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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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 |
work_keys_str_mv |
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