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基于结构的二聚体锌指蛋白设计

Structure-based design of a dimeric zinc finger protein.

作者信息

Pomerantz J L, Wolfe S A, Pabo C O

机构信息

Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Biochemistry. 1998 Jan 27;37(4):965-70. doi: 10.1021/bi972464o.

Abstract

Designing DNA-binding proteins with novel sequence specificities may provide valuable tools for biological research and gene therapy. Computer modeling was used to design a dimeric zinc finger protein, ZFGD1, containing zinc fingers 1 and 2 from Zif268 and a portion of the dimerization domain of GAL4. ZFGD1 binds with high affinity and specificity to the predicted binding site, which contains two 6 base-pair symmetry-related zinc finger subsites separated by a 13 base-pair spacer. The DNA-binding specificity of this fusion protein is determined primarily by the zinc fingers and can be systematically altered through the substitution of the zinc fingers with variants selected by phage display. This zinc finger-GAL4 fusion may serve as a prototype for designed DNA-binding proteins that could exploit advantages of homo- and heterodimer formation, and the adaptability of the Cys2His2 zinc finger motif, to target virtually any site in the genome.

摘要

设计具有新序列特异性的DNA结合蛋白可为生物学研究和基因治疗提供有价值的工具。利用计算机建模设计了一种二聚体锌指蛋白ZFGD1,它包含来自Zif268的锌指1和2以及GAL4二聚化结构域的一部分。ZFGD1以高亲和力和特异性结合预测的结合位点,该位点包含两个由13个碱基对间隔区隔开的6个碱基对对称相关的锌指亚位点。这种融合蛋白的DNA结合特异性主要由锌指决定,并且可以通过用噬菌体展示选择的变体替换锌指来系统地改变。这种锌指-GAL4融合蛋白可作为设计DNA结合蛋白的原型,该蛋白可利用同二聚体和异二聚体形成的优势以及Cys2His2锌指基序的适应性,几乎靶向基因组中的任何位点。

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