首页> 外文期刊>Journal of the American Chemical Society >A Coiled-Coil Enabled Split-Luciferase Three-Hybrid System: Applied Toward Profiling Inhibitors of Protein Kinases
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A Coiled-Coil Enabled Split-Luciferase Three-Hybrid System: Applied Toward Profiling Inhibitors of Protein Kinases

机译:盘绕启用的拆分萤光素酶三杂化系统:应用于蛋白激酶的分析抑制剂。

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The 518 protein kinases encoded in the human genome are exquisitely regulated and their aberrant function(s) are often associated with human disease. Thus, in order to advance therapeutics and to probe signal transduction cascades, there is considerable interest in the development of inhibitors that can selectively target protein kinases. However, identifying specific compounds against such a large array of protein kinases is difficult to routinely achieve utilizing traditional activity assays, where purified protein kinases are necessary. Toward a simple, rapid, and practical method for identifying specific inhibitors, we describe the development and application of a split-protein methodology utilizing a coiled-coil-assisted three-hybrid system. In this approach, a protein kinase of interest is attached to the C-terminal fragment of split-firefly luciferase and the coiled-coil Fos, which is specific for the coiled-coil Jun, is attached to the N-terminal fragment. Upon addition of Jun conjugated to a pan-kinase inhibitor such as staurosporine, a three-hybrid complex is established with concomitant reassembly of the split-luciferase enzyme. An inhibitor can be potentially identified by the commensurate loss in split-luciferase activity by displacement of the modified staurosporine. We demonstrate that this new three-hybrid approach is potentially general by testing protein kinases from the different kinase families. To interrogate whether this method allows for screening inhibitors, we tested six different protein kinases against a library of 80 known protein kinase inhibitors. Finally, we demonstrate that this three-hybrid system can potentially provide a rapid method for structure/function analysis as well as aid in the identification of allosteric inhibitors.
机译:人类基因组中编码的518种蛋白激酶受到严格调节,其异常功能通常与人类疾病有关。因此,为了促进治疗和探测信号转导级联,人们对开发可以选择性地靶向蛋白激酶的抑制剂非常感兴趣。然而,利用传统的活性测定方法很难常规地鉴定针对如此众多的蛋白激酶的特定化合物,而传统的活性测定法则需要纯化的蛋白激酶。为了找到一种简单,快速和实用的方法来鉴定特定的抑制剂,我们描述了利用卷曲螺旋辅助三杂化系统的分裂蛋白方法的开发和应用。在这种方法中,目标蛋白激酶附着在萤火虫萤光素酶的C末端片段上,而对卷曲螺旋Jun特异的卷曲螺旋Fos则附着在N末端片段上。加入缀合至泛激酶抑制剂(例如星形孢菌素)的Jun后,伴随着分裂荧光素酶的重组,建立了三杂交复合物。通过置换修饰的星形孢菌素,分裂荧光素酶活性相应损失,可以潜在地鉴定抑制剂。通过测试来自不同激酶家族的蛋白激酶,我们证明了这种新的三杂交方法可能是通用的。为了询问该方法是否允许筛选抑制剂,我们针对80种已知蛋白激酶抑制剂库测试了6种不同的蛋白激酶。最后,我们证明了这种三杂化系统可以为结构/功能分析提供快速方法,并有助于识别变构抑制剂。

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