Analysis of URI nuclear interaction with RPB5 and components of the R2TP/prefoldin-like complex.

Unconventional prefoldin RPB5 Interactor (URI) was identified as a transcriptional repressor that binds RNA polymerase II (pol II) through interaction with the RPB5/POLR2E subunit. Despite the fact that many other proteins involved in transcription regulation have been shown to interact with URI, it...

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Main Authors: Paolo Mita, Jeffrey N Savas, Susan Ha, Nabil Djouder, John R Yates, Susan K Logan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3648552?pdf=render
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spelling doaj-bc6be783a4c740da9de43538f38b5f682020-11-25T01:24:04ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0185e6387910.1371/journal.pone.0063879Analysis of URI nuclear interaction with RPB5 and components of the R2TP/prefoldin-like complex.Paolo MitaJeffrey N SavasSusan HaNabil DjouderJohn R YatesSusan K LoganUnconventional prefoldin RPB5 Interactor (URI) was identified as a transcriptional repressor that binds RNA polymerase II (pol II) through interaction with the RPB5/POLR2E subunit. Despite the fact that many other proteins involved in transcription regulation have been shown to interact with URI, its nuclear function still remains elusive. Previous mass spectrometry analyses reported that URI is part of a novel protein complex called R2TP/prefoldin-like complex responsible for the cytoplasmic assembly of RNA polymerase II. We performed a mass spectrometry (MS)-based proteomic analysis to identify nuclear proteins interacting with URI in prostate cells. We identified all the components of the R2TP/prefoldin-like complex as nuclear URI interactors and we showed that URI binds and regulates RPB5 protein stability and transcription. Moreover, we validated the interaction of URI to the P53 and DNA damage-Regulated Gene 1 (PDRG1) and show that PDRG1 protein is also stabilized by URI binding. We present data demonstrating that URI nuclear/cytoplasmic shuttling is affected by compounds that stall pol II on the DNA (α-amanitin and actinomycin-D) and by leptomycin B, an inhibitor of the CRM1 exportin that mediates the nuclear export of pol II subunits. These data suggest that URI, and probably the entire R2TP/prefoldin-like complex is exported from the nucleus through CRM1. Finally we identified putative URI sites of phosphorylation and acetylation and confirmed URI sites of post-transcriptional modification identified in previous large-scale analyses the importance of which is largely unknown. However URI post-transcriptional modification was shown to be essential for URI function and therefore characterization of novel sites of URI modification will be important to the understanding of URI function.http://europepmc.org/articles/PMC3648552?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Paolo Mita
Jeffrey N Savas
Susan Ha
Nabil Djouder
John R Yates
Susan K Logan
spellingShingle Paolo Mita
Jeffrey N Savas
Susan Ha
Nabil Djouder
John R Yates
Susan K Logan
Analysis of URI nuclear interaction with RPB5 and components of the R2TP/prefoldin-like complex.
PLoS ONE
author_facet Paolo Mita
Jeffrey N Savas
Susan Ha
Nabil Djouder
John R Yates
Susan K Logan
author_sort Paolo Mita
title Analysis of URI nuclear interaction with RPB5 and components of the R2TP/prefoldin-like complex.
title_short Analysis of URI nuclear interaction with RPB5 and components of the R2TP/prefoldin-like complex.
title_full Analysis of URI nuclear interaction with RPB5 and components of the R2TP/prefoldin-like complex.
title_fullStr Analysis of URI nuclear interaction with RPB5 and components of the R2TP/prefoldin-like complex.
title_full_unstemmed Analysis of URI nuclear interaction with RPB5 and components of the R2TP/prefoldin-like complex.
title_sort analysis of uri nuclear interaction with rpb5 and components of the r2tp/prefoldin-like complex.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Unconventional prefoldin RPB5 Interactor (URI) was identified as a transcriptional repressor that binds RNA polymerase II (pol II) through interaction with the RPB5/POLR2E subunit. Despite the fact that many other proteins involved in transcription regulation have been shown to interact with URI, its nuclear function still remains elusive. Previous mass spectrometry analyses reported that URI is part of a novel protein complex called R2TP/prefoldin-like complex responsible for the cytoplasmic assembly of RNA polymerase II. We performed a mass spectrometry (MS)-based proteomic analysis to identify nuclear proteins interacting with URI in prostate cells. We identified all the components of the R2TP/prefoldin-like complex as nuclear URI interactors and we showed that URI binds and regulates RPB5 protein stability and transcription. Moreover, we validated the interaction of URI to the P53 and DNA damage-Regulated Gene 1 (PDRG1) and show that PDRG1 protein is also stabilized by URI binding. We present data demonstrating that URI nuclear/cytoplasmic shuttling is affected by compounds that stall pol II on the DNA (α-amanitin and actinomycin-D) and by leptomycin B, an inhibitor of the CRM1 exportin that mediates the nuclear export of pol II subunits. These data suggest that URI, and probably the entire R2TP/prefoldin-like complex is exported from the nucleus through CRM1. Finally we identified putative URI sites of phosphorylation and acetylation and confirmed URI sites of post-transcriptional modification identified in previous large-scale analyses the importance of which is largely unknown. However URI post-transcriptional modification was shown to be essential for URI function and therefore characterization of novel sites of URI modification will be important to the understanding of URI function.
url http://europepmc.org/articles/PMC3648552?pdf=render
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