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Transformation of taxol-stabilized microtubules into inverted tubulin tubules triggered by a tubulin conformation switch

Bundles of taxol-stabilized microtubules (MTs) – hollow tubules comprised of assembled αβ-tubulin heterodimers – spontaneously assemble above a critical concentration of tetravalent spermine and are stable over long times at room temperature. Here we report that at concentrations of spermine several...

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Autores principales: Ojeda-Lopez, Miguel A., Needleman, Daniel J., Song, Chaeyeon, Ginsburg, Avi, Kohl, Phillip A., Li, Youli, Miller, Herbert P., Wilson, Leslie, Raviv, Uri, Choi, Myung Chul, Safinya, Cyrus R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3946914/
https://www.ncbi.nlm.nih.gov/pubmed/24441880
http://dx.doi.org/10.1038/nmat3858
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author Ojeda-Lopez, Miguel A.
Needleman, Daniel J.
Song, Chaeyeon
Ginsburg, Avi
Kohl, Phillip A.
Li, Youli
Miller, Herbert P.
Wilson, Leslie
Raviv, Uri
Choi, Myung Chul
Safinya, Cyrus R.
author_facet Ojeda-Lopez, Miguel A.
Needleman, Daniel J.
Song, Chaeyeon
Ginsburg, Avi
Kohl, Phillip A.
Li, Youli
Miller, Herbert P.
Wilson, Leslie
Raviv, Uri
Choi, Myung Chul
Safinya, Cyrus R.
author_sort Ojeda-Lopez, Miguel A.
collection PubMed
description Bundles of taxol-stabilized microtubules (MTs) – hollow tubules comprised of assembled αβ-tubulin heterodimers – spontaneously assemble above a critical concentration of tetravalent spermine and are stable over long times at room temperature. Here we report that at concentrations of spermine several-fold higher the MT bundles (B(MT)) quickly become unstable and undergo a shape transformation to bundles of inverted tubulin tubules (B(ITT)), the outside surface of which corresponds to the inner surface of the B(MT) tubules. Using transmission electron microscopy and synchrotron small-angle x-ray scattering, we quantitatively determined both the nature of the B(MT) to B(ITT) transformation pathway, which results from a spermine-triggered conformation switch from straight to curved in the constituent taxol-stabilized tubulin oligomers, and the structure of the B(ITT) phase, which is formed of tubules of helical tubulin oligomers. Inverted tubulin tubules provide a platform for studies requiring exposure and availability of the inside, luminal surface of MTs to MT-targeted-drugs and MT-associated-proteins.
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spelling pubmed-39469142014-08-01 Transformation of taxol-stabilized microtubules into inverted tubulin tubules triggered by a tubulin conformation switch Ojeda-Lopez, Miguel A. Needleman, Daniel J. Song, Chaeyeon Ginsburg, Avi Kohl, Phillip A. Li, Youli Miller, Herbert P. Wilson, Leslie Raviv, Uri Choi, Myung Chul Safinya, Cyrus R. Nat Mater Article Bundles of taxol-stabilized microtubules (MTs) – hollow tubules comprised of assembled αβ-tubulin heterodimers – spontaneously assemble above a critical concentration of tetravalent spermine and are stable over long times at room temperature. Here we report that at concentrations of spermine several-fold higher the MT bundles (B(MT)) quickly become unstable and undergo a shape transformation to bundles of inverted tubulin tubules (B(ITT)), the outside surface of which corresponds to the inner surface of the B(MT) tubules. Using transmission electron microscopy and synchrotron small-angle x-ray scattering, we quantitatively determined both the nature of the B(MT) to B(ITT) transformation pathway, which results from a spermine-triggered conformation switch from straight to curved in the constituent taxol-stabilized tubulin oligomers, and the structure of the B(ITT) phase, which is formed of tubules of helical tubulin oligomers. Inverted tubulin tubules provide a platform for studies requiring exposure and availability of the inside, luminal surface of MTs to MT-targeted-drugs and MT-associated-proteins. 2014-01-19 2014-02 /pmc/articles/PMC3946914/ /pubmed/24441880 http://dx.doi.org/10.1038/nmat3858 Text en Users may view, print, copy, download and 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
Ojeda-Lopez, Miguel A.
Needleman, Daniel J.
Song, Chaeyeon
Ginsburg, Avi
Kohl, Phillip A.
Li, Youli
Miller, Herbert P.
Wilson, Leslie
Raviv, Uri
Choi, Myung Chul
Safinya, Cyrus R.
Transformation of taxol-stabilized microtubules into inverted tubulin tubules triggered by a tubulin conformation switch
title Transformation of taxol-stabilized microtubules into inverted tubulin tubules triggered by a tubulin conformation switch
title_full Transformation of taxol-stabilized microtubules into inverted tubulin tubules triggered by a tubulin conformation switch
title_fullStr Transformation of taxol-stabilized microtubules into inverted tubulin tubules triggered by a tubulin conformation switch
title_full_unstemmed Transformation of taxol-stabilized microtubules into inverted tubulin tubules triggered by a tubulin conformation switch
title_short Transformation of taxol-stabilized microtubules into inverted tubulin tubules triggered by a tubulin conformation switch
title_sort transformation of taxol-stabilized microtubules into inverted tubulin tubules triggered by a tubulin conformation switch
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3946914/
https://www.ncbi.nlm.nih.gov/pubmed/24441880
http://dx.doi.org/10.1038/nmat3858
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