The XMAP215-family protein DdCP224 is required for cortical interactions of microtubules

<p>Abstract</p> <p>Background</p> <p>Interactions of peripheral microtubule tips with the cell cortex are of crucial importance for nuclear migration, spindle orientation, centrosome positioning and directional cell movement. Microtubule plus end binding proteins are th...

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Main Authors: Hestermann Andrea, Gräf Ralph
Format: Article
Language:English
Published: BMC 2004-06-01
Series:BMC Cell Biology
Online Access:http://www.biomedcentral.com/1471-2121/5/24
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spelling doaj-72529b59309e45309228e58afa260de42020-11-25T01:09:09ZengBMCBMC Cell Biology1471-21212004-06-01512410.1186/1471-2121-5-24The XMAP215-family protein DdCP224 is required for cortical interactions of microtubulesHestermann AndreaGräf Ralph<p>Abstract</p> <p>Background</p> <p>Interactions of peripheral microtubule tips with the cell cortex are of crucial importance for nuclear migration, spindle orientation, centrosome positioning and directional cell movement. Microtubule plus end binding proteins are thought to mediate interactions of microtubule tips with cortical actin and membrane proteins in a dynein-dependent manner. XMAP215-family proteins are main regulators of microtubule plus end dynamics but so far they have not been implicated in the interactions of microtubule tips with the cell cortex.</p> <p>Results</p> <p>Here we show that overexpression of an N-terminal fragment of DdCP224, the <it>Dictyostelium </it>XMAP215 homologue, caused a collapse of the radial microtubule cytoskeleton, whereby microtubules lost contact with the cell cortex and were dragged behind like a comet tail of an unusually motile centrosome. This phenotype was indistinguishable from mutants overexpressing fragments of the dynein heavy chain or intermediate chain. Moreover, it was accompanied by dispersal of the Golgi apparatus and reduced cortical localization of the dynein heavy chain indicating a disrupted dynein/dynactin interaction. The interference of DdCP224 with cortical dynein function is strongly supported by the observations that DdCP224 and its N-terminal fragment colocalize with dynein and coimmunoprecipitate with dynein and dynactin.</p> <p>Conclusions</p> <p>Our data show that XMAP215-like proteins are required for the interaction of microtubule plus ends with the cell cortex in interphase cells and strongly suggest that this function is mediated by dynein.</p> http://www.biomedcentral.com/1471-2121/5/24
collection DOAJ
language English
format Article
sources DOAJ
author Hestermann Andrea
Gräf Ralph
spellingShingle Hestermann Andrea
Gräf Ralph
The XMAP215-family protein DdCP224 is required for cortical interactions of microtubules
BMC Cell Biology
author_facet Hestermann Andrea
Gräf Ralph
author_sort Hestermann Andrea
title The XMAP215-family protein DdCP224 is required for cortical interactions of microtubules
title_short The XMAP215-family protein DdCP224 is required for cortical interactions of microtubules
title_full The XMAP215-family protein DdCP224 is required for cortical interactions of microtubules
title_fullStr The XMAP215-family protein DdCP224 is required for cortical interactions of microtubules
title_full_unstemmed The XMAP215-family protein DdCP224 is required for cortical interactions of microtubules
title_sort xmap215-family protein ddcp224 is required for cortical interactions of microtubules
publisher BMC
series BMC Cell Biology
issn 1471-2121
publishDate 2004-06-01
description <p>Abstract</p> <p>Background</p> <p>Interactions of peripheral microtubule tips with the cell cortex are of crucial importance for nuclear migration, spindle orientation, centrosome positioning and directional cell movement. Microtubule plus end binding proteins are thought to mediate interactions of microtubule tips with cortical actin and membrane proteins in a dynein-dependent manner. XMAP215-family proteins are main regulators of microtubule plus end dynamics but so far they have not been implicated in the interactions of microtubule tips with the cell cortex.</p> <p>Results</p> <p>Here we show that overexpression of an N-terminal fragment of DdCP224, the <it>Dictyostelium </it>XMAP215 homologue, caused a collapse of the radial microtubule cytoskeleton, whereby microtubules lost contact with the cell cortex and were dragged behind like a comet tail of an unusually motile centrosome. This phenotype was indistinguishable from mutants overexpressing fragments of the dynein heavy chain or intermediate chain. Moreover, it was accompanied by dispersal of the Golgi apparatus and reduced cortical localization of the dynein heavy chain indicating a disrupted dynein/dynactin interaction. The interference of DdCP224 with cortical dynein function is strongly supported by the observations that DdCP224 and its N-terminal fragment colocalize with dynein and coimmunoprecipitate with dynein and dynactin.</p> <p>Conclusions</p> <p>Our data show that XMAP215-like proteins are required for the interaction of microtubule plus ends with the cell cortex in interphase cells and strongly suggest that this function is mediated by dynein.</p>
url http://www.biomedcentral.com/1471-2121/5/24
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