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Multiparameter functional diversity of human C2H2 zinc finger proteins

C2H2 zinc finger proteins represent the largest and most enigmatic class of human transcription factors. Their C2H2-ZF arrays are highly variable, indicating that most will have unique DNA binding motifs. However, most of the binding motifs have not been directly determined. In addition, little is k...

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Autores principales: Schmitges, Frank W., Radovani, Ernest, Najafabadi, Hamed S., Barazandeh, Marjan, Campitelli, Laura F., Yin, Yimeng, Jolma, Arttu, Zhong, Guoqing, Guo, Hongbo, Kanagalingam, Tharsan, Dai, Wei F., Taipale, Jussi, Emili, Andrew, Greenblatt, Jack F., Hughes, Timothy R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5131825/
https://www.ncbi.nlm.nih.gov/pubmed/27852650
http://dx.doi.org/10.1101/gr.209643.116
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author Schmitges, Frank W.
Radovani, Ernest
Najafabadi, Hamed S.
Barazandeh, Marjan
Campitelli, Laura F.
Yin, Yimeng
Jolma, Arttu
Zhong, Guoqing
Guo, Hongbo
Kanagalingam, Tharsan
Dai, Wei F.
Taipale, Jussi
Emili, Andrew
Greenblatt, Jack F.
Hughes, Timothy R.
author_facet Schmitges, Frank W.
Radovani, Ernest
Najafabadi, Hamed S.
Barazandeh, Marjan
Campitelli, Laura F.
Yin, Yimeng
Jolma, Arttu
Zhong, Guoqing
Guo, Hongbo
Kanagalingam, Tharsan
Dai, Wei F.
Taipale, Jussi
Emili, Andrew
Greenblatt, Jack F.
Hughes, Timothy R.
author_sort Schmitges, Frank W.
collection PubMed
description C2H2 zinc finger proteins represent the largest and most enigmatic class of human transcription factors. Their C2H2-ZF arrays are highly variable, indicating that most will have unique DNA binding motifs. However, most of the binding motifs have not been directly determined. In addition, little is known about whether or how these proteins regulate transcription. Most of the ∼700 human C2H2-ZF proteins also contain at least one KRAB, SCAN, BTB, or SET domain, suggesting that they may have common interacting partners and/or effector functions. Here, we report a multifaceted functional analysis of 131 human C2H2-ZF proteins, encompassing DNA binding sites, interacting proteins, and transcriptional response to genetic perturbation. We confirm the expected diversity in DNA binding motifs and genomic binding sites, and provide motif models for 78 previously uncharacterized C2H2-ZF proteins, most of which are unique. Surprisingly, the diversity in protein–protein interactions is nearly as high as diversity in DNA binding motifs: Most C2H2-ZF proteins interact with a unique spectrum of co-activators and co-repressors. Thus, multiparameter diversification likely underlies the evolutionary success of this large class of human proteins.
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spelling pubmed-51318252016-12-19 Multiparameter functional diversity of human C2H2 zinc finger proteins Schmitges, Frank W. Radovani, Ernest Najafabadi, Hamed S. Barazandeh, Marjan Campitelli, Laura F. Yin, Yimeng Jolma, Arttu Zhong, Guoqing Guo, Hongbo Kanagalingam, Tharsan Dai, Wei F. Taipale, Jussi Emili, Andrew Greenblatt, Jack F. Hughes, Timothy R. Genome Res Resource C2H2 zinc finger proteins represent the largest and most enigmatic class of human transcription factors. Their C2H2-ZF arrays are highly variable, indicating that most will have unique DNA binding motifs. However, most of the binding motifs have not been directly determined. In addition, little is known about whether or how these proteins regulate transcription. Most of the ∼700 human C2H2-ZF proteins also contain at least one KRAB, SCAN, BTB, or SET domain, suggesting that they may have common interacting partners and/or effector functions. Here, we report a multifaceted functional analysis of 131 human C2H2-ZF proteins, encompassing DNA binding sites, interacting proteins, and transcriptional response to genetic perturbation. We confirm the expected diversity in DNA binding motifs and genomic binding sites, and provide motif models for 78 previously uncharacterized C2H2-ZF proteins, most of which are unique. Surprisingly, the diversity in protein–protein interactions is nearly as high as diversity in DNA binding motifs: Most C2H2-ZF proteins interact with a unique spectrum of co-activators and co-repressors. Thus, multiparameter diversification likely underlies the evolutionary success of this large class of human proteins. Cold Spring Harbor Laboratory Press 2016-12 /pmc/articles/PMC5131825/ /pubmed/27852650 http://dx.doi.org/10.1101/gr.209643.116 Text en © 2016 Schmitges et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by/4.0/ This article, published in Genome Research, is available under a Creative Commons License (Attribution 4.0 International), as described at http://creativecommons.org/licenses/by/4.0/.
spellingShingle Resource
Schmitges, Frank W.
Radovani, Ernest
Najafabadi, Hamed S.
Barazandeh, Marjan
Campitelli, Laura F.
Yin, Yimeng
Jolma, Arttu
Zhong, Guoqing
Guo, Hongbo
Kanagalingam, Tharsan
Dai, Wei F.
Taipale, Jussi
Emili, Andrew
Greenblatt, Jack F.
Hughes, Timothy R.
Multiparameter functional diversity of human C2H2 zinc finger proteins
title Multiparameter functional diversity of human C2H2 zinc finger proteins
title_full Multiparameter functional diversity of human C2H2 zinc finger proteins
title_fullStr Multiparameter functional diversity of human C2H2 zinc finger proteins
title_full_unstemmed Multiparameter functional diversity of human C2H2 zinc finger proteins
title_short Multiparameter functional diversity of human C2H2 zinc finger proteins
title_sort multiparameter functional diversity of human c2h2 zinc finger proteins
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5131825/
https://www.ncbi.nlm.nih.gov/pubmed/27852650
http://dx.doi.org/10.1101/gr.209643.116
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