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基于时变细胞反应谱筛选和鉴定有丝分裂干扰的小分子化合物。

Screening and identification of small molecule compounds perturbing mitosis using time-dependent cellular response profiles.

机构信息

Department of Cell Biology and Assay Development, ACEA Biosciences, San Diego, California 92121, USA.

出版信息

Anal Chem. 2010 Aug 1;82(15):6495-503. doi: 10.1021/ac1007877.

Abstract

Cellular processes such as cell cycle progression, mitosis, apoptosis, and cell migration are characterized by well-defined events that are modulated as a function of time. Measuring these events in the context of time and its perturbation by small molecule compounds and RNAi can provide mechanistic information about cellular pathways being affected. We have used impedance-based time-dependent cell response profiling (TCRP) to measure and characterize cellular responses to antimitotic compounds or siRNAs. Our findings indicate that small molecule perturbation of mitosis leads to unique TCRP. We have further used this unique TCRP signature to screen 119 595 compound library and identified novel antimitotic compounds based on clustering analysis of the TCRPs. Importantly, 113 of the 117 hit compounds in the TCRP antimitotic cluster were confirmed as antimitotic based on independent assays, thus establishing the robust predictive nature of this profiling approach. In addition, potent and novel agents that induce mitotic arrest either by directly interfering with tubulin polymerization or by other mechanisms were identified. The TCRP approach allows for a practical and unbiased phenotypic profiling and screening tool for small molecule and RNAi perturbation of specific cellular pathways and time resolution of the TCRP approach can serve as a complement for other existing multidimensional profiling approaches.

摘要

细胞过程,如细胞周期进程、有丝分裂、细胞凋亡和细胞迁移,其特征是具有明确的事件,这些事件随时间而变化。在时间及其被小分子化合物和 RNAi 干扰的背景下测量这些事件,可以提供关于受影响细胞途径的机制信息。我们已经使用基于阻抗的时间依赖性细胞反应分析(TCRP)来测量和描述细胞对抗有丝分裂化合物或 siRNA 的反应。我们的研究结果表明,有丝分裂的小分子干扰会导致独特的 TCRP。我们进一步利用这种独特的 TCRP 特征,通过对 TCRP 的聚类分析,筛选了 119595 种化合物文库,并根据聚类分析鉴定了新型抗有丝分裂化合物。重要的是,TCRP 抗有丝分裂簇中 117 个命中化合物中的 113 个根据独立实验被证实具有抗有丝分裂活性,从而确立了这种分析方法的强大预测性质。此外,还鉴定出了通过直接干扰微管聚合或通过其他机制诱导有丝分裂阻滞的有效和新型化合物。TCRP 方法为小分子和 RNAi 对特定细胞途径的干扰提供了一种实用的、无偏的表型分析和筛选工具,并且 TCRP 方法的时间分辨率可以作为其他现有多维分析方法的补充。

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