In vitro phosphorylation and acetylation of the murine pocket protein Rb2/p130.

The retinoblastoma protein (pRb) and the related proteins Rb2/p130 and 107 represent the "pocket protein" family of cell cycle regulators. A key function of these proteins is the cell cycle dependent modulation of E2F-regulated genes. The biological activity of these proteins is controlled...

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Main Authors: Muhammad Saeed, Florian Schwarze, Adele Loidl, Joachim Meraner, Markus Lechner, Peter Loidl
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3454344?pdf=render
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spelling doaj-20d8eb72a2fc4667912bcbc964f99ef02020-11-25T01:02:43ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0179e4617410.1371/journal.pone.0046174In vitro phosphorylation and acetylation of the murine pocket protein Rb2/p130.Muhammad SaeedFlorian SchwarzeAdele LoidlJoachim MeranerMarkus LechnerPeter LoidlThe retinoblastoma protein (pRb) and the related proteins Rb2/p130 and 107 represent the "pocket protein" family of cell cycle regulators. A key function of these proteins is the cell cycle dependent modulation of E2F-regulated genes. The biological activity of these proteins is controlled by acetylation and phosphorylation in a cell cycle dependent manner. In this study we attempted to investigate the interdependence of acetylation and phosphorylation of Rb2/p130 in vitro. After having identified the acetyltransferase p300 among several acetyltransferases to be associated with Rb2/p130 during S-phase in NIH3T3 cells in vivo, we used this enzyme and the CDK4 protein kinase for in vitro modification of a variety of full length Rb2/p130 and truncated versions with mutations in the acetylatable lysine residues 1079, 128 and 130. Mutation of these residues results in the complete loss of Rb2/p130 acetylation. Replacement of lysines by arginines strongly inhibits phosphorylation of Rb2/p130 by CDK4; the inhibitory effect of replacement by glutamines is less pronounced. Preacetylation of Rb2/p130 strongly enhances CDK4-catalyzed phosphorylation, whereas deacetylation completely abolishes in vitro phosphorylation. In contrast, phosphorylation completely inhibits acetylation of Rb2/p130 by p300. These results suggest a mutual interdependence of modifications in a way that acetylation primes Rb2/p130 for phosphorylation and only dephosphorylated Rb2/p130 can be subject to acetylation. Human papillomavirus 16-E7 protein, which increases acetylation of Rb2/p130 by p300 strongly reduces phosphorylation of this protein by CDK4. This suggests that the balance between phosphorylation and acetylation of Rb2/p130 is essential for its biological function in cell cycle control.http://europepmc.org/articles/PMC3454344?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Muhammad Saeed
Florian Schwarze
Adele Loidl
Joachim Meraner
Markus Lechner
Peter Loidl
spellingShingle Muhammad Saeed
Florian Schwarze
Adele Loidl
Joachim Meraner
Markus Lechner
Peter Loidl
In vitro phosphorylation and acetylation of the murine pocket protein Rb2/p130.
PLoS ONE
author_facet Muhammad Saeed
Florian Schwarze
Adele Loidl
Joachim Meraner
Markus Lechner
Peter Loidl
author_sort Muhammad Saeed
title In vitro phosphorylation and acetylation of the murine pocket protein Rb2/p130.
title_short In vitro phosphorylation and acetylation of the murine pocket protein Rb2/p130.
title_full In vitro phosphorylation and acetylation of the murine pocket protein Rb2/p130.
title_fullStr In vitro phosphorylation and acetylation of the murine pocket protein Rb2/p130.
title_full_unstemmed In vitro phosphorylation and acetylation of the murine pocket protein Rb2/p130.
title_sort in vitro phosphorylation and acetylation of the murine pocket protein rb2/p130.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The retinoblastoma protein (pRb) and the related proteins Rb2/p130 and 107 represent the "pocket protein" family of cell cycle regulators. A key function of these proteins is the cell cycle dependent modulation of E2F-regulated genes. The biological activity of these proteins is controlled by acetylation and phosphorylation in a cell cycle dependent manner. In this study we attempted to investigate the interdependence of acetylation and phosphorylation of Rb2/p130 in vitro. After having identified the acetyltransferase p300 among several acetyltransferases to be associated with Rb2/p130 during S-phase in NIH3T3 cells in vivo, we used this enzyme and the CDK4 protein kinase for in vitro modification of a variety of full length Rb2/p130 and truncated versions with mutations in the acetylatable lysine residues 1079, 128 and 130. Mutation of these residues results in the complete loss of Rb2/p130 acetylation. Replacement of lysines by arginines strongly inhibits phosphorylation of Rb2/p130 by CDK4; the inhibitory effect of replacement by glutamines is less pronounced. Preacetylation of Rb2/p130 strongly enhances CDK4-catalyzed phosphorylation, whereas deacetylation completely abolishes in vitro phosphorylation. In contrast, phosphorylation completely inhibits acetylation of Rb2/p130 by p300. These results suggest a mutual interdependence of modifications in a way that acetylation primes Rb2/p130 for phosphorylation and only dephosphorylated Rb2/p130 can be subject to acetylation. Human papillomavirus 16-E7 protein, which increases acetylation of Rb2/p130 by p300 strongly reduces phosphorylation of this protein by CDK4. This suggests that the balance between phosphorylation and acetylation of Rb2/p130 is essential for its biological function in cell cycle control.
url http://europepmc.org/articles/PMC3454344?pdf=render
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