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May 13, 2026Biology Open1 citationsOpen Access

Profiling cell proliferation after whole-genome duplication in human cells

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GYGuang YangMIMasaya InokoKOKaito Ogura

Key Points

  • This research aims to understand how whole-genome duplication affects cell proliferation and the mechanisms behind it.
  • Analyzed proliferation dynamics using 6-day live-imaging of over 150 post-WGD HCT116 cell lineages.
  • Conducted quantitative comparisons of mitotic patterns and cell fates between proliferative and non-proliferative lineages.
  • Traced the lineage of proliferative cells after the first bipolar division.
  • Multipolar chromosome segregation in early mitosis limited the proliferative capacity of post-WGD progenies.
  • There was a correlation between multipolar chromosome segregation and lower post-WGD cell viability, especially with significant chromosome loss.
  • Proliferative lineages often imposed the risk of multipolar segregation on sub-lineages formed after the first division.

Abstract

Though whole-genome duplication (WGD) contributes to cancer progression, the mechanism of post-WGD cell proliferation remains unclear. Here, using 6-day live-imaging, we analyzed the proliferation dynamics of more than 150 post-WGD HCT116 cell lineages. A quantitative comparison of mitotic patterns and cell fates between proliferative and non-proliferative lineages revealed that multipolar chromosome segregation in early mitosis is a potential key factor limiting the proliferative capacity of post-WGD progenies. Multipolar chromosome segregation correlated with suppressed post-WGD cell viability, particularly when accompanied by drastic chromosome loss or when it repeatedly occurred. Tracing proliferative lineages elucidated that they proliferated mainly by imposing the risk of multipolar chromosome segregation on one of two sub-lineages that formed after the first bipolar division. Meanwhile, a considerable proportion of proliferative lineages consisted entirely of progeny of early multipolar chromosome segregation events. Our results highlight key cellular events that determine the proliferation dynamics and diversity of post-WGD progenies, providing a fundamental reference for understanding WGD-associated biological processes.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/6a0414f679e20c90b4444be8https://doi.org/10.1242/bio.062568
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