rho that regulates RhoA activation and actin dynamics, and its rodent orthologue p18 that controls both LE/LY dynamics through the MERK-ERK pathway and the lysosomal activation of mammalian target of rapamycin complex 1 by amino acids. We found that, consistent with the presence of sterol-responsive element consensus sequences in the promoter region of C11orf59, Pdro mRNA and protein expression levels are regulated positively by cellular cholesterol depletion and negatively by cellular cholesterol loading. Conversely, Pdro is involved in the regulation of cholesterol homeostasis, since its depletion by siRNA increases cellular free cholesterol content that is accompanied by an increased cholesterol efflux from cells. On the other hand, cells stably overexpressing Pdro display reduced cellular free cholesterol content. Pdro depletion-mediated excess cholesterol results, at least in part, from a stimulated low-density lipoprotein (LDL) uptake and an increased cholesterol egress from LE/LY. CONCLUSIONS/SIGNIFICANCE: LDL-derived cholesterol release involves LE/LY motility that is linked to actin dynamics. Because Pdro regulates these two processes, we propose that modulation of Pdro expression in response to sterol levels regulates LDL-derived cholesterol through both LDL uptake and LE/LY dynamics, to ultimately control free cholesterol homeostasis.
url http://europepmc.org/articles/PMC2882324?pdf=render
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