Suppr超能文献

长程静电相互作用影响Fos-Jun在AP-1位点的结合方向。

Long-range electrostatic interactions influence the orientation of Fos-Jun binding at AP-1 sites.

作者信息

Ramirez-Carrozzi V R, 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

J Mol Biol. 2001 Jan 19;305(3):411-27. doi: 10.1006/jmbi.2000.4286.

Abstract

Heterodimeric transcription regulatory proteins that bind palindromic DNA sequences can potentially bind their recognition sites in two opposite orientations. The orientation of transcription factor binding can control transcriptional activity by altering interactions with proteins that bind to adjacent regulatory elements. Fos-Jun heterodimers bind to AP-1 sites with different flanking sequences in opposite orientations. A gel-based fluorescence resonance energy transfer assay, gelFRET, was used to define the mechanism whereby amino acid residues and nucleotide base-pairs outside the Fos-Jun-AP-1 contact interface determine the orientation of heterodimer binding. Exchange of three amino acid residues adjacent to the basic DNA contact regions between Fos and Jun reversed the binding orientation. The effects of these amino acid residues on the orientation of heterodimer binding depended on base-pairs flanking the core AP-1 recognition sequence. Single amino acid and base-pair substitutions had parallel effects on DNA bending by Fos-Jun-AP-1 complexes and on heterodimer orientation. The binding orientation exhibited a close correspondence with both the difference in bending propensities of opposite sides of the AP-1 site as well as the difference in bending potentials of the Fos and Jun subunits of the heterodimer. The influence of flanking DNA sequences on heterodimer orientation was attenuated in the presence of high concentrations of multivalent cations. Base substitutions up to one helical turn from the center of the AP-1 site affected the binding orientation. Modification of flanking base-pairs with positively or negatively charged functional groups had opposite effects on the orientation of heterodimer binding. These changes in DNA charge had converse effects on the orientation preferences of heterodimers in which charged amino acid residues adjacent to the basic regions were exchanged between Fos and Jun. These results indicate that the orientation of heterodimer binding is determined primarily by minimization of the electrostatic free energy of the Fos-Jun-AP-1 complex. Consequently, long-range electrostatic interactions influence the architecture of nucleoprotein complexes.

摘要

结合回文DNA序列的异二聚体转录调节蛋白可能以两种相反的方向结合其识别位点。转录因子结合的方向可通过改变与结合相邻调控元件的蛋白质的相互作用来控制转录活性。Fos-Jun异二聚体以相反的方向结合具有不同侧翼序列的AP-1位点。一种基于凝胶的荧光共振能量转移测定法,即凝胶FRET,被用于确定Fos-Jun-AP-1接触界面之外的氨基酸残基和核苷酸碱基对决定异二聚体结合方向的机制。Fos和Jun之间与基本DNA接触区域相邻的三个氨基酸残基的交换逆转了结合方向。这些氨基酸残基对异二聚体结合方向的影响取决于核心AP-1识别序列侧翼的碱基对。单个氨基酸和碱基对取代对Fos-Jun-AP-1复合物的DNA弯曲以及异二聚体方向具有平行影响。结合方向与AP-1位点两侧弯曲倾向的差异以及异二聚体Fos和Jun亚基弯曲潜力的差异都密切相关。在高浓度多价阳离子存在的情况下,侧翼DNA序列对异二聚体方向的影响减弱。从AP-1位点中心起多达一个螺旋圈的碱基取代会影响结合方向。用带正电或带负电的官能团修饰侧翼碱基对,对异二聚体结合方向有相反的影响。DNA电荷的这些变化对Fos和Jun之间基本区域相邻的带电荷氨基酸残基发生交换的异二聚体的方向偏好有相反的影响。这些结果表明,异二聚体结合的方向主要由Fos-Jun-AP-1复合物的静电自由能最小化决定。因此,长程静电相互作用影响核蛋白复合物的结构。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验