Microtubule end conversion mediated by motors and diffusing proteins with no intrinsic microtubule end-binding activity

During cell division, it is currently unclear how kinetochores transit from lateral microtubule attachment to durable association to dynamic microtubule plus ends. Here, using in vitro reconstitution and computer modeling, the authors provide biophysical mechanism for microtubule end-conversion driv...

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Autores principales: Manas Chakraborty, Ekaterina V. Tarasovetc, Anatoly V. Zaytsev, Maxim Godzi, Ana C. Figueiredo, Fazly I. Ataullakhanov, Ekaterina L. Grishchuk
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/ce917114ab1d4d2a9499e8a6eb19865d
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spelling oai:doaj.org-article:ce917114ab1d4d2a9499e8a6eb19865d2021-12-02T14:35:56ZMicrotubule end conversion mediated by motors and diffusing proteins with no intrinsic microtubule end-binding activity10.1038/s41467-019-09411-72041-1723https://doaj.org/article/ce917114ab1d4d2a9499e8a6eb19865d2019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09411-7https://doaj.org/toc/2041-1723During cell division, it is currently unclear how kinetochores transit from lateral microtubule attachment to durable association to dynamic microtubule plus ends. Here, using in vitro reconstitution and computer modeling, the authors provide biophysical mechanism for microtubule end-conversion driven by two kinetochore components, CENP-E and Ndc80 complexManas ChakrabortyEkaterina V. TarasovetcAnatoly V. ZaytsevMaxim GodziAna C. FigueiredoFazly I. AtaullakhanovEkaterina L. GrishchukNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Manas Chakraborty
Ekaterina V. Tarasovetc
Anatoly V. Zaytsev
Maxim Godzi
Ana C. Figueiredo
Fazly I. Ataullakhanov
Ekaterina L. Grishchuk
Microtubule end conversion mediated by motors and diffusing proteins with no intrinsic microtubule end-binding activity
description During cell division, it is currently unclear how kinetochores transit from lateral microtubule attachment to durable association to dynamic microtubule plus ends. Here, using in vitro reconstitution and computer modeling, the authors provide biophysical mechanism for microtubule end-conversion driven by two kinetochore components, CENP-E and Ndc80 complex
format article
author Manas Chakraborty
Ekaterina V. Tarasovetc
Anatoly V. Zaytsev
Maxim Godzi
Ana C. Figueiredo
Fazly I. Ataullakhanov
Ekaterina L. Grishchuk
author_facet Manas Chakraborty
Ekaterina V. Tarasovetc
Anatoly V. Zaytsev
Maxim Godzi
Ana C. Figueiredo
Fazly I. Ataullakhanov
Ekaterina L. Grishchuk
author_sort Manas Chakraborty
title Microtubule end conversion mediated by motors and diffusing proteins with no intrinsic microtubule end-binding activity
title_short Microtubule end conversion mediated by motors and diffusing proteins with no intrinsic microtubule end-binding activity
title_full Microtubule end conversion mediated by motors and diffusing proteins with no intrinsic microtubule end-binding activity
title_fullStr Microtubule end conversion mediated by motors and diffusing proteins with no intrinsic microtubule end-binding activity
title_full_unstemmed Microtubule end conversion mediated by motors and diffusing proteins with no intrinsic microtubule end-binding activity
title_sort microtubule end conversion mediated by motors and diffusing proteins with no intrinsic microtubule end-binding activity
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/ce917114ab1d4d2a9499e8a6eb19865d
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AT anatolyvzaytsev microtubuleendconversionmediatedbymotorsanddiffusingproteinswithnointrinsicmicrotubuleendbindingactivity
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