Stability of the PHF10 subunit of PBAF signature module is regulated by phosphorylation: role of β-TrCP

Abstract The PBAF chromatin-remodeling complexes are multi-protein machines, regulating expression of genes involved in proliferation and differentiation. PHF10 is a subunit of the PBAF essential for its association with chromatin. Mammalian PHF10 is expressed as four ubiquitous isoforms, which are...

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Main Authors: Victor V. Tatarskiy, Yuriy P. Simonov, Dmitrii S. Shcherbinin, Alexander V. Brechalov, Sofia G. Georgieva, Nataliya V. Soshnikova
Format: Article
Language:English
Published: Nature Publishing Group 2017-07-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-05944-3
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spelling doaj-59ced0be4ab848c393157bf2ba51b36b2020-12-08T02:28:12ZengNature Publishing GroupScientific Reports2045-23222017-07-017111410.1038/s41598-017-05944-3Stability of the PHF10 subunit of PBAF signature module is regulated by phosphorylation: role of β-TrCPVictor V. Tatarskiy0Yuriy P. Simonov1Dmitrii S. Shcherbinin2Alexander V. Brechalov3Sofia G. Georgieva4Nataliya V. Soshnikova5Laboratory of Tumor Cell Death, N.N. Blokhin Russian Cancer Research CenterDepartment of Transcription Factors, Engelhardt Institute of Molecular Biology, Russian Academy of SciencesLaboratory of Structure Bioinformatics, Institute of Biomedical Chemistry (IBMC)Department of Transcription Factors, Engelhardt Institute of Molecular Biology, Russian Academy of SciencesDepartment of Eukariotic Transcription Factors, Institute of Gene Biology, Russian Academy of SciencesDepartment of Eukariotic Transcription Factors, Institute of Gene Biology, Russian Academy of SciencesAbstract The PBAF chromatin-remodeling complexes are multi-protein machines, regulating expression of genes involved in proliferation and differentiation. PHF10 is a subunit of the PBAF essential for its association with chromatin. Mammalian PHF10 is expressed as four ubiquitous isoforms, which are alternatively incorporated in the complex and differ by their influence on transcription of target genes. PHF10 have different domain structure and two of them (PHF10-S isoforms) lack C-terminal PHD domains, which enables their phosphorylation by CK-1. Here we have found that PBAF subunits have low turnover rate, except for PHF10 which has much lower half-life, and is degraded by β-TrCP. The β-TrCP knockdown stabilizes PBAF core subunits - BRG1 and BAF155 and specific subunits - PHF10, BAF200, BAF180 and BRD7. PHF10 isoforms contain two non-canonical β-TrCP degrons and are degraded by β-TrCP in a phospho-dependent manner. But phosphorylation of PHF10-S degrons by CK-1, contrary to previously described degrons, prevents their degradation. Targeted molecular docking demonstrated that phosphorylated forms of PHF10 bind to β-TrCP with much lower affinity than non-phosphorylated ones, contrary to previously described degrons. This unorthodox mechanism proposes that phosphorylation of β-TrCP degrons by CK-1 could not only degrade a set of proteins, but also stabilize a different set of targets.https://doi.org/10.1038/s41598-017-05944-3
collection DOAJ
language English
format Article
sources DOAJ
author Victor V. Tatarskiy
Yuriy P. Simonov
Dmitrii S. Shcherbinin
Alexander V. Brechalov
Sofia G. Georgieva
Nataliya V. Soshnikova
spellingShingle Victor V. Tatarskiy
Yuriy P. Simonov
Dmitrii S. Shcherbinin
Alexander V. Brechalov
Sofia G. Georgieva
Nataliya V. Soshnikova
Stability of the PHF10 subunit of PBAF signature module is regulated by phosphorylation: role of β-TrCP
Scientific Reports
author_facet Victor V. Tatarskiy
Yuriy P. Simonov
Dmitrii S. Shcherbinin
Alexander V. Brechalov
Sofia G. Georgieva
Nataliya V. Soshnikova
author_sort Victor V. Tatarskiy
title Stability of the PHF10 subunit of PBAF signature module is regulated by phosphorylation: role of β-TrCP
title_short Stability of the PHF10 subunit of PBAF signature module is regulated by phosphorylation: role of β-TrCP
title_full Stability of the PHF10 subunit of PBAF signature module is regulated by phosphorylation: role of β-TrCP
title_fullStr Stability of the PHF10 subunit of PBAF signature module is regulated by phosphorylation: role of β-TrCP
title_full_unstemmed Stability of the PHF10 subunit of PBAF signature module is regulated by phosphorylation: role of β-TrCP
title_sort stability of the phf10 subunit of pbaf signature module is regulated by phosphorylation: role of β-trcp
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-07-01
description Abstract The PBAF chromatin-remodeling complexes are multi-protein machines, regulating expression of genes involved in proliferation and differentiation. PHF10 is a subunit of the PBAF essential for its association with chromatin. Mammalian PHF10 is expressed as four ubiquitous isoforms, which are alternatively incorporated in the complex and differ by their influence on transcription of target genes. PHF10 have different domain structure and two of them (PHF10-S isoforms) lack C-terminal PHD domains, which enables their phosphorylation by CK-1. Here we have found that PBAF subunits have low turnover rate, except for PHF10 which has much lower half-life, and is degraded by β-TrCP. The β-TrCP knockdown stabilizes PBAF core subunits - BRG1 and BAF155 and specific subunits - PHF10, BAF200, BAF180 and BRD7. PHF10 isoforms contain two non-canonical β-TrCP degrons and are degraded by β-TrCP in a phospho-dependent manner. But phosphorylation of PHF10-S degrons by CK-1, contrary to previously described degrons, prevents their degradation. Targeted molecular docking demonstrated that phosphorylated forms of PHF10 bind to β-TrCP with much lower affinity than non-phosphorylated ones, contrary to previously described degrons. This unorthodox mechanism proposes that phosphorylation of β-TrCP degrons by CK-1 could not only degrade a set of proteins, but also stabilize a different set of targets.
url https://doi.org/10.1038/s41598-017-05944-3
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