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Phosphorylation regulates targeting of cytoplasmic dynein to kinetochores during mitosis

Cytoplasmic dynein functions at several sites during mitosis; however, the basis of targeting to each site remains unclear. Tandem mass spectrometry analysis of mitotic dynein revealed a phosphorylation site in the dynein intermediate chains (ICs) that mediates binding to kinetochores. IC phosphoryl...

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Autores principales: Whyte, Jacqueline, Bader, Jason R., Tauhata, Sinji B.F., Raycroft, Maurice, Hornick, Jessica, Pfister, K. Kevin, Lane, William S., Chan, Gordon K., Hinchcliffe, Edward H., Vaughan, Patricia S., Vaughan, Kevin T.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2592828/
https://www.ncbi.nlm.nih.gov/pubmed/19029334
http://dx.doi.org/10.1083/jcb.200804114
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author Whyte, Jacqueline
Bader, Jason R.
Tauhata, Sinji B.F.
Raycroft, Maurice
Hornick, Jessica
Pfister, K. Kevin
Lane, William S.
Chan, Gordon K.
Hinchcliffe, Edward H.
Vaughan, Patricia S.
Vaughan, Kevin T.
author_facet Whyte, Jacqueline
Bader, Jason R.
Tauhata, Sinji B.F.
Raycroft, Maurice
Hornick, Jessica
Pfister, K. Kevin
Lane, William S.
Chan, Gordon K.
Hinchcliffe, Edward H.
Vaughan, Patricia S.
Vaughan, Kevin T.
author_sort Whyte, Jacqueline
collection PubMed
description Cytoplasmic dynein functions at several sites during mitosis; however, the basis of targeting to each site remains unclear. Tandem mass spectrometry analysis of mitotic dynein revealed a phosphorylation site in the dynein intermediate chains (ICs) that mediates binding to kinetochores. IC phosphorylation directs binding to zw10 rather than dynactin, and this interaction is needed for kinetochore dynein localization. Phosphodynein associates with kinetochores from nuclear envelope breakdown to metaphase, but bioriented microtubule (MT) attachment and chromosome alignment induce IC dephosphorylation. IC dephosphorylation stimulates binding to dynactin and poleward streaming. MT depolymerization, release of kinetochore tension, and a PP1-γ mutant each inhibited IC dephosphorylation, leading to the retention of phosphodynein at kinetochores and reduced poleward streaming. The depletion of kinetochore dynactin by moderate levels of p50(dynamitin) expression disrupted the ability of dynein to remove checkpoint proteins by streaming at metaphase but not other aspects of kinetochore dynein activity. Together, these results suggest a new model for localization of kinetochore dynein and the contribution of kinetochore dynactin.
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spelling pubmed-25928282009-06-01 Phosphorylation regulates targeting of cytoplasmic dynein to kinetochores during mitosis Whyte, Jacqueline Bader, Jason R. Tauhata, Sinji B.F. Raycroft, Maurice Hornick, Jessica Pfister, K. Kevin Lane, William S. Chan, Gordon K. Hinchcliffe, Edward H. Vaughan, Patricia S. Vaughan, Kevin T. J Cell Biol Research Articles Cytoplasmic dynein functions at several sites during mitosis; however, the basis of targeting to each site remains unclear. Tandem mass spectrometry analysis of mitotic dynein revealed a phosphorylation site in the dynein intermediate chains (ICs) that mediates binding to kinetochores. IC phosphorylation directs binding to zw10 rather than dynactin, and this interaction is needed for kinetochore dynein localization. Phosphodynein associates with kinetochores from nuclear envelope breakdown to metaphase, but bioriented microtubule (MT) attachment and chromosome alignment induce IC dephosphorylation. IC dephosphorylation stimulates binding to dynactin and poleward streaming. MT depolymerization, release of kinetochore tension, and a PP1-γ mutant each inhibited IC dephosphorylation, leading to the retention of phosphodynein at kinetochores and reduced poleward streaming. The depletion of kinetochore dynactin by moderate levels of p50(dynamitin) expression disrupted the ability of dynein to remove checkpoint proteins by streaming at metaphase but not other aspects of kinetochore dynein activity. Together, these results suggest a new model for localization of kinetochore dynein and the contribution of kinetochore dynactin. The Rockefeller University Press 2008-12-01 /pmc/articles/PMC2592828/ /pubmed/19029334 http://dx.doi.org/10.1083/jcb.200804114 Text en © 2008 Whyte et al. This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.jcb.org/misc/terms.shtml). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 3.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/3.0/).
spellingShingle Research Articles
Whyte, Jacqueline
Bader, Jason R.
Tauhata, Sinji B.F.
Raycroft, Maurice
Hornick, Jessica
Pfister, K. Kevin
Lane, William S.
Chan, Gordon K.
Hinchcliffe, Edward H.
Vaughan, Patricia S.
Vaughan, Kevin T.
Phosphorylation regulates targeting of cytoplasmic dynein to kinetochores during mitosis
title Phosphorylation regulates targeting of cytoplasmic dynein to kinetochores during mitosis
title_full Phosphorylation regulates targeting of cytoplasmic dynein to kinetochores during mitosis
title_fullStr Phosphorylation regulates targeting of cytoplasmic dynein to kinetochores during mitosis
title_full_unstemmed Phosphorylation regulates targeting of cytoplasmic dynein to kinetochores during mitosis
title_short Phosphorylation regulates targeting of cytoplasmic dynein to kinetochores during mitosis
title_sort phosphorylation regulates targeting of cytoplasmic dynein to kinetochores during mitosis
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2592828/
https://www.ncbi.nlm.nih.gov/pubmed/19029334
http://dx.doi.org/10.1083/jcb.200804114
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