Cargando…

Sialidase NEU3 Dynamically Associates to Different Membrane Domains Specifically Modifying Their Ganglioside Pattern and Triggering Akt Phosphorylation

Lipid rafts are known to regulate several membrane functions such as signaling, trafficking and cellular adhesion. The local enrichment in sphingolipids and cholesterol together with the low protein content allows their separation by density gradient flotation after extraction with non-ionic deterge...

Descripción completa

Detalles Bibliográficos
Autores principales: Bonardi, Dario, Papini, Nadia, Pasini, Mario, Dileo, Loredana, Orizio, Flavia, Monti, Eugenio, Caimi, Luigi, Venerando, Bruno, Bresciani, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4055604/
https://www.ncbi.nlm.nih.gov/pubmed/24925219
http://dx.doi.org/10.1371/journal.pone.0099405
_version_ 1782320686424915968
author Bonardi, Dario
Papini, Nadia
Pasini, Mario
Dileo, Loredana
Orizio, Flavia
Monti, Eugenio
Caimi, Luigi
Venerando, Bruno
Bresciani, Roberto
author_facet Bonardi, Dario
Papini, Nadia
Pasini, Mario
Dileo, Loredana
Orizio, Flavia
Monti, Eugenio
Caimi, Luigi
Venerando, Bruno
Bresciani, Roberto
author_sort Bonardi, Dario
collection PubMed
description Lipid rafts are known to regulate several membrane functions such as signaling, trafficking and cellular adhesion. The local enrichment in sphingolipids and cholesterol together with the low protein content allows their separation by density gradient flotation after extraction with non-ionic detergent at low temperature. These structures are also referred to as detergent resistant membranes (DRM). Among sphingolipids, gangliosides play important roles in different biological events, including signal transduction and tumorigenesis. Sialidase NEU3 shows high enzymatic specificity toward gangliosides. Moreover, the enzyme is present both at the cell surface and in endosomal structures and cofractionates with caveolin. Although changes in the expression level of NEU3 have been correlated to different tumors, little is known about the precise distribution of the protein and its ability in modifying the ganglioside composition of DRM and non-DRM, thus regulating intracellular events. By means of inducible expression cell system we found that i) newly synthesized NEU3 is initially associated to non-DRM; ii) at steady state the protein is equally distributed between the two membrane subcompartments, i.e., DRM and non-DRM; iii) NEU3 is degraded via the proteasomal pathway; iv) the enzyme specifically modifies the ganglioside composition of the membrane areas where it resides; and v) NEU3 triggers phosphorylation of Akt, even in absence of exogenously administered EGF. Taken together our data demonstrate that NEU3 regulates the DRM ganglioside content and it can be considered as a modulator of Akt phosphorylation, further supporting the role of this enzyme in cancer and tumorigenesis.
format Online
Article
Text
id pubmed-4055604
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-40556042014-06-18 Sialidase NEU3 Dynamically Associates to Different Membrane Domains Specifically Modifying Their Ganglioside Pattern and Triggering Akt Phosphorylation Bonardi, Dario Papini, Nadia Pasini, Mario Dileo, Loredana Orizio, Flavia Monti, Eugenio Caimi, Luigi Venerando, Bruno Bresciani, Roberto PLoS One Research Article Lipid rafts are known to regulate several membrane functions such as signaling, trafficking and cellular adhesion. The local enrichment in sphingolipids and cholesterol together with the low protein content allows their separation by density gradient flotation after extraction with non-ionic detergent at low temperature. These structures are also referred to as detergent resistant membranes (DRM). Among sphingolipids, gangliosides play important roles in different biological events, including signal transduction and tumorigenesis. Sialidase NEU3 shows high enzymatic specificity toward gangliosides. Moreover, the enzyme is present both at the cell surface and in endosomal structures and cofractionates with caveolin. Although changes in the expression level of NEU3 have been correlated to different tumors, little is known about the precise distribution of the protein and its ability in modifying the ganglioside composition of DRM and non-DRM, thus regulating intracellular events. By means of inducible expression cell system we found that i) newly synthesized NEU3 is initially associated to non-DRM; ii) at steady state the protein is equally distributed between the two membrane subcompartments, i.e., DRM and non-DRM; iii) NEU3 is degraded via the proteasomal pathway; iv) the enzyme specifically modifies the ganglioside composition of the membrane areas where it resides; and v) NEU3 triggers phosphorylation of Akt, even in absence of exogenously administered EGF. Taken together our data demonstrate that NEU3 regulates the DRM ganglioside content and it can be considered as a modulator of Akt phosphorylation, further supporting the role of this enzyme in cancer and tumorigenesis. Public Library of Science 2014-06-12 /pmc/articles/PMC4055604/ /pubmed/24925219 http://dx.doi.org/10.1371/journal.pone.0099405 Text en © 2014 Bonardi et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bonardi, Dario
Papini, Nadia
Pasini, Mario
Dileo, Loredana
Orizio, Flavia
Monti, Eugenio
Caimi, Luigi
Venerando, Bruno
Bresciani, Roberto
Sialidase NEU3 Dynamically Associates to Different Membrane Domains Specifically Modifying Their Ganglioside Pattern and Triggering Akt Phosphorylation
title Sialidase NEU3 Dynamically Associates to Different Membrane Domains Specifically Modifying Their Ganglioside Pattern and Triggering Akt Phosphorylation
title_full Sialidase NEU3 Dynamically Associates to Different Membrane Domains Specifically Modifying Their Ganglioside Pattern and Triggering Akt Phosphorylation
title_fullStr Sialidase NEU3 Dynamically Associates to Different Membrane Domains Specifically Modifying Their Ganglioside Pattern and Triggering Akt Phosphorylation
title_full_unstemmed Sialidase NEU3 Dynamically Associates to Different Membrane Domains Specifically Modifying Their Ganglioside Pattern and Triggering Akt Phosphorylation
title_short Sialidase NEU3 Dynamically Associates to Different Membrane Domains Specifically Modifying Their Ganglioside Pattern and Triggering Akt Phosphorylation
title_sort sialidase neu3 dynamically associates to different membrane domains specifically modifying their ganglioside pattern and triggering akt phosphorylation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4055604/
https://www.ncbi.nlm.nih.gov/pubmed/24925219
http://dx.doi.org/10.1371/journal.pone.0099405
work_keys_str_mv AT bonardidario sialidaseneu3dynamicallyassociatestodifferentmembranedomainsspecificallymodifyingtheirgangliosidepatternandtriggeringaktphosphorylation
AT papininadia sialidaseneu3dynamicallyassociatestodifferentmembranedomainsspecificallymodifyingtheirgangliosidepatternandtriggeringaktphosphorylation
AT pasinimario sialidaseneu3dynamicallyassociatestodifferentmembranedomainsspecificallymodifyingtheirgangliosidepatternandtriggeringaktphosphorylation
AT dileoloredana sialidaseneu3dynamicallyassociatestodifferentmembranedomainsspecificallymodifyingtheirgangliosidepatternandtriggeringaktphosphorylation
AT orizioflavia sialidaseneu3dynamicallyassociatestodifferentmembranedomainsspecificallymodifyingtheirgangliosidepatternandtriggeringaktphosphorylation
AT montieugenio sialidaseneu3dynamicallyassociatestodifferentmembranedomainsspecificallymodifyingtheirgangliosidepatternandtriggeringaktphosphorylation
AT caimiluigi sialidaseneu3dynamicallyassociatestodifferentmembranedomainsspecificallymodifyingtheirgangliosidepatternandtriggeringaktphosphorylation
AT venerandobruno sialidaseneu3dynamicallyassociatestodifferentmembranedomainsspecificallymodifyingtheirgangliosidepatternandtriggeringaktphosphorylation
AT brescianiroberto sialidaseneu3dynamicallyassociatestodifferentmembranedomainsspecificallymodifyingtheirgangliosidepatternandtriggeringaktphosphorylation