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Structural insights into the transcription activation mechanism of the global regulator GlnR from actinobacteria

In actinobacteria, an OmpR/PhoB subfamily protein called GlnR acts as an orphan response regulator and globally coordinates the expression of genes responsible for nitrogen, carbon, and phosphate metabolism in actinobacteria. Although many researchers have attempted to elucidate the mechanisms of Gl...

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Autores principales: Shi, Jing, Feng, Zhenzhen, Xu, Juncao, Li, Fangfang, Zhang, Yuqiong, Wen, Aijia, Wang, Fulin, Song, Qian, Wang, Lu, Cui, Hong, Tong, Shujuan, Chen, Peiying, Zhu, Yejin, Zhao, Guoping, Wang, Shuang, Feng, Yu, Lin, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235972/
https://www.ncbi.nlm.nih.gov/pubmed/37216560
http://dx.doi.org/10.1073/pnas.2300282120
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author Shi, Jing
Feng, Zhenzhen
Xu, Juncao
Li, Fangfang
Zhang, Yuqiong
Wen, Aijia
Wang, Fulin
Song, Qian
Wang, Lu
Cui, Hong
Tong, Shujuan
Chen, Peiying
Zhu, Yejin
Zhao, Guoping
Wang, Shuang
Feng, Yu
Lin, Wei
author_facet Shi, Jing
Feng, Zhenzhen
Xu, Juncao
Li, Fangfang
Zhang, Yuqiong
Wen, Aijia
Wang, Fulin
Song, Qian
Wang, Lu
Cui, Hong
Tong, Shujuan
Chen, Peiying
Zhu, Yejin
Zhao, Guoping
Wang, Shuang
Feng, Yu
Lin, Wei
author_sort Shi, Jing
collection PubMed
description In actinobacteria, an OmpR/PhoB subfamily protein called GlnR acts as an orphan response regulator and globally coordinates the expression of genes responsible for nitrogen, carbon, and phosphate metabolism in actinobacteria. Although many researchers have attempted to elucidate the mechanisms of GlnR-dependent transcription activation, progress is impeded by lacking of an overall structure of GlnR-dependent transcription activation complex (GlnR-TAC). Here, we report a co-crystal structure of the C-terminal DNA-binding domain of GlnR (GlnR_DBD) in complex with its regulatory cis-element DNA and a cryo-EM structure of GlnR-TAC which comprises Mycobacterium tuberculosis RNA polymerase, GlnR, and a promoter containing four well-characterized conserved GlnR binding sites. These structures illustrate how four GlnR protomers coordinate to engage promoter DNA in a head-to-tail manner, with four N-terminal receiver domains of GlnR (GlnR-RECs) bridging GlnR_DBDs and the RNAP core enzyme. Structural analysis also unravels that GlnR-TAC is stabilized by complex protein–protein interactions between GlnR and the conserved β flap, σ(A)R4, αCTD, and αNTD domains of RNAP, which are further confirmed by our biochemical assays. Taken together, these results reveal a global transcription activation mechanism for the master regulator GlnR and other OmpR/PhoB subfamily proteins and present a unique mode of bacterial transcription regulation.
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spelling pubmed-102359722023-11-22 Structural insights into the transcription activation mechanism of the global regulator GlnR from actinobacteria Shi, Jing Feng, Zhenzhen Xu, Juncao Li, Fangfang Zhang, Yuqiong Wen, Aijia Wang, Fulin Song, Qian Wang, Lu Cui, Hong Tong, Shujuan Chen, Peiying Zhu, Yejin Zhao, Guoping Wang, Shuang Feng, Yu Lin, Wei Proc Natl Acad Sci U S A Biological Sciences In actinobacteria, an OmpR/PhoB subfamily protein called GlnR acts as an orphan response regulator and globally coordinates the expression of genes responsible for nitrogen, carbon, and phosphate metabolism in actinobacteria. Although many researchers have attempted to elucidate the mechanisms of GlnR-dependent transcription activation, progress is impeded by lacking of an overall structure of GlnR-dependent transcription activation complex (GlnR-TAC). Here, we report a co-crystal structure of the C-terminal DNA-binding domain of GlnR (GlnR_DBD) in complex with its regulatory cis-element DNA and a cryo-EM structure of GlnR-TAC which comprises Mycobacterium tuberculosis RNA polymerase, GlnR, and a promoter containing four well-characterized conserved GlnR binding sites. These structures illustrate how four GlnR protomers coordinate to engage promoter DNA in a head-to-tail manner, with four N-terminal receiver domains of GlnR (GlnR-RECs) bridging GlnR_DBDs and the RNAP core enzyme. Structural analysis also unravels that GlnR-TAC is stabilized by complex protein–protein interactions between GlnR and the conserved β flap, σ(A)R4, αCTD, and αNTD domains of RNAP, which are further confirmed by our biochemical assays. Taken together, these results reveal a global transcription activation mechanism for the master regulator GlnR and other OmpR/PhoB subfamily proteins and present a unique mode of bacterial transcription regulation. National Academy of Sciences 2023-05-22 2023-05-30 /pmc/articles/PMC10235972/ /pubmed/37216560 http://dx.doi.org/10.1073/pnas.2300282120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Shi, Jing
Feng, Zhenzhen
Xu, Juncao
Li, Fangfang
Zhang, Yuqiong
Wen, Aijia
Wang, Fulin
Song, Qian
Wang, Lu
Cui, Hong
Tong, Shujuan
Chen, Peiying
Zhu, Yejin
Zhao, Guoping
Wang, Shuang
Feng, Yu
Lin, Wei
Structural insights into the transcription activation mechanism of the global regulator GlnR from actinobacteria
title Structural insights into the transcription activation mechanism of the global regulator GlnR from actinobacteria
title_full Structural insights into the transcription activation mechanism of the global regulator GlnR from actinobacteria
title_fullStr Structural insights into the transcription activation mechanism of the global regulator GlnR from actinobacteria
title_full_unstemmed Structural insights into the transcription activation mechanism of the global regulator GlnR from actinobacteria
title_short Structural insights into the transcription activation mechanism of the global regulator GlnR from actinobacteria
title_sort structural insights into the transcription activation mechanism of the global regulator glnr from actinobacteria
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235972/
https://www.ncbi.nlm.nih.gov/pubmed/37216560
http://dx.doi.org/10.1073/pnas.2300282120
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