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Cenp-E inhibitor GSK923295: Novel synthetic route and use as a tool to generate aneuploidy

Aneuploidy is a common feature of cancer, with human solid tumour cells typically harbouring abnormal chromosome complements. The aneuploidy observed in cancer is often caused by a chromosome instability phenotype, resulting in genomic heterogeneity. However, the role aneuploidy and chromosome insta...

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Autores principales: Bennett, Ailsa, Bechi, Beatrice, Tighe, Anthony, Thompson, Sarah, Procter, David J., Taylor, Stephen S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4673239/
https://www.ncbi.nlm.nih.gov/pubmed/26320186
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author Bennett, Ailsa
Bechi, Beatrice
Tighe, Anthony
Thompson, Sarah
Procter, David J.
Taylor, Stephen S.
author_facet Bennett, Ailsa
Bechi, Beatrice
Tighe, Anthony
Thompson, Sarah
Procter, David J.
Taylor, Stephen S.
author_sort Bennett, Ailsa
collection PubMed
description Aneuploidy is a common feature of cancer, with human solid tumour cells typically harbouring abnormal chromosome complements. The aneuploidy observed in cancer is often caused by a chromosome instability phenotype, resulting in genomic heterogeneity. However, the role aneuploidy and chromosome instability play in tumour evolution and chemotherapy response remains poorly understood. In some contexts, aneuploidy has oncogenic effects, whereas in others it is anti-proliferative and tumour-suppressive. Dissecting fully the role aneuploidy plays in tumourigenesis requires tools and facile assays that allow chromosome missegregation to be induced experimentally in cells that are otherwise diploid and chromosomally stable. Here, we describe a chemical biology approach that induces low-level aneuploidy across a large population of cells. Specifically, cells are first exposed to GSK923295, an inhibitor targeting the mitotic kinesin Cenp-E; while the majority of chromosomes align at the cell's equator, a small number cluster near the spindle poles. By then driving these cells into anaphase using AZ3146, an inhibitor targeting the spindle checkpoint kinase Mps1, the polar chromosomes are missegregated. This results in, on average, two chromosome missegregation events per division, and avoids trapping chromosomes in the spindle midzone, which could otherwise lead to DNA damage. We also describe an efficient route for the synthesis of GSK923295 that employs a novel enzymatic resolution. Together, the approaches described here open up new opportunities for studying cellular responses to aneuploidy.
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spelling pubmed-46732392015-12-22 Cenp-E inhibitor GSK923295: Novel synthetic route and use as a tool to generate aneuploidy Bennett, Ailsa Bechi, Beatrice Tighe, Anthony Thompson, Sarah Procter, David J. Taylor, Stephen S. Oncotarget Research Paper: Chromosome Aneuploidy is a common feature of cancer, with human solid tumour cells typically harbouring abnormal chromosome complements. The aneuploidy observed in cancer is often caused by a chromosome instability phenotype, resulting in genomic heterogeneity. However, the role aneuploidy and chromosome instability play in tumour evolution and chemotherapy response remains poorly understood. In some contexts, aneuploidy has oncogenic effects, whereas in others it is anti-proliferative and tumour-suppressive. Dissecting fully the role aneuploidy plays in tumourigenesis requires tools and facile assays that allow chromosome missegregation to be induced experimentally in cells that are otherwise diploid and chromosomally stable. Here, we describe a chemical biology approach that induces low-level aneuploidy across a large population of cells. Specifically, cells are first exposed to GSK923295, an inhibitor targeting the mitotic kinesin Cenp-E; while the majority of chromosomes align at the cell's equator, a small number cluster near the spindle poles. By then driving these cells into anaphase using AZ3146, an inhibitor targeting the spindle checkpoint kinase Mps1, the polar chromosomes are missegregated. This results in, on average, two chromosome missegregation events per division, and avoids trapping chromosomes in the spindle midzone, which could otherwise lead to DNA damage. We also describe an efficient route for the synthesis of GSK923295 that employs a novel enzymatic resolution. Together, the approaches described here open up new opportunities for studying cellular responses to aneuploidy. Impact Journals LLC 2015-08-06 /pmc/articles/PMC4673239/ /pubmed/26320186 Text en Copyright: © 2015 Bennett et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper: Chromosome
Bennett, Ailsa
Bechi, Beatrice
Tighe, Anthony
Thompson, Sarah
Procter, David J.
Taylor, Stephen S.
Cenp-E inhibitor GSK923295: Novel synthetic route and use as a tool to generate aneuploidy
title Cenp-E inhibitor GSK923295: Novel synthetic route and use as a tool to generate aneuploidy
title_full Cenp-E inhibitor GSK923295: Novel synthetic route and use as a tool to generate aneuploidy
title_fullStr Cenp-E inhibitor GSK923295: Novel synthetic route and use as a tool to generate aneuploidy
title_full_unstemmed Cenp-E inhibitor GSK923295: Novel synthetic route and use as a tool to generate aneuploidy
title_short Cenp-E inhibitor GSK923295: Novel synthetic route and use as a tool to generate aneuploidy
title_sort cenp-e inhibitor gsk923295: novel synthetic route and use as a tool to generate aneuploidy
topic Research Paper: Chromosome
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4673239/
https://www.ncbi.nlm.nih.gov/pubmed/26320186
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