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Structural Analysis of the SANT/Myb Domain of FLASH and YARP Proteins and Their Complex with the C-Terminal Fragment of NPAT by NMR Spectroscopy and Computer Simulations

FLICE-associated huge protein (FLASH), Yin Yang 1-Associated Protein-Related Protein (YARP) and Nuclear Protein, Ataxia-Telangiectasia Locus (NPAT) localize to discrete nuclear structures called histone locus bodies (HLBs) where they control various steps in histone gene expression. Near the C-termi...

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Autores principales: Bucholc, Katarzyna, Skrajna, Aleksandra, Adamska, Kinga, Yang, Xiao-Cui, Krajewski, Krzysztof, Poznański, Jarosław, Dadlez, Michał, Domiński, Zbigniew, Zhukov, Igor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432317/
https://www.ncbi.nlm.nih.gov/pubmed/32722282
http://dx.doi.org/10.3390/ijms21155268
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author Bucholc, Katarzyna
Skrajna, Aleksandra
Adamska, Kinga
Yang, Xiao-Cui
Krajewski, Krzysztof
Poznański, Jarosław
Dadlez, Michał
Domiński, Zbigniew
Zhukov, Igor
author_facet Bucholc, Katarzyna
Skrajna, Aleksandra
Adamska, Kinga
Yang, Xiao-Cui
Krajewski, Krzysztof
Poznański, Jarosław
Dadlez, Michał
Domiński, Zbigniew
Zhukov, Igor
author_sort Bucholc, Katarzyna
collection PubMed
description FLICE-associated huge protein (FLASH), Yin Yang 1-Associated Protein-Related Protein (YARP) and Nuclear Protein, Ataxia-Telangiectasia Locus (NPAT) localize to discrete nuclear structures called histone locus bodies (HLBs) where they control various steps in histone gene expression. Near the C-terminus, FLASH and YARP contain a highly homologous domain that interacts with the C-terminal region of NPAT. Structural aspects of the FLASH–NPAT and YARP–NPAT complexes and their role in histone gene expression remain largely unknown. In this study, we used multidimensional NMR spectroscopy and in silico modeling to analyze the C-terminal domain in FLASH and YARP in an unbound form and in a complex with the last 31 amino acids of NPAT. Our results demonstrate that FLASH and YARP domains share the same fold of a triple [Formula: see text]-helical bundle that resembles the DNA binding domain of Myb transcriptional factors and the SANT domain found in chromatin-modifying and remodeling complexes. The NPAT peptide contains a single [Formula: see text]-helix that makes multiple contacts with [Formula: see text]-helices I and III of the FLASH and YARP domains. Surprisingly, in spite of sharing a significant amino acid similarity, each domain likely binds NPAT using a unique network of interactions, yielding two distinct complexes. In silico modeling suggests that both complexes are structurally compatible with DNA binding, raising the possibility that they may function in identifying specific sequences within histone gene clusters, hence initiating the assembly of HLBs and regulating histone gene expression during cell cycle progression.
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spelling pubmed-74323172020-08-24 Structural Analysis of the SANT/Myb Domain of FLASH and YARP Proteins and Their Complex with the C-Terminal Fragment of NPAT by NMR Spectroscopy and Computer Simulations Bucholc, Katarzyna Skrajna, Aleksandra Adamska, Kinga Yang, Xiao-Cui Krajewski, Krzysztof Poznański, Jarosław Dadlez, Michał Domiński, Zbigniew Zhukov, Igor Int J Mol Sci Article FLICE-associated huge protein (FLASH), Yin Yang 1-Associated Protein-Related Protein (YARP) and Nuclear Protein, Ataxia-Telangiectasia Locus (NPAT) localize to discrete nuclear structures called histone locus bodies (HLBs) where they control various steps in histone gene expression. Near the C-terminus, FLASH and YARP contain a highly homologous domain that interacts with the C-terminal region of NPAT. Structural aspects of the FLASH–NPAT and YARP–NPAT complexes and their role in histone gene expression remain largely unknown. In this study, we used multidimensional NMR spectroscopy and in silico modeling to analyze the C-terminal domain in FLASH and YARP in an unbound form and in a complex with the last 31 amino acids of NPAT. Our results demonstrate that FLASH and YARP domains share the same fold of a triple [Formula: see text]-helical bundle that resembles the DNA binding domain of Myb transcriptional factors and the SANT domain found in chromatin-modifying and remodeling complexes. The NPAT peptide contains a single [Formula: see text]-helix that makes multiple contacts with [Formula: see text]-helices I and III of the FLASH and YARP domains. Surprisingly, in spite of sharing a significant amino acid similarity, each domain likely binds NPAT using a unique network of interactions, yielding two distinct complexes. In silico modeling suggests that both complexes are structurally compatible with DNA binding, raising the possibility that they may function in identifying specific sequences within histone gene clusters, hence initiating the assembly of HLBs and regulating histone gene expression during cell cycle progression. MDPI 2020-07-24 /pmc/articles/PMC7432317/ /pubmed/32722282 http://dx.doi.org/10.3390/ijms21155268 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bucholc, Katarzyna
Skrajna, Aleksandra
Adamska, Kinga
Yang, Xiao-Cui
Krajewski, Krzysztof
Poznański, Jarosław
Dadlez, Michał
Domiński, Zbigniew
Zhukov, Igor
Structural Analysis of the SANT/Myb Domain of FLASH and YARP Proteins and Their Complex with the C-Terminal Fragment of NPAT by NMR Spectroscopy and Computer Simulations
title Structural Analysis of the SANT/Myb Domain of FLASH and YARP Proteins and Their Complex with the C-Terminal Fragment of NPAT by NMR Spectroscopy and Computer Simulations
title_full Structural Analysis of the SANT/Myb Domain of FLASH and YARP Proteins and Their Complex with the C-Terminal Fragment of NPAT by NMR Spectroscopy and Computer Simulations
title_fullStr Structural Analysis of the SANT/Myb Domain of FLASH and YARP Proteins and Their Complex with the C-Terminal Fragment of NPAT by NMR Spectroscopy and Computer Simulations
title_full_unstemmed Structural Analysis of the SANT/Myb Domain of FLASH and YARP Proteins and Their Complex with the C-Terminal Fragment of NPAT by NMR Spectroscopy and Computer Simulations
title_short Structural Analysis of the SANT/Myb Domain of FLASH and YARP Proteins and Their Complex with the C-Terminal Fragment of NPAT by NMR Spectroscopy and Computer Simulations
title_sort structural analysis of the sant/myb domain of flash and yarp proteins and their complex with the c-terminal fragment of npat by nmr spectroscopy and computer simulations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432317/
https://www.ncbi.nlm.nih.gov/pubmed/32722282
http://dx.doi.org/10.3390/ijms21155268
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