Genetic basis of individual differences in the response to small-molecule drugs in yeast
- 4 March 2007
- journal article
- research article
- Published by Springer Nature in Nature Genetics
- Vol. 39 (4) , 496-502
- https://doi.org/10.1038/ng1991
Abstract
Individual response to small-molecule drugs is variable; a drug that provides a cure for some may confer no therapeutic benefit or trigger an adverse reaction in others. To begin to understand such differences systematically, we treated 104 genotyped segregants from a cross between two yeast strains with a collection of 100 diverse small molecules. We used linkage analysis to identify 124 distinct linkages between genetic markers and response to 83 compounds. The linked markers clustered at eight genomic locations, or quantitative-trait locus 'hotspots', that contain one or more polymorphisms that affect response to multiple small molecules. We also experimentally verified that a deficiency in leucine biosynthesis caused by a deletion of LEU2 underlies sensitivity to niguldipine, which is structurally related to therapeutic calcium channel blockers, and that a natural coding-region polymorphism in the inorganic phosphate transporter PHO84 underlies sensitivity to two polychlorinated phenols that uncouple oxidative phosphorylation. Our results provide a step toward a systematic understanding of small-molecule drug action in genetically distinct individuals.Keywords
This publication has 45 references indexed in Scilit:
- Relationships Between Genetic Polymorphisms and Anticancer Drug Cytotoxicity Vis-à-Vis the NCI-60 PanelPharmacogenomics, 2006
- Identification of gene polymorphisms of human DNA topoisomerase I in the National Cancer Institute panel of human tumour cell linesBritish Journal of Cancer, 2006
- The Yeast Systems Biology Network: mating communitiesCurrent Opinion in Biotechnology, 2005
- Use of CEPH and Non-CEPH Lymphoblast Cell Lines in Pharmacogenetic StudiesPharmacogenomics, 2005
- DNA repair gene polymorphisms affect cytotoxicity in the National Cancer Institute Human Tumour Cell Line Screening PanelBiomarkers, 2005
- Genome-wide discovery of loci influencing chemotherapy cytotoxicityProceedings of the National Academy of Sciences, 2004
- A multivariate analysis of genomic polymorphisms: prediction of clinical outcome to 5-FU/oxaliplatin combination chemotherapy in refractory colorectal cancerBritish Journal of Cancer, 2004
- Heritability and Linkage Analysis of Sensitivity to Cisplatin-Induced CytotoxicityCancer Research, 2004
- Human genetic diseases: a cross-talk between man and yeastGene, 1997
- An Information-Intensive Approach to the Molecular Pharmacology of CancerScience, 1997