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配对结构域的螺旋2在调控Pax-3同源结构域与DNA的结合中起关键作用。

Helix 2 of the paired domain plays a key role in the regulation of DNA-binding by the Pax-3 homeodomain.

作者信息

Fortin A S, Underhill D A, Gros P

机构信息

Department of Biochemistry, McGill University, Montreal, Quebec H3G 1Y6, Canada.

出版信息

Nucleic Acids Res. 1998 Oct 15;26(20):4574-81. doi: 10.1093/nar/26.20.4574.

Abstract

Pax3 contains two structurally independent DNA-binding domains, a paired domain (PD) and a homeodomain (HD). Biochemical and mutagenesis studies have shown that both domains are functionally interdependent. In particular, it has been shown that the PD can regulate the DNA-binding specificity and dimerization potential of the HD. To delineate Pax3 protein segments that are involved in the regulation of HD DNA-binding, a series of chimeric proteins were created in which the HD and linker region were gradually replaced with corresponding sequences from a heterologous HD protein, Phox. Characterization of chimeric proteins by electrophoretic mobility shift analysis (EMSA) suggests that a portion of the linker region contributes to the functional interaction between the PD and HD. In addition, stepwise removal of sequences from the Pax3 PD was used to define regions within this domain that are involved in the regulation of HD DNA-binding. EMSA of these proteins in the context of the chimeric Pax3/Phox backbone provided two key findings: (i) the C-terminal subdomain of the PD does not play a major role in the regulation of HD DNA-binding and (ii) the N-terminal subdomain and, in particular, the second alpha-helix are essential for modulation of HD DNA-binding. Significantly, deletion of helix 2 was found to be sufficient to uncouple regulation of HD DNA-binding by the PD.

摘要

Pax3包含两个结构上独立的DNA结合结构域,一个配对结构域(PD)和一个同源结构域(HD)。生化和诱变研究表明,这两个结构域在功能上相互依赖。特别是,已经表明PD可以调节HD的DNA结合特异性和二聚化潜力。为了描绘参与HD DNA结合调节的Pax3蛋白片段,构建了一系列嵌合蛋白,其中HD和连接区被来自异源HD蛋白Phox的相应序列逐渐取代。通过电泳迁移率变动分析(EMSA)对嵌合蛋白进行表征表明,连接区的一部分有助于PD和HD之间的功能相互作用。此外,逐步去除Pax3 PD中的序列用于定义该结构域内参与HD DNA结合调节的区域。在嵌合Pax3/Phox骨架的背景下对这些蛋白进行EMSA提供了两个关键发现:(i)PD的C末端亚结构域在HD DNA结合调节中不发挥主要作用;(ii)N末端亚结构域,特别是第二个α螺旋对于调节HD DNA结合至关重要。值得注意的是,发现删除螺旋2足以解除PD对HD DNA结合的调节。

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