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A structural approach reveals how neighbouring C2H2 zinc fingers influence DNA binding specificity

机译:一种结构方法揭示了相邻的C2H2锌指如何影响DNA结合特异性

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摘要

Development of an accurate protein–DNA recognition code that can predict DNA specificity from protein sequence is a central problem in biology. C2H2 zinc fingers constitute by far the largest family of DNA binding domains and their binding specificity has been studied intensively. However, despite decades of research, accurate prediction of DNA specificity remains elusive. A major obstacle is thought to be the inability of current methods to account for the influence of neighbouring domains. Here we show that this problem can be addressed using a structural approach: we build structural models for all C2H2-ZF–DNA complexes with known binding motifs and find six distinct binding modes. Each mode changes the orientation of specificity residues with respect to the DNA, thereby modulating base preference. Most importantly, the structural analysis shows that residues at the domain interface strongly and predictably influence the binding mode, and hence specificity. Accounting for predicted binding mode significantly improves prediction accuracy of predicted motifs. This new insight into the fundamental behaviour of C2H2-ZFs has implications for both improving the prediction of natural zinc finger-binding sites, and for prioritizing further experiments to complete the code. It also provides a new design feature for zinc finger engineering.
机译:可以从蛋白质序列预测DNA特异性的精确蛋白质-DNA识别代码的开发是生物学中的中心问题。迄今为止,C 2 H 2锌指构成最大的DNA结合域家族,并且对其结合特异性进行了深入研究。然而,尽管进行了数十年的研究,但对DNA特异性的准确预测仍然难以捉摸。人们认为一个主要障碍是当前方法无法解决相邻域的影响。在这里,我们表明可以使用结构方法解决该问题:我们为具有已知结合基序的所有C2H2-ZF-DNA复合物建立结构模型,并找到六个不同的结合模式。每种模式都会改变特异性残基相对于DNA的方向,从而调节碱基的偏好。最重要的是,结构分析表明,结构域界面处的残基强烈且可预测地影响结合模式,从而影响特异性。考虑预测的结合模式可显着提高预测的基序的预测准确性。对C2H2-ZFs基本行为的新见解对改善对天然锌指结合位点的预测,以及对进一步的实验进行优先级以完成代码具有启示意义。它还为锌指工程提供了新的设计功能。

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