A regulatory mechanism involving TBP-1/Tat-Binding Protein 1 and Akt/PKB in the control of cell proliferation.

TBP-1 /Tat-Binding Protein 1 (also named Rpt-5, S6a or PSMC3) is a multifunctional protein, originally identified as a regulator of HIV-1-Tat mediated transcription. It is an AAA-ATPase component of the 19S regulative subunit of the proteasome and, as other members of this protein family, fulfils di...

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Main Authors: Maria Sepe, Luisa Festa, Fabio Tolino, Luca Bellucci, Luca Sisto, Daniela Alfano, Pia Ragno, Viola Calabrò, Vittorio de Franciscis, Girolama La Mantia, Alessandra Pollice
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3186787?pdf=render
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spelling doaj-c3eb5586f07d48f78db76e4bc3b59fcf2020-11-25T01:28:40ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-01610e2280010.1371/journal.pone.0022800A regulatory mechanism involving TBP-1/Tat-Binding Protein 1 and Akt/PKB in the control of cell proliferation.Maria SepeLuisa FestaFabio TolinoLuca BellucciLuca SistoDaniela AlfanoPia RagnoViola CalabròViola CalabròVittorio de FranciscisGirolama La MantiaAlessandra PolliceTBP-1 /Tat-Binding Protein 1 (also named Rpt-5, S6a or PSMC3) is a multifunctional protein, originally identified as a regulator of HIV-1-Tat mediated transcription. It is an AAA-ATPase component of the 19S regulative subunit of the proteasome and, as other members of this protein family, fulfils different cellular functions including proteolysis and transcriptional regulation. We and others reported that over expression of TBP-1 diminishes cell proliferation in different cellular contexts with mechanisms yet to be defined. Accordingly, we demonstrated that TBP-1 binds to and stabilizes the p14ARF oncosuppressor increasing its anti-oncogenic functions. However, TBP-1 restrains cell proliferation also in the absence of ARF, raising the question of what are the molecular pathways involved. Herein we demonstrate that stable knock-down of TBP-1 in human immortalized fibroblasts increases cell proliferation, migration and resistance to apoptosis induced by serum deprivation. We observe that TBP-1 silencing causes activation of the Akt/PKB kinase and that in turn TBP-1, itself, is a downstream target of Akt/PKB. Moreover, MDM2, a known Akt target, plays a major role in this regulation. Altogether, our data suggest the existence of a negative feedback loop involving Akt/PKB that might act as a sensor to modulate TBP-1 levels in proliferating cells.http://europepmc.org/articles/PMC3186787?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Maria Sepe
Luisa Festa
Fabio Tolino
Luca Bellucci
Luca Sisto
Daniela Alfano
Pia Ragno
Viola Calabrò
Viola Calabrò
Vittorio de Franciscis
Girolama La Mantia
Alessandra Pollice
spellingShingle Maria Sepe
Luisa Festa
Fabio Tolino
Luca Bellucci
Luca Sisto
Daniela Alfano
Pia Ragno
Viola Calabrò
Viola Calabrò
Vittorio de Franciscis
Girolama La Mantia
Alessandra Pollice
A regulatory mechanism involving TBP-1/Tat-Binding Protein 1 and Akt/PKB in the control of cell proliferation.
PLoS ONE
author_facet Maria Sepe
Luisa Festa
Fabio Tolino
Luca Bellucci
Luca Sisto
Daniela Alfano
Pia Ragno
Viola Calabrò
Viola Calabrò
Vittorio de Franciscis
Girolama La Mantia
Alessandra Pollice
author_sort Maria Sepe
title A regulatory mechanism involving TBP-1/Tat-Binding Protein 1 and Akt/PKB in the control of cell proliferation.
title_short A regulatory mechanism involving TBP-1/Tat-Binding Protein 1 and Akt/PKB in the control of cell proliferation.
title_full A regulatory mechanism involving TBP-1/Tat-Binding Protein 1 and Akt/PKB in the control of cell proliferation.
title_fullStr A regulatory mechanism involving TBP-1/Tat-Binding Protein 1 and Akt/PKB in the control of cell proliferation.
title_full_unstemmed A regulatory mechanism involving TBP-1/Tat-Binding Protein 1 and Akt/PKB in the control of cell proliferation.
title_sort regulatory mechanism involving tbp-1/tat-binding protein 1 and akt/pkb in the control of cell proliferation.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description TBP-1 /Tat-Binding Protein 1 (also named Rpt-5, S6a or PSMC3) is a multifunctional protein, originally identified as a regulator of HIV-1-Tat mediated transcription. It is an AAA-ATPase component of the 19S regulative subunit of the proteasome and, as other members of this protein family, fulfils different cellular functions including proteolysis and transcriptional regulation. We and others reported that over expression of TBP-1 diminishes cell proliferation in different cellular contexts with mechanisms yet to be defined. Accordingly, we demonstrated that TBP-1 binds to and stabilizes the p14ARF oncosuppressor increasing its anti-oncogenic functions. However, TBP-1 restrains cell proliferation also in the absence of ARF, raising the question of what are the molecular pathways involved. Herein we demonstrate that stable knock-down of TBP-1 in human immortalized fibroblasts increases cell proliferation, migration and resistance to apoptosis induced by serum deprivation. We observe that TBP-1 silencing causes activation of the Akt/PKB kinase and that in turn TBP-1, itself, is a downstream target of Akt/PKB. Moreover, MDM2, a known Akt target, plays a major role in this regulation. Altogether, our data suggest the existence of a negative feedback loop involving Akt/PKB that might act as a sensor to modulate TBP-1 levels in proliferating cells.
url http://europepmc.org/articles/PMC3186787?pdf=render
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