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Updated: Jun 27, 2026

Manipulation and Analysis of Cell Cycle-Dependent Processes in Budding Yeast
Published on: September 26, 2025
Mid-anaphase arrest in S. cerevisiae cells eliminated for the function of Cin8 and dynein
A Gerson-Gurwitz1, N Movshovich, R Avunie
1Department of Chemistry, Ben-Gurion University of the Negev, Beer-Sheva, 84105, Israel.
Abstract:
S. cerevisiae anaphase spindle elongation is accomplished by the overlapping function of dynein and the kinesin-5 motor proteins, Cin8 and Kip1. Cin8 and dynein are synthetically lethal, yet the arrest phenotypes of cells eliminated for their function had not been identified. We found that at a non-permissive temperature, dyn1 Delta cells that carry a temperature-sensitive cin8 - 3 mutation arrest at mid-anaphase with a unique phenotype, which we named TAN (two microtubule asters in one nucleus). These cells enter anaphase, but fail to proceed through the slow phase of anaphase B. At a permissive temperature, dyn1 Delta, cin8 - 3 or dyn1 Delta cin8 - 3 cells exhibit perturbed spindle midzone morphologies, with dyn1Delta cin8 - 3 anaphase spindles also being profoundly bent and nonrigid. Sorbitol, which has been suggested to stabilize microtubules, corrects these defects and suppresses the TAN phenotype. We conclude that dynein and Cin8 cooperate in anaphase midzone organization and influence microtubule dynamics, thus enabling progression through the slow phase of anaphase B.
Insights
Yeast cells lacking dynein (dyn1Δ) and a temperature-sensitive Cin8 (cin8-3) mutation exhibit a unique "two microtubule asters in one nucleus" (TAN) phenotype. Sorbitol suppresses these defects, revealing dynein and Cin8
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- Anaphase spindle elongation in S. cerevisiae relies on dynein and kinesin-5 motors (Cin8, Kip1).
- The synthetic lethality of Cin8 and dynein has precluded identification of combined functional loss phenotypes.
- Understanding motor protein cooperation is crucial for cell division research.
Purpose of the Study:
- To identify and characterize the anaphase arrest phenotype resulting from combined loss of dynein and Cin8 function.
- To investigate the roles of dynein and Cin8 in anaphase spindle organization and microtubule dynamics.
- To explore potential suppressors of combined motor protein defects.
Main Methods:
- Utilizing temperature-sensitive mutations (cin8-3) and gene deletions (dyn1Δ) in S. cerevisiae.
- Microscopy to observe cell cycle progression and spindle morphology at permissive and non-permissive temperatures.
- Phenotypic analysis of cells with combined dynein and Cin8 functional loss.
- Treatment with sorbitol to assess its effect on cellular defects.
Main Results:
- Cells with dyn1Δ and cin8-3 mutations arrest at mid-anaphase with a novel "two microtubule asters in one nucleus" (TAN) phenotype.
- Combined motor protein deficiency leads to perturbed and non-rigid spindle midzone morphologies.
- Sorbitol, a microtubule stabilizer, effectively corrects these spindle defects and suppresses the TAN phenotype.
- The TAN phenotype is characterized by failure to progress through the slow phase of anaphase B.
Conclusions:
- Dynein and Cin8 functionally cooperate in organizing the anaphase midzone in S. cerevisiae.
- These motor proteins significantly influence microtubule dynamics during anaphase B.
- Sorbitol's suppressive effect highlights the importance of microtubule stability in proper spindle function.
- The study elucidates novel insights into the coordinated roles of microtubule motors in cell division.
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