Cho Eun Jeong, Xia Shuangluo, Ma Li-Chung, Robertus Jon, Krug Robert M, Anslyn Eric V, Montelione Gaetano T, Ellington Andrew D
Texas Institute for Drug and Diagnostic Development, University of Texas at Austin, Austin, TX 78712, USA.
J Biomol Screen. 2012 Apr;17(4):448-59. doi: 10.1177/1087057111431488. Epub 2012 Jan 5.
This article describes the development of a simple and robust fluorescence polarization (FP)-based binding assay and adaptation to high-throughput identification of small molecules blocking dsRNA binding to NS1A protein (nonstructural protein 1 from type A influenza strains). This homogeneous assay employs fluorescein-labeled 16-mer dsRNA and full-length NS1A protein tagged with glutathione S-transferase to monitor the changes in FP and fluorescence intensity simultaneously. The assay was optimized for high-throughput screening in a 384-well format and achieved a z' score greater than 0.7. Its feasibility for high-throughput screening was demonstrated using the National Institutes of Health clinical collection. Six of 446 small molecules were identified as possible ligands in an initial screening. A series of validation tests confirmed epigallocatechine gallate (EGCG) to be active in the submicromolar range. A mechanism of EGCG inhibition involving interaction with the dsRNA-binding motif of NS1A, including Arg38, was proposed. This structural information is anticipated to provide a useful basis for the modeling of antiflu therapeutic reagents. Overall, the FP-based binding assay demonstrated its superior capability for simple, rapid, inexpensive, and robust identification of NS1A inhibitors and validation of their activity targeting NS1A.
本文描述了一种基于荧光偏振(FP)的简单且稳健的结合测定法的开发,以及如何将其应用于高通量鉴定小分子,这些小分子可阻断双链RNA(dsRNA)与NS1A蛋白(甲型流感病毒株的非结构蛋白1)的结合。这种均相测定法使用荧光素标记的16聚体dsRNA和带有谷胱甘肽S-转移酶标签的全长NS1A蛋白,以同时监测FP和荧光强度的变化。该测定法针对384孔板形式的高通量筛选进行了优化,z'分数大于0.7。使用美国国立卫生研究院临床收集样本证明了其在高通量筛选中的可行性。在初步筛选中,446个小分子中有6个被鉴定为可能的配体。一系列验证测试证实表没食子儿茶素没食子酸酯(EGCG)在亚微摩尔范围内具有活性。提出了EGCG抑制机制,涉及与NS1A的dsRNA结合基序(包括Arg38)相互作用。预计该结构信息将为抗流感治疗试剂的建模提供有用的基础。总体而言,基于FP的结合测定法展示了其在简单、快速、廉价且稳健地鉴定NS1A抑制剂及其针对NS1A的活性验证方面的卓越能力。