MULTIPLE OCTAMER-BINDING PROTEINS ARE TARGETS FOR THE CELL-CYCLE-REGULATED NUCLEAR INHIBITOR I-92

被引:3
作者
GRINSTEIN, E [1 ]
ROYER, HD [1 ]
机构
[1] MAX DELBRUCK CTR MOLEC MED,D-13122 BERLIN,GERMANY
关键词
D O I
10.1089/dna.1995.14.493
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
p92 is a novel sequence-specific octamer-binding factor interacting with the enhancer of human papillomavirus type 18. The nuclear inhibitor I-92 regulates the DNA binding activity of p92 during the cell cycle such that p92 DNA binding is restricted to S-phase. The sequence motif 5'-AATTGCTTGCATAA, consisting of two partially overlapping octamer-related sequences, represents a recognition site for p92. It was the aim of this study to characterize the complexity of proteins interacting with the 5'-AATTGCTTGCATAA moth and to determine their regulation by I-92. UV cross-linking experiments showed that, besides p92, multiple novel proteins interact with the 5'-AATTGCTGCATAA motif. These novel proteins p84, p75, p73, p69, p61, p57, p49, and p46 specifically bind to this motif, although with different affinities. The inhibitor I-92 regulates, besides p92, the DNA-binding activities of p84, p75, p73, p69, and p57 but not of p61, p49, and p46. The association of I-92 with p92, p84, p75, p73, p69, and p57 was completely reversible after treatment with the detergent deoxycholate (DOG). Finally, we analyzed I-92 specificity and found that I-92 selectively inhibited DNA binding activities of partially purified octamer-binding proteins p84 and p92 whereas DNA binding of the POU factor Oct-1 was not regulated by I-92. Our results show that I-92 regulates multiple octamer-binding proteins and these findings-provide an example how gene regulation could be linked to cell cycle regulation.
引用
收藏
页码:493 / 500
页数:8
相关论文
共 25 条
  • [1] AUWERX J., SASSONE-CORSI P., IP-1: A dominant inhibitor of Fos/Jun whose activity is modulated by phosphorylation, Cell, 64, pp. 983-993, (1990)
  • [2] BAEUERLE P.A., The inducible transcription activator NFkB: Regulation by distinct protein subunits, Biochim. Biophys. Acta, 1072, pp. 63-80, (1991)
  • [3] BAEUERLE P.A., BALTIMORE D., IkB: A specific inhibitor of the NFkB transcription factor, Science, 242, pp. 540-546, (1988)
  • [4] BAEUERLE P.A., BALTIMORE D., Activation of DNA-binding activity in an apparently cytoplasmic precursor of the NFkB transcription factor, Cell, 53, pp. 211-217, (1988)
  • [5] BENEZRA R., DAVIS R.L., LOCKSHON D., TURNER D.L., WEINTRAUB H., The protein Id: A negative regulator of helix-loop-helix DNA binding proteins, Cell, 61, pp. 49-59, (1990)
  • [6] CHODOSH L.A., CARTHEW R.W., SHARP P.A., A single polypeptide possesses the binding and transcription activities of the adenovirus major late transcription factor, Mol. Ceil. Biol., 6, pp. 4723-4733, (1986)
  • [7] DE VRIES E., VAN DRIEL W., BERGSMA W.G., ARN-BERG A.C., VAN DER VLIET P.C., HeLa nuclear protein recognizing DNA termini and translocating on DNA forming a regular DNA-multimeric protein complex, J. Mol. Biol., 208, pp. 65-78, (1989)
  • [8] HERR W., STURM R.A., CLERC R.G., CORCORAN L.M., BALTIMORE D., SHARP P.A., INGRAHAM H.A., ROSENFELD M.G., GINNEY M., RUVKUN G., HOR-VITZ H.R., The POU domain: A large conserved region in the mammalian pit-1, oct-1, and Caenorhabditis elegans unc-86 gene products, Genes & Dev., 2, pp. 1513-1516, (1988)
  • [9] HIEBERT S.W., CHELLAPPAN S.P., HOROWITZ J.M., NEVINS J.R., The interaction of Rb with E2F coincides with an inhibition of the transcriptional activity of E2F, Genes & Dev., 6, pp. 177-185, (1992)
  • [10] KADONAGA J.T., Purification of sequence-specific binding proteins by DNA affinity chromatography, Methods Enzymol., 208, pp. 10-23, (1991)