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14-3-3 蛋白结合阻止了半胱天冬酶-2 的二聚化界面。

14-3-3 protein binding blocks the dimerization interface of caspase-2.

机构信息

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

Division BIOCEV, Institute of Microbiology of the Czech Academy of Sciences, Vestec, Czech Republic.

出版信息

FEBS J. 2020 Aug;287(16):3494-3510. doi: 10.1111/febs.15215. Epub 2020 Feb 4.

Abstract

Among all species, caspase-2 (C2) is the most evolutionarily conserved caspase required for effective initiation of apoptosis following death stimuli. C2 is activated through dimerization and autoproteolytic cleavage and inhibited through phosphorylation at Ser and Ser , within the linker between the caspase recruitment and p19 domains of the zymogen, followed by association with the adaptor protein 14-3-3, which maintains C2 in its immature form procaspase (proC2). However, the mechanism of 14-3-3-dependent inhibition of C2 activation remains unclear. Here, we report the structural characterization of the complex between proC2 and 14-3-3 by hydrogen/deuterium mass spectrometry and protein crystallography to determine the molecular basis for 14-3-3-mediated inhibition of C2 activation. Our data reveal that the 14-3-3 dimer interacts with proC2 not only through ligand-binding grooves but also through other regions outside the central channel, thus explaining the isoform-dependent specificity of 14-3-3 protein binding to proC2 and the substantially higher binding affinity of 14-3-3 protein to proC2 than to the doubly phosphorylated peptide. The formation of the complex between 14-3-3 protein and proC2 does not induce any large conformational change in proC2. Furthermore, 14-3-3 protein interacts with and masks both the nuclear localization sequence and the C-terminal region of the p12 domain of proC2 through transient interactions in which both the p19 and p12 domains of proC2 are not firmly docked onto the surface of 14-3-3. This masked region of p12 domain is involved in C2 dimerization. Therefore, 14-3-3 protein likely inhibits proC2 activation by blocking its dimerization surface. DATABASES: Structural data are available in the Protein Data Bank under the accession numbers 6SAD and 6S9K.

摘要

在所有物种中,半胱天冬酶-2 (C2) 是最进化保守的半胱天冬酶,是在死亡刺激后有效启动细胞凋亡所必需的。C2 通过二聚化和自切割激活,并通过在酶原的衔接招募和 p19 结构域之间的连接体中 Ser 和 Ser 的磷酸化抑制,随后与衔接蛋白 14-3-3 结合,使 C2 保持在不成熟形式的原半胱天冬酶 (proC2)。然而,14-3-3 依赖性抑制 C2 激活的机制尚不清楚。在这里,我们通过氢/氘质谱和蛋白质晶体学报告了 proC2 与 14-3-3 复合物的结构特征,以确定 14-3-3 介导的 C2 激活抑制的分子基础。我们的数据表明,14-3-3 二聚体不仅通过配体结合槽与 proC2 相互作用,而且还通过中央通道以外的其他区域相互作用,从而解释了 14-3-3 蛋白与 proC2 结合的同工型特异性和 14-3-3 蛋白与 proC2 的结合亲和力明显高于与双磷酸化肽的结合亲和力。14-3-3 蛋白与 proC2 形成复合物不会引起 proC2 发生任何大的构象变化。此外,14-3-3 蛋白通过瞬时相互作用与 proC2 相互作用并掩盖 proC2 的核定位序列和 p12 结构域的 C 末端区域,其中 proC2 的 p19 和 p12 结构域都没有牢固地固定在 14-3-3 的表面上。proC2 的 p12 结构域的掩蔽区域参与 C2 二聚化。因此,14-3-3 蛋白可能通过阻止其二聚化表面来抑制 proC2 的激活。数据库:结构数据可在蛋白数据库中以 6SAD 和 6S9K 的访问号获得。

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