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Insights into the molecular recognition of the 5 '-GNN-3 ' family of DNA sequences by zinc finger domains

机译:锌指结构域对5'-GNN-3'DNA序列家族的分子识别的见解

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In order to construct zinc finger domains that recognize all of the possible 64 DNA triplets, it is necessary to understand the mechanisms of protein/DNA interactions on the molecular level. Previously we reported 16 zinc finger domains which had been characterized in detail to bind specifically to the 5'-GNN-3' family of DNA sequences. Artificial transcription factors constructed from these domains can regulate the expression of endogenous genes. These domains were created by phage-display selection followed by site-directed mutagenesis. A total of 84 mutants of a three-domain zinc finger protein have been analyzed for their DNA-binding specificity. Here, we report the results of this systematic and extensive mutagenesis study. New insights into zinc finger/DNA interactions were obtained by combining specificity data with computer modeling and comparison with known structural data from NMR and crystallographic studies. This analysis suggests that unusual cross-strand and inter-helical contacts are made by some of these proteins, and the general orientation of the recognition helix to the DNA is flexible, even when constrained by flanking zinc finger domains. These findings disfavor the utility of existing simple recognition codes and suggest that highly specific domains cannot be obtained from phage display alone in most cases, but only in combination with rational design. The molecular basis of zinc finger/DNA interaction is complex and its understanding is dependent on the analysis of a large number of proteins. This understanding should enable us to refine rapidly the specificity of other zinc finger domains, as well as polydactyl proteins constructed with these domains to recognize extended DNA sequences. (C) 2000 Academic Press. [References: 31]
机译:为了构建识别所有可能的64个DNA三联体的锌指结构域,有必要在分子水平上了解蛋白质/ DNA相互作用的机制。先前我们报道了16个锌指结构域,这些结构域已被详细表征为与DNA序列的5'-GNN-3'家族特异性结合。从这些结构域构建的人工转录因子可以调节内源基因的表达。这些结构域是通过噬菌体展示选择,然后进行定点诱变来创建的。已经分析了三结构域锌指蛋白的总共84个突变体的DNA结合特异性。在这里,我们报告这项系统的,广泛的诱变研究的结果。通过将特异性数据与计算机模型相结合,并与来自NMR和晶体学研究的已知结构数据进行比较,获得了有关锌指/ DNA相互作用的新见解。该分析表明,其中一些蛋白质产生了异常的跨链和螺旋间接触,即使在侧翼的锌指结构域约束下,识别螺旋对DNA的一般方向也很灵活。这些发现不利于现有简单识别码的实用性,并表明在大多数情况下,不能仅从噬菌体展示获得高度特定的域,而只能与合理的设计相结合。锌指/ DNA相互作用的分子基础很复杂,其理解取决于对大量蛋白质的分析。这种理解应该使我们能够迅速完善其他锌指结构域以及用这些结构域构建的聚腺苷蛋白的特异性,以识别扩展的DNA序列。 (C)2000学术出版社。 [参考:31]

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