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Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) is predicted to interact with its partner through an ARM-type α-helical structure

BACKGROUND: Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) has been identified recently as a novel regulator of estrogen signalling in breast cancer cells. Despite being a potential target for new breast cancer treatment, its amino acid sequence suggests no association with any w...

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Autores principales: Chen, Yi-An, Murakami, Yoichi, Ahmad, Shandar, Yoshimaru, Tetsuro, Katagiri, Toyomasa, Mizuguchi, Kenji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4096751/
https://www.ncbi.nlm.nih.gov/pubmed/24997568
http://dx.doi.org/10.1186/1756-0500-7-435
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author Chen, Yi-An
Murakami, Yoichi
Ahmad, Shandar
Yoshimaru, Tetsuro
Katagiri, Toyomasa
Mizuguchi, Kenji
author_facet Chen, Yi-An
Murakami, Yoichi
Ahmad, Shandar
Yoshimaru, Tetsuro
Katagiri, Toyomasa
Mizuguchi, Kenji
author_sort Chen, Yi-An
collection PubMed
description BACKGROUND: Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) has been identified recently as a novel regulator of estrogen signalling in breast cancer cells. Despite being a potential target for new breast cancer treatment, its amino acid sequence suggests no association with any well-characterized protein family and provides little clues as to its molecular function. In this paper, we predicted the structure, function and interactions of BIG3 using a range of bioinformatic tools. RESULTS: Homology search results showed that BIG3 had distinct features from its paralogues, BIG1 and BIG2, with a unique region between the two shared domains, Sec7 and DUF1981. Although BIG3 contains Sec7 domain, the lack of the conserved motif and the critical glutamate residue suggested no potential guaninyl-exchange factor (GEF) activity. Fold recognition tools predicted BIG3 to adopt an α-helical repeat structure similar to that of the armadillo (ARM) family. Using state-of-the-art methods, we predicted interaction sites between BIG3 and its partner PHB2. CONCLUSIONS: The combined results of the structure and interaction prediction led to a novel hypothesis that one of the predicted helices of BIG3 might play an important role in binding to PHB2 and thereby preventing its translocation to the nucleus. This hypothesis has been subsequently verified experimentally.
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spelling pubmed-40967512014-07-16 Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) is predicted to interact with its partner through an ARM-type α-helical structure Chen, Yi-An Murakami, Yoichi Ahmad, Shandar Yoshimaru, Tetsuro Katagiri, Toyomasa Mizuguchi, Kenji BMC Res Notes Research Article BACKGROUND: Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) has been identified recently as a novel regulator of estrogen signalling in breast cancer cells. Despite being a potential target for new breast cancer treatment, its amino acid sequence suggests no association with any well-characterized protein family and provides little clues as to its molecular function. In this paper, we predicted the structure, function and interactions of BIG3 using a range of bioinformatic tools. RESULTS: Homology search results showed that BIG3 had distinct features from its paralogues, BIG1 and BIG2, with a unique region between the two shared domains, Sec7 and DUF1981. Although BIG3 contains Sec7 domain, the lack of the conserved motif and the critical glutamate residue suggested no potential guaninyl-exchange factor (GEF) activity. Fold recognition tools predicted BIG3 to adopt an α-helical repeat structure similar to that of the armadillo (ARM) family. Using state-of-the-art methods, we predicted interaction sites between BIG3 and its partner PHB2. CONCLUSIONS: The combined results of the structure and interaction prediction led to a novel hypothesis that one of the predicted helices of BIG3 might play an important role in binding to PHB2 and thereby preventing its translocation to the nucleus. This hypothesis has been subsequently verified experimentally. BioMed Central 2014-07-06 /pmc/articles/PMC4096751/ /pubmed/24997568 http://dx.doi.org/10.1186/1756-0500-7-435 Text en Copyright © 2014 Chen et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/4.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Chen, Yi-An
Murakami, Yoichi
Ahmad, Shandar
Yoshimaru, Tetsuro
Katagiri, Toyomasa
Mizuguchi, Kenji
Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) is predicted to interact with its partner through an ARM-type α-helical structure
title Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) is predicted to interact with its partner through an ARM-type α-helical structure
title_full Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) is predicted to interact with its partner through an ARM-type α-helical structure
title_fullStr Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) is predicted to interact with its partner through an ARM-type α-helical structure
title_full_unstemmed Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) is predicted to interact with its partner through an ARM-type α-helical structure
title_short Brefeldin A-inhibited guanine nucleotide-exchange protein 3 (BIG3) is predicted to interact with its partner through an ARM-type α-helical structure
title_sort brefeldin a-inhibited guanine nucleotide-exchange protein 3 (big3) is predicted to interact with its partner through an arm-type α-helical structure
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4096751/
https://www.ncbi.nlm.nih.gov/pubmed/24997568
http://dx.doi.org/10.1186/1756-0500-7-435
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