Carlson Coby B, Robers Matthew B, Vogel Kurt W, Machleidt Thomas
Invitrogen Discovery Sciences, Madison, Wisconsin 53719, USA.
J Biomol Screen. 2009 Feb;14(2):121-32. doi: 10.1177/1087057108328132. Epub 2009 Feb 4.
The PI3K/AKT/mTOR pathway is central to cell growth and survival, cell cycle regulation, and programmed cell death. Aberrant activation of this signaling cascade is linked to several disease states, and thus many components of the pathway are attractive targets for therapeutic intervention. However, the considerable degree of complexity, crosstalk, and feedback regulation that exists within the pathway (especially with respect to the regulation of mTOR and its complexes) underscores the need for a comprehensive set of cell-based assays to properly identify and characterize small-molecule modulators. Here, the development and application of time-resolved Förster resonance energy transfer (TR-FRET)-based assays to enable the phosphoprotein analysis of key pathway components in a cellular format are reported. The LanthaScreen cellular assay platform uses FRET between a terbium-labeled phosphorylation site-specific antibody and an expressed green fluorescent protein fusion of particular kinase substrate and provides an assay readout that is ratiometric, robust, and amenable to high-throughput screening applications. Assays specific for 5 different targets within the pathway are highlighted: Ser183 and Thr246 on the proline-rich AKT substrate 40 kDa (PRAS40), Ser457 on programmed cell death protein 4 (PDCD4), and Thr308 and Ser473 on AKT. Each assay was evaluated under various experimental conditions and individually optimized for performance. Known pathway agonists and a small panel of commercially available compounds were also used to complete the assay validation. Taken together, these data demonstrate the utility of a related set of cell-based assays to interrogate PI3K/AKT/mTOR signaling and provide a template for the development of similar assays for other targets.
PI3K/AKT/mTOR信号通路对于细胞生长与存活、细胞周期调控以及程序性细胞死亡至关重要。该信号级联的异常激活与多种疾病状态相关,因此该通路的许多组分都是具有吸引力的治疗干预靶点。然而,该通路中存在相当程度的复杂性、串扰和反馈调节(尤其是关于mTOR及其复合物的调节),这突出表明需要一套全面的基于细胞的检测方法来正确识别和表征小分子调节剂。在此,报告了基于时间分辨荧光共振能量转移(TR-FRET)的检测方法的开发与应用,以实现细胞形式下关键通路组分的磷酸化蛋白分析。LanthaScreen细胞检测平台利用铽标记的磷酸化位点特异性抗体与特定激酶底物的表达绿色荧光蛋白融合体之间的FRET,并提供一种具有比例性、稳健且适用于高通量筛选应用的检测读数。重点介绍了针对该通路中5个不同靶点的检测方法:富含脯氨酸的AKT底物40 kDa(PRAS40)上的Ser183和Thr246、程序性细胞死亡蛋白4(PDCD4)上的Ser457以及AKT上的Thr308和Ser473。每种检测方法都在各种实验条件下进行了评估,并针对性能进行了单独优化。还使用已知的通路激动剂和一小批市售化合物来完成检测验证。综上所述,这些数据证明了一组相关的基于细胞的检测方法在探究PI3K/AKT/mTOR信号传导方面的实用性,并为开发针对其他靶点的类似检测方法提供了模板。