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Updated: Jun 9, 2026

Genetic Screen for Identification of Multicopy Suppressors in Schizosaccharomyces pombe
Published on: September 13, 2022
A genetic screen for replication initiation defective (rid) mutants in Schizosaccharomyces pombe
Alexandra M Locovei1, Ling Yin, Gennaro D'Urso
1Department of Molecular and Cellular Phamacology, University of Miami School of Medicine PO Box 016189, Miami, FL 33140, USA. gdurso@miami.edu.
Abstract:
In fission yeast the intra-S phase and DNA damage checkpoints are activated in response to inhibition of DNA replication or DNA damage, respectively. The intra-S phase checkpoint responds to stalled replication forks leading to the activation of the Cds1 kinase that both delays cell cycle progression and stabilizes DNA replication forks. The DNA damage checkpoint, that operates during the G2 phase of the cell cycle delays mitotic progression through activation of the checkpoint kinase, Chk1. Delay of the cell cycle is believed to be essential to allow time for either replication restart (in S phase) or DNA damage repair (in G2). Previously, our laboratory showed that fission yeast cells deleted for the N-terminal half of DNA polymerase ε (Cdc20) are delayed in S phase, but surprisingly require Chk1 rather than Cds1 to maintain cell viability. Several additional DNA replication mutants were then tested for their dependency on Chk1 or Cds1 when grown under semi-permissive temperatures. We discovered that mutants defective in DNA replication initiation are sensitive only to loss of Chk1, whilst mutations that inhibit DNA replication elongation are sensitive to loss of both Cds1 and Chk1. To confirm that the Chk1-sensitive, Cds1-insensitive phenotype (rid phenotype) is specific to mutants defective in DNA replication initiation, we completed a genetic screen for cell cycle mutants that require Chk1, but not Cds1 to maintain cell viability when grown at semi-permissive temperatures. Our screen identified two mutants, rid1-1 and rid2-1, that are defective in Orc1 and Mcm4, respectively. Both mutants show defects in DNA replication initiation consistent with our hypothesis that the rid phenotype is replication initiation specific. In the case of Mcm4, the mutation has been mapped to a highly conserved region of the protein that appears to be required for DNA replication initiation, but not elongation. Therefore, we conclude that the cellular response to inhibition of DNA replication initiation is distinct from blocking DNA replication elongation, and this difference can be exploited to identify mutants specifically defective in DNA replication initiation.
Insights
Fission yeast DNA replication initiation mutants require the Chk1 kinase for viability, unlike elongation mutants. This discovery helps identify specific replication initiation defects using the rid phenotype.
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- Fission yeast employs intra-S phase and DNA damage checkpoints to manage DNA replication stress and damage.
- The intra-S phase checkpoint activates Cds1 kinase for stalled replication forks, while the G2 DNA damage checkpoint activates Chk1 kinase for DNA repair.
- Cell cycle delays are crucial for replication restart or DNA repair.
Purpose of the Study:
- To investigate the distinct roles of Chk1 and Cds1 kinases in fission yeast cell cycle checkpoints.
- To differentiate cellular responses to inhibited DNA replication initiation versus elongation.
- To identify specific genetic mutants defective in DNA replication initiation.
Main Methods:
- Genetic analysis of fission yeast mutants affecting DNA replication.
- Testing mutant viability and checkpoint kinase dependency (Chk1 and Cds1) at semi-permissive temperatures.
- Genetic screening for Chk1-dependent, Cds1-independent cell cycle mutants (rid phenotype).
Main Results:
- Mutants defective in DNA replication initiation are sensitive to Chk1 loss, while elongation mutants require both Chk1 and Cds1.
- A genetic screen identified rid1-1 (Orc1) and rid2-1 (Mcm4) mutants with defects in DNA replication initiation.
- A mutation in Mcm4 affecting a conserved initiation region confirmed the replication initiation-specific phenotype.
Conclusions:
- The cellular response to inhibited DNA replication initiation is distinct from that of replication elongation.
- The rid phenotype (Chk1-sensitive, Cds1-insensitive) specifically identifies defects in DNA replication initiation.
- This study provides a method to distinguish and identify mutants with specific defects in DNA replication initiation.
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