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Updated: Aug 12, 2026

Aip1p Dynamics Are Altered by the R256H Mutation in Actin
Published on: July 30, 2014
Identification of cold-sensitive mutations in the Schizosaccharomyces pombe actin locus
D McCollum1, M Balasubramanian, K Gould
1University of Massachusetts Medical Center, Department of Molecular Biology, Worcester 01605, USA. dannel.mccollum@ummed.edu
Abstract:
In recent years, the actin cytoskeleton in Schizosaccharomyces pombe has become the subject of intense scrutiny. However, to date, only a single actin mutation has been identified. Described here is the isolation and characterization of four new cold-sensitive actin mutations. Sequence analysis of the mutant actin genes indicated that each of these mutations caused alterations in single amino acids that are conserved in all actin sequences. These mutants differ in their phenotypes. One of these mutations (act1-48) was identified as an extragenic suppressor of a mutation in the cdc4 gene, which is required for actin ring formation and cytokinesis. Interestingly, when act1-48 mutant cells were shifted to the restrictive temperature, actin patches were not detected but the actin ring formation and stability was unaffected. The three other mutations, act1-16, act1-32 and act1-67, primarily affected the actin ring formation or stability while F-actin patches did not seem to be substantially different in appearance. Given that the ultrastructural architectures of F-actin patches and the F-actin ring are presently unclear, these mutations, which affect one structure or the other, should be useful for future studies on the role of actin itself in the function of these F-actin-containing structures in S. pombe.
Insights
Researchers identified four new cold-sensitive actin mutations in Schizosaccharomyces pombe. These mutations provide new tools to study the distinct roles of actin in cell structures like patches and the ring.
Area of Science:
- Cell Biology
- Genetics
- Biochemistry
Background:
- The actin cytoskeleton is crucial for various cellular processes.
- In Schizosaccharomyces pombe, understanding actin's role is limited due to few identified mutations.
Purpose of the Study:
- To isolate and characterize new cold-sensitive actin mutations in S. pombe.
- To investigate the specific functions of actin in different cellular structures.
Main Methods:
- Isolation and characterization of cold-sensitive actin mutants.
- Sequence analysis of mutant actin genes.
- Phenotypic analysis of mutant cells under restrictive conditions.
Main Results:
- Four new actin mutations (act1-16, act1-32, act1-48, act1-67) were identified, each altering conserved amino acids.
- act1-48 suppressed a cdc4 mutation, affecting actin patches but not the actin ring.
- The other three mutations primarily impacted actin ring formation or stability.
Conclusions:
- These mutations differentially affect actin structures, aiding research into actin's role in S. pombe.
- The identified mutants are valuable tools for dissecting the functions of F-actin patches and the actin ring.
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