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相同锌指的多连接:对DNA结合亲和力及三锌指结构域单元调节的影响

Multiconnection of identical zinc finger: implication for DNA binding affinity and unit modulation of the three zinc finger domain.

作者信息

Nagaoka M, Kaji T, Imanishi M, Hori Y, Nomura W, Sugiura Y

机构信息

Institute for Chemical Research, Kyoto University, Uji, Kyoto 611-0011, Japan.

出版信息

Biochemistry. 2001 Mar 6;40(9):2932-41. doi: 10.1021/bi001762+.

Abstract

Cys(2)-His(2)-type zinc finger proteins have a tandemly repeated array structure consisting of independent finger modules. They are expected to elevate the DNA binding affinity and specificity by increasing the number of finger modules. To investigate the relation between the number and the DNA binding affinity of the zinc finger, we have designed the two- to four-finger peptides by connecting the central zinc finger (finger 2) of Sp1 with the canonical linker sequence, Thr-Gly-Glu-Lys-Pro. Gel mobility shift assays reveal that the cognate three- and four-finger peptides, Sp1(zf222) and Sp1(zf2222), strongly bind to the predicted target sequences, but the two-finger peptide, Sp1(zf22), does not. Of special interest is the fact that the dissociation constant for Sp1(zf2222) binding to the target DNA is comparable to that for Sp1(zf222). The methylation interference, DNase I and hydroxyl radical footprintings, and circular permutation analyses demonstrate that Sp1(zf2222) binds to its target site with three successive zinc fingers and the binding of the fourth zinc finger is inhibited by DNA bending induced by the binding of the three-finger domain. The present results strongly indicate that the zinc finger protein binds to DNA by the three-finger domain as one binding unit. In addition, this information provides the basis for the design of a novel multifinger protein with high affinity and specificity for long DNA sequences, such as chromosomal DNAs.

摘要

Cys(2)-His(2)型锌指蛋白具有由独立指状模块组成的串联重复阵列结构。预计它们可通过增加指状模块的数量来提高DNA结合亲和力和特异性。为了研究锌指数量与DNA结合亲和力之间的关系,我们通过将Sp1的中央锌指(指2)与典型连接序列Thr-Gly-Glu-Lys-Pro连接,设计了两指至四指的肽段。凝胶迁移率变动分析表明,同源的三指和四指肽段Sp1(zf222)和Sp1(zf2222)能强烈结合预测的靶序列,但两指肽段Sp1(zf22)则不能。特别有趣的是,Sp1(zf2222)与靶DNA结合的解离常数与Sp1(zf222)的相当。甲基化干扰、DNase I和羟自由基足迹分析以及环状排列分析表明,Sp1(zf2222)通过三个连续的锌指与其靶位点结合,并且第四个锌指的结合受到三指结构域结合诱导的DNA弯曲的抑制。目前的结果有力地表明,锌指蛋白以三指结构域作为一个结合单元与DNA结合。此外,这一信息为设计对长DNA序列(如染色体DNA)具有高亲和力和特异性的新型多指蛋白提供了基础。

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