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April 12, 20260 citationsOpen Access

Regulation of Zygotic Genome Activation by the Nucleocytoplasmic Ratio

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LALily AckerHCHui Chen

Key Points

  • To explore how the nucleocytoplasmic ratio influences zygotic genome activation during early embryonic development.
  • Reviewed existing literature on nucleocytoplasmic ratio and zygotic genome activation across various model organisms.
  • Analyzed experimental evidence linking changes in nuclear content, size, and cell size to zygotic genome activation timing.
  • Identified molecular mechanisms involved in the regulation of genome activities associated with the nucleocytoplasmic ratio.
  • Confirmed that the nucleocytoplasmic ratio is a key factor in the timing and regulation of zygotic genome activation.
  • Described various cellular processes influenced by the N/C ratio, including chromatin remodeling and nuclear import.
  • Highlighted significant species-specific differences in the regulation of zygotic genome activation.

Abstract

During early development, embryos undergo the maternal-to-zygotic transition (MZT), when control of development shifts from maternal factors to the newly activated zygotic genome. Decades of studies in various model organisms suggest that the nucleocytoplasmic (N/C) ratio is a key regulator of zygotic genome activation (ZGA), though this relationship is more nuanced in some organisms than others. Changing the nuclear content, nucleus size or cell size has been shown to shift the timing of ZGA. Mechanistically, the N/C ratio is linked to fundamental cellular processes that regulate genome activities, including nuclear import, repressor titration, activator accumulation, cell cycle lengthening, and chromatin remodeling. In this review, we summarize the experimental evidence supporting the N/C ratio as a regulator of ZGA and describe the associated molecular mechanisms. We also discuss the limitations of the N/C ratio model, highlight species-specific differences, and examine outstanding questions.

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Cite This Study

Acker et al. (2026) studied this question.

synapsesocial.com/papers/69db383b4fe01fead37c6835https://doi.org/10.3389/fcell.2026.1819263">https://doi.org/10.3389/fcell.2026.1819263</a></p
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