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c-JUN、JUN B和JUN D对AP-1和CRE共有序列的结合亲和力不同:FOS蛋白的作用

c-JUN, JUN B, and JUN D differ in their binding affinities to AP-1 and CRE consensus sequences: effect of FOS proteins.

作者信息

Ryseck R P, Bravo R

机构信息

Bristol-Myers Squibb Pharmaceutical Research Institute, Department of Molecular Biology, Princeton, New Jersey 08543-4000.

出版信息

Oncogene. 1991 Apr;6(4):533-42.

PMID:1827665
Abstract

We have compared the binding properties of c-JUN, JUN B, and JUN D in the absence or in the presence of c-FOS, FOS B, and FRA-1 to different AP-1 and CRE-containing oligonucleotides. The results demonstrate that for a given AP-1-containing oligonucleotide the binding affinities of the different JUN proteins are always c-JUN greater than JUN D greater than JUN B. The three JUN proteins have the capacity to bind to a CRE consensus sequence with very high affinity. We have found that c-JUN, JUN B, and JUN D bind with different affinities to different oligonucleotides containing an identical AP-1 or CRE binding site, implying that the adjacent sequences influence the stability of the JUN/DNA complexes. Interestingly, an AP-1-containing oligonucleotide which binds the JUN proteins with high affinity can be converted to a CRE-containing oligonucleotide which will also bind the different JUNs very efficiently. The heterodimers formed between the different JUN and FOS proteins have an enhanced binding activity compared to the JUN:JUN homodimers. In all cases the half-lives of the JUN:FOS/DNA complexes are longer than those of the JUN:JUN/DNA complexes. The most stable complexes were obtained in the presence of FOS B, followed by FRA-1 and c-FOS.

摘要

我们比较了在不存在或存在c-FOS、FOS B和FRA-1的情况下,c-JUN、JUN B和JUN D与不同的含AP-1和CRE的寡核苷酸的结合特性。结果表明,对于给定的含AP-1的寡核苷酸,不同JUN蛋白的结合亲和力总是c-JUN大于JUN D大于JUN B。这三种JUN蛋白都有能力以非常高的亲和力结合CRE共有序列。我们发现,c-JUN、JUN B和JUN D以不同的亲和力结合含有相同AP-1或CRE结合位点的不同寡核苷酸,这意味着相邻序列会影响JUN/DNA复合物的稳定性。有趣的是,一种能与JUN蛋白高亲和力结合的含AP-1的寡核苷酸可以转化为一种含CRE的寡核苷酸,它也能非常有效地结合不同的JUN。与JUN:JUN同二聚体相比,不同JUN和FOS蛋白之间形成的异二聚体具有增强的结合活性。在所有情况下,JUN:FOS/DNA复合物的半衰期都比JUN:JUN/DNA复合物的半衰期长。在FOS B存在的情况下获得了最稳定的复合物,其次是FRA-1和c-FOS。

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