首页> 外文期刊>Nucleic Acids Research >DNA-binding domain of GCN4 induces bending of both the ATF/CREB and AP-1 binding sites of DNA
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DNA-binding domain of GCN4 induces bending of both the ATF/CREB and AP-1 binding sites of DNA

机译:GCN4的DNA结合结构域诱导DNA的ATF / CREB和AP-1结合位点弯曲

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摘要

The interaction of proteins with DNA results, in some cases, in DNA bending, and this might have functional importance. However, when the protein-induced bending of DNA is small, its measurement presents a problem. It is shown that the fluorescence resonance energy transfer between fluorophores placed on the ends of the specially designed U-shaped DNA, which contains the DNA-binding sites at its central part, can be successfully used for this purpose. The lever effect of the arms of such U-shaped DNA ensures that the distance between the fluorophores is very sensitive to bending of the central part. Using this technique, it was shown that (i) the AP-1 and ATF/CREB binding sites of GCN4 transcription factor are pre-bent to the same extent (similar to12degrees toward the major groove) and (ii) binding of the GCN4 DNA-binding domain (GCN4-bZIP) results in additional bending of both these target sites but to a greater extent at the ATF/CREB site. In total, in the complex with GCN4-bZIP, the ATF/CREB site is bent by (25 +/- 2)degrees and the AP-1 site by (20 +/- 2)degrees toward the minor groove.
机译:在某些情况下,蛋白质与DNA的相互作用导致DNA弯曲,这可能具有功能重要性。但是,当蛋白质引起的DNA弯曲较小时,其测量存在问题。结果表明,放置在特殊设计的U形DNA末端的荧光团之间的荧光共振能量转移可以成功地用于此目的,该U形DNA的中央部分包含DNA结合位点。这种U形DNA的臂的杠杆作用可确保荧光团之间的距离对中心部分的弯曲非常敏感。使用该技术表明,(i)GCN4转录因子的AP-1和ATF / CREB结合位点的弯曲程度相同(类似于朝主沟的12度),并且(ii)GCN4 DNA的结合结合结构域(GCN4-bZIP)导致这两个目标位点发生额外的弯曲,但在ATF / CREB位点更大。总的来说,在具有GCN4-bZIP的复合物中,ATF / CREB位点朝向小沟弯曲(25 +/- 2)度,AP-1位点弯曲(20 +/- 2)度。

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