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金属嵌入剂对转录因子与DNA结合的位点特异性抑制作用。

Site-specific inhibition of transcription factor binding to DNA by a metallointercalator.

作者信息

Odom D T, Parker C S, Barton J K

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena 91125, USA.

出版信息

Biochemistry. 1999 Apr 20;38(16):5155-63. doi: 10.1021/bi9827969.

DOI:10.1021/bi9827969
PMID:10213621
Abstract

The metallointercalator Lambda-1-Rh(MGP)2phi5+ binds tightly and specifically to the site 5'-CATATG-3' in the major groove of double helical DNA by a combination of direct readout and shape selection. To examine competitive interactions between this small metal complex and a DNA-binding transcription factor, the preferred binding site for Lambda-1-Rh(MGP)2phi5+ was engineered into the AP-1 recognition element (ARE) of the major-groove binding bZIP transcription factor yAP-1, the yeast analogue of mammalian AP-1. Binding experiments confirmed that the modified ARE retained normal yAP-1 binding affinity. Photocleavage experiments demonstrated that the modified ARE contained a high-affinity binding site for Lambda-1-Rh(MGP)2phi5+, whereas the native ARE showed no interaction. Competition experiments using gel shift mobility assays demonstrated that Lambda-1-Rh(MGP)2phi5+ at 120 nM competes 50% of yAP-1 binding to the 5'-CATATG-3' containing oligonucleotide. In contrast, competitive disruption of protein binding to the native ARE requires 3 microM Lambda-1-Rh(MGP)2phi5+. Metallointercalator derivatives, including geometric isomers of Lambda-1-Rh(MGP)2phi5+, show no specific binding to the target site and show no inhibition of yAP-1/DNA complexes at concentrations as high as 20 microM. Thus, metallointercalators can be tuned to show selectivity for major groove sites on DNA comparable to transcription factors and indeed can inhibit transcription factor binding site selectively.

摘要

金属嵌入剂Lambda-1-Rh(MGP)2phi5+通过直接识别和形状选择相结合的方式,紧密且特异性地结合到双螺旋DNA大沟中的5'-CATATG-3'位点。为了研究这种小金属复合物与DNA结合转录因子之间的竞争性相互作用,将Lambda-1-Rh(MGP)2phi5+的首选结合位点设计到主要沟结合bZIP转录因子yAP-1(哺乳动物AP-1的酵母类似物)的AP-1识别元件(ARE)中。结合实验证实,修饰后的ARE保留了正常的yAP-1结合亲和力。光裂解实验表明,修饰后的ARE含有一个对Lambda-1-Rh(MGP)2phi5+具有高亲和力的结合位点,而天然ARE则没有相互作用。使用凝胶迁移率变动分析的竞争实验表明,120 nM的Lambda-1-Rh(MGP)2phi5+能竞争50%的yAP-1与含5'-CATATG-3'的寡核苷酸的结合。相比之下,要竞争性破坏蛋白质与天然ARE的结合则需要3 microM的Lambda-1-Rh(MGP)2phi5+。金属嵌入剂衍生物,包括Lambda-1-Rh(MGP)2phi5+的几何异构体,在高达20 microM的浓度下对靶位点没有特异性结合,也不抑制yAP-1/DNA复合物。因此,可以调整金属嵌入剂,使其对DNA大沟位点的选择性与转录因子相当,并且确实可以选择性地抑制转录因子结合位点。

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