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Establishment of Novel Protein Interaction Assays between Sin3 and REST Using Surface Plasmon Resonance and Time-Resolved Fluorescence Energy Transfer

Repressor element-1 (RE-1) or neural restrictive silencer element (NRSE) bound with a zinc finger transcription repressor, RE-1 silencing transcription factor (REST, also known as neural restrictive silencer factor, NRSF) has been identified as a fundamental repressor element in many genes, includin...

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Autores principales: Harada, Masamitsu, Nagai, Jun, Kurata, Riho, Cui, Xiaofeng, Isagawa, Takayuki, Semba, Hiroaki, Yoshida, Yasuhiro, Takeda, Norihiko, Maemura, Koji, Yonezawa, Tomo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7956749/
https://www.ncbi.nlm.nih.gov/pubmed/33652591
http://dx.doi.org/10.3390/ijms22052323
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author Harada, Masamitsu
Nagai, Jun
Kurata, Riho
Cui, Xiaofeng
Isagawa, Takayuki
Semba, Hiroaki
Yoshida, Yasuhiro
Takeda, Norihiko
Maemura, Koji
Yonezawa, Tomo
author_facet Harada, Masamitsu
Nagai, Jun
Kurata, Riho
Cui, Xiaofeng
Isagawa, Takayuki
Semba, Hiroaki
Yoshida, Yasuhiro
Takeda, Norihiko
Maemura, Koji
Yonezawa, Tomo
author_sort Harada, Masamitsu
collection PubMed
description Repressor element-1 (RE-1) or neural restrictive silencer element (NRSE) bound with a zinc finger transcription repressor, RE-1 silencing transcription factor (REST, also known as neural restrictive silencer factor, NRSF) has been identified as a fundamental repressor element in many genes, including neuronal genes. Genes regulated by REST/NRSF regulate multifaceted neuronal phenotypes, and their defects in the machinery cause neuropathies, disorders of neuron activity), autism and so on. In REST repressions, the N-terminal repressor domain recruits Sin3B via its paired amphipathic helix 1 (PAH1) domain, which plays an important role as a scaffold for histone deacetylase 1 and 2. This machinery has a critical role in maintaining neuronal robustness. In this study, in order to establish protein–protein interaction assays mimicking a binding surface between Sin3B and REST, we selected important amino acids from structural information of the PAH1/REST complex and then tried to reconstitute it using recombinant short peptides derived from PAH1/REST. Initially, we validated whether biotinylated REST interacts with glutathione S-transferase (GST)-tagged PAH1 and whether another PAH1 peptide (PAH1-FLAG) competitively binds with biotinylated REST using surface plasmon resonance (SPR). We observed a direct interaction and competitive binding of two PAH1 peptides. Secondly, in order to establish a high-throughput and high-dynamic-range assay, we utilized an easily performed novel time-resolved fluorescence energy transfer (TR-FRET) assay, and closely monitored this interaction. Finally, we succeeded in establishing a novel high-quality TR-FRET assay and a novel interaction assay based on SPR.
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spelling pubmed-79567492021-03-16 Establishment of Novel Protein Interaction Assays between Sin3 and REST Using Surface Plasmon Resonance and Time-Resolved Fluorescence Energy Transfer Harada, Masamitsu Nagai, Jun Kurata, Riho Cui, Xiaofeng Isagawa, Takayuki Semba, Hiroaki Yoshida, Yasuhiro Takeda, Norihiko Maemura, Koji Yonezawa, Tomo Int J Mol Sci Article Repressor element-1 (RE-1) or neural restrictive silencer element (NRSE) bound with a zinc finger transcription repressor, RE-1 silencing transcription factor (REST, also known as neural restrictive silencer factor, NRSF) has been identified as a fundamental repressor element in many genes, including neuronal genes. Genes regulated by REST/NRSF regulate multifaceted neuronal phenotypes, and their defects in the machinery cause neuropathies, disorders of neuron activity), autism and so on. In REST repressions, the N-terminal repressor domain recruits Sin3B via its paired amphipathic helix 1 (PAH1) domain, which plays an important role as a scaffold for histone deacetylase 1 and 2. This machinery has a critical role in maintaining neuronal robustness. In this study, in order to establish protein–protein interaction assays mimicking a binding surface between Sin3B and REST, we selected important amino acids from structural information of the PAH1/REST complex and then tried to reconstitute it using recombinant short peptides derived from PAH1/REST. Initially, we validated whether biotinylated REST interacts with glutathione S-transferase (GST)-tagged PAH1 and whether another PAH1 peptide (PAH1-FLAG) competitively binds with biotinylated REST using surface plasmon resonance (SPR). We observed a direct interaction and competitive binding of two PAH1 peptides. Secondly, in order to establish a high-throughput and high-dynamic-range assay, we utilized an easily performed novel time-resolved fluorescence energy transfer (TR-FRET) assay, and closely monitored this interaction. Finally, we succeeded in establishing a novel high-quality TR-FRET assay and a novel interaction assay based on SPR. MDPI 2021-02-26 /pmc/articles/PMC7956749/ /pubmed/33652591 http://dx.doi.org/10.3390/ijms22052323 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Harada, Masamitsu
Nagai, Jun
Kurata, Riho
Cui, Xiaofeng
Isagawa, Takayuki
Semba, Hiroaki
Yoshida, Yasuhiro
Takeda, Norihiko
Maemura, Koji
Yonezawa, Tomo
Establishment of Novel Protein Interaction Assays between Sin3 and REST Using Surface Plasmon Resonance and Time-Resolved Fluorescence Energy Transfer
title Establishment of Novel Protein Interaction Assays between Sin3 and REST Using Surface Plasmon Resonance and Time-Resolved Fluorescence Energy Transfer
title_full Establishment of Novel Protein Interaction Assays between Sin3 and REST Using Surface Plasmon Resonance and Time-Resolved Fluorescence Energy Transfer
title_fullStr Establishment of Novel Protein Interaction Assays between Sin3 and REST Using Surface Plasmon Resonance and Time-Resolved Fluorescence Energy Transfer
title_full_unstemmed Establishment of Novel Protein Interaction Assays between Sin3 and REST Using Surface Plasmon Resonance and Time-Resolved Fluorescence Energy Transfer
title_short Establishment of Novel Protein Interaction Assays between Sin3 and REST Using Surface Plasmon Resonance and Time-Resolved Fluorescence Energy Transfer
title_sort establishment of novel protein interaction assays between sin3 and rest using surface plasmon resonance and time-resolved fluorescence energy transfer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7956749/
https://www.ncbi.nlm.nih.gov/pubmed/33652591
http://dx.doi.org/10.3390/ijms22052323
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