Cell-free reconstitution reveals centriole cartwheel assembly mechanisms

The centriole is an organelle composed of rings of SAS-6 proteins that form a cartwheel structure. Here the authors develop a cell-free system to examine core cartwheel assembly ofC. reinhardtiiproteins and discover that CrSAS-6 has autonomous properties that facilitates self-organized stacking of p...

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Autores principales: P. Guichard, V. Hamel, M. Le Guennec, N. Banterle, I. Iacovache, V. Nemčíková, I. Flückiger, K. N. Goldie, H. Stahlberg, D. Lévy, B. Zuber, P. Gönczy
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/4f6600af449c44168ab5b99cf0a0b96c
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spelling oai:doaj.org-article:4f6600af449c44168ab5b99cf0a0b96c2021-12-02T17:06:21ZCell-free reconstitution reveals centriole cartwheel assembly mechanisms10.1038/ncomms148132041-1723https://doaj.org/article/4f6600af449c44168ab5b99cf0a0b96c2017-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms14813https://doaj.org/toc/2041-1723The centriole is an organelle composed of rings of SAS-6 proteins that form a cartwheel structure. Here the authors develop a cell-free system to examine core cartwheel assembly ofC. reinhardtiiproteins and discover that CrSAS-6 has autonomous properties that facilitates self-organized stacking of pairs of rings.P. GuichardV. HamelM. Le GuennecN. BanterleI. IacovacheV. NemčíkováI. FlückigerK. N. GoldieH. StahlbergD. LévyB. ZuberP. GönczyNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
P. Guichard
V. Hamel
M. Le Guennec
N. Banterle
I. Iacovache
V. Nemčíková
I. Flückiger
K. N. Goldie
H. Stahlberg
D. Lévy
B. Zuber
P. Gönczy
Cell-free reconstitution reveals centriole cartwheel assembly mechanisms
description The centriole is an organelle composed of rings of SAS-6 proteins that form a cartwheel structure. Here the authors develop a cell-free system to examine core cartwheel assembly ofC. reinhardtiiproteins and discover that CrSAS-6 has autonomous properties that facilitates self-organized stacking of pairs of rings.
format article
author P. Guichard
V. Hamel
M. Le Guennec
N. Banterle
I. Iacovache
V. Nemčíková
I. Flückiger
K. N. Goldie
H. Stahlberg
D. Lévy
B. Zuber
P. Gönczy
author_facet P. Guichard
V. Hamel
M. Le Guennec
N. Banterle
I. Iacovache
V. Nemčíková
I. Flückiger
K. N. Goldie
H. Stahlberg
D. Lévy
B. Zuber
P. Gönczy
author_sort P. Guichard
title Cell-free reconstitution reveals centriole cartwheel assembly mechanisms
title_short Cell-free reconstitution reveals centriole cartwheel assembly mechanisms
title_full Cell-free reconstitution reveals centriole cartwheel assembly mechanisms
title_fullStr Cell-free reconstitution reveals centriole cartwheel assembly mechanisms
title_full_unstemmed Cell-free reconstitution reveals centriole cartwheel assembly mechanisms
title_sort cell-free reconstitution reveals centriole cartwheel assembly mechanisms
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/4f6600af449c44168ab5b99cf0a0b96c
work_keys_str_mv AT pguichard cellfreereconstitutionrevealscentriolecartwheelassemblymechanisms
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AT mleguennec cellfreereconstitutionrevealscentriolecartwheelassemblymechanisms
AT nbanterle cellfreereconstitutionrevealscentriolecartwheelassemblymechanisms
AT iiacovache cellfreereconstitutionrevealscentriolecartwheelassemblymechanisms
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AT ifluckiger cellfreereconstitutionrevealscentriolecartwheelassemblymechanisms
AT kngoldie cellfreereconstitutionrevealscentriolecartwheelassemblymechanisms
AT hstahlberg cellfreereconstitutionrevealscentriolecartwheelassemblymechanisms
AT dlevy cellfreereconstitutionrevealscentriolecartwheelassemblymechanisms
AT bzuber cellfreereconstitutionrevealscentriolecartwheelassemblymechanisms
AT pgonczy cellfreereconstitutionrevealscentriolecartwheelassemblymechanisms
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