Yang Peilin, Whelan Rebecca J, Mao Yingwei, Lee Angel W-M, Carter-Su Christin, Kennedy Robert T
Department of Chemistry, University of Michigan, 930 North University, Ann Arbor, Michigan 48109-1055, USA.
Anal Chem. 2007 Feb 15;79(4):1690-5. doi: 10.1021/ac061936e.
High-speed capillary electrophoresis (CE) was employed to detect binding and inhibition of SH2 domain proteins using fluorescently labeled phosphopeptides as affinity probes. Single SH2 protein-phosphopeptide complexes were detected and confirmed by competition and fluorescence anisotropy. The assay was then extended to a multiplexed system involving separation of three SH2 domain proteins: Src, SH2-Bbeta, and Fyn. The selectivity of the separation was improved by altering the charge of the peptide binding partners used, thus demonstrating a convenient way to control resolution for the multiplexed assay. The separation was completed within 6 s, allowing rapidly dissociating complexes to be detected. Two low molecular weight inhibitors were tested for inhibition selectivity and efficacy. One inhibitor interrupted binding interaction of all three proteins, while the other selectively inhibited Src only leaving SH2-Bbeta and Fyn complex barely affected. IC(50) of both selective and nonselective inhibitors were determined and compared for different proteins. The IC(50) of the nonselective inhibitor was 49 +/- 9, 323 +/- 42, and 228 +/- 19 microM (n = 3) for Src, SH2-Bbeta, and Fyn, respectively, indicating different efficacy of the nonselective inhibitor for different SH2 domain protein. It is concluded that high-speed CE has the potential for multiplexed screening of drugs that disrupt protein-protein interactions.
采用高速毛细管电泳(CE),以荧光标记的磷酸肽作为亲和探针,检测SH2结构域蛋白的结合和抑制情况。通过竞争和荧光各向异性检测并确认了单个SH2蛋白 - 磷酸肽复合物。然后将该检测方法扩展到一个多组分系统,该系统涉及三种SH2结构域蛋白的分离:Src、SH2 - Bβ和Fyn。通过改变所用肽结合伴侣的电荷来提高分离的选择性,从而证明了一种控制多组分检测分辨率的便捷方法。分离在6秒内完成,能够检测快速解离的复合物。测试了两种低分子量抑制剂的抑制选择性和效力。一种抑制剂阻断了所有三种蛋白的结合相互作用,而另一种仅选择性抑制Src,对SH2 - Bβ和Fyn复合物几乎没有影响。测定并比较了选择性和非选择性抑制剂对不同蛋白的半数抑制浓度(IC50)。非选择性抑制剂对Src、SH2 - Bβ和Fyn的IC50分别为49±9、323±42和228±19μM(n = 3),表明非选择性抑制剂对不同SH2结构域蛋白的效力不同。得出结论,高速CE具有对破坏蛋白质 - 蛋白质相互作用的药物进行多组分筛选的潜力。