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Structures of human TR4(LBD)–JAZF1 and TR4(DBD)–DNA complexes reveal the molecular basis of transcriptional regulation

Testicular nuclear receptor 4 (TR4) modulates the transcriptional activation of genes and plays important roles in many diseases. The regulation of TR4 on target genes involves direct interactions with DNA molecules via the DNA-binding domain (DBD) and recruitment of coregulators by the ligand-bindi...

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Autores principales: Liu, Yunlong, Ma, Lulu, Li, Min, Tian, Zizi, Yang, Meiting, Wu, Xi, Wang, Xue, Shang, Guohui, Xie, Mengjia, Chen, Yiyun, Liu, Xin, Jiang, Lun, Wu, Wei, Xu, Chaoqun, Xia, Liqun, Li, Gonghui, Dai, Shaodong, Chen, Zhongzhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9943680/
https://www.ncbi.nlm.nih.gov/pubmed/36651297
http://dx.doi.org/10.1093/nar/gkac1259
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author Liu, Yunlong
Ma, Lulu
Li, Min
Tian, Zizi
Yang, Meiting
Wu, Xi
Wang, Xue
Shang, Guohui
Xie, Mengjia
Chen, Yiyun
Liu, Xin
Jiang, Lun
Wu, Wei
Xu, Chaoqun
Xia, Liqun
Li, Gonghui
Dai, Shaodong
Chen, Zhongzhou
author_facet Liu, Yunlong
Ma, Lulu
Li, Min
Tian, Zizi
Yang, Meiting
Wu, Xi
Wang, Xue
Shang, Guohui
Xie, Mengjia
Chen, Yiyun
Liu, Xin
Jiang, Lun
Wu, Wei
Xu, Chaoqun
Xia, Liqun
Li, Gonghui
Dai, Shaodong
Chen, Zhongzhou
author_sort Liu, Yunlong
collection PubMed
description Testicular nuclear receptor 4 (TR4) modulates the transcriptional activation of genes and plays important roles in many diseases. The regulation of TR4 on target genes involves direct interactions with DNA molecules via the DNA-binding domain (DBD) and recruitment of coregulators by the ligand-binding domain (LBD). However, their regulatory mechanisms are unclear. Here, we report high-resolution crystal structures of TR4(DBD), TR4(DBD)–DNA complexes and the TR4(LBD)–JAZF1 complex. For DNA recognition, multiple factors come into play, and a specific mutual selectivity between TR4 and target genes is found. The coactivators SRC-1 and CREBBP can bind at the interface of TR4 originally occupied by the TR4 activation function region 2 (AF-2); however, JAZF1 suppresses the binding through a novel mechanism. JAZF1 binds to an unidentified surface of TR4 and stabilizes an α13 helix never reported in the nuclear receptor family. Moreover, the cancer-associated mutations affect the interactions and the transcriptional activation of TR4 in vitro and in vivo, respectively. Overall, our results highlight the crucial role of DNA recognition and a novel mechanism of how JAZF1 reinforces the autorepressed conformation and influences the transcriptional activation of TR4, laying out important structural bases for drug design for a variety of diseases, including diabetes and cancers.
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spelling pubmed-99436802023-02-22 Structures of human TR4(LBD)–JAZF1 and TR4(DBD)–DNA complexes reveal the molecular basis of transcriptional regulation Liu, Yunlong Ma, Lulu Li, Min Tian, Zizi Yang, Meiting Wu, Xi Wang, Xue Shang, Guohui Xie, Mengjia Chen, Yiyun Liu, Xin Jiang, Lun Wu, Wei Xu, Chaoqun Xia, Liqun Li, Gonghui Dai, Shaodong Chen, Zhongzhou Nucleic Acids Res Structural Biology Testicular nuclear receptor 4 (TR4) modulates the transcriptional activation of genes and plays important roles in many diseases. The regulation of TR4 on target genes involves direct interactions with DNA molecules via the DNA-binding domain (DBD) and recruitment of coregulators by the ligand-binding domain (LBD). However, their regulatory mechanisms are unclear. Here, we report high-resolution crystal structures of TR4(DBD), TR4(DBD)–DNA complexes and the TR4(LBD)–JAZF1 complex. For DNA recognition, multiple factors come into play, and a specific mutual selectivity between TR4 and target genes is found. The coactivators SRC-1 and CREBBP can bind at the interface of TR4 originally occupied by the TR4 activation function region 2 (AF-2); however, JAZF1 suppresses the binding through a novel mechanism. JAZF1 binds to an unidentified surface of TR4 and stabilizes an α13 helix never reported in the nuclear receptor family. Moreover, the cancer-associated mutations affect the interactions and the transcriptional activation of TR4 in vitro and in vivo, respectively. Overall, our results highlight the crucial role of DNA recognition and a novel mechanism of how JAZF1 reinforces the autorepressed conformation and influences the transcriptional activation of TR4, laying out important structural bases for drug design for a variety of diseases, including diabetes and cancers. Oxford University Press 2023-01-18 /pmc/articles/PMC9943680/ /pubmed/36651297 http://dx.doi.org/10.1093/nar/gkac1259 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Structural Biology
Liu, Yunlong
Ma, Lulu
Li, Min
Tian, Zizi
Yang, Meiting
Wu, Xi
Wang, Xue
Shang, Guohui
Xie, Mengjia
Chen, Yiyun
Liu, Xin
Jiang, Lun
Wu, Wei
Xu, Chaoqun
Xia, Liqun
Li, Gonghui
Dai, Shaodong
Chen, Zhongzhou
Structures of human TR4(LBD)–JAZF1 and TR4(DBD)–DNA complexes reveal the molecular basis of transcriptional regulation
title Structures of human TR4(LBD)–JAZF1 and TR4(DBD)–DNA complexes reveal the molecular basis of transcriptional regulation
title_full Structures of human TR4(LBD)–JAZF1 and TR4(DBD)–DNA complexes reveal the molecular basis of transcriptional regulation
title_fullStr Structures of human TR4(LBD)–JAZF1 and TR4(DBD)–DNA complexes reveal the molecular basis of transcriptional regulation
title_full_unstemmed Structures of human TR4(LBD)–JAZF1 and TR4(DBD)–DNA complexes reveal the molecular basis of transcriptional regulation
title_short Structures of human TR4(LBD)–JAZF1 and TR4(DBD)–DNA complexes reveal the molecular basis of transcriptional regulation
title_sort structures of human tr4(lbd)–jazf1 and tr4(dbd)–dna complexes reveal the molecular basis of transcriptional regulation
topic Structural Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9943680/
https://www.ncbi.nlm.nih.gov/pubmed/36651297
http://dx.doi.org/10.1093/nar/gkac1259
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