Seitz Harald, Hutschenreiter Silke, Hultschig Claus, Zeilinger Carsten, Zimmermann Bastian, Kleinjung Frank, Schuchhardt Johannes, Eickhoff Holger, Herberg Friedrich W
Max-Planck Institute for Molecular Genetics, Department of Vertebrate Genomics, Berlin, Germany.
Proteomics. 2006 Oct;6(19):5132-9. doi: 10.1002/pmic.200500181.
A variety of different in vivo and in vitro technologies provide comprehensive insights in protein-protein interaction networks. Here we demonstrate a novel approach to analyze, verify and quantify putative interactions between two members of the S100 protein family and 80 recombinant proteins derived from a proteome-wide protein expression library. Surface plasmon resonance (SPR) using Biacore technology and functional protein microarrays were used as two independent methods to study protein-protein interactions. With this combined approach we were able to detect nine calcium-dependent interactions between Arg-Gly-Ser-(RGS)-His6 tagged proteins derived from the library and GST-tagged S100B and S100A6, respectively. For the protein microarray affinity-purified proteins from the expression library were spotted onto modified glass slides and probed with the S100 proteins. SPR experiments were performed in the same setup and in a vice-versa approach reversing analytes and ligands to determine distinct association and dissociation patterns of each positive interaction. Besides already known interaction partners, several novel binders were found independently with both detection methods, albeit analogous immobilization strategies had to be applied in both assays.
多种不同的体内和体外技术为蛋白质 - 蛋白质相互作用网络提供了全面的见解。在此,我们展示了一种新方法,用于分析、验证和量化S100蛋白家族的两个成员与来自全蛋白质组蛋白表达文库的80种重组蛋白之间的假定相互作用。使用Biacore技术的表面等离子体共振(SPR)和功能蛋白质微阵列作为研究蛋白质 - 蛋白质相互作用的两种独立方法。通过这种组合方法,我们能够分别检测出来自文库的Arg - Gly - Ser -(RGS)- His6标记蛋白与GST标记的S100B和S100A6之间的九种钙依赖性相互作用。对于蛋白质微阵列,将来自表达文库的亲和纯化蛋白点样到修饰的载玻片上,并用S100蛋白进行检测。SPR实验在相同设置下进行,并且采用将分析物和配体颠倒的反向方法来确定每种阳性相互作用的不同结合和解离模式。除了已知的相互作用伙伴外,两种检测方法均独立发现了几种新型结合物,尽管两种测定中都必须应用类似的固定策略。