Title of article
16 Analyzing Fission Yeast Multidrug Resistance Mechanisms to Develop a Genetically Tractable Model System for Chemical Biology Original Research Article Pages 893-901 Shigehiro A. Kawashima, Ai Takemoto, Paul Nurse, Tarun M. Kapoor Close preview |
Author/Authors
Shigehiro A. Kawashima، نويسنده , , Ai Takemoto، نويسنده , , Paul Nurse، نويسنده , , Tarun M. Kapoor، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2012
Pages
9
From page
893
To page
901
Abstract
Chemical inhibitors can help analyze dynamic cellular processes, particularly when probes are active in genetically tractable model systems. Although fission yeast has served as an important model system, which shares more cellular processes (e.g., RNAi) with humans than budding yeast, its use for chemical biology has been limited by its multidrug resistance (MDR) response. Using genomics and genetics approaches, we identified the key transcription factors and drug-efflux transporters responsible for fission yeast MDR and designed strains sensitive to a wide-range of chemical inhibitors, including commonly used probes. We used this strain, along with acute chemical inhibition and high-resolution imaging, to examine metaphase spindle organization in a “closed” mitosis. Together, our findings suggest that our fission yeast strains will allow the use of several inhibitors as probes, discovery of new inhibitors, and analysis of drug action.
Journal title
Chemistry and Biology
Serial Year
2012
Journal title
Chemistry and Biology
Record number
1160276
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