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酵母中的化学遗传学和化学基因组学分析。

Chemical genetic and chemogenomic analysis in yeast.

作者信息

Coorey Namal V C, Sampson Liam D P, Barber Jacqueline M, Bellows David S

机构信息

School of Biological Sciences, Victoria University of Wellington, 600, Wellington, 6140, New Zealand.

出版信息

Methods Mol Biol. 2014;1205:169-86. doi: 10.1007/978-1-4939-1363-3_11.

Abstract

Chemogenomics is the systematic genome-wide study of the cellular response to small molecule agents. Modern high-throughput genetic techniques allow massively parallel examination of the genetic effects of such biologically active small molecules (BASM). Here we present methodology for the identification and characterization of potentially bioactive compounds using the budding yeast Saccharomyces cerevisiae as a model organism. First, we present a method for screening libraries of compounds for growth inhibition in solid or liquid phase, followed by techniques for potency determination using a half-log dose response. Then the Deletion Mutant Array (DMA), a genome-wide library of single gene deletion strains, is used to probe the chemical genetic interactions of individual BASMs on genetic networks-a process that can be achieved with a solid phase pinning assay or a pooled liquid assay utilizing barcode microarray techniques. Finally, we offer some considerations for optimizing these protocols.

摘要

化学基因组学是对细胞对小分子试剂反应的全基因组系统研究。现代高通量遗传技术允许对这类生物活性小分子(BASM)的遗传效应进行大规模平行检测。在此,我们介绍以芽殖酵母酿酒酵母作为模式生物来鉴定和表征潜在生物活性化合物的方法。首先,我们介绍一种在固相或液相中筛选化合物文库以检测生长抑制的方法,接着介绍使用半对数剂量反应来测定效力的技术。然后,利用单基因缺失菌株的全基因组文库——缺失突变体阵列(DMA)来探究单个BASM在遗传网络上的化学遗传相互作用,这一过程可以通过固相点印分析或利用条形码微阵列技术的混合液体分析来实现。最后,我们提供一些优化这些方案的注意事项。

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