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14-3-3 蛋白掩盖了半胱天冬酶-2 的核定位序列。

14-3-3 protein masks the nuclear localization sequence of caspase-2.

机构信息

Department of Structural Biology of Signaling Proteins, Division BIOCEV, Institute of Physiology of the Czech Academy of Sciences, Vestec, Czech Republic.

2nd Faculty of Medicine, Charles University, Prague, Czech Republic.

出版信息

FEBS J. 2018 Nov;285(22):4196-4213. doi: 10.1111/febs.14670. Epub 2018 Oct 15.

Abstract

Caspase-2 is an apical protease responsible for the proteolysis of cellular substrates directly involved in mediating apoptotic signaling cascades. Caspase-2 activation is inhibited by phosphorylation followed by binding to the scaffolding protein 14-3-3, which recognizes two phosphoserines located in the linker between the caspase recruitment domain and the p19 domains of the caspase-2 zymogen. However, the structural details of this interaction and the exact role of 14-3-3 in the regulation of caspase-2 activation remain unclear. Moreover, the caspase-2 region with both 14-3-3-binding motifs also contains the nuclear localization sequence (NLS), thus suggesting that 14-3-3 binding may regulate the subcellular localization of caspase-2. Here, we report a structural analysis of the 14-3-3ζ:caspase-2 complex using a combined approach based on small angle X-ray scattering, NMR, chemical cross-linking, and fluorescence spectroscopy. The structural model proposed in this study suggests that phosphorylated caspase-2 and 14-3-3ζ form a compact and rigid complex in which the p19 and the p12 domains of caspase-2 are positioned within the central channel of the 14-3-3 dimer and stabilized through interactions with the C-terminal helices of both 14-3-3ζ protomers. In this conformation, the surface of the p12 domain, which is involved in caspase-2 activation by dimerization, is sterically occluded by the 14-3-3 dimer, thereby likely preventing caspase-2 activation. In addition, 14-3-3 protein binding to caspase-2 masks its NLS. Therefore, our results suggest that 14-3-3 protein binding to caspase-2 may play a key role in regulating caspase-2 activation. DATABASE: The atomic coordinates and structure factors have been deposited in the Protein Data Bank, www.ww pdb.org (PDB ID codes 6GKF and 6GKG).

摘要

半胱天冬酶-2(Caspase-2)是一种顶端蛋白酶,负责对细胞底物进行蛋白水解,这些细胞底物直接参与介导凋亡信号级联反应。半胱天冬酶-2 的激活受到磷酸化的抑制,随后与支架蛋白 14-3-3 结合,后者识别位于半胱天冬酶-2 酶原的衔接域与 p19 结构域之间的连接区的两个磷酸丝氨酸。然而,这种相互作用的结构细节以及 14-3-3 在对半胱天冬酶-2 激活的调控中的确切作用仍不清楚。此外,具有两个 14-3-3 结合基序的半胱天冬酶-2 区域还包含核定位序列(NLS),这表明 14-3-3 结合可能调节半胱天冬酶-2 的亚细胞定位。在这里,我们使用基于小角度 X 射线散射、NMR、化学交联和荧光光谱学的组合方法,对半胱天冬酶-2 与 14-3-3ζ 的复合物进行了结构分析。本研究提出的结构模型表明,磷酸化的半胱天冬酶-2 和 14-3-3ζ 形成一个紧凑和刚性的复合物,其中半胱天冬酶-2 的 p19 和 p12 结构域位于 14-3-3 二聚体的中央通道内,并通过与两个 14-3-3ζ 亚基的 C 端螺旋的相互作用而稳定。在这种构象中,p12 结构域参与半胱天冬酶-2 的二聚化激活的表面被 14-3-3 二聚体空间位阻,从而可能阻止半胱天冬酶-2 的激活。此外,14-3-3 蛋白与半胱天冬酶-2 的结合掩盖了其 NLS。因此,我们的结果表明,14-3-3 蛋白与半胱天冬酶-2 的结合可能在调节半胱天冬酶-2 的激活中起关键作用。数据库:原子坐标和结构因子已被提交到蛋白质数据库,www.wwpdb.org(PDB ID 编码 6GKF 和 6GKG)。

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