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In situ structural analysis of the human nuclear pore complex

Nuclear pore complexes (NPCs) are fundamental components of all eukaryotic cells that mediate nucleocytoplasmic exchange. Elucidating their 110 MDa structure imposes a formidable challenge and requires in situ structural biology approaches. Fifteen out of about thirty nucleoporins (Nups) are structu...

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Autores principales: von Appen, Alexander, Kosinski, Jan, Sparks, Lenore, Ori, Alessandro, DiGuilio, Amanda L., Vollmer, Benjamin, Mackmull, Marie-Therese, Banterle, Niccolo, Parca, Luca, Kastritis, Panagiotis, Buczak, Katarzyna, Mosalaganti, Shyamal, Hagen, Wim, Andres-Pons, Amparo, Lemke, Edward A., Bork, Peer, Antonin, Wolfram, Glavy, Joseph S., Bui, Khanh Huy, Beck, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4886846/
https://www.ncbi.nlm.nih.gov/pubmed/26416747
http://dx.doi.org/10.1038/nature15381
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author von Appen, Alexander
Kosinski, Jan
Sparks, Lenore
Ori, Alessandro
DiGuilio, Amanda L.
Vollmer, Benjamin
Mackmull, Marie-Therese
Banterle, Niccolo
Parca, Luca
Kastritis, Panagiotis
Buczak, Katarzyna
Mosalaganti, Shyamal
Hagen, Wim
Andres-Pons, Amparo
Lemke, Edward A.
Bork, Peer
Antonin, Wolfram
Glavy, Joseph S.
Bui, Khanh Huy
Beck, Martin
author_facet von Appen, Alexander
Kosinski, Jan
Sparks, Lenore
Ori, Alessandro
DiGuilio, Amanda L.
Vollmer, Benjamin
Mackmull, Marie-Therese
Banterle, Niccolo
Parca, Luca
Kastritis, Panagiotis
Buczak, Katarzyna
Mosalaganti, Shyamal
Hagen, Wim
Andres-Pons, Amparo
Lemke, Edward A.
Bork, Peer
Antonin, Wolfram
Glavy, Joseph S.
Bui, Khanh Huy
Beck, Martin
author_sort von Appen, Alexander
collection PubMed
description Nuclear pore complexes (NPCs) are fundamental components of all eukaryotic cells that mediate nucleocytoplasmic exchange. Elucidating their 110 MDa structure imposes a formidable challenge and requires in situ structural biology approaches. Fifteen out of about thirty nucleoporins (Nups) are structured and form the Y- and inner ring complexes. These two major scaffolding modules assemble in multiple copies into an eight-fold rotationally symmetric structure that fuses the inner and outer nuclear membranes to form a central channel of ∼60 nm in diameter 1. The scaffold is decorated with transport channel Nups that often contain phenylalanine (FG)-repeat sequences and mediate the interaction with cargo complexes. Although the architectural arrangement of parts of the Y-complex has been elucidated, it is unclear how exactly it oligomerizes in situ. Here, we combined cryo electron tomography with mass spectrometry, biochemical analysis, perturbation experiments and structural modeling to generate the most comprehensive architectural model of the NPC to date. Our data suggest previously unknown protein interfaces across Y-complexes and to inner ring complex members. We demonstrate that the higher eukaryotic transport channel Nup358 (RanBP2) has a previously unanticipated role in Y-complex oligomerization. Our findings blur the established boundaries between scaffold and transport channel Nups. We conclude that, similarly to coated vesicles, multiple copies of the same structural building block - although compositionally identical - engage in different local sets of interactions and conformations.
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spelling pubmed-48868462016-05-31 In situ structural analysis of the human nuclear pore complex von Appen, Alexander Kosinski, Jan Sparks, Lenore Ori, Alessandro DiGuilio, Amanda L. Vollmer, Benjamin Mackmull, Marie-Therese Banterle, Niccolo Parca, Luca Kastritis, Panagiotis Buczak, Katarzyna Mosalaganti, Shyamal Hagen, Wim Andres-Pons, Amparo Lemke, Edward A. Bork, Peer Antonin, Wolfram Glavy, Joseph S. Bui, Khanh Huy Beck, Martin Nature Article Nuclear pore complexes (NPCs) are fundamental components of all eukaryotic cells that mediate nucleocytoplasmic exchange. Elucidating their 110 MDa structure imposes a formidable challenge and requires in situ structural biology approaches. Fifteen out of about thirty nucleoporins (Nups) are structured and form the Y- and inner ring complexes. These two major scaffolding modules assemble in multiple copies into an eight-fold rotationally symmetric structure that fuses the inner and outer nuclear membranes to form a central channel of ∼60 nm in diameter 1. The scaffold is decorated with transport channel Nups that often contain phenylalanine (FG)-repeat sequences and mediate the interaction with cargo complexes. Although the architectural arrangement of parts of the Y-complex has been elucidated, it is unclear how exactly it oligomerizes in situ. Here, we combined cryo electron tomography with mass spectrometry, biochemical analysis, perturbation experiments and structural modeling to generate the most comprehensive architectural model of the NPC to date. Our data suggest previously unknown protein interfaces across Y-complexes and to inner ring complex members. We demonstrate that the higher eukaryotic transport channel Nup358 (RanBP2) has a previously unanticipated role in Y-complex oligomerization. Our findings blur the established boundaries between scaffold and transport channel Nups. We conclude that, similarly to coated vesicles, multiple copies of the same structural building block - although compositionally identical - engage in different local sets of interactions and conformations. 2015-09-23 2015-10-01 /pmc/articles/PMC4886846/ /pubmed/26416747 http://dx.doi.org/10.1038/nature15381 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
von Appen, Alexander
Kosinski, Jan
Sparks, Lenore
Ori, Alessandro
DiGuilio, Amanda L.
Vollmer, Benjamin
Mackmull, Marie-Therese
Banterle, Niccolo
Parca, Luca
Kastritis, Panagiotis
Buczak, Katarzyna
Mosalaganti, Shyamal
Hagen, Wim
Andres-Pons, Amparo
Lemke, Edward A.
Bork, Peer
Antonin, Wolfram
Glavy, Joseph S.
Bui, Khanh Huy
Beck, Martin
In situ structural analysis of the human nuclear pore complex
title In situ structural analysis of the human nuclear pore complex
title_full In situ structural analysis of the human nuclear pore complex
title_fullStr In situ structural analysis of the human nuclear pore complex
title_full_unstemmed In situ structural analysis of the human nuclear pore complex
title_short In situ structural analysis of the human nuclear pore complex
title_sort in situ structural analysis of the human nuclear pore complex
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4886846/
https://www.ncbi.nlm.nih.gov/pubmed/26416747
http://dx.doi.org/10.1038/nature15381
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