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开发一种基于细胞的高通量报告基因检测方法以鉴定肿瘤抑制因子Pdcd4的稳定剂。

Development of a high-throughput cell-based reporter assay to identify stabilizers of tumor suppressor Pdcd4.

作者信息

Blees Johanna S, Schmid Tobias, Thomas Cheryl L, Baker Alyson R, Benson Lauren, Evans Jason R, Goncharova Ekaterina I, Colburn Nancy H, McMahon James B, Henrich Curtis J

机构信息

Institute of Biochemistry I, Goethe-University Frankfurt am Main, Frankfurt, Germany.

出版信息

J Biomol Screen. 2010 Jan;15(1):21-9. doi: 10.1177/1087057109351028. Epub 2009 Nov 9.

Abstract

The novel tumor suppressor Pdcd4 affects tumorigenesis by inhibiting translation. Pdcd4 is phosphorylated and subsequently lost by proteasomal degradation in response to tumor-promoting conditions. Here, the authors describe the development of a reporter cell system to monitor the stability of Pdcd4. The phosphorylation-dependent degradation domain ("target") or an adjacent ("off-target") region of Pdcd4 was cloned into a luciferase expression system. The target constructs were responsive to Pdcd4 degrading conditions (e.g., TPA, p70(S6K1) overactivation), whereas the off-target constructs remained stable. The system was optimized for and shown to be reliable in a high-throughput compatible 384-well format. Screening of 15,275 pure compounds resulted in a hit rate of 0.30% (>50% inhibition of TPA-induced loss of signal, confirmed by reassay). Among the hits were inhibitors of previously identified critical signaling events for TPA-induced Pdcd4 degradation. One compound was identified to be nonspecific using the off-target control cell line. Screening of 135,678 natural product extracts yielded 42 confirmed, specific hits. Z' averaged 0.58 across 446 plates. Further characterization of active natural products and synthetic compounds is expected to identify novel Pdcd4 stabilizers that may be useful in targeting translation to prevent or treat cancers.

摘要

新型肿瘤抑制因子Pdcd4通过抑制翻译来影响肿瘤发生。在肿瘤促进条件下,Pdcd4会发生磷酸化,随后通过蛋白酶体降解而丧失。在此,作者描述了一种用于监测Pdcd4稳定性的报告细胞系统的开发。将Pdcd4的磷酸化依赖性降解结构域(“靶标”)或相邻(“非靶标”)区域克隆到荧光素酶表达系统中。靶标构建体对Pdcd4降解条件(如佛波酯、p70核糖体蛋白S6激酶1过度激活)有反应,而非靶标构建体则保持稳定。该系统针对高通量兼容的384孔板形式进行了优化,并显示出可靠。对15275种纯化合物进行筛选,命中率为0.30%(>50%抑制佛波酯诱导的信号丧失,经复测确认)。命中的化合物中有先前确定的佛波酯诱导的Pdcd4降解关键信号事件的抑制剂。使用非靶标对照细胞系鉴定出一种化合物是非特异性的。对135678种天然产物提取物进行筛选,得到42种经确认的特异性命中物。在446个平板上,Z'平均值为0.58。对活性天然产物和合成化合物的进一步表征有望鉴定出新型Pdcd4稳定剂,这些稳定剂可能有助于靶向翻译以预防或治疗癌症。

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