Protein phosphatase-1 activates CDK9 by dephosphorylating Ser175.

The cyclin-dependent kinase CDK9/cyclin T1 induces HIV-1 transcription by phosphorylating the carboxyterminal domain (CTD) of RNA polymerase II (RNAPII). CDK9 activity is regulated by protein phosphatase-1 (PP1) which was previously shown to dephosphorylate CDK9 Thr186. Here, we analyzed the effect...

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Main Authors: Tatiana Ammosova, Yuri Obukhov, Alexander Kotelkin, Denitra Breuer, Monique Beullens, Victor R Gordeuk, Mathieu Bollen, Sergei Nekhai
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-04-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3080879?pdf=render
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spelling doaj-2edfb43687bb43d09555f553a9698b3d2020-11-25T01:51:13ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-04-0164e1898510.1371/journal.pone.0018985Protein phosphatase-1 activates CDK9 by dephosphorylating Ser175.Tatiana AmmosovaYuri ObukhovAlexander KotelkinDenitra BreuerMonique BeullensVictor R GordeukMathieu BollenSergei NekhaiThe cyclin-dependent kinase CDK9/cyclin T1 induces HIV-1 transcription by phosphorylating the carboxyterminal domain (CTD) of RNA polymerase II (RNAPII). CDK9 activity is regulated by protein phosphatase-1 (PP1) which was previously shown to dephosphorylate CDK9 Thr186. Here, we analyzed the effect of PP1 on RNAPII phosphorylation and CDK9 activity. The selective inhibition of PP1 by okadaic acid and by NIPP1 inhibited phosphorylation of RNAPII CTD in vitro and in vivo. Expression of the central domain of NIPP1 in cultured cells inhibited the enzymatic activity of CDK9 suggesting its activation by PP1. Comparison of dephosphorylation of CDK9 phosphorylated by ((32)P) in vivo and dephosphorylation of CDK9's Thr186 analyzed by Thr186 phospho-specific antibodies, indicated that a residue other than Thr186 might be dephosphorylated by PP1. Analysis of dephosphorylation of phosphorylated peptides derived from CDK9's T-loop suggested that PP1 dephosphorylates CDK9 Ser175. In cultured cells, CDK9 was found to be phosphorylated on Ser175 as determined by combination of Hunter 2D peptide mapping and LC-MS analysis. CDK9 S175A mutant was active and S175D--inactive, and dephosphorylation of CDK9's Ser175 upregulated HIV-1 transcription in PP1-dependent manner. Collectively, our results point to CDK9 Ser175 as novel PP1-regulatory site which dephosphorylation upregulates CDK9 activity and contribute to the activation of HIV-1 transcription.http://europepmc.org/articles/PMC3080879?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Tatiana Ammosova
Yuri Obukhov
Alexander Kotelkin
Denitra Breuer
Monique Beullens
Victor R Gordeuk
Mathieu Bollen
Sergei Nekhai
spellingShingle Tatiana Ammosova
Yuri Obukhov
Alexander Kotelkin
Denitra Breuer
Monique Beullens
Victor R Gordeuk
Mathieu Bollen
Sergei Nekhai
Protein phosphatase-1 activates CDK9 by dephosphorylating Ser175.
PLoS ONE
author_facet Tatiana Ammosova
Yuri Obukhov
Alexander Kotelkin
Denitra Breuer
Monique Beullens
Victor R Gordeuk
Mathieu Bollen
Sergei Nekhai
author_sort Tatiana Ammosova
title Protein phosphatase-1 activates CDK9 by dephosphorylating Ser175.
title_short Protein phosphatase-1 activates CDK9 by dephosphorylating Ser175.
title_full Protein phosphatase-1 activates CDK9 by dephosphorylating Ser175.
title_fullStr Protein phosphatase-1 activates CDK9 by dephosphorylating Ser175.
title_full_unstemmed Protein phosphatase-1 activates CDK9 by dephosphorylating Ser175.
title_sort protein phosphatase-1 activates cdk9 by dephosphorylating ser175.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-04-01
description The cyclin-dependent kinase CDK9/cyclin T1 induces HIV-1 transcription by phosphorylating the carboxyterminal domain (CTD) of RNA polymerase II (RNAPII). CDK9 activity is regulated by protein phosphatase-1 (PP1) which was previously shown to dephosphorylate CDK9 Thr186. Here, we analyzed the effect of PP1 on RNAPII phosphorylation and CDK9 activity. The selective inhibition of PP1 by okadaic acid and by NIPP1 inhibited phosphorylation of RNAPII CTD in vitro and in vivo. Expression of the central domain of NIPP1 in cultured cells inhibited the enzymatic activity of CDK9 suggesting its activation by PP1. Comparison of dephosphorylation of CDK9 phosphorylated by ((32)P) in vivo and dephosphorylation of CDK9's Thr186 analyzed by Thr186 phospho-specific antibodies, indicated that a residue other than Thr186 might be dephosphorylated by PP1. Analysis of dephosphorylation of phosphorylated peptides derived from CDK9's T-loop suggested that PP1 dephosphorylates CDK9 Ser175. In cultured cells, CDK9 was found to be phosphorylated on Ser175 as determined by combination of Hunter 2D peptide mapping and LC-MS analysis. CDK9 S175A mutant was active and S175D--inactive, and dephosphorylation of CDK9's Ser175 upregulated HIV-1 transcription in PP1-dependent manner. Collectively, our results point to CDK9 Ser175 as novel PP1-regulatory site which dephosphorylation upregulates CDK9 activity and contribute to the activation of HIV-1 transcription.
url http://europepmc.org/articles/PMC3080879?pdf=render
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