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Pax3配对结构域与同源结构域之间的相互作用:每个结构域与DNA结合都会引起另一个结构域的结构变化,这支持了DNA结合的相互依赖性。

Cross-talk between the paired domain and the homeodomain of Pax3: DNA binding by each domain causes a structural change in the other domain, supporting interdependence for DNA Binding.

作者信息

Apuzzo Sergio, Abdelhakim Aliaa, Fortin Anouk S, Gros Philippe

机构信息

Department of Biochemistry and McGill Cancer Center, McGill University, Quebec H1E 1S9, Canada.

出版信息

J Biol Chem. 2004 Aug 6;279(32):33601-12. doi: 10.1074/jbc.M402949200. Epub 2004 May 17.

Abstract

The Pax3 protein has two DNA binding domains, a Paired domain (PD) and a paired-type Homeo domain (HD). Although the PD and HD can bind to cognate DNA sequences when expressed individually, genetic and biochemical data indicate that the two domains are functionally interdependent in intact Pax3. The mechanistic basis of this functional interdependence is unknown and was studied by protease sensitivity. Pax3 was modified by the creation of Factor Xa cleavage sites at discrete locations in the PD, the HD, and in the linker segment joining the PD and the HD (Xa172, Xa189, and Xa216) in individual Pax3 mutants. The effect of Factor Xa insertions on protein stability and on DNA binding by the PD and the HD was measured using specific target site sequences. Independent insertions at position 100 in the linker separating the first from the second helix-turn-helix motif of the PD and at position 216 immediately upstream of the HD were found to be readily accessible to Factor Xa cleavage. The effect of DNA binding by the PD or the HD on accessibility of Factor Xa sites inserted in the same or in the other domain was monitored and quantitated for multiple mutants bearing different numbers of Xa sites at each position. In general, DNA binding reduced accessibility of all sites, suggesting a more compact and less solvent-exposed structure of DNA-bound versus DNA-free Pax3. Results of dose response and time course experiments were consistent and showed that DNA binding by the PD not only caused a local structural change in the PD but also caused a conformational change in the HD (P3OPT binding to Xa216 mutants); similarly, DNA binding by the HD also caused a conformational change in the PD (P2 binding to Xa100 mutants). These results provide a structural basis for the functional interdependence of the two DNA binding domains of Pax3.

摘要

Pax3蛋白有两个DNA结合结构域,一个配对结构域(PD)和一个配对型同源结构域(HD)。虽然PD和HD单独表达时能与同源DNA序列结合,但遗传学和生物化学数据表明,在完整的Pax3中这两个结构域在功能上相互依赖。这种功能相互依赖的机制基础尚不清楚,我们通过蛋白酶敏感性进行了研究。在单个Pax3突变体的PD、HD以及连接PD和HD的连接片段(Xa172、Xa189和Xa216)的离散位置创建凝血因子Xa切割位点,对Pax3进行修饰。使用特定的靶位点序列来测量凝血因子Xa插入对蛋白质稳定性以及PD和HD与DNA结合的影响。发现在分隔PD的第一个与第二个螺旋-转角-螺旋基序的连接子中第100位以及HD上游紧邻的第216位的独立插入很容易被凝血因子Xa切割。监测并定量了多个在每个位置带有不同数量Xa位点的突变体中,PD或HD与DNA结合对插入在同一结构域或另一结构域中的Xa位点可及性的影响。一般来说,DNA结合降低了所有位点的可及性,这表明与未结合DNA的Pax3相比,结合DNA的Pax3结构更紧凑,且较少暴露于溶剂中。剂量反应和时间进程实验的结果是一致的,表明PD与DNA结合不仅导致PD局部结构变化,还导致HD构象变化(P3OPT与Xa216突变体结合);同样,HD与DNA结合也导致PD构象变化(P2与Xa100突变体结合)。这些结果为Pax3的两个DNA结合结构域的功能相互依赖提供了结构基础。

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