Ho Cheuk Hei, Magtanong Leslie, Barker Sarah L, Gresham David, Nishimura Shinichi, Natarajan Paramasivam, Koh Judice L Y, Porter Justin, Gray Christopher A, Andersen Raymond J, Giaever Guri, Nislow Corey, Andrews Brenda, Botstein David, Graham Todd R, Yoshida Minoru, Boone Charles
Department of Molecular Genetics, University of Toronto, Toronto, Ontario, Canada.
Banting and Best Department of Medical Research, Terrence Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, Toronto, Ontario, Canada.
Nat Biotechnol. 2009 Apr;27(4):369-77. doi: 10.1038/nbt.1534. Epub 2009 Apr 6.
We present a yeast chemical-genomics approach designed to identify genes that when mutated confer drug resistance, thereby providing insight about the modes of action of compounds. We developed a molecular barcoded yeast open reading frame (MoBY-ORF) library in which each gene, controlled by its native promoter and terminator, is cloned into a centromere-based vector along with two unique oligonucleotide barcodes. The MoBY-ORF resource has numerous genetic and chemical-genetic applications, but here we focus on cloning wild-type versions of mutant drug-resistance genes using a complementation strategy and on simultaneously assaying the fitness of all transformants with barcode microarrays. The complementation cloning was validated by mutation detection using whole-genome yeast tiling microarrays, which identified unique polymorphisms associated with a drug-resistant mutant. We used the MoBY-ORF library to identify the genetic basis of several drug-resistant mutants and in this analysis discovered a new class of sterol-binding compounds.
我们提出了一种酵母化学基因组学方法,旨在鉴定突变时赋予耐药性的基因,从而深入了解化合物的作用模式。我们开发了一种分子条形码酵母开放阅读框(MoBY-ORF)文库,其中每个基因在其天然启动子和终止子的控制下,与两个独特的寡核苷酸条形码一起克隆到基于着丝粒的载体中。MoBY-ORF资源有许多遗传和化学遗传应用,但在这里我们专注于使用互补策略克隆突变耐药基因的野生型版本,并同时使用条形码微阵列测定所有转化体适应性。通过使用全基因组酵母平铺微阵列进行突变检测验证了互补克隆,该微阵列鉴定了与耐药突变体相关的独特多态性。我们使用MoBY-ORF文库鉴定了几种耐药突变体的遗传基础,并在此分析中发现了一类新的固醇结合化合物。