Sif S, Gilmore T D
Department of Biology, Boston University, Massachusetts 02215.
J Virol. 1994 Nov;68(11):7131-8. doi: 10.1128/JVI.68.11.7131-7138.1994.
We previously showed that v-Rel, the oncoprotein of the avian retrovirus Rev-T, can increase expression from promoters containing binding sites for the cellular transcription factor Sp1 in chicken embryo fibroblasts (S. Sif, A.J. Capobianco, and T.D. Gilmore, Oncogene 8:2501-2509, 1993). In those experiments, v-Rel appeared to increase the transactivating function of Sp1; that is, v-Rel stimulated transactivation by a GAL4-Sp1 protein that lacked the Sp1 DNA-binding domain. We have now shown that in vitro-synthesized v-Rel and GAL4-Sp1 form a complex that can be immunoprecipitated with either anti-Sp1 or anti-v-Rel antiserum. We have also shown that a glutathione S-transferase (GST)-Sp1 fusion protein can specifically interact with in vitro-translated v-Rel and with in vivo-synthesized v-Rel from transformed chicken spleen cells. In addition, we have found that the abilities of wild-type and two mutant forms of v-Rel to increase transactivation by Sp1 in vivo correlate with their abilities to interact with Sp1 in vitro. The sequences important for the interaction of v-Rel with Sp1 in vitro have been mapped to the first 147 amino acids of v-Rel. Other Rel proteins, such as c-Rel, RelA, p52, and p50, were also able to form a complex with Sp1 in vitro. These results suggest that v-Rel increases expression from Sp1 site-containing promoters by functionally interacting with Sp1 and that cellular Rel proteins and Sp1 are likely to interact to influence transcription from natural promoters.
我们先前表明,禽逆转录病毒Rev-T的癌蛋白v-Rel可增强鸡胚成纤维细胞中含有细胞转录因子Sp1结合位点的启动子的表达(S. Sif、A.J. Capobianco和T.D. Gilmore,《癌基因》8:2501-2509,1993)。在这些实验中,v-Rel似乎增强了Sp1的反式激活功能;也就是说,v-Rel刺激了缺乏Sp1 DNA结合结构域的GAL4-Sp1蛋白的反式激活。我们现在表明,体外合成的v-Rel和GAL4-Sp1形成一种复合物,该复合物可用抗Sp1或抗v-Rel抗血清进行免疫沉淀。我们还表明,谷胱甘肽S-转移酶(GST)-Sp1融合蛋白可与体外翻译的v-Rel以及转化鸡脾细胞中体内合成的v-Rel特异性相互作用。此外,我们发现v-Rel的野生型和两种突变形式在体内增强Sp1反式激活的能力与其在体外与Sp1相互作用的能力相关。v-Rel与Sp1在体外相互作用的重要序列已定位到v-Rel的前147个氨基酸。其他Rel蛋白,如c-Rel、RelA、p52和p50,在体外也能与Sp1形成复合物。这些结果表明,v-Rel通过与Sp1功能相互作用增强含Sp1位点启动子的表达,并且细胞Rel蛋白和Sp1可能相互作用以影响天然启动子的转录。