Kim Hyun Seok, Fay Justin C
Computational Biology Program, Washington University, St. Louis, MO 63108.
Proc Natl Acad Sci U S A. 2007 Dec 4;104(49):19387-91. doi: 10.1073/pnas.0708194104. Epub 2007 Nov 27.
Complex traits are the product of multiple genes with effects that depend on both the genetic and environmental background. Although this complexity makes a comprehensive genetic analysis difficult, identification of even a single gene provides insight into the biochemical and/or signaling pathway underlying a trait. However, it is unknown whether multiple pathways, and consequently multiple genes, must be identified to adequately understand a trait's molecular basis. Using crosses between three natural isolates of Saccharomyces cerevisiae, we mapped sensitivity to a number of pharmacologically active compounds to a single nonsynonymous polymorphism in cystathione-beta-synthase (CYS4), which is required for the first committed step in the cysteine biosynthesis pathway. Drug sensitivity is mediated by a deficiency in cysteine and consequently glutathione production, because drug sensitivity is abrogated by cysteine or glutathione supplementation. Within a diverse panel of 60 natural yeast isolates, the drug-sensitive CYS4 allele is rare, and glutathione supplementation failed to alleviate drug-dependent growth defects in two other drug-sensitive strains. These results implicate the cysteine/glutathione biosynthesis pathway as a significant, but not the sole contributor to pharmacological variation in yeast.
复杂性状是多个基因的产物,其效应取决于遗传和环境背景。尽管这种复杂性使得全面的遗传分析变得困难,但即使鉴定出单个基因也能深入了解性状背后的生化和/或信号通路。然而,尚不清楚是否必须鉴定多个通路以及多个基因才能充分理解性状的分子基础。通过酿酒酵母的三个自然分离株之间的杂交,我们将对多种药理活性化合物的敏感性定位到胱硫醚-β-合酶(CYS4)中的一个非同义多态性上,胱硫醚-β-合酶是半胱氨酸生物合成途径中第一个关键步骤所必需的。药物敏感性是由半胱氨酸缺乏以及由此导致的谷胱甘肽生成不足介导的,因为补充半胱氨酸或谷胱甘肽可消除药物敏感性。在60个天然酵母分离株的不同群体中,药物敏感的CYS4等位基因很罕见,并且补充谷胱甘肽未能缓解另外两个药物敏感菌株中依赖药物的生长缺陷。这些结果表明半胱氨酸/谷胱甘肽生物合成途径是酵母药理变异的一个重要但非唯一的因素。