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Supramolecular tholos-like architecture constituted by archaeal proteins without functional annotation

Euryarchaeal genomes encode proteasome-assembling chaperone homologs, PbaA and PbaB, although archaeal proteasome formation is a chaperone-independent process. Homotetrameric PbaB functions as a proteasome activator, while PbaA forms a homopentamer that does not interact with the proteasome. Notably...

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Autores principales: Yagi-Utsumi, Maho, Sikdar, Arunima, Song, Chihong, Park, Jimin, Inoue, Rintaro, Watanabe, Hiroki, Burton-Smith, Raymond N., Kozai, Toshiya, Suzuki, Tatsuya, Kodama, Atsuji, Ishii, Kentaro, Yagi, Hirokazu, Satoh, Tadashi, Uchiyama, Susumu, Uchihashi, Takayuki, Joo, Keehyoung, Lee, Jooyoung, Sugiyama, Masaaki, Murata, Kazuyoshi, Kato, Koichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6992696/
https://www.ncbi.nlm.nih.gov/pubmed/32001743
http://dx.doi.org/10.1038/s41598-020-58371-2
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author Yagi-Utsumi, Maho
Sikdar, Arunima
Song, Chihong
Park, Jimin
Inoue, Rintaro
Watanabe, Hiroki
Burton-Smith, Raymond N.
Kozai, Toshiya
Suzuki, Tatsuya
Kodama, Atsuji
Ishii, Kentaro
Yagi, Hirokazu
Satoh, Tadashi
Uchiyama, Susumu
Uchihashi, Takayuki
Joo, Keehyoung
Lee, Jooyoung
Sugiyama, Masaaki
Murata, Kazuyoshi
Kato, Koichi
author_facet Yagi-Utsumi, Maho
Sikdar, Arunima
Song, Chihong
Park, Jimin
Inoue, Rintaro
Watanabe, Hiroki
Burton-Smith, Raymond N.
Kozai, Toshiya
Suzuki, Tatsuya
Kodama, Atsuji
Ishii, Kentaro
Yagi, Hirokazu
Satoh, Tadashi
Uchiyama, Susumu
Uchihashi, Takayuki
Joo, Keehyoung
Lee, Jooyoung
Sugiyama, Masaaki
Murata, Kazuyoshi
Kato, Koichi
author_sort Yagi-Utsumi, Maho
collection PubMed
description Euryarchaeal genomes encode proteasome-assembling chaperone homologs, PbaA and PbaB, although archaeal proteasome formation is a chaperone-independent process. Homotetrameric PbaB functions as a proteasome activator, while PbaA forms a homopentamer that does not interact with the proteasome. Notably, PbaA forms a complex with PF0014, an archaeal protein without functional annotation. In this study, based on our previous research on PbaA crystal structure, we performed an integrative analysis of the supramolecular structure of the PbaA/PF0014 complex using native mass spectrometry, solution scattering, high-speed atomic force microscopy, and electron microscopy. The results indicated that this highly thermostable complex constitutes ten PbaA and ten PF0014 molecules, which are assembled into a dumbbell-shaped structure. Two PbaA homopentameric rings correspond to the dumbbell plates, with their N-termini located outside of the plates and C-terminal segments left mobile. Furthermore, mutant PbaA lacking the mobile C-terminal segment retained the ability to form a complex with PF0014, allowing 3D modeling of the complex. The complex shows a five-column tholos-like architecture, in which each column comprises homodimeric PF0014, harboring a central cavity, which can potentially accommodate biomacromolecules including proteins. Our findings provide insight into the functional roles of Pba family proteins, offering a novel framework for designing functional protein cages.
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spelling pubmed-69926962020-02-05 Supramolecular tholos-like architecture constituted by archaeal proteins without functional annotation Yagi-Utsumi, Maho Sikdar, Arunima Song, Chihong Park, Jimin Inoue, Rintaro Watanabe, Hiroki Burton-Smith, Raymond N. Kozai, Toshiya Suzuki, Tatsuya Kodama, Atsuji Ishii, Kentaro Yagi, Hirokazu Satoh, Tadashi Uchiyama, Susumu Uchihashi, Takayuki Joo, Keehyoung Lee, Jooyoung Sugiyama, Masaaki Murata, Kazuyoshi Kato, Koichi Sci Rep Article Euryarchaeal genomes encode proteasome-assembling chaperone homologs, PbaA and PbaB, although archaeal proteasome formation is a chaperone-independent process. Homotetrameric PbaB functions as a proteasome activator, while PbaA forms a homopentamer that does not interact with the proteasome. Notably, PbaA forms a complex with PF0014, an archaeal protein without functional annotation. In this study, based on our previous research on PbaA crystal structure, we performed an integrative analysis of the supramolecular structure of the PbaA/PF0014 complex using native mass spectrometry, solution scattering, high-speed atomic force microscopy, and electron microscopy. The results indicated that this highly thermostable complex constitutes ten PbaA and ten PF0014 molecules, which are assembled into a dumbbell-shaped structure. Two PbaA homopentameric rings correspond to the dumbbell plates, with their N-termini located outside of the plates and C-terminal segments left mobile. Furthermore, mutant PbaA lacking the mobile C-terminal segment retained the ability to form a complex with PF0014, allowing 3D modeling of the complex. The complex shows a five-column tholos-like architecture, in which each column comprises homodimeric PF0014, harboring a central cavity, which can potentially accommodate biomacromolecules including proteins. Our findings provide insight into the functional roles of Pba family proteins, offering a novel framework for designing functional protein cages. Nature Publishing Group UK 2020-01-30 /pmc/articles/PMC6992696/ /pubmed/32001743 http://dx.doi.org/10.1038/s41598-020-58371-2 Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Yagi-Utsumi, Maho
Sikdar, Arunima
Song, Chihong
Park, Jimin
Inoue, Rintaro
Watanabe, Hiroki
Burton-Smith, Raymond N.
Kozai, Toshiya
Suzuki, Tatsuya
Kodama, Atsuji
Ishii, Kentaro
Yagi, Hirokazu
Satoh, Tadashi
Uchiyama, Susumu
Uchihashi, Takayuki
Joo, Keehyoung
Lee, Jooyoung
Sugiyama, Masaaki
Murata, Kazuyoshi
Kato, Koichi
Supramolecular tholos-like architecture constituted by archaeal proteins without functional annotation
title Supramolecular tholos-like architecture constituted by archaeal proteins without functional annotation
title_full Supramolecular tholos-like architecture constituted by archaeal proteins without functional annotation
title_fullStr Supramolecular tholos-like architecture constituted by archaeal proteins without functional annotation
title_full_unstemmed Supramolecular tholos-like architecture constituted by archaeal proteins without functional annotation
title_short Supramolecular tholos-like architecture constituted by archaeal proteins without functional annotation
title_sort supramolecular tholos-like architecture constituted by archaeal proteins without functional annotation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6992696/
https://www.ncbi.nlm.nih.gov/pubmed/32001743
http://dx.doi.org/10.1038/s41598-020-58371-2
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