Identification of cellular pathways affected by Sortin2, a synthetic compound that affects protein targeting to the vacuole in Saccharomyces cerevisiae.

Lorena Norambuena, Jan Zouhar, Glenn R Hicks, Natasha V Raikhel
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引用次数: 25

Abstract

Background: Sortin2 is a low mass compound that interferes with vacuolar delivery of proteins in plants and yeast. The Sortin2 phenotype was tested in Arabidopsis thaliana and found to be reversible upon drug removal, demonstrating the ability of chemical genomics to induce reversible phenotypes that would be difficult to achieve using conventional genetics 1. However, standard genetic methods can be used to identify drug target pathways in a high-throughput manner.

Results: In this study, we analyzed structure-function relationships of Sortin2 using structural analogues. The results show the key roles of sulphite substitution and a benzoic acid group. A Sortin 2 hypersensitivity screen for the induced secretion of a vacuolar cargo protein was done utilizing a yeast haploid deletion library. Using bioinformatics approaches, we highlighted functional information about the cellular pathways affected by drug treatment which included protein sorting and other endomembrane system-related processes.

Conclusion: Chemical, genomic and genetics approaches were used to understand the mode of action of Sortin2, a bioactive chemical that affects the delivery of a vacuolar protein. Critical features of Sortin2 structure necessary for bioactivity suggest a binding pocket that may recognize two ends of Sortin2. The genome-wide screen shows that Sortin2 treatment in yeast affects primarily components within the endomembrane system. This approach allowed us to assign putative functions in protein sorting for fifteen genes of previously unknown function.

Abstract Image

Abstract Image

Abstract Image

Sortin2影响的细胞通路的鉴定,Sortin2是一种影响酿酒酵母液泡蛋白靶向的合成化合物。
背景:Sortin2是一种低质量的化合物,可以干扰植物和酵母中蛋白质的液泡传递。Sortin2表型在拟南芥中进行了测试,发现在药物去除后是可逆的,这表明化学基因组学能够诱导传统遗传学难以实现的可逆表型1。然而,标准的遗传方法可用于以高通量的方式识别药物靶标途径。结果:本研究利用结构类似物分析了Sortin2的结构-功能关系。结果表明,亚硫酸盐取代和苯甲酸基团在反应中起关键作用。利用酵母单倍体缺失文库进行了诱导液泡货蛋白分泌的Sortin 2超敏筛选。利用生物信息学方法,我们强调了受药物治疗影响的细胞通路的功能信息,包括蛋白质分选和其他内膜系统相关过程。结论:利用化学、基因组和遗传学的方法来了解Sortin2的作用模式,Sortin2是一种影响液泡蛋白递送的生物活性化学物质。Sortin2结构的关键特征是生物活性所必需的,表明一个结合袋可以识别Sortin2的两端。全基因组筛选显示,Sortin2在酵母中的处理主要影响内膜系统内的成分。这种方法使我们能够在蛋白质分类中为15个以前未知功能的基因分配假定功能。
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