Bioinformatics and Molecular Genetics, ZBMZ, Institute for Biology, ZBSA-Center for Systems Biology, Albert-Ludwigs-Universitaet Freiburg, 79104 Freiburg, Germany.
Nucleic Acids Res. 2010 Apr;38(6):e91. doi: 10.1093/nar/gkp1178. Epub 2010 Jan 4.
Systematic tandem-affinity-purification (TAP) of protein complexes was tremendously successful in yeast and has changed the general concept of how we understand protein function in eukaryotic cells. The transfer of this method to other model organisms has been difficult and may require specific adaptations. We were especially interested to establish a cell-type-specific TAP system for Caenorhabditis elegans, a model animal well suited to high-throughput analysis, proteomics and systems biology. By combining the high-affinity interaction between in vivo biotinylated target-proteins and streptavidin with the usage of a newly identified epitope of the publicly shared SB1 monoclonal antibody we created a novel in vivo fluorescent tag, the SnAvi-Tag. We show the versatile application of the SnAvi-Tag in Escherichia coli, vertebrate cells and in C. elegans for tandem affinity purification of protein complexes, western blotting and also for the in vivo sub-cellular localization of labelled proteins.
系统串联亲和纯化(TAP)在酵母中取得了巨大成功,改变了我们理解真核细胞中蛋白质功能的一般概念。将这种方法转移到其他模式生物中一直很困难,可能需要特定的适应性改变。我们特别有兴趣为秀丽隐杆线虫建立一种细胞类型特异性的 TAP 系统,这是一种非常适合高通量分析、蛋白质组学和系统生物学的模式动物。通过将体内生物素化靶蛋白与链霉亲和素之间的高亲和力相互作用与新鉴定的公共共享 SB1 单克隆抗体的一个表位结合起来,我们创建了一种新的体内荧光标记物,即 SnAvi-Tag。我们展示了 SnAvi-Tag 在大肠杆菌、脊椎动物细胞和秀丽隐杆线虫中的多功能应用,用于蛋白质复合物的串联亲和纯化、western blot 分析,以及标记蛋白的体内亚细胞定位。