Nuclear envelope expansion is critical for proper chromosomal segregation during a closed mitosis
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Ai Takemoto Shigehiro A Kawashima Juan-Juan Li Linda Jeffery Kenzo Yamatsugu Olivier Elemento Paul NurseAbstract
Here, we screened a 10,371 library of diverse molecules using a drug-sensitive fission yeast strain to identify compounds which cause defects in chromosome segregation during mitosis. We identified a phosphorium-ylide-based compound Cutin-1 which inhibits nuclear envelope expansion and nuclear elongation during the closed mitosis of fission yeast, and showed that its target is the β-subunit of fatty acid synthase. A point mutation in the dehydratase domain of Fas1 conferred in vivo and in vitro resistance to Cutin-1. Time-lapse photomicrography showed that the bulk of the chromosomes were only transiently separated during mitosis, and nucleoli separation was defective. Subsequently sister chromatids re-associated leading to chromosomal mis-segregation. These segregation defects were reduced when the nuclear volume was increased and were increased when the nuclear volume was reduced. We propose that there needs to be sufficient nuclear volume to allow the nuclear elongation necessary during a closed mitosis to take place for proper chromosome segregation, and that inhibition of fatty acid synthase compromises nuclear elongation and leads to defects in chromosomal segregation.
Journal details
Journal Journal of Cell Science
Volume 129
Issue number 6
Pages 1250-1259
Available online
Publication date
Full text links
Publisher website (DOI) 10.1242/jcs.181560
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Europe PubMed Central 26869222
Pubmed 26869222