Rotem Shahar, Katz Chen, Benyamini Hadar, Lebendiker Mario, Veprintsev Dmitry, Rüdiger Stefan, Danieli Tsafi, Friedler Assaf
Institute of Chemistry, The Hebrew University of Jerusalem, Safra Campus, Givat Ram, Jerusalem 91904, Israel.
J Biol Chem. 2008 Jul 4;283(27):18990-9. doi: 10.1074/jbc.M708717200. Epub 2008 Apr 30.
ASPP2 is a pro-apoptotic protein that stimulates the p53-mediated apoptotic response. The C terminus of ASPP2 contains ankyrin (Ank) repeats and a SH3 domain, which mediate its interactions with numerous partner proteins such as p53, NFkappaB, and Bcl-2. It also contains a proline-rich domain (ASPP2 Pro), whose structure and function are unclear. Here we used biophysical and biochemical methods to study the structure and the interactions of ASPP2 Pro, to gain insight into its biological role. We show, using biophysical and computational methods, that the ASPP2 Pro domain is natively unfolded. We found that the ASPP2 Pro domain interacts with the ASPP2 Ank-SH3 domains, and mapped the interaction sites in both domains. Using a combination of peptide array screening, biophysical and biochemical techniques, we found that ASPP2 Ank-SH3, but not ASPP2 Pro, mediates interactions of ASPP2 with peptides derived from its partner proteins. ASPP2 Pro-Ank-SH3 bound a peptide derived from its partner protein NFkappaB weaker than ASPP2 Ank-SH3 bound this peptide. This suggested that the presence of the proline-rich domain inhibited the interactions mediated by the Ank-SH3 domains. Furthermore, a peptide from ASPP2 Pro competed with a peptide derived from NFkappaB on binding to ASPP2 Ank-SH3. Based on our results, we propose a model in which the interaction between the ASPP2 domains regulates the intermolecular interactions of ASPP2 with its partner proteins.
ASPP2是一种促凋亡蛋白,可刺激p53介导的凋亡反应。ASPP2的C末端包含锚蛋白(Ank)重复序列和一个SH3结构域,介导其与众多伴侣蛋白如p53、NFκB和Bcl-2的相互作用。它还包含一个富含脯氨酸的结构域(ASPP2 Pro),其结构和功能尚不清楚。在这里,我们使用生物物理和生化方法研究ASPP2 Pro的结构及其相互作用,以深入了解其生物学作用。我们使用生物物理和计算方法表明,ASPP2 Pro结构域天然无序。我们发现ASPP2 Pro结构域与ASPP2 Ank-SH3结构域相互作用,并绘制了两个结构域中的相互作用位点。通过结合肽阵列筛选、生物物理和生化技术,我们发现ASPP2 Ank-SH3而非ASPP2 Pro介导ASPP2与其伴侣蛋白衍生肽的相互作用。ASPP2 Pro-Ank-SH3与来自其伴侣蛋白NFκB的肽结合能力比ASPP2 Ank-SH3与该肽的结合能力弱。这表明富含脯氨酸结构域的存在抑制了Ank-SH3结构域介导的相互作用。此外,来自ASPP2 Pro的肽在与ASPP2 Ank-SH3结合时与来自NFκB的肽竞争。基于我们的结果,我们提出了一个模型,其中ASPP2结构域之间的相互作用调节ASPP2与其伴侣蛋白的分子间相互作用。