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Updated: Aug 18, 2026

Nuclear Migration in the Drosophila Oocyte
Published on: May 13, 2021
A novel mechanism of nuclear envelope break-down in a fungus: nuclear migration strips off the envelope
Anne Straube1, Isabella Weber, Gero Steinberg
1Max-Planck-Institut für terrestrische Mikrobiologie, Marburg, Germany.
Abstract:
In animals, the nuclear envelope disassembles in mitosis, while budding and fission yeast form an intranuclear spindle. Ultrastructural data indicate that basidiomycetes, such as the pathogen Ustilago maydis, undergo an 'open mitosis'. Here we describe the mechanism of nuclear envelope break-down in U. maydis. In interphase, the nucleus resides in the mother cell and the spindle pole body is inactive. Prior to mitosis, it becomes activated and nucleates microtubules that reach into the daughter cell. Dynein appears at microtubule tips and exerts force on the spindle pole body, which leads to the formation of a long nuclear extension that reaches into the bud. Chromosomes migrate through this extension and together with the spindle pole bodies leave the old envelope, which remains in the mother cell until late telophase. Inhibition of nuclear migration or deletion of a Tem1p-like GTPase leads to a 'closed' mitosis, indicating that spindle pole bodies have to reach into the bud where MEN signalling participates in envelope removal. Our data indicate that dynein-mediated premitotic nuclear migration is essential for envelope removal in U. maydis.
Insights
In Ustilago maydis, dynein-mediated nuclear migration is essential for nuclear envelope breakdown during open mitosis. This process ensures chromosomes and spindle pole bodies exit the old envelope before it is removed.
Area of Science:
- Cell Biology
- Mycology
- Molecular Biology
Background:
- Animals typically disassemble the nuclear envelope during mitosis.
- Budding and fission yeasts form an intranuclear spindle.
- Basidiomycetes, like Ustilago maydis, exhibit 'open mitosis'.
Purpose of the Study:
- To elucidate the mechanism of nuclear envelope breakdown in Ustilago maydis.
- To understand the role of nuclear migration in open mitosis.
Main Methods:
- Ultrastructural analysis of Ustilago maydis.
- Inhibition of nuclear migration.
- Deletion of a Tem1p-like GTPase.
Main Results:
- Dynein at microtubule tips drives nuclear extension into the daughter cell.
- Chromosomes and spindle pole bodies migrate through this extension.
- Inhibition of migration or Tem1p-like GTPase deletion results in 'closed' mitosis.
Conclusions:
- Premitotic nuclear migration mediated by dynein is crucial for nuclear envelope removal in U. maydis.
- Spindle pole body entry into the bud is required for MEN signaling-mediated envelope removal.
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