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Exploring the Binding Affinity of the ARR2 GARP DNA Binding Domain via Comparative Methods

Plants have evolved signaling mechanisms such as the multi-step phosphorelay (MSP) to respond to different internal and external stimuli. MSP responses often result in gene transcription regulation that is modulated through transcription factors such as B-type Arabidopsis response regulator (ARR) pr...

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Autores principales: Rieger, Janine, Fitz, Michael, Fischer, Stefan Markus, Wallmeroth, Niklas, Flores-Romero, Hector, Fischer, Nina Monika, Brand, Luise Helene, García-Sáez, Ana J., Berendzen, Kenneth Wayne, Mira-Rodado, Virtudes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10454580/
https://www.ncbi.nlm.nih.gov/pubmed/37628689
http://dx.doi.org/10.3390/genes14081638
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author Rieger, Janine
Fitz, Michael
Fischer, Stefan Markus
Wallmeroth, Niklas
Flores-Romero, Hector
Fischer, Nina Monika
Brand, Luise Helene
García-Sáez, Ana J.
Berendzen, Kenneth Wayne
Mira-Rodado, Virtudes
author_facet Rieger, Janine
Fitz, Michael
Fischer, Stefan Markus
Wallmeroth, Niklas
Flores-Romero, Hector
Fischer, Nina Monika
Brand, Luise Helene
García-Sáez, Ana J.
Berendzen, Kenneth Wayne
Mira-Rodado, Virtudes
author_sort Rieger, Janine
collection PubMed
description Plants have evolved signaling mechanisms such as the multi-step phosphorelay (MSP) to respond to different internal and external stimuli. MSP responses often result in gene transcription regulation that is modulated through transcription factors such as B-type Arabidopsis response regulator (ARR) proteins. Among these proteins, ARR2 is a key component that is expressed ubiquitously and is involved in many aspects of plant development. Although it has been noted that B-type ARRs bind to their cognate genes through a DNA-binding domain termed the GARP domain, little is known about the structure and function of this type of DNA-binding domain; thus, how ARRs bind to DNA at a structural level is still poorly understood. In order to understand how the MSP functions in planta, it is crucial to unravel both the kinetics as well as the structural identity of the components involved in such interactions. For this reason, this work focusses on resolving how the GARP domain of ARR2 (GARP2) binds to the promoter region of ARR5, one of its native target genes in cytokinin signaling. We have established that GARP2 specifically binds to the ARR5 promoter with three different bi-molecular interaction systems—qDPI-ELISA, FCS, and MST—and we also determined the K(D) of this interaction. In addition, structural modeling of the GARP2 domain confirms that GARP2 entails a HTH motif, and that protein–DNA interaction most likely occurs via the α(3)-helix and the N-terminal arm of this domain since mutations in this region hinder ARR2’s ability to activate transcription.
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spelling pubmed-104545802023-08-26 Exploring the Binding Affinity of the ARR2 GARP DNA Binding Domain via Comparative Methods Rieger, Janine Fitz, Michael Fischer, Stefan Markus Wallmeroth, Niklas Flores-Romero, Hector Fischer, Nina Monika Brand, Luise Helene García-Sáez, Ana J. Berendzen, Kenneth Wayne Mira-Rodado, Virtudes Genes (Basel) Article Plants have evolved signaling mechanisms such as the multi-step phosphorelay (MSP) to respond to different internal and external stimuli. MSP responses often result in gene transcription regulation that is modulated through transcription factors such as B-type Arabidopsis response regulator (ARR) proteins. Among these proteins, ARR2 is a key component that is expressed ubiquitously and is involved in many aspects of plant development. Although it has been noted that B-type ARRs bind to their cognate genes through a DNA-binding domain termed the GARP domain, little is known about the structure and function of this type of DNA-binding domain; thus, how ARRs bind to DNA at a structural level is still poorly understood. In order to understand how the MSP functions in planta, it is crucial to unravel both the kinetics as well as the structural identity of the components involved in such interactions. For this reason, this work focusses on resolving how the GARP domain of ARR2 (GARP2) binds to the promoter region of ARR5, one of its native target genes in cytokinin signaling. We have established that GARP2 specifically binds to the ARR5 promoter with three different bi-molecular interaction systems—qDPI-ELISA, FCS, and MST—and we also determined the K(D) of this interaction. In addition, structural modeling of the GARP2 domain confirms that GARP2 entails a HTH motif, and that protein–DNA interaction most likely occurs via the α(3)-helix and the N-terminal arm of this domain since mutations in this region hinder ARR2’s ability to activate transcription. MDPI 2023-08-17 /pmc/articles/PMC10454580/ /pubmed/37628689 http://dx.doi.org/10.3390/genes14081638 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rieger, Janine
Fitz, Michael
Fischer, Stefan Markus
Wallmeroth, Niklas
Flores-Romero, Hector
Fischer, Nina Monika
Brand, Luise Helene
García-Sáez, Ana J.
Berendzen, Kenneth Wayne
Mira-Rodado, Virtudes
Exploring the Binding Affinity of the ARR2 GARP DNA Binding Domain via Comparative Methods
title Exploring the Binding Affinity of the ARR2 GARP DNA Binding Domain via Comparative Methods
title_full Exploring the Binding Affinity of the ARR2 GARP DNA Binding Domain via Comparative Methods
title_fullStr Exploring the Binding Affinity of the ARR2 GARP DNA Binding Domain via Comparative Methods
title_full_unstemmed Exploring the Binding Affinity of the ARR2 GARP DNA Binding Domain via Comparative Methods
title_short Exploring the Binding Affinity of the ARR2 GARP DNA Binding Domain via Comparative Methods
title_sort exploring the binding affinity of the arr2 garp dna binding domain via comparative methods
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10454580/
https://www.ncbi.nlm.nih.gov/pubmed/37628689
http://dx.doi.org/10.3390/genes14081638
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