Martiny-Baron Georg, Haasen Dorothea, D'Dorazio Daniel, Voshol Johannes, Fabbro Doriano
Center for Proteomic Chemistry, Novartis Pharma AG, Basel, Switzerland.
Methods Mol Biol. 2011;785:79-107. doi: 10.1007/978-1-61779-286-1_7.
Using the reverse protein array platform in combination with planar waveguide technology, which allows detection of proteins in spotted cell lysates with high sensitivity in a 96-well microtiter-plate format for growing, treating, and lysing cells was shown to be suitable for this approach and indicates the usefulness of the technology as a screening tool for characterization of large numbers of kinase inhibitors. In this study, we have used reverse protein arrays to profile kinase inhibitors in various cellular pathways in order to unravel their MoA. Multiplexing and simultaneous analysis of several phospho-proteins within the same lysate allows (1) the estimation of inhibitor concentrations needed to shut down an entire pathway, (2) the estimation of inhibitor selectivity, and (3) the comparison of inhibitors of different kinases within one assay. For example, parallel analysis of p-InsR, p-PKB, p-GSK-3, p-MEK, p-ERK, and p-S6rp in insulin treated A14 cells allows profiling for inhibitors of the InsR, PI3K, PKB, mTor, RAF, and MEK. Selective kinase inhibitors revealed different specific inhibitory pattern of the analyzed phospho-read outs. Altogether, multiplexed analysis of reverse (phase) protein arrays is a powerful tool to characterize kinase inhibitors in a semi-automated low to medium throughput assay format.
使用反向蛋白质阵列平台结合平面波导技术,该技术能够在96孔微量滴定板中以高灵敏度检测斑点细胞裂解物中的蛋白质,用于细胞培养、处理和裂解,结果表明该方法适用于此,并且表明该技术作为大量激酶抑制剂表征的筛选工具是有用的。在本研究中,我们使用反向蛋白质阵列来分析各种细胞途径中的激酶抑制剂,以阐明其作用机制。在同一裂解物中对几种磷酸化蛋白质进行多重和同步分析能够:(1)估计关闭整个途径所需的抑制剂浓度;(2)估计抑制剂的选择性;(3)在一次测定中比较不同激酶的抑制剂。例如,在胰岛素处理的A14细胞中对p-InsR、p-PKB、p-GSK-3、p-MEK、p-ERK和p-S6rp进行平行分析,能够分析InsR、PI3K、PKB、mTor、RAF和MEK的抑制剂。选择性激酶抑制剂显示出所分析的磷酸化读数的不同特异性抑制模式。总之,反向(相)蛋白质阵列的多重分析是以半自动低至中等通量测定形式表征激酶抑制剂的强大工具。