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Merck

A functional variomics tool for discovering drug-resistance genes and drug targets.

Cell reports (2013-02-19)
Zhiwei Huang, Kaifu Chen, Jianhuai Zhang, Yongxiang Li, Hui Wang, Dandan Cui, Jiangwu Tang, Yong Liu, Xiaomin Shi, Wei Li, Dan Liu, Rui Chen, Richard S Sucgang, Xuewen Pan
ABSTRAKT

Comprehensive discovery of genetic mechanisms of drug resistance and identification of in vivo drug targets represent significant challenges. Here we present a functional variomics technology in the model organism Saccharomyces cerevisiae. This tool analyzes numerous genetic variants and effectively tackles both problems simultaneously. Using this tool, we discovered almost all genes that, due to mutations or modest overexpression, confer resistance to rapamycin, cycloheximide, and amphotericin B. Most significant among the resistance genes were drug targets, including multiple targets of a given drug. With amphotericin B, we discovered the highly conserved membrane protein Pmp3 as a potent resistance factor and a possible target. Widespread application of this tool should allow rapid identification of conserved resistance mechanisms and targets of many more compounds. New genes and alleles that confer resistance to other stresses can also be discovered. Similar tools in other systems, such as human cell lines, will also be useful.

MATERIAŁY
Numer produktu
Marka
Opis produktu

Sigma-Aldrich
Rapamycin from Streptomyces hygroscopicus, ≥95% (HPLC), powder
Sigma-Aldrich
Cycloheximide solution, Ready-Made Solution, microbial, 100 mg/mL in DMSO, Suitable for cell culture
Millipore
Cycloheximide solution, 0.1%, suitable for microbiology
Sigma-Aldrich
Cycloheximide, Biotechnology Performance Certified
Sigma-Aldrich
Cycloheximide, ≥95% (HPLC)
Sigma-Aldrich
Cycloheximide, from microbial, ≥94% (TLC)
Supelco
Cycloheximide, PESTANAL®, analytical standard