Gloeckner Christian Johannes, Boldt Karsten, Schumacher Annette, Roepman Ronald, Ueffing Marius
Institute of Human Genetics, GSF-National Research Center for Environment and Health, Neuherberg, Germany.
Proteomics. 2007 Dec;7(23):4228-34. doi: 10.1002/pmic.200700038.
Isolation and dissection of native multiprotein complexes is a central theme in functional genomics. The development of the tandem affinity purification (TAP) tag has enabled an efficient and large-scale purification of native protein complexes. However, the TAP tag features a size of 21 kDa and requires time consuming cleavage. By combining a tandem Strep-tag II with a FLAG-tag we were able to reduce the size of the TAP (SF-TAP) tag to 4.6 kDa. Both moieties have a medium affinity and avidity to their immobilised binding partners. This allows the elution of SF-tagged proteins under native conditions using desthiobiotin in the first step and the FLAG octapeptide in the second step. The SF-TAP protocol represents an efficient, fast and straightforward purification of protein complexes from mammalian cells within 2.5 h. The power of this novel method is demonstrated by the purification of Raf associated protein complexes from HEK293 cells and subsequent analysis of their protein interaction network by dissection of interaction patterns from the Raf binding partners MEK1 and 14-3-3.
天然多蛋白复合物的分离和剖析是功能基因组学的核心主题。串联亲和纯化(TAP)标签的发展使得天然蛋白复合物能够进行高效且大规模的纯化。然而,TAP标签大小为21 kDa,且切割过程耗时。通过将串联的链霉亲和素标签II与FLAG标签相结合,我们能够将TAP(SF-TAP)标签的大小减小至4.6 kDa。两个部分对其固定化的结合伴侣都具有中等亲和力和avidity。这使得在第一步使用脱硫生物素、第二步使用FLAG八肽,能够在天然条件下洗脱带有SF标签的蛋白质。SF-TAP方案能够在2.5小时内从哺乳动物细胞中高效、快速且直接地纯化蛋白复合物。从HEK293细胞中纯化Raf相关蛋白复合物,并通过剖析Raf结合伴侣MEK1和14-3-3的相互作用模式对其蛋白相互作用网络进行后续分析,证明了这种新方法的强大之处。