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酵母中对小分子药物反应个体差异的遗传基础。

Genetic basis of individual differences in the response to small-molecule drugs in yeast.

作者信息

Perlstein Ethan O, Ruderfer Douglas M, Roberts David C, Schreiber Stuart L, Kruglyak Leonid

机构信息

Howard Hughes Medical Institute, Broad Institute of Harvard and MIT, 7 Cambridge Center, Cambridge, Massachusetts 02142, USA.

出版信息

Nat Genet. 2007 Apr;39(4):496-502. doi: 10.1038/ng1991. Epub 2007 Mar 4.

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.

摘要

个体对小分子药物的反应存在差异;一种能治愈某些人的药物可能对其他人没有治疗效果,或者引发不良反应。为了开始系统地理解这些差异,我们用100种不同的小分子药物处理了来自两个酵母菌株杂交的104个基因分型分离株。我们使用连锁分析来确定遗传标记与对83种化合物的反应之间的124种不同连锁关系。连锁标记聚集在八个基因组位置,即数量性状基因座“热点”,这些位置包含一个或多个影响对多种小分子反应的多态性。我们还通过实验验证了,LEU2缺失导致的亮氨酸生物合成缺陷是对尼群地平敏感的基础,尼群地平在结构上与治疗性钙通道阻滞剂相关;无机磷酸盐转运体PHO84中的一个天然编码区多态性是对两种解偶联氧化磷酸化的多氯酚敏感的基础。我们的研究结果朝着系统理解基因不同个体中小分子药物作用迈出了一步。

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