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Phospho-Bcl-xL(Ser62) influences spindle assembly and chromosome segregation during mitosis

Functional analysis of a series of phosphorylation mutants reveals that Bcl-xL(Ser62Ala) influences cell entry into anaphase and mitotic exit in taxol-exposed cells compared with cells expressing wild-type Bcl-xL or a series of other phosphorylation mutants, an effect that appears to be independent...

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Autores principales: Wang, Jianfang, Beauchemin, Myriam, Bertrand, Richard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4014433/
https://www.ncbi.nlm.nih.gov/pubmed/24621501
http://dx.doi.org/10.4161/cc.28293
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author Wang, Jianfang
Beauchemin, Myriam
Bertrand, Richard
author_facet Wang, Jianfang
Beauchemin, Myriam
Bertrand, Richard
author_sort Wang, Jianfang
collection PubMed
description Functional analysis of a series of phosphorylation mutants reveals that Bcl-xL(Ser62Ala) influences cell entry into anaphase and mitotic exit in taxol-exposed cells compared with cells expressing wild-type Bcl-xL or a series of other phosphorylation mutants, an effect that appears to be independent of its anti-apoptotic activity. During normal mitosis progression, Bcl-xL(Ser62) is strongly phosphorylated by PLK1 and MAPK14/SAPKp38α at the prometaphase, metaphase, and the anaphase boundaries, while it is de-phosphorylated at telophase and cytokinesis. Phospho-Bcl-xL(Ser62) localizes in centrosomes with γ-tubulin and in the mitotic cytosol with some spindle-assembly checkpoint signaling components, including PLK1, BubR1, and Mad2. In taxol- and nocodazole-exposed cells, phospho-Bcl-xL(Ser62) also binds to Cdc20- Mad2-, BubR1-, and Bub3-bound complexes, while Bcl-xL(Ser62Ala) does not. Silencing Bcl-xL expression and expressing the phosphorylation mutant Bcl-xL(Ser62Ala) lead to an increased number of cells harboring mitotic spindle defects including multipolar spindle, chromosome lagging and bridging, aneuploidy with micro-, bi-, or multi-nucleated cells, and cells that fail to resolve undergo mitosis within 6 h. Together, the data indicate that during mitosis, Bcl-xL(Ser62) phosphorylation impacts on spindle assembly and chromosome segregation, influencing chromosome stability. Observations of mitotic cells harboring aneuploidy with micro-, bi-, or multi-nucleated cells, and cells that fail to resolve undergo mitosis within 6 h were also made with cells expressing the phosphorylation mutant Bcl-xL(Ser49Ala) and dual mutant Bcl-xL(Ser49/62Ala).
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spelling pubmed-40144332014-05-08 Phospho-Bcl-xL(Ser62) influences spindle assembly and chromosome segregation during mitosis Wang, Jianfang Beauchemin, Myriam Bertrand, Richard Cell Cycle Report Functional analysis of a series of phosphorylation mutants reveals that Bcl-xL(Ser62Ala) influences cell entry into anaphase and mitotic exit in taxol-exposed cells compared with cells expressing wild-type Bcl-xL or a series of other phosphorylation mutants, an effect that appears to be independent of its anti-apoptotic activity. During normal mitosis progression, Bcl-xL(Ser62) is strongly phosphorylated by PLK1 and MAPK14/SAPKp38α at the prometaphase, metaphase, and the anaphase boundaries, while it is de-phosphorylated at telophase and cytokinesis. Phospho-Bcl-xL(Ser62) localizes in centrosomes with γ-tubulin and in the mitotic cytosol with some spindle-assembly checkpoint signaling components, including PLK1, BubR1, and Mad2. In taxol- and nocodazole-exposed cells, phospho-Bcl-xL(Ser62) also binds to Cdc20- Mad2-, BubR1-, and Bub3-bound complexes, while Bcl-xL(Ser62Ala) does not. Silencing Bcl-xL expression and expressing the phosphorylation mutant Bcl-xL(Ser62Ala) lead to an increased number of cells harboring mitotic spindle defects including multipolar spindle, chromosome lagging and bridging, aneuploidy with micro-, bi-, or multi-nucleated cells, and cells that fail to resolve undergo mitosis within 6 h. Together, the data indicate that during mitosis, Bcl-xL(Ser62) phosphorylation impacts on spindle assembly and chromosome segregation, influencing chromosome stability. Observations of mitotic cells harboring aneuploidy with micro-, bi-, or multi-nucleated cells, and cells that fail to resolve undergo mitosis within 6 h were also made with cells expressing the phosphorylation mutant Bcl-xL(Ser49Ala) and dual mutant Bcl-xL(Ser49/62Ala). Landes Bioscience 2014-04-15 2014-03-03 /pmc/articles/PMC4014433/ /pubmed/24621501 http://dx.doi.org/10.4161/cc.28293 Text en Copyright © 2014 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Report
Wang, Jianfang
Beauchemin, Myriam
Bertrand, Richard
Phospho-Bcl-xL(Ser62) influences spindle assembly and chromosome segregation during mitosis
title Phospho-Bcl-xL(Ser62) influences spindle assembly and chromosome segregation during mitosis
title_full Phospho-Bcl-xL(Ser62) influences spindle assembly and chromosome segregation during mitosis
title_fullStr Phospho-Bcl-xL(Ser62) influences spindle assembly and chromosome segregation during mitosis
title_full_unstemmed Phospho-Bcl-xL(Ser62) influences spindle assembly and chromosome segregation during mitosis
title_short Phospho-Bcl-xL(Ser62) influences spindle assembly and chromosome segregation during mitosis
title_sort phospho-bcl-xl(ser62) influences spindle assembly and chromosome segregation during mitosis
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4014433/
https://www.ncbi.nlm.nih.gov/pubmed/24621501
http://dx.doi.org/10.4161/cc.28293
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