Hansen S K, Nerlov C, Zabel U, Verde P, Johnsen M, Baeuerle P A, Blasi F
University Institute of Microbiology, Copenhagen, Denmark.
EMBO J. 1992 Jan;11(1):205-13. doi: 10.1002/j.1460-2075.1992.tb05043.x.
The NF-kappa B subunits, p50 and p65, have extensive sequence homology with the c-rel proto-oncogene and the Drosophila morphogen dorsal. It has recently been shown that in vitro translated c-Rel can bind to DNA and form a complex with p50. However, the conditions for DNA binding of c-Rel in vivo and its DNA sequence specificity have not been established. Here we report the identification a novel heterodimeric complex that binds to a kappa B-like, phorbol ester (TPA) responsive DNA sequence, 5'-GGGAAAGTAC-3', in the 5' flanking region of the human urokinase (uPA) gene. This sequence was shown to bind two protein complexes, LC and UC. LC was indistinguishable from NF-kappa B as it reacted with antibodies recognizing the p50 subunit of NF-kappa B, and was shown by UV crosslinking to contain the p50 and p65 subunits of NF-kappa B. UC, on the other hand, strongly reacted with anti-v-Rel, but not with the anti-p50 antibodies, and was shown by crosslinking to contain 75 kDa and 85 kDa protein-DNA adducts. The 75 kDa and the 85 kDa adducts could be immunoprecipitated only by anti-p65 and anti-c-Rel antibodies, respectively, showing that c-Rel formed a heterodimer with p65. Both protein complexes were present in inactive forms in HeLa cell cytosol, and their nuclear translocation was induced by TPA. DNA binding of UC and LC could, furthermore, be inhibited by I kappa B-alpha.(ABSTRACT TRUNCATED AT 250 WORDS)
核因子κB亚基p50和p65与c-rel原癌基因及果蝇形态发生素背侧蛋白具有广泛的序列同源性。最近研究表明,体外翻译的c-Rel能与DNA结合并与p50形成复合物。然而,c-Rel在体内与DNA结合的条件及其DNA序列特异性尚未明确。在此,我们报告鉴定出一种新型异二聚体复合物,它能与人尿激酶(uPA)基因5'侧翼区的一个类κB、佛波酯(TPA)反应性DNA序列5'-GGGAAAGTAC-3'结合。该序列能结合两种蛋白复合物,即LC和UC。LC与核因子κB无法区分,因为它能与识别核因子κB p50亚基的抗体反应,紫外线交联显示其含有核因子κB的p50和p65亚基。另一方面,UC与抗v-Rel强烈反应,但不与抗p50抗体反应,交联显示其含有75 kDa和85 kDa的蛋白质-DNA加合物。75 kDa和85 kDa加合物分别只能被抗p65和抗c-Rel抗体免疫沉淀,表明c-Rel与p65形成了异二聚体。两种蛋白复合物在HeLa细胞胞质溶胶中均以无活性形式存在,TPA可诱导它们向细胞核内转运。此外,IκB-α可抑制UC和LC与DNA的结合。(摘要截短于250字)