Glycogen synthase kinase (GSK) 3β phosphorylates and protects nuclear myosin 1c from proteasome-mediated degradation to activate rDNA transcription in early G1 cells.

Nuclear myosin 1c (NM1) mediates RNA polymerase I (pol I) transcription activation and cell cycle progression by facilitating PCAF-mediated H3K9 acetylation, but the molecular mechanism by which NM1 is regulated remains unclear. Here, we report that at early G1 the glycogen synthase kinase (GSK) 3β...

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Main Authors: Aishe A Sarshad, Martin Corcoran, Bader Al-Muzzaini, Laura Borgonovo-Brandter, Anne Von Euler, Douglas Lamont, Neus Visa, Piergiorgio Percipalle
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-06-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC4046919?pdf=render
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spelling doaj-abd9b9408d794d7787070cbe9f534f6d2020-11-25T00:53:44ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042014-06-01106e100439010.1371/journal.pgen.1004390Glycogen synthase kinase (GSK) 3β phosphorylates and protects nuclear myosin 1c from proteasome-mediated degradation to activate rDNA transcription in early G1 cells.Aishe A SarshadMartin CorcoranBader Al-MuzzainiLaura Borgonovo-BrandterAnne Von EulerDouglas LamontNeus VisaPiergiorgio PercipalleNuclear myosin 1c (NM1) mediates RNA polymerase I (pol I) transcription activation and cell cycle progression by facilitating PCAF-mediated H3K9 acetylation, but the molecular mechanism by which NM1 is regulated remains unclear. Here, we report that at early G1 the glycogen synthase kinase (GSK) 3β phosphorylates and stabilizes NM1, allowing for NM1 association with the chromatin. Genomic analysis by ChIP-Seq showed that this mechanism occurs on the rDNA as active GSK3β selectively occupies the gene. ChIP assays and transmission electron microscopy in GSK3β-/- mouse embryonic fibroblasts indicated that at G1 rRNA synthesis is suppressed due to decreased H3K9 acetylation leading to a chromatin state incompatible with transcription. We found that GSK3β directly phosphorylates the endogenous NM1 on a single serine residue (Ser-1020) located within the NM1 C-terminus. In G1 this phosphorylation event stabilizes NM1 and prevents NM1 polyubiquitination by the E3 ligase UBR5 and proteasome-mediated degradation. We conclude that GSK3β-mediated phosphorylation of NM1 is required for pol I transcription activation.http://europepmc.org/articles/PMC4046919?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Aishe A Sarshad
Martin Corcoran
Bader Al-Muzzaini
Laura Borgonovo-Brandter
Anne Von Euler
Douglas Lamont
Neus Visa
Piergiorgio Percipalle
spellingShingle Aishe A Sarshad
Martin Corcoran
Bader Al-Muzzaini
Laura Borgonovo-Brandter
Anne Von Euler
Douglas Lamont
Neus Visa
Piergiorgio Percipalle
Glycogen synthase kinase (GSK) 3β phosphorylates and protects nuclear myosin 1c from proteasome-mediated degradation to activate rDNA transcription in early G1 cells.
PLoS Genetics
author_facet Aishe A Sarshad
Martin Corcoran
Bader Al-Muzzaini
Laura Borgonovo-Brandter
Anne Von Euler
Douglas Lamont
Neus Visa
Piergiorgio Percipalle
author_sort Aishe A Sarshad
title Glycogen synthase kinase (GSK) 3β phosphorylates and protects nuclear myosin 1c from proteasome-mediated degradation to activate rDNA transcription in early G1 cells.
title_short Glycogen synthase kinase (GSK) 3β phosphorylates and protects nuclear myosin 1c from proteasome-mediated degradation to activate rDNA transcription in early G1 cells.
title_full Glycogen synthase kinase (GSK) 3β phosphorylates and protects nuclear myosin 1c from proteasome-mediated degradation to activate rDNA transcription in early G1 cells.
title_fullStr Glycogen synthase kinase (GSK) 3β phosphorylates and protects nuclear myosin 1c from proteasome-mediated degradation to activate rDNA transcription in early G1 cells.
title_full_unstemmed Glycogen synthase kinase (GSK) 3β phosphorylates and protects nuclear myosin 1c from proteasome-mediated degradation to activate rDNA transcription in early G1 cells.
title_sort glycogen synthase kinase (gsk) 3β phosphorylates and protects nuclear myosin 1c from proteasome-mediated degradation to activate rdna transcription in early g1 cells.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2014-06-01
description Nuclear myosin 1c (NM1) mediates RNA polymerase I (pol I) transcription activation and cell cycle progression by facilitating PCAF-mediated H3K9 acetylation, but the molecular mechanism by which NM1 is regulated remains unclear. Here, we report that at early G1 the glycogen synthase kinase (GSK) 3β phosphorylates and stabilizes NM1, allowing for NM1 association with the chromatin. Genomic analysis by ChIP-Seq showed that this mechanism occurs on the rDNA as active GSK3β selectively occupies the gene. ChIP assays and transmission electron microscopy in GSK3β-/- mouse embryonic fibroblasts indicated that at G1 rRNA synthesis is suppressed due to decreased H3K9 acetylation leading to a chromatin state incompatible with transcription. We found that GSK3β directly phosphorylates the endogenous NM1 on a single serine residue (Ser-1020) located within the NM1 C-terminus. In G1 this phosphorylation event stabilizes NM1 and prevents NM1 polyubiquitination by the E3 ligase UBR5 and proteasome-mediated degradation. We conclude that GSK3β-mediated phosphorylation of NM1 is required for pol I transcription activation.
url http://europepmc.org/articles/PMC4046919?pdf=render
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