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Bending-Twisting Motions and Main Interactions in Nucleoplasmin Nuclear Import

Alpha solenoid proteins play a key role in regulating the classical nuclear import pathway, recognizing a target protein and transporting it into the nucleus. Importin-α (Impα) is the solenoid responsible for cargo protein recognition, and it has been extensively studied by X-ray crystallography to...

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Autores principales: Geraldo, Marcos Tadeu, Takeda, Agnes Alessandra Sekijima, Braz, Antônio Sérgio Kimus, Lemke, Ney
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4892583/
https://www.ncbi.nlm.nih.gov/pubmed/27258022
http://dx.doi.org/10.1371/journal.pone.0157162
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author Geraldo, Marcos Tadeu
Takeda, Agnes Alessandra Sekijima
Braz, Antônio Sérgio Kimus
Lemke, Ney
author_facet Geraldo, Marcos Tadeu
Takeda, Agnes Alessandra Sekijima
Braz, Antônio Sérgio Kimus
Lemke, Ney
author_sort Geraldo, Marcos Tadeu
collection PubMed
description Alpha solenoid proteins play a key role in regulating the classical nuclear import pathway, recognizing a target protein and transporting it into the nucleus. Importin-α (Impα) is the solenoid responsible for cargo protein recognition, and it has been extensively studied by X-ray crystallography to understand the binding specificity. To comprehend the main motions of Impα and to extend the information about the critical interactions during carrier-cargo recognition, we surveyed different conformational states based on molecular dynamics (MD) and normal mode (NM) analyses. Our model of study was a crystallographic structure of Impα complexed with the classical nuclear localization sequence (cNLS) from nucleoplasmin (Npl), which was submitted to multiple 100 ns of MD simulations. Representative conformations were selected for calculating the 87 lowest frequencies NMs of vibration, and a displacement approach was applied along each NM. Based on geometric criteria, using the radius of curvature and inter-repeat angles as the reference metrics, the main motions of Impα were described. Moreover, we determined the salt bridges, hydrogen bonds and hydrophobic interactions in the Impα-NplNLS interface. Our results show the bending and twisting motions participating in the recognition of nuclear proteins, allowing the accommodation and adjustment of a classical bipartite NLS sequence. The essential contacts for the nuclear import were also described and were mostly in agreement with previous studies, suggesting that the residues in the cNLS linker region establish important contacts with Impα adjusting the cNLS backbone. The MD simulations combined with NM analysis can be applied to the Impα-NLS system to help understand interactions between Impα and cNLSs and the analysis of non-classic NLSs.
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spelling pubmed-48925832016-06-16 Bending-Twisting Motions and Main Interactions in Nucleoplasmin Nuclear Import Geraldo, Marcos Tadeu Takeda, Agnes Alessandra Sekijima Braz, Antônio Sérgio Kimus Lemke, Ney PLoS One Research Article Alpha solenoid proteins play a key role in regulating the classical nuclear import pathway, recognizing a target protein and transporting it into the nucleus. Importin-α (Impα) is the solenoid responsible for cargo protein recognition, and it has been extensively studied by X-ray crystallography to understand the binding specificity. To comprehend the main motions of Impα and to extend the information about the critical interactions during carrier-cargo recognition, we surveyed different conformational states based on molecular dynamics (MD) and normal mode (NM) analyses. Our model of study was a crystallographic structure of Impα complexed with the classical nuclear localization sequence (cNLS) from nucleoplasmin (Npl), which was submitted to multiple 100 ns of MD simulations. Representative conformations were selected for calculating the 87 lowest frequencies NMs of vibration, and a displacement approach was applied along each NM. Based on geometric criteria, using the radius of curvature and inter-repeat angles as the reference metrics, the main motions of Impα were described. Moreover, we determined the salt bridges, hydrogen bonds and hydrophobic interactions in the Impα-NplNLS interface. Our results show the bending and twisting motions participating in the recognition of nuclear proteins, allowing the accommodation and adjustment of a classical bipartite NLS sequence. The essential contacts for the nuclear import were also described and were mostly in agreement with previous studies, suggesting that the residues in the cNLS linker region establish important contacts with Impα adjusting the cNLS backbone. The MD simulations combined with NM analysis can be applied to the Impα-NLS system to help understand interactions between Impα and cNLSs and the analysis of non-classic NLSs. Public Library of Science 2016-06-03 /pmc/articles/PMC4892583/ /pubmed/27258022 http://dx.doi.org/10.1371/journal.pone.0157162 Text en © 2016 Geraldo 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Geraldo, Marcos Tadeu
Takeda, Agnes Alessandra Sekijima
Braz, Antônio Sérgio Kimus
Lemke, Ney
Bending-Twisting Motions and Main Interactions in Nucleoplasmin Nuclear Import
title Bending-Twisting Motions and Main Interactions in Nucleoplasmin Nuclear Import
title_full Bending-Twisting Motions and Main Interactions in Nucleoplasmin Nuclear Import
title_fullStr Bending-Twisting Motions and Main Interactions in Nucleoplasmin Nuclear Import
title_full_unstemmed Bending-Twisting Motions and Main Interactions in Nucleoplasmin Nuclear Import
title_short Bending-Twisting Motions and Main Interactions in Nucleoplasmin Nuclear Import
title_sort bending-twisting motions and main interactions in nucleoplasmin nuclear import
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4892583/
https://www.ncbi.nlm.nih.gov/pubmed/27258022
http://dx.doi.org/10.1371/journal.pone.0157162
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