Rojo-Niersbach E, Morley D, Heck S, Lehming N
Max-Delbrück-Laboratorium in der Max-Planck-Gesellschaft, Carl-von-Linné-Weg 10, 50829 Köln, Germany.
Biochem J. 2000 Jun 15;348 Pt 3(Pt 3):585-90.
In the present study we present a new method that allows for the selection of protein interactions in mammalian cells. We have used this system to verify two interactions previously characterized in vitro. (1) The interaction between human TATA-binding protein 1 and nuclear factor kappaB and (2) the association of Homo sapiens nuclear autoantigen SP100B with human heterochromatin protein 1alpha, a protein implicated in chromatin remodelling. We observe for the first time that these interactions also occur in vivo. One protein was fused to the N-terminal half of ubiquitin, while the interacting partner was fused to the C-terminal half of ubiquitin, that was itself linked to guanine phosphoryltransferase 2 (gpt2) modified to begin with an arginine residue. Upon interaction of both proteins, ubiquitin is reconstituted, and its association with the Rgpt2 reporter is subsequently cleaved off by ubiquitin-processing enzymes. The presence of arginine in the Rgpt2 gene product leads to the degradation of the product by the N-end rule pathway. In the human fibroblast cell line HT1080HPRT(-) (that is deficient in the enzyme for hypoxanthine-guanine phosphoribosyltransferase) cells in which interaction between both proteins of interest occurs can then be selected for by hypoxanthine/aminopterin/thymine medium and counterselected against by 6-thioguanine medium. This method provides a suitable alternative to the yeast two-hybrid system and is generally applicable.
在本研究中,我们提出了一种新方法,可用于在哺乳动物细胞中选择蛋白质相互作用。我们已使用该系统验证了先前在体外表征的两种相互作用。(1)人TATA结合蛋白1与核因子κB之间的相互作用,以及(2)智人核自身抗原SP100B与人异染色质蛋白1α的关联,后者是一种与染色质重塑有关的蛋白质。我们首次观察到这些相互作用也发生在体内。一种蛋白质与泛素的N端一半融合,而相互作用的伙伴与泛素的C端一半融合,泛素本身与经修饰以精氨酸残基开头的鸟嘌呤磷酸转移酶2(gpt2)相连。两种蛋白质相互作用后会重新组装泛素,随后其与Rgpt2报告基因的关联会被泛素加工酶切割掉。Rgpt2基因产物中精氨酸的存在会导致该产物通过N端规则途径降解。在人成纤维细胞系HT1080HPRT(-)(缺乏次黄嘌呤 - 鸟嘌呤磷酸核糖转移酶)中,发生感兴趣的两种蛋白质之间相互作用的细胞随后可以通过次黄嘌呤/氨基蝶呤/胸腺嘧啶培养基进行选择,并通过6 - 硫鸟嘌呤培养基进行反选。该方法为酵母双杂交系统提供了一种合适的替代方法,并且普遍适用。