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Reference - PMID:33506191 - Escape from mitotic catastrophe by actin-dependent nuclear displacement in fission yeast.

Reference summary

PubMed ID
PMID:33506191
Title
Escape from mitotic catastrophe by actin-dependent nuclear displacement in fission yeast.
Authors
Yukawa M, Teratani Y, Toda T
Citation
iScience 2021 Jan 22;24(1):102031
Publication year
2021
Abstract
Eukaryotic cells position the nucleus within the proper intracellular space, thereby safeguarding a variety of cellular processes. In fission yeast, the interphase nucleus is placed in the cell middle in a microtubule-dependent manner. By contrast, how the mitotic nucleus is positioned remains elusive. Here we show that several cell-cycle mutants that arrest in mitosis all displace the nucleus toward one end of the cell. Intriguingly, the actin cytoskeleton is responsible for nuclear movement. Time-lapse live imaging indicates that mitosis-specific F-actin cables possibly push the nucleus through direct interaction with the nuclear envelope, and subsequently actomyosin ring constriction further shifts the nucleus away from the center. This nuclear movement is beneficial, because if the nuclei were retained in the center, unseparated chromosomes would be intersected by the contractile actin ring and the septum, imposing the lethal cut phenotype. Thus, fission yeast escapes from mitotic catastrophe by means of actin-dependent nuclear movement.

Annotation

Multi-locus phenotype

FYPO:0007966 - abolished nuclear displacement from cell division site after abolished mitotic sister chromatid separation

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Single locus phenotype

FYPO:0003165 - cut with abnormal chromosome segregation

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FYPO:0000252 - increased spontaneous diploidization

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FYPO:0006339 - mononucleate vegetative cell with mislocalized nucleus

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