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Updated: Aug 10, 2025

Microscopy of Fission Yeast Sexual Lifecycle
Published on: March 9, 2016
Septin Defects Favour Symmetric Inheritance of the Budding Yeast Deceptive Courtship Memory
Fozia Akhtar1, Bastien Brignola2, Fabrice Caudron1,2
1School of Biological and Behavioural Sciences, Queen Mary University of London, London E1 4NS, UK.
Abstract:
Mnemons are prion-like elements that encode cellular memories of past cellular adaptations and do not spread to progenies during cell divisions. During the deceptive courtship in budding yeast, the Whi3 mnemon (Whi3mnem) condenses into a super-assembly to encode a mating pheromone refractory state established in the mother cell. Whi3mnem is confined to the mother cell such that their daughter cells have the ability to respond to the mating pheromone. Confinement of Whi3mnem involves its association with the endoplasmic reticulum membranes and the compartmentalization of these membranes by the lateral membrane diffusion barrier at the bud neck, the limit between the mother cell and the bud. However, during the first cell division after the establishment of the pheromone refractory state, this adaptation is more likely to be inherited by the daughter cell than in subsequent cell divisions. Here, we show that the first cell division is associated with larger daughter cells and cytokinesis defects, traits that are not observed in subsequent cell divisions. The cytoskeletal septin protein shows aberrant localisation in these divisions and the septin-dependent endoplasmic reticulum membrane diffusion barrier is weakened. Overall, these data suggest that cytokinesis defects associated with prolonged cell division can alter the confinement and inheritance pattern of a cellular memory.
Insights
Cellular memories, called mnemons, are usually confined to mother cells. First cell divisions with defects can alter this inheritance pattern, impacting daughter cells.
Area of Science:
- Cell Biology
- Genetics
- Molecular Biology
Background:
- Mnemons are prion-like elements encoding cellular memory of past adaptations.
- Whi3 mnemon (Whi3mnem) in yeast establishes a mating pheromone refractory state in mother cells.
- Whi3mnem confinement relies on endoplasmic reticulum association and bud neck diffusion barriers.
Purpose of the Study:
- Investigate inheritance patterns of cellular memory during yeast cell division.
- Examine the role of cytokinesis and cell division defects in mnemon inheritance.
- Understand how Whi3mnem confinement is affected by the first cell division post-adaptation.
Main Methods:
- Microscopy to observe Whi3mnem localization and cell morphology.
- Analysis of septin protein localization during cell division.
- Assessment of endoplasmic reticulum membrane diffusion barriers.
Main Results:
- The first cell division after establishing pheromone refractoriness shows larger daughter cells and cytokinesis defects.
- Aberrant septin localization and weakened endoplasmic reticulum diffusion barriers are observed.
- These defects are specific to the first division and not seen in subsequent divisions.
Conclusions:
- Cytokinesis defects during prolonged cell division can disrupt mnemon inheritance.
- Altered confinement of Whi3mnem impacts cellular memory transmission to daughter cells.
- Cell division dynamics play a crucial role in epigenetic inheritance of cellular adaptations.
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