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April 29, 2026Life Science Alliance2 citationsOpen Access

An optimum rate of microtubule flux for error correction in metaphase spindle

YWYue WangYWYì WángYLYu-Ru Liu

Key Points

  • This research aims to understand how microtubule flux influences the correction of erroneous kinetochore–microtubule attachments during metaphase.
  • Studied numerically the impact of microtubule poleward flux on error correction of various erroneous attachments in metaphase spindles.
  • Assessed the roles of Aurora B kinase activity on the efficiency of correcting erroneous attachments.
  • Evaluated the relationship between the rate of microtubule flux and kinetic errors during chromosome segregation.
  • Error correction is efficient when Aurora B activity is present; without it, corrections are significantly less effective.
  • An optimum rate of microtubule poleward flux exists that enhances both error correction efficiency and mitotic fidelity.
  • Identified necessary conditions for maintaining proper kinetochore oscillation amplitude to ensure effective error correction.

Abstract

Accurate chromosome segregation requires efficient corrections of erroneous kinetochore–microtubule attachments during metaphase. However, the detailed mechanisms of how the erroneous attachments can be corrected in the metaphase spindle with the presence of microtubule poleward flux are unclear. To explore the mechanisms and understand the roles the flux plays in the error correction, here we study numerically the correction of various erroneous (merotelic, syntelic, and monotelic) attachments in the metaphase spindle exhibiting the flux. We show that with the effect of kinase Aurora B activity, the erroneous attachments can be corrected efficiently. In contrast, without the effect of Aurora B activity the erroneous attachments cannot be corrected efficiently. More interestingly, we find that an optimum rate of the microtubule poleward flux or an optimum amplitude of the kinetochore oscillation is present, which can result in both the efficient error correction and high mitotic fidelity.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69f19ff5edf4b46824806988https://doi.org/10.26508/lsa.202503612
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