Cargando…

The Kinesin-Related Protein, Hset, Opposes the Activity of Eg5 and Cross-Links Microtubules in the Mammalian Mitotic Spindle

We have prepared antibodies specific for HSET, the human homologue of the KAR3 family of minus end-directed motors. Immuno-EM with these antibodies indicates that HSET frequently localizes between microtubules within the mammalian metaphase spindle consistent with a microtubule cross-linking functio...

Descripción completa

Detalles Bibliográficos
Autores principales: Mountain, Vicki, Simerly, Calvin, Howard, Louisa, Ando, Asako, Schatten, Gerald, Compton, Duane A.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1999
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2174226/
https://www.ncbi.nlm.nih.gov/pubmed/10525540
_version_ 1782145302172532736
author Mountain, Vicki
Simerly, Calvin
Howard, Louisa
Ando, Asako
Schatten, Gerald
Compton, Duane A.
author_facet Mountain, Vicki
Simerly, Calvin
Howard, Louisa
Ando, Asako
Schatten, Gerald
Compton, Duane A.
author_sort Mountain, Vicki
collection PubMed
description We have prepared antibodies specific for HSET, the human homologue of the KAR3 family of minus end-directed motors. Immuno-EM with these antibodies indicates that HSET frequently localizes between microtubules within the mammalian metaphase spindle consistent with a microtubule cross-linking function. Microinjection experiments show that HSET activity is essential for meiotic spindle organization in murine oocytes and taxol-induced aster assembly in cultured cells. However, inhibition of HSET did not affect mitotic spindle architecture or function in cultured cells, indicating that centrosomes mask the role of HSET during mitosis. We also show that (acentrosomal) microtubule asters fail to assemble in vitro without HSET activity, but simultaneous inhibition of HSET and Eg5, a plus end-directed motor, redresses the balance of forces acting on microtubules and restores aster organization. In vivo, centrosomes fail to separate and monopolar spindles assemble without Eg5 activity. Simultaneous inhibition of HSET and Eg5 restores centrosome separation and, in some cases, bipolar spindle formation. Thus, through microtubule cross-linking and oppositely oriented motor activity, HSET and Eg5 participate in spindle assembly and promote spindle bipolarity, although the activity of HSET is not essential for spindle assembly and function in cultured cells because of centrosomes.
format Text
id pubmed-2174226
institution National Center for Biotechnology Information
language English
publishDate 1999
publisher The Rockefeller University Press
record_format MEDLINE/PubMed
spelling pubmed-21742262008-05-01 The Kinesin-Related Protein, Hset, Opposes the Activity of Eg5 and Cross-Links Microtubules in the Mammalian Mitotic Spindle Mountain, Vicki Simerly, Calvin Howard, Louisa Ando, Asako Schatten, Gerald Compton, Duane A. J Cell Biol Original Article We have prepared antibodies specific for HSET, the human homologue of the KAR3 family of minus end-directed motors. Immuno-EM with these antibodies indicates that HSET frequently localizes between microtubules within the mammalian metaphase spindle consistent with a microtubule cross-linking function. Microinjection experiments show that HSET activity is essential for meiotic spindle organization in murine oocytes and taxol-induced aster assembly in cultured cells. However, inhibition of HSET did not affect mitotic spindle architecture or function in cultured cells, indicating that centrosomes mask the role of HSET during mitosis. We also show that (acentrosomal) microtubule asters fail to assemble in vitro without HSET activity, but simultaneous inhibition of HSET and Eg5, a plus end-directed motor, redresses the balance of forces acting on microtubules and restores aster organization. In vivo, centrosomes fail to separate and monopolar spindles assemble without Eg5 activity. Simultaneous inhibition of HSET and Eg5 restores centrosome separation and, in some cases, bipolar spindle formation. Thus, through microtubule cross-linking and oppositely oriented motor activity, HSET and Eg5 participate in spindle assembly and promote spindle bipolarity, although the activity of HSET is not essential for spindle assembly and function in cultured cells because of centrosomes. The Rockefeller University Press 1999-10-18 /pmc/articles/PMC2174226/ /pubmed/10525540 Text en © 1999 The Rockefeller University Press 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.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Original Article
Mountain, Vicki
Simerly, Calvin
Howard, Louisa
Ando, Asako
Schatten, Gerald
Compton, Duane A.
The Kinesin-Related Protein, Hset, Opposes the Activity of Eg5 and Cross-Links Microtubules in the Mammalian Mitotic Spindle
title The Kinesin-Related Protein, Hset, Opposes the Activity of Eg5 and Cross-Links Microtubules in the Mammalian Mitotic Spindle
title_full The Kinesin-Related Protein, Hset, Opposes the Activity of Eg5 and Cross-Links Microtubules in the Mammalian Mitotic Spindle
title_fullStr The Kinesin-Related Protein, Hset, Opposes the Activity of Eg5 and Cross-Links Microtubules in the Mammalian Mitotic Spindle
title_full_unstemmed The Kinesin-Related Protein, Hset, Opposes the Activity of Eg5 and Cross-Links Microtubules in the Mammalian Mitotic Spindle
title_short The Kinesin-Related Protein, Hset, Opposes the Activity of Eg5 and Cross-Links Microtubules in the Mammalian Mitotic Spindle
title_sort kinesin-related protein, hset, opposes the activity of eg5 and cross-links microtubules in the mammalian mitotic spindle
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2174226/
https://www.ncbi.nlm.nih.gov/pubmed/10525540
work_keys_str_mv AT mountainvicki thekinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT simerlycalvin thekinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT howardlouisa thekinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT andoasako thekinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT schattengerald thekinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT comptonduanea thekinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT mountainvicki kinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT simerlycalvin kinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT howardlouisa kinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT andoasako kinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT schattengerald kinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle
AT comptonduanea kinesinrelatedproteinhsetopposestheactivityofeg5andcrosslinksmicrotubulesinthemammalianmitoticspindle