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Initial spindle positioning at the oocyte center protects against incorrect kinetochore-microtubule attachment and aneuploidy in mice

Jessica N. Kincade, Avery Hlavacek, Takashi Akera, Ahmed Z. Balboula

2023Science Advances16 citationsDOIOpen Access PDF

Abstract

Spindle positioning within the oocyte must be tightly regulated. In mice, the spindle is predominantly assembled at the oocyte center before its migration toward the cortex to achieve the highly asymmetric division, a characteristic of female meiosis. The significance of the initial central positioning of the spindle is largely unknown. We show that initial spindle positioning at the oocyte center is an insurance mechanism to avoid the premature exposure of the spindle to cortical CDC42 signaling, which perturbs proper kinetochore-microtubule attachments, leading to the formation of aneuploid gametes. These findings contribute to understanding why female gametes are notoriously associated with high rates of aneuploidy, the leading genetic cause of miscarriage and congenital abnormalities.

Topics & Concepts

OocyteKinetochoreAneuploidySpindle apparatusCell biologySpindle pole bodyMeiosisBiologySpindle checkpointPolar bodyMicrotubuleChromosome segregationCell divisionGeneticsEmbryoChromosomeGeneCellMicrotubule and mitosis dynamicsReproductive Biology and FertilityGenetic Syndromes and Imprinting