首页> 外文期刊>Current Medicinal Chemistry >A Chemical Genetics Approach for the Discovery of Apoptosis Inducers:From Phenotypic Cell Based HTS Assay and Structure-Activity Relationship Studies, to Identification of Potential Anticancer Agents and Molecular Targets.
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A Chemical Genetics Approach for the Discovery of Apoptosis Inducers:From Phenotypic Cell Based HTS Assay and Structure-Activity Relationship Studies, to Identification of Potential Anticancer Agents and Molecular Targets.

机译:发现细胞凋亡诱导物的化学遗传学方法:从基于表型细胞的HTS分析和结构-活性关系研究,到潜在的抗癌药和分子靶标的鉴定。

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The approach of chemical genetics has been widely used to study biological systems and to discover new drugs, signaling pathways and targets. The current review focuses on the development and utilization of a cell- and caspase-based apoptosis induction assay for the discovery of apoptosis inducers. We began with the development of a cell based phenotypic assay, which was used for the identification of small molecules that exhibit apoptosis inducing activities, including N-phenyl nicotinamides, gambogic acid, indole-2-carboxylic acid benzylidene-hydrazides, 4-aryl-4H-chromenes and 3-aryl-5-aryl-1,2,4-oxadiazoles. Through medicinal chemistry and biological studies, in vivo active compounds were identified, such as MX116407 as a tumor vascular disrupting agent with potent in vivo anticancer activity. The molecular targets of in vivo active compounds were identified using reagents designed and synthesized based on the SAR, including the identification of tail-interacting protein 47 (TIP47), an insulin-like growth factor II (IGF II) receptor binding protein, as the molecular target of 3-aryl-5-aryl-1,2,4-oxadiazoles; and Transferrin receptor I (TfR), a transmembrane protein that interacts with transferrin (Tf) for the transport of iron into cells, as the molecular target of gambogic acid. We demonstrated that chemical genetics is a very useful approach for anticancer drug research, from the discovery of potential drugs, to the understanding of signaling pathways and identification of druggable targets.
机译:化学遗传学的方法已被广泛用于研究生物系统和发现新药,信号通路和靶标。目前的审查集中在开发和利用基于细胞和胱天蛋白酶的凋亡诱导测定法,以发现凋亡诱导剂。我们从基于细胞的表型测定法的开发开始,该测定法用于鉴定具有凋亡诱导活性的小分子,包括N-苯基烟酰胺,藤黄酸,吲哚-2-羧酸苄叉酰肼,4-芳基- 4H-色烯和3-芳基-5-芳基-1,2,4-恶二唑。通过药物化学和生物学研究,鉴定了体内活性化合物,例如MX116407,它是具有有效体内抗癌活性的肿瘤血管破坏剂。使用基于SAR设计和合成的试剂鉴定了体内活性化合物的分子靶标,包括鉴定了胰岛素样生长因子II(IGF II)受体结合蛋白尾巴相互作用蛋白47(TIP47)作为3-芳基-5-芳基-1,2,4-恶二唑的分子靶标;转铁蛋白受体I(TfR),一种跨膜蛋白,与转铁蛋白(Tf)相互作用,可将铁转运到细胞中,成为藤黄酸的分子靶标。我们证明了化学遗传学是从发现潜在药物到理解信号传导途径和确定可靶向药物靶点的一种非常有用的方法,用于抗癌药物研究。

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