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PMID: 18645010 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Inhibition of centromere dynamics by eribulin (E7389) during mitotic metaphase.

Molecular cancer therapeutics ·Vol. 7 ·No. 7 ·2008-07-00 ·Pages 2003-11

Okouneva T, Azarenko O, Wilson L, Littlefield BA, Jordan MA

Abstract

Eribulin (E7389), a synthetic analogue of halichondrin B in phase III clinical trials for breast cancer, binds to tubulin and microtubules. At low concentrations, it suppresses the growth phase of microtubule dynamic instability in interphase cells, arrests mitosis, and induces apoptosis, suggesting that suppression of spindle microtubule dynamics induces mitotic arrest. To further test this hypothesis, we measured the effects of eribulin on dynamics of centromeres and their attached kinetochore microtubules by time-lapse confocal microscopy in living mitotic U-2 OS human osteosarcoma cells. Green fluorescent protein-labeled centromere-binding protein B marked centromeres and kinetochore-microtubule plus-ends. In control cells, sister chromatid centromere pairs alternated under tension between increasing and decreasing separation (stretching and relaxing). Eribulin suppressed centromere dynamics at concentrations that arrest mitosis. At 60 nmol/L eribulin (2 x mitotic IC(50)), the relaxation rate was suppressed 21%, the time spent paused increased 67%, and dynamicity decreased 35% (but without reduction in mean centromere separation), indicating that eribulin decreased normal microtubule-dependent spindle tension at the kinetochores, preventing the signal for mitotic checkpoint passage. We also examined a more potent, but in tumors less efficacious antiproliferative halichondrin derivative, ER-076349. At 2 x IC(50) (4 nmol/L), mitotic arrest also occurred in concert with suppressed centromere dynamics. Although media IC(50) values differed 15-fold between the two compounds, the intracellular concentrations were similar, indicating more extensive relative uptake of ER-076349 into cells compared with eribulin. The strong correlation between suppression of kinetochore-microtubule dynamics and mitotic arrest indicates that the primary mechanism by which eribulin blocks mitosis is suppression of spindle microtubule dynamics.

MeSH Terms
Antineoplastic Agents/pharmacology Cell Line, Tumor Cell Survival/drug effects Centromere/drug effects,metabolism Centromere Protein B/metabolism Furans/chemistry,pharmacology Green Fluorescent Proteins/metabolism Heterocyclic Compounds, 4 or More Rings/chemistry Humans Intracellular Space/drug effects,metabolism Ketones/chemistry,pharmacology Metaphase/drug effects Microtubules/drug effects Protein Transport/drug effects Spindle Apparatus/drug effects Time Factors
Chemicals
Antineoplastic Agents Centromere Protein B ER 076349 Furans Heterocyclic Compounds, 4 or More Rings Ketones Green Fluorescent Proteins eribulin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Okouneva Tatiana
Department of Molecular, Cellular, and Developmental Biology and Neuroscience Research Institute, University of California Santa Barbara, Santa Barbara, CA 93106, USA.
Azarenko Olga
Wilson Leslie
Littlefield Bruce A
Jordan Mary Ann
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Article Info
Journal
Molecular cancer therapeutics
Abbr.
Mol Cancer Ther
ISSN
1535-7163
Published
2008-07-00
Pages
2003-11
Language
English
Region
United States
NLM ID
101132535
PMCID
PMC2562299
Subset
IM
Grants
NCI NIH HHS · R01 CA057291-13 · United States
NCI NIH HHS · R01 CA057291 · United States
NCI NIH HHS · R01 CA057291-11A1 · United States
NCI NIH HHS · CA 57291 · United States
NCI NIH HHS · R01 CA057291-15 · United States
NCI NIH HHS · R01 CA057291-12 · United States
NCI NIH HHS · R01 CA057291-14 · United States
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