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The Structural Differences between a Glycoprotein Specific F-Box Protein Fbs1 and Its Homologous Protein FBG3

The Skp1-Cul1-F-box protein (SCF) complex catalyzes protein ubiquitination in diverse cellular processes and is one of the best-characterized ubiquitin ligases. F-box proteins determine the substrate specificities of SCF ubiquitin ligases. Among these, Fbs1/FBG1/FBXO2, Fbs2/FBG2/FBXO6, and Fbs3/FBG5...

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Autores principales: Kumanomidou, Taichi, Nishio, Kazuya, Takagi, Kenji, Nakagawa, Tomomi, Suzuki, Atsuo, Yamane, Takashi, Tokunaga, Fuminori, Iwai, Kazuhiro, Murakami, Arisa, Yoshida, Yukiko, Tanaka, Keiji, Mizushima, Tsunehiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4603797/
https://www.ncbi.nlm.nih.gov/pubmed/26460611
http://dx.doi.org/10.1371/journal.pone.0140366
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author Kumanomidou, Taichi
Nishio, Kazuya
Takagi, Kenji
Nakagawa, Tomomi
Suzuki, Atsuo
Yamane, Takashi
Tokunaga, Fuminori
Iwai, Kazuhiro
Murakami, Arisa
Yoshida, Yukiko
Tanaka, Keiji
Mizushima, Tsunehiro
author_facet Kumanomidou, Taichi
Nishio, Kazuya
Takagi, Kenji
Nakagawa, Tomomi
Suzuki, Atsuo
Yamane, Takashi
Tokunaga, Fuminori
Iwai, Kazuhiro
Murakami, Arisa
Yoshida, Yukiko
Tanaka, Keiji
Mizushima, Tsunehiro
author_sort Kumanomidou, Taichi
collection PubMed
description The Skp1-Cul1-F-box protein (SCF) complex catalyzes protein ubiquitination in diverse cellular processes and is one of the best-characterized ubiquitin ligases. F-box proteins determine the substrate specificities of SCF ubiquitin ligases. Among these, Fbs1/FBG1/FBXO2, Fbs2/FBG2/FBXO6, and Fbs3/FBG5/FBXO27 recognize the N-glycans of glycoproteins, whereas FBG3/FBXO44 has no sugar-binding activity, despite the high sequence homology and conservation of the residues necessary for oligosaccharide binding between Fbs1–3 and FBG3. Here we determined the crystal structure of the Skp1–FBG3 complex at a resolution of 2.6 Å. The substrate-binding domain of FBG3 is composed of a 10-stranded antiparallel β-sandwich with three helices. Although the overall structure of FBG3 is similar to that of Fbs1, the residues that form the Fbs1 carbohydrate-binding pocket failed to be superposed with the corresponding residues of FBG3. Structure-based mutational analysis shows that distinct hydrogen bond networks of four FBG3 loops, i.e., β2-β3, β5-β6, β7-β8, and β9-β10, prevent the formation of the carbohydrate-binding pocket shown in Fbs1.
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spelling pubmed-46037972015-10-20 The Structural Differences between a Glycoprotein Specific F-Box Protein Fbs1 and Its Homologous Protein FBG3 Kumanomidou, Taichi Nishio, Kazuya Takagi, Kenji Nakagawa, Tomomi Suzuki, Atsuo Yamane, Takashi Tokunaga, Fuminori Iwai, Kazuhiro Murakami, Arisa Yoshida, Yukiko Tanaka, Keiji Mizushima, Tsunehiro PLoS One Research Article The Skp1-Cul1-F-box protein (SCF) complex catalyzes protein ubiquitination in diverse cellular processes and is one of the best-characterized ubiquitin ligases. F-box proteins determine the substrate specificities of SCF ubiquitin ligases. Among these, Fbs1/FBG1/FBXO2, Fbs2/FBG2/FBXO6, and Fbs3/FBG5/FBXO27 recognize the N-glycans of glycoproteins, whereas FBG3/FBXO44 has no sugar-binding activity, despite the high sequence homology and conservation of the residues necessary for oligosaccharide binding between Fbs1–3 and FBG3. Here we determined the crystal structure of the Skp1–FBG3 complex at a resolution of 2.6 Å. The substrate-binding domain of FBG3 is composed of a 10-stranded antiparallel β-sandwich with three helices. Although the overall structure of FBG3 is similar to that of Fbs1, the residues that form the Fbs1 carbohydrate-binding pocket failed to be superposed with the corresponding residues of FBG3. Structure-based mutational analysis shows that distinct hydrogen bond networks of four FBG3 loops, i.e., β2-β3, β5-β6, β7-β8, and β9-β10, prevent the formation of the carbohydrate-binding pocket shown in Fbs1. Public Library of Science 2015-10-13 /pmc/articles/PMC4603797/ /pubmed/26460611 http://dx.doi.org/10.1371/journal.pone.0140366 Text en © 2015 Kumanomidou et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kumanomidou, Taichi
Nishio, Kazuya
Takagi, Kenji
Nakagawa, Tomomi
Suzuki, Atsuo
Yamane, Takashi
Tokunaga, Fuminori
Iwai, Kazuhiro
Murakami, Arisa
Yoshida, Yukiko
Tanaka, Keiji
Mizushima, Tsunehiro
The Structural Differences between a Glycoprotein Specific F-Box Protein Fbs1 and Its Homologous Protein FBG3
title The Structural Differences between a Glycoprotein Specific F-Box Protein Fbs1 and Its Homologous Protein FBG3
title_full The Structural Differences between a Glycoprotein Specific F-Box Protein Fbs1 and Its Homologous Protein FBG3
title_fullStr The Structural Differences between a Glycoprotein Specific F-Box Protein Fbs1 and Its Homologous Protein FBG3
title_full_unstemmed The Structural Differences between a Glycoprotein Specific F-Box Protein Fbs1 and Its Homologous Protein FBG3
title_short The Structural Differences between a Glycoprotein Specific F-Box Protein Fbs1 and Its Homologous Protein FBG3
title_sort structural differences between a glycoprotein specific f-box protein fbs1 and its homologous protein fbg3
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4603797/
https://www.ncbi.nlm.nih.gov/pubmed/26460611
http://dx.doi.org/10.1371/journal.pone.0140366
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