首页> 外文期刊>Biochemistry >Swapping of the beta-hairpin region between sp1 and GLI zinc fingers: Significant role of the beta-hairpin region in DNA binding properties of C2H2-type zinc finger peptides
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Swapping of the beta-hairpin region between sp1 and GLI zinc fingers: Significant role of the beta-hairpin region in DNA binding properties of C2H2-type zinc finger peptides

机译:在sp1和GLI锌指之间交换β-发夹区域:β-发夹区域在C2H2型锌指肽的DNA结合特性中的重要作用

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摘要

The recent design strategy of zinc finger peptides has mainly focused on the a-helix region, which plays a direct role in DNA recognition. On the other hand, the study of non-DNA-contacting regions is extremely scarce. By swapping the beta-hairpin regions between the Sp1 and GLI zinc fingers, in this study, we investigated how the beta-hairpin region of the C2H2-type zinc finger peptides contributes to the DNA binding properties. Surprisingly, the Sp1 mutant with the GLI-type beta-hairpin had a higher DNA binding affinity than that of the wild-type Sp1. The result of the DNase I footprinting analyses also showed the change in the DNA binding pattern. In contrast, the GLI zinc finger completely lost DNA binding ability as a result of exchanging the beta-hairpin region. These results strongly indicate that the beta-hairpin region appears to function as a scaffold and has an important effect on the DNA binding properties of the C2H2-type zinc finger peptides.
机译:锌指肽的最新设计策略主要集中在a-螺旋区域,该区域在DNA识别中起直接作用。另一方面,对非DNA接触区域的研究极为匮乏。通过在Sp1和GLI锌指之间交换β-发夹区域,在这项研究中,我们研究了C2H2型锌指肽的β-发夹区域如何促进DNA结合特性。出人意料的是,具有GLI型β-发夹的Sp1突变体比野生型Sp1具有更高的DNA结合亲和力。 DNase I足迹分析的结果还显示了DNA结合模式的变化。相反,由于交换β-发夹区,GLI锌指完全失去了DNA结合能力。这些结果有力地表明,β-发夹区似乎起支架作用,并且对C2H2型锌指肽的DNA结合特性具有重要影响。

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