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BclxL 结合野生型而非突变型 p53 DNA 结合域时构象发生变化。

BclxL changes conformation upon binding to wild-type but not mutant p53 DNA binding domain.

机构信息

Department Chemistry, Center for Integrated Protein Science Munich, Technische UniversitätMünchen, 85747 Garching, Germany.

出版信息

J Biol Chem. 2010 Jan 29;285(5):3439-50. doi: 10.1074/jbc.M109.065391. Epub 2009 Dec 2.

Abstract

p53 can induce apoptosis through mitochondrial membrane permeabilization by interaction of its DNA binding region with the anti-apoptotic proteins BclxL and Bcl2. However, little is known about the action of p53 at the mitochondria in molecular detail. By using NMR spectroscopy and fluorescence polarization we characterized the binding of wild-type and mutant p53 DNA binding domains to BclxL and show that the wild-type p53 DNA binding domain leads to structural changes in the BH3 binding region of BclxL, whereas mutants fail to induce such effects due to reduced affinity. This was probed by induced chemical shift and residual dipolar coupling data. These data imply that p53 partly achieves its pro-apoptotic function at the mitochondria by facilitating interaction between BclxL and BH3-only proteins in an allosteric mode of action. Furthermore, we characterize for the first time the binding behavior of Pifithrin-mu, a specific small molecule inhibitor of the p53-BclxL interaction, and present a structural model of the protein-ligand complex. A rather unusual behavior is revealed whereby Pifithrin-mu binds to both sides of the protein-protein complex. These data should facilitate the rational design of more potent specific BclxL-p53 inhibitors.

摘要

p53 可以通过其 DNA 结合区域与抗凋亡蛋白 BclxL 和 Bcl2 的相互作用诱导线粒体膜通透性,从而导致细胞凋亡。然而,关于 p53 在分子水平上在线粒体中的作用知之甚少。我们使用 NMR 光谱和荧光偏振技术,对野生型和突变型 p53 DNA 结合结构域与 BclxL 的结合进行了表征,并表明野生型 p53 DNA 结合结构域导致 BclxL 的 BH3 结合区域发生结构变化,而突变体由于亲和力降低而无法诱导这种效应。这可以通过诱导的化学位移和残差偶极耦合数据来探测。这些数据表明,p53 通过促进 BclxL 与 BH3 仅蛋白之间的相互作用,以别构模式部分发挥其在线粒体中的促凋亡功能。此外,我们首次对 Pifithrin-mu 的结合行为进行了表征,Pifithrin-mu 是 p53-BclxL 相互作用的特异性小分子抑制剂,并提出了该蛋白-配体复合物的结构模型。揭示了一种相当不寻常的行为,即 Pifithrin-mu 结合到蛋白质-蛋白质复合物的两侧。这些数据应该有助于更有效、更特异的 BclxL-p53 抑制剂的合理设计。

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