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锌指蛋白中 DNA 结合特异性的预测。

Prediction of DNA-binding specificity in zinc finger proteins.

机构信息

Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology Delhi, New Delhi 110 016, India.

出版信息

J Biosci. 2012 Jul;37(3):483-91. doi: 10.1007/s12038-012-9213-7.

Abstract

Zinc finger proteins interact via their individual fingers to three base pair subsites on the target DNA. The four key residue positions -1, 2, 3 and 6 on the alpha-helix of the zinc fingers have hydrogen bond interactions with the DNA. Mutating these key residues enables generation of a plethora of combinatorial possibilities that can bind to any DNA stretch of interest. Exploiting the binding specificity and affinity of the interaction between the zinc fingers and the respective DNA can help to generate engineered zinc fingers for therapeutic purposes involving genome targeting. Exploring the structure-function relationships of the existing zinc finger-DNA complexes can aid in predicting the probable zinc fingers that could bind to any target DNA. Computational tools ease the prediction of such engineered zinc fingers by effectively utilizing information from the available experimental data. A study of literature reveals many approaches for predicting DNA-binding specificity in zinc finger proteins. However, an alternative approach that looks into the physico-chemical properties of these complexes would do away with the difficulties of designing unbiased zinc fingers with the desired affinity and specificity. We present a physico-chemical approach that exploits the relative strengths of hydrogen bonding between the target DNA and all combinatorially possible zinc fingers to select the most optimum zinc finger protein candidate.

摘要

锌指蛋白通过其各自的手指与靶 DNA 上的三个碱基对亚基相互作用。锌指的α-螺旋上的四个关键残基位置-1、2、3 和 6 与 DNA 具有氢键相互作用。突变这些关键残基可以产生大量的组合可能性,从而可以结合任何感兴趣的 DNA 片段。利用锌指与相应 DNA 之间相互作用的结合特异性和亲和力,可以帮助生成用于涉及基因组靶向的治疗目的的工程化锌指。探索现有锌指-DNA 复合物的结构-功能关系可以帮助预测可能与任何靶 DNA 结合的可能的锌指。计算工具通过有效地利用可用实验数据中的信息,简化了这些工程化锌指的预测。文献研究揭示了许多预测锌指蛋白 DNA 结合特异性的方法。然而,一种研究这些复合物物理化学性质的替代方法可以避免设计具有所需亲和力和特异性的无偏锌指的困难。我们提出了一种物理化学方法,该方法利用靶 DNA 与所有组合可能的锌指之间氢键的相对强度来选择最理想的锌指蛋白候选物。

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