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RFX DNA 结合结构域中的共有基序以及具有改变特异性的结合结构域突变体。

A consensus motif in the RFX DNA binding domain and binding domain mutants with altered specificity.

作者信息

Emery P, Strubin M, Hofmann K, Bucher P, Mach B, Reith W

机构信息

Department of Genetics and Microbiology, University of Geneva Medical School, Switzerland.

出版信息

Mol Cell Biol. 1996 Aug;16(8):4486-94. doi: 10.1128/MCB.16.8.4486.

Abstract

The RFX DNA binding domain is a novel motif that has been conserved in a growing number of dimeric DNA-binding proteins, having diverse regulatory functions, in eukaryotic organisms ranging from yeasts to humans. To characterize this novel motif, we have performed a detailed dissection of the site-specific DNA binding activity of RFX1, a prototypical member of the RFX family. First, we have performed a site selection procedure to define the consensus binding site of RFX1. Second, we have developed a new mutagenesis-selection procedure to derive a precise consensus motif, and to test the accuracy of a secondary structure prediction, for the RFX domain. Third, a modification of this procedure has allowed us to isolate altered-specificity RFX1 mutants. These results should facilitate the identification both of additional candidate genes controlled by RFX1 and of new members of the RFX family. Moreover, the altered-specificity RFX1 mutants represent valuable tools that will permit the function of RFX1 to be analyzed in vivo without interference from the ubiquitously expressed endogenous protein. Finally, the simplicity, efficiency, and versatility of the selection procedure we have developed make it of general value for the determination of consensus motifs, and for the isolation of mutants exhibiting altered functional properties, for large protein domains involved in protein-DNA as well as protein-protein interactions.

摘要

RFX DNA结合结构域是一种新型基序,在越来越多具有不同调节功能的二聚体DNA结合蛋白中保守存在,这些蛋白存在于从酵母到人类的真核生物中。为了表征这一新型基序,我们对RFX家族的典型成员RFX1的位点特异性DNA结合活性进行了详细剖析。首先,我们进行了位点选择程序以确定RFX1的共有结合位点。其次,我们开发了一种新的诱变-选择程序,以得出精确的共有基序,并测试RFX结构域二级结构预测的准确性。第三,对该程序的改进使我们能够分离出具有改变特异性的RFX1突变体。这些结果应有助于鉴定受RFX1调控的其他候选基因以及RFX家族的新成员。此外,具有改变特异性的RFX1突变体是有价值的工具,可用于在体内分析RFX1的功能,而不受普遍表达的内源性蛋白的干扰。最后,我们开发的选择程序的简单性、高效性和通用性使其对于确定共有基序以及分离表现出功能特性改变的突变体具有普遍价值,这些突变体涉及蛋白质-DNA以及蛋白质-蛋白质相互作用的大蛋白质结构域。

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本文引用的文献

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RFX proteins, a novel family of DNA binding proteins conserved in the eukaryotic kingdom.
Nucleic Acids Res. 1996 Mar 1;24(5):803-7. doi: 10.1093/nar/24.5.803.
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