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Using canavanine resistance to measure mutation rates in Schizosaccharomyces pombe
by
Humphrey, Timothy C.
, Kearsey, Stephen E.
, Heitzer, Ellen
, Toumazou, Sophia
, Bertrand, Sibyl
, Pai, Chen-Chun
in
Acid resistance
/ Adenine
/ Amino acids
/ Analysis
/ Arginine - metabolism
/ Arrestin
/ Arrestins - metabolism
/ Biology and Life Sciences
/ Canavanine
/ Canavanine - metabolism
/ Canavanine - pharmacology
/ Cloning
/ Deactivation
/ Deoxyribonucleic acid
/ DNA
/ DNA polymerase
/ DNA-directed DNA polymerase
/ Evaluation
/ Fungi
/ Gene mutations
/ Gene sequencing
/ Genes
/ Genetic aspects
/ Genomes
/ Inactivation
/ Medicine and Health Sciences
/ Mutation
/ Mutation Rate
/ Mutation rates
/ Phenotypes
/ Proteins
/ Prototrophy
/ Research and Analysis Methods
/ Resistant mutant
/ Reversion
/ Schizosaccharomyces - genetics
/ Schizosaccharomyces - metabolism
/ Schizosaccharomyces pombe Proteins - metabolism
/ Ubiquitin
/ Whole genome sequencing
/ Yeast
2023
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Using canavanine resistance to measure mutation rates in Schizosaccharomyces pombe
by
Humphrey, Timothy C.
, Kearsey, Stephen E.
, Heitzer, Ellen
, Toumazou, Sophia
, Bertrand, Sibyl
, Pai, Chen-Chun
in
Acid resistance
/ Adenine
/ Amino acids
/ Analysis
/ Arginine - metabolism
/ Arrestin
/ Arrestins - metabolism
/ Biology and Life Sciences
/ Canavanine
/ Canavanine - metabolism
/ Canavanine - pharmacology
/ Cloning
/ Deactivation
/ Deoxyribonucleic acid
/ DNA
/ DNA polymerase
/ DNA-directed DNA polymerase
/ Evaluation
/ Fungi
/ Gene mutations
/ Gene sequencing
/ Genes
/ Genetic aspects
/ Genomes
/ Inactivation
/ Medicine and Health Sciences
/ Mutation
/ Mutation Rate
/ Mutation rates
/ Phenotypes
/ Proteins
/ Prototrophy
/ Research and Analysis Methods
/ Resistant mutant
/ Reversion
/ Schizosaccharomyces - genetics
/ Schizosaccharomyces - metabolism
/ Schizosaccharomyces pombe Proteins - metabolism
/ Ubiquitin
/ Whole genome sequencing
/ Yeast
2023
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Using canavanine resistance to measure mutation rates in Schizosaccharomyces pombe
by
Humphrey, Timothy C.
, Kearsey, Stephen E.
, Heitzer, Ellen
, Toumazou, Sophia
, Bertrand, Sibyl
, Pai, Chen-Chun
in
Acid resistance
/ Adenine
/ Amino acids
/ Analysis
/ Arginine - metabolism
/ Arrestin
/ Arrestins - metabolism
/ Biology and Life Sciences
/ Canavanine
/ Canavanine - metabolism
/ Canavanine - pharmacology
/ Cloning
/ Deactivation
/ Deoxyribonucleic acid
/ DNA
/ DNA polymerase
/ DNA-directed DNA polymerase
/ Evaluation
/ Fungi
/ Gene mutations
/ Gene sequencing
/ Genes
/ Genetic aspects
/ Genomes
/ Inactivation
/ Medicine and Health Sciences
/ Mutation
/ Mutation Rate
/ Mutation rates
/ Phenotypes
/ Proteins
/ Prototrophy
/ Research and Analysis Methods
/ Resistant mutant
/ Reversion
/ Schizosaccharomyces - genetics
/ Schizosaccharomyces - metabolism
/ Schizosaccharomyces pombe Proteins - metabolism
/ Ubiquitin
/ Whole genome sequencing
/ Yeast
2023
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Using canavanine resistance to measure mutation rates in Schizosaccharomyces pombe
Journal Article
Using canavanine resistance to measure mutation rates in Schizosaccharomyces pombe
2023
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Overview
We constructed a panel of S . pombe strains expressing DNA polymerase ε variants associated with cancer, specifically POLES297F, POLEV411L, POLEL424V, POLES459F, and used these to compare mutation rates determined by canavanine resistance with other selective methods. Canavanine-resistance mutation rates are broadly similar to those seen with reversion of the ade-485 mutation to adenine prototrophy, but lower than 5-fluoroorotic acid (FOA)-resistance rates (inactivation of ura4 + or ura5 + genes). Inactivation of several genes has been associated with canavanine resistance in S . pombe but surprisingly whole genome sequencing showed that 8/8 spontaneous canavanine-resistant mutants have an R175C mutation in the any1/arn1 gene. This gene encodes an α-arrestin-like protein involved in mediating Pub1 ubiquitylation of target proteins, and the phenotypic resistance to canavanine by this single mutation is similar to that shown by the original “ can1-1 ” strain, which also has the any1R175C mutation. Some of the spontaneous mutants have additional mutations in arginine transporters, suggesting that this may marginally increase resistance to canavanine. The any1R175C strain showed internalisation of the Cat1 arginine transporter as previously reported, explaining the canavanine-resistance phenotype.
Publisher
Public Library of Science,Public Library of Science (PLoS)
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