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The Basal Transcription Complex Component TAF3 Transduces Changes in Nuclear Phosphoinositides into Transcriptional Output

Phosphoinositides (PI) are important signaling molecules in the nucleus that influence gene expression. However, if and how nuclear PI directly affects the transcriptional machinery is not known. We report that the lipid kinase PIP4K2B regulates nuclear PI5P and the expression of myogenic genes duri...

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Autores principales: Stijf-Bultsma, Yvette, Sommer, Lilly, Tauber, Maria, Baalbaki, Mai, Giardoglou, Panagiota, Jones, David R., Gelato, Kathy A., van Pelt, Jason, Shah, Zahid, Rahnamoun, Homa, Toma, Clara, Anderson, Karen E., Hawkins, Philip, Lauberth, Shannon M., Haramis, Anna-Pavlina G., Hart, Daniel, Fischle, Wolfgang, Divecha, Nullin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4429956/
https://www.ncbi.nlm.nih.gov/pubmed/25866244
http://dx.doi.org/10.1016/j.molcel.2015.03.009
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author Stijf-Bultsma, Yvette
Sommer, Lilly
Tauber, Maria
Baalbaki, Mai
Giardoglou, Panagiota
Jones, David R.
Gelato, Kathy A.
van Pelt, Jason
Shah, Zahid
Rahnamoun, Homa
Toma, Clara
Anderson, Karen E.
Hawkins, Philip
Lauberth, Shannon M.
Haramis, Anna-Pavlina G.
Hart, Daniel
Fischle, Wolfgang
Divecha, Nullin
author_facet Stijf-Bultsma, Yvette
Sommer, Lilly
Tauber, Maria
Baalbaki, Mai
Giardoglou, Panagiota
Jones, David R.
Gelato, Kathy A.
van Pelt, Jason
Shah, Zahid
Rahnamoun, Homa
Toma, Clara
Anderson, Karen E.
Hawkins, Philip
Lauberth, Shannon M.
Haramis, Anna-Pavlina G.
Hart, Daniel
Fischle, Wolfgang
Divecha, Nullin
author_sort Stijf-Bultsma, Yvette
collection PubMed
description Phosphoinositides (PI) are important signaling molecules in the nucleus that influence gene expression. However, if and how nuclear PI directly affects the transcriptional machinery is not known. We report that the lipid kinase PIP4K2B regulates nuclear PI5P and the expression of myogenic genes during myoblast differentiation. A targeted screen for PI interactors identified the PHD finger of TAF3, a TATA box binding protein-associated factor with important roles in transcription regulation, pluripotency, and differentiation. We show that the PI interaction site is distinct from the known H3K4me3 binding region of TAF3 and that PI binding modulates association of TAF3 with H3K4me3 in vitro and with chromatin in vivo. Analysis of TAF3 mutants indicates that TAF3 transduces PIP4K2B-mediated alterations in PI into changes in specific gene transcription. Our study reveals TAF3 as a direct target of nuclear PI and further illustrates the importance of basal transcription components as signal transducers.
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spelling pubmed-44299562015-05-15 The Basal Transcription Complex Component TAF3 Transduces Changes in Nuclear Phosphoinositides into Transcriptional Output Stijf-Bultsma, Yvette Sommer, Lilly Tauber, Maria Baalbaki, Mai Giardoglou, Panagiota Jones, David R. Gelato, Kathy A. van Pelt, Jason Shah, Zahid Rahnamoun, Homa Toma, Clara Anderson, Karen E. Hawkins, Philip Lauberth, Shannon M. Haramis, Anna-Pavlina G. Hart, Daniel Fischle, Wolfgang Divecha, Nullin Mol Cell Article Phosphoinositides (PI) are important signaling molecules in the nucleus that influence gene expression. However, if and how nuclear PI directly affects the transcriptional machinery is not known. We report that the lipid kinase PIP4K2B regulates nuclear PI5P and the expression of myogenic genes during myoblast differentiation. A targeted screen for PI interactors identified the PHD finger of TAF3, a TATA box binding protein-associated factor with important roles in transcription regulation, pluripotency, and differentiation. We show that the PI interaction site is distinct from the known H3K4me3 binding region of TAF3 and that PI binding modulates association of TAF3 with H3K4me3 in vitro and with chromatin in vivo. Analysis of TAF3 mutants indicates that TAF3 transduces PIP4K2B-mediated alterations in PI into changes in specific gene transcription. Our study reveals TAF3 as a direct target of nuclear PI and further illustrates the importance of basal transcription components as signal transducers. Cell Press 2015-05-07 /pmc/articles/PMC4429956/ /pubmed/25866244 http://dx.doi.org/10.1016/j.molcel.2015.03.009 Text en © 2015 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Stijf-Bultsma, Yvette
Sommer, Lilly
Tauber, Maria
Baalbaki, Mai
Giardoglou, Panagiota
Jones, David R.
Gelato, Kathy A.
van Pelt, Jason
Shah, Zahid
Rahnamoun, Homa
Toma, Clara
Anderson, Karen E.
Hawkins, Philip
Lauberth, Shannon M.
Haramis, Anna-Pavlina G.
Hart, Daniel
Fischle, Wolfgang
Divecha, Nullin
The Basal Transcription Complex Component TAF3 Transduces Changes in Nuclear Phosphoinositides into Transcriptional Output
title The Basal Transcription Complex Component TAF3 Transduces Changes in Nuclear Phosphoinositides into Transcriptional Output
title_full The Basal Transcription Complex Component TAF3 Transduces Changes in Nuclear Phosphoinositides into Transcriptional Output
title_fullStr The Basal Transcription Complex Component TAF3 Transduces Changes in Nuclear Phosphoinositides into Transcriptional Output
title_full_unstemmed The Basal Transcription Complex Component TAF3 Transduces Changes in Nuclear Phosphoinositides into Transcriptional Output
title_short The Basal Transcription Complex Component TAF3 Transduces Changes in Nuclear Phosphoinositides into Transcriptional Output
title_sort basal transcription complex component taf3 transduces changes in nuclear phosphoinositides into transcriptional output
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4429956/
https://www.ncbi.nlm.nih.gov/pubmed/25866244
http://dx.doi.org/10.1016/j.molcel.2015.03.009
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