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PIAS1 regulates CP2c localization and active promoter complex formation in erythroid cell-specific α-globin expression

Data presented here extends our previous observations on α-globin transcriptional regulation by the CP2 and PIAS1 proteins. Using RNAi knockdown, we have now shown that CP2b, CP2c and PIAS1 are each necessary for synergistic activation of endogenous α-globin gene expression in differentiating MEL ce...

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Autores principales: Chul Kang, Ho, Hyung Chae, Ji, Jeon, Jinseon, Kim, Won, Hyun Ha, Dae, Ho Shin, June, Gil Kim, Chan, Geun Kim, Chul
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2938217/
https://www.ncbi.nlm.nih.gov/pubmed/20421208
http://dx.doi.org/10.1093/nar/gkq286
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author Chul Kang, Ho
Hyung Chae, Ji
Jeon, Jinseon
Kim, Won
Hyun Ha, Dae
Ho Shin, June
Gil Kim, Chan
Geun Kim, Chul
author_facet Chul Kang, Ho
Hyung Chae, Ji
Jeon, Jinseon
Kim, Won
Hyun Ha, Dae
Ho Shin, June
Gil Kim, Chan
Geun Kim, Chul
author_sort Chul Kang, Ho
collection PubMed
description Data presented here extends our previous observations on α-globin transcriptional regulation by the CP2 and PIAS1 proteins. Using RNAi knockdown, we have now shown that CP2b, CP2c and PIAS1 are each necessary for synergistic activation of endogenous α-globin gene expression in differentiating MEL cells. In this system, truncated PIAS1 mutants lacking the ring finger domain recruited CP2c to the nucleus, as did wild-type PIAS1, demonstrating that this is a sumoylation-independent process. In vitro, recombinant CP2c, CP2b and PIAS1 bound DNA as a stable CBP (CP2c/CP2b/PIAS1) complex. Following PIAS1 knockdown in MEL cells, however, the association of endogenous CP2c and CP2b with the α-globin promoter simultaneously decreased. By mapping the CP2b- and CP2c-binding domains on PIAS1, and the PIAS1-binding domains on CP2b and CP2c, we found that two regions of PIAS1 that interact with CP2c/CP2b are required for its co-activator function. We propose that CP2c, CP2b, and PIAS1 form a hexametric complex with two units each of CP2c, CP2b, and PIAS1, in which PIAS1 serves as a clamp between two CP2 proteins, while CP2c binds directly to the target DNA and CP2b mediates strong transactivation.
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spelling pubmed-29382172010-09-13 PIAS1 regulates CP2c localization and active promoter complex formation in erythroid cell-specific α-globin expression Chul Kang, Ho Hyung Chae, Ji Jeon, Jinseon Kim, Won Hyun Ha, Dae Ho Shin, June Gil Kim, Chan Geun Kim, Chul Nucleic Acids Res Molecular Biology Data presented here extends our previous observations on α-globin transcriptional regulation by the CP2 and PIAS1 proteins. Using RNAi knockdown, we have now shown that CP2b, CP2c and PIAS1 are each necessary for synergistic activation of endogenous α-globin gene expression in differentiating MEL cells. In this system, truncated PIAS1 mutants lacking the ring finger domain recruited CP2c to the nucleus, as did wild-type PIAS1, demonstrating that this is a sumoylation-independent process. In vitro, recombinant CP2c, CP2b and PIAS1 bound DNA as a stable CBP (CP2c/CP2b/PIAS1) complex. Following PIAS1 knockdown in MEL cells, however, the association of endogenous CP2c and CP2b with the α-globin promoter simultaneously decreased. By mapping the CP2b- and CP2c-binding domains on PIAS1, and the PIAS1-binding domains on CP2b and CP2c, we found that two regions of PIAS1 that interact with CP2c/CP2b are required for its co-activator function. We propose that CP2c, CP2b, and PIAS1 form a hexametric complex with two units each of CP2c, CP2b, and PIAS1, in which PIAS1 serves as a clamp between two CP2 proteins, while CP2c binds directly to the target DNA and CP2b mediates strong transactivation. Oxford University Press 2010-09 2010-04-26 /pmc/articles/PMC2938217/ /pubmed/20421208 http://dx.doi.org/10.1093/nar/gkq286 Text en © The Author(s) 2010. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Molecular Biology
Chul Kang, Ho
Hyung Chae, Ji
Jeon, Jinseon
Kim, Won
Hyun Ha, Dae
Ho Shin, June
Gil Kim, Chan
Geun Kim, Chul
PIAS1 regulates CP2c localization and active promoter complex formation in erythroid cell-specific α-globin expression
title PIAS1 regulates CP2c localization and active promoter complex formation in erythroid cell-specific α-globin expression
title_full PIAS1 regulates CP2c localization and active promoter complex formation in erythroid cell-specific α-globin expression
title_fullStr PIAS1 regulates CP2c localization and active promoter complex formation in erythroid cell-specific α-globin expression
title_full_unstemmed PIAS1 regulates CP2c localization and active promoter complex formation in erythroid cell-specific α-globin expression
title_short PIAS1 regulates CP2c localization and active promoter complex formation in erythroid cell-specific α-globin expression
title_sort pias1 regulates cp2c localization and active promoter complex formation in erythroid cell-specific α-globin expression
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2938217/
https://www.ncbi.nlm.nih.gov/pubmed/20421208
http://dx.doi.org/10.1093/nar/gkq286
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