Chemical genomics: probing protein function using small molecules.

Bridget K Wagner, Stephen J Haggarty, Paul A Clemons
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引用次数: 5

Abstract

Chemical genomics is concerned with the effects of both genetic variation and chemical perturbation on the cellular effects of small molecules. Chemical genomics relies on selecting biological networks for study, such as those represented by different cell types or disease models, in order to build the desired specificity into the experimental design. The most relevant network property for such experiments is the global connectivity of all cellular proteins comprising the functional ensemble, as illustrated by case studies of the evolution of cyclooxygenase inhibitors and heat-shock protein modulators. Recent examples of chemical genomic profiling, particularly of different cell types, highlight the power of carefully planned experimental approaches in chemical genomics. These new approaches demonstrate the use of the genome to find new targets or new modes of biological interaction.

化学基因组学:利用小分子探测蛋白质功能。
化学基因组学关注的是遗传变异和化学扰动对小分子细胞效应的影响。化学基因组学依赖于选择用于研究的生物网络,例如由不同细胞类型或疾病模型代表的生物网络,以便在实验设计中建立所需的特异性。此类实验最相关的网络特性是所有细胞蛋白质组成功能集合的全局连通性,如环氧化酶抑制剂和热休克蛋白调节剂进化的案例研究所示。最近的化学基因组图谱的例子,特别是不同细胞类型的,突出了化学基因组学中精心策划的实验方法的力量。这些新方法展示了基因组在寻找生物相互作用的新靶点或新模式方面的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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