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Identification of a Small TAF Complex and Its Role in the Assembly of TAF-Containing Complexes

TFIID plays a role in nucleating RNA polymerase II preinitiation complex assembly on protein-coding genes. TFIID is a multisubunit complex comprised of the TATA box binding protein (TBP) and 14 TBP-associated factors (TAFs). Another class of multiprotein transcriptional regulatory complexes having h...

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Autores principales: Demény, Màté A., Soutoglou, Evi, Nagy, Zita, Scheer, Elisabeth, Jànoshàzi, Àgnes, Richardot, Magalie, Argentini, Manuela, Kessler, Pascal, Tora, Laszlo
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1820849/
https://www.ncbi.nlm.nih.gov/pubmed/17375202
http://dx.doi.org/10.1371/journal.pone.0000316
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author Demény, Màté A.
Soutoglou, Evi
Nagy, Zita
Scheer, Elisabeth
Jànoshàzi, Àgnes
Richardot, Magalie
Argentini, Manuela
Kessler, Pascal
Tora, Laszlo
author_facet Demény, Màté A.
Soutoglou, Evi
Nagy, Zita
Scheer, Elisabeth
Jànoshàzi, Àgnes
Richardot, Magalie
Argentini, Manuela
Kessler, Pascal
Tora, Laszlo
author_sort Demény, Màté A.
collection PubMed
description TFIID plays a role in nucleating RNA polymerase II preinitiation complex assembly on protein-coding genes. TFIID is a multisubunit complex comprised of the TATA box binding protein (TBP) and 14 TBP-associated factors (TAFs). Another class of multiprotein transcriptional regulatory complexes having histone acetyl transferase (HAT) activity, and containing TAFs, includes TFTC, STAGA and the PCAF/GCN5 complex. Looking for as yet undiscovered subunits by a proteomic approach, we had identified TAF8 and SPT7L in human TFTC preparations. Subsequently, however, we demonstrated that TAF8 was not a stable component of TFTC, but that it is present in a small TAF complex (SMAT), containing TAF8, TAF10 and SPT7L, that co-purified with TFTC. Thus, TAF8 is a subunit of both TFIID and SMAT. The latter has to be involved in a pathway of complex formation distinct from the other known TAF complexes, since these three histone fold (HF)-containing proteins (TAF8, TAF10 and SPT7L) can never be found together either in TFIID or in STAGA/TFTC HAT complexes. Here we show that TAF8 is absolutely necessary for the integration of TAF10 in a higher order TFIID core complex containing seven TAFs. TAF8 forms a heterodimer with TAF10 through its HF and proline rich domains, and also interacts with SPT7L through its C-terminal region, and the three proteins form a complex in vitro and in vivo. Thus, the TAF8-TAF10 and TAF10-SPT7L HF pairs, and also the SMAT complex, seem to be important regulators of the composition of different TFIID and/or STAGA/TFTC complexes in the nucleus and consequently may play a role in gene regulation.
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spelling pubmed-18208492007-03-21 Identification of a Small TAF Complex and Its Role in the Assembly of TAF-Containing Complexes Demény, Màté A. Soutoglou, Evi Nagy, Zita Scheer, Elisabeth Jànoshàzi, Àgnes Richardot, Magalie Argentini, Manuela Kessler, Pascal Tora, Laszlo PLoS One Research Article TFIID plays a role in nucleating RNA polymerase II preinitiation complex assembly on protein-coding genes. TFIID is a multisubunit complex comprised of the TATA box binding protein (TBP) and 14 TBP-associated factors (TAFs). Another class of multiprotein transcriptional regulatory complexes having histone acetyl transferase (HAT) activity, and containing TAFs, includes TFTC, STAGA and the PCAF/GCN5 complex. Looking for as yet undiscovered subunits by a proteomic approach, we had identified TAF8 and SPT7L in human TFTC preparations. Subsequently, however, we demonstrated that TAF8 was not a stable component of TFTC, but that it is present in a small TAF complex (SMAT), containing TAF8, TAF10 and SPT7L, that co-purified with TFTC. Thus, TAF8 is a subunit of both TFIID and SMAT. The latter has to be involved in a pathway of complex formation distinct from the other known TAF complexes, since these three histone fold (HF)-containing proteins (TAF8, TAF10 and SPT7L) can never be found together either in TFIID or in STAGA/TFTC HAT complexes. Here we show that TAF8 is absolutely necessary for the integration of TAF10 in a higher order TFIID core complex containing seven TAFs. TAF8 forms a heterodimer with TAF10 through its HF and proline rich domains, and also interacts with SPT7L through its C-terminal region, and the three proteins form a complex in vitro and in vivo. Thus, the TAF8-TAF10 and TAF10-SPT7L HF pairs, and also the SMAT complex, seem to be important regulators of the composition of different TFIID and/or STAGA/TFTC complexes in the nucleus and consequently may play a role in gene regulation. Public Library of Science 2007-03-21 /pmc/articles/PMC1820849/ /pubmed/17375202 http://dx.doi.org/10.1371/journal.pone.0000316 Text en Demeny et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Demény, Màté A.
Soutoglou, Evi
Nagy, Zita
Scheer, Elisabeth
Jànoshàzi, Àgnes
Richardot, Magalie
Argentini, Manuela
Kessler, Pascal
Tora, Laszlo
Identification of a Small TAF Complex and Its Role in the Assembly of TAF-Containing Complexes
title Identification of a Small TAF Complex and Its Role in the Assembly of TAF-Containing Complexes
title_full Identification of a Small TAF Complex and Its Role in the Assembly of TAF-Containing Complexes
title_fullStr Identification of a Small TAF Complex and Its Role in the Assembly of TAF-Containing Complexes
title_full_unstemmed Identification of a Small TAF Complex and Its Role in the Assembly of TAF-Containing Complexes
title_short Identification of a Small TAF Complex and Its Role in the Assembly of TAF-Containing Complexes
title_sort identification of a small taf complex and its role in the assembly of taf-containing complexes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1820849/
https://www.ncbi.nlm.nih.gov/pubmed/17375202
http://dx.doi.org/10.1371/journal.pone.0000316
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