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Fos和Jun的碱性亮氨酸拉链结构域介导DNA弯曲和定向异源二聚体结合的结构基础

Structural basis of DNA bending and oriented heterodimer binding by the basic leucine zipper domains of Fos and Jun.

作者信息

Leonard D A, Rajaram N, Kerppola T K

机构信息

Howard Hughes Medical Institute and Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, MI 48109-0650, USA.

出版信息

Proc Natl Acad Sci U S A. 1997 May 13;94(10):4913-8. doi: 10.1073/pnas.94.10.4913.

Abstract

Interactions among transcription factors that bind to separate sequence elements require bending of the intervening DNA and juxtaposition of interacting molecular surfaces in an appropriate orientation. Here, we examine the effects of single amino acid substitutions adjacent to the basic regions of Fos and Jun as well as changes in sequences flanking the AP-1 site on DNA bending. Substitution of charged amino acid residues at positions adjacent to the basic DNA-binding domains of Fos and Jun altered DNA bending. The change in DNA bending was directly proportional to the change in net charge for all heterodimeric combinations between these proteins. Fos and Jun induced distinct DNA bends at different binding sites. Exchange of a single base pair outside of the region contacted in the x-ray crystal structure altered DNA bending. Substitution of base pairs flanking the AP-1 site had converse effects on the opposite directions of DNA bending induced by homodimers and heterodimers. These results suggest that Fos and Jun induce DNA bending in part through electrostatic interactions between amino acid residues adjacent to the basic region and base pairs flanking the AP-1 site. DNA bending by Fos and Jun at inverted binding sites indicated that heterodimers bind to the AP-1 site in a preferred orientation. Mutation of a conserved arginine within the basic regions of Fos and transversion of the central C:G base pair in the AP-1 site to G:C had complementary effects on the orientation of heterodimer binding and DNA bending. The conformational variability of the Fos-Jun-AP-1 complex may contribute to its functional versatility at different promoters.

摘要

与不同序列元件结合的转录因子之间的相互作用需要中间DNA发生弯曲,并使相互作用的分子表面以适当的方向并列。在此,我们研究了Fos和Jun碱性区域附近单个氨基酸取代以及AP-1位点侧翼序列变化对DNA弯曲的影响。在Fos和Jun碱性DNA结合结构域附近位置取代带电荷氨基酸残基会改变DNA弯曲。对于这些蛋白质之间的所有异二聚体组合,DNA弯曲的变化与净电荷的变化成正比。Fos和Jun在不同结合位点诱导出不同的DNA弯曲。在X射线晶体结构中未接触区域之外的单个碱基对交换改变了DNA弯曲。AP-1位点侧翼碱基对的取代对同二聚体和异二聚体诱导的相反方向的DNA弯曲有相反的影响。这些结果表明,Fos和Jun部分通过碱性区域附近的氨基酸残基与AP-1位点侧翼碱基对之间的静电相互作用诱导DNA弯曲。Fos和Jun在反向结合位点处的DNA弯曲表明异二聚体以优先方向结合到AP-1位点。Fos碱性区域内保守精氨酸的突变以及AP-1位点中心C:G碱基对到G:C的颠换对异二聚体结合方向和DNA弯曲有互补作用。Fos-Jun-AP-1复合物的构象变异性可能有助于其在不同启动子处的功能多样性。

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