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酵母中性海藻糖酶 Nth1 的 14-3-3 蛋白依赖性激活的分子基础。

Molecular basis of the 14-3-3 protein-dependent activation of yeast neutral trehalase Nth1.

机构信息

Department of Structural Biology of Signaling Proteins, Division Biotechnology and Biomedicine Center of the Academy of Sciences and Charles University in Vestec (BIOCEV), Institute of Physiology, The Czech Academy of Sciences, Prague 14220, Czech Republic.

Department of Physical and Macromolecular Chemistry, Faculty of Science, Charles University, Prague 12843, Czech Republic.

出版信息

Proc Natl Acad Sci U S A. 2017 Nov 14;114(46):E9811-E9820. doi: 10.1073/pnas.1714491114. Epub 2017 Oct 30.

Abstract

The 14-3-3 proteins, a family of highly conserved scaffolding proteins ubiquitously expressed in all eukaryotic cells, interact with and regulate the function of several hundreds of partner proteins. Yeast neutral trehalases (Nth), enzymes responsible for the hydrolysis of trehalose to glucose, compared with trehalases from other organisms, possess distinct structure and regulation involving phosphorylation at multiple sites followed by binding to the 14-3-3 protein. Here we report the crystal structures of yeast Nth1 and its complex with Bmh1 (yeast 14-3-3 isoform), which, together with mutational and fluorescence studies, indicate that the binding of Nth1 by 14-3-3 triggers Nth1's activity by enabling the proper 3D configuration of Nth1's catalytic and calcium-binding domains relative to each other, thus stabilizing the flexible part of the active site required for catalysis. The presented structure of the Bmh1:Nth1 complex highlights the ability of 14-3-3 to modulate the structure of a multidomain binding partner and to function as an allosteric effector. Furthermore, comparison of the Bmh1:Nth1 complex structure with those of 14-3-3:serotonin -acetyltransferase and 14-3-3:heat shock protein beta-6 complexes revealed similarities in the 3D structures of bound partner proteins, suggesting the highly conserved nature of 14-3-3 affects the structures of many client proteins.

摘要

14-3-3 蛋白是一种高度保守的支架蛋白家族,广泛存在于所有真核细胞中,与数百种伴侣蛋白相互作用并调节其功能。与其他生物体的海藻糖酶相比,酵母中性海藻糖酶(Nth)是负责海藻糖水解为葡萄糖的酶,其具有独特的结构和调节方式,涉及多个位点的磷酸化,随后与 14-3-3 蛋白结合。在这里,我们报告了酵母 Nth1 及其与 Bmh1(酵母 14-3-3 同工型)的复合物的晶体结构,这些结构以及突变和荧光研究表明,14-3-3 与 Nth1 的结合通过使 Nth1 的催化和钙结合结构域相对于彼此具有适当的 3D 构象来触发 Nth1 的活性,从而稳定催化所需的活性位点的柔性部分。所呈现的 Bmh1:Nth1 复合物结构突出了 14-3-3 调节多结构域结合伴侣的结构并作为别构效应物发挥作用的能力。此外,将 Bmh1:Nth1 复合物结构与 14-3-3:血清素乙酰转移酶和 14-3-3:热休克蛋白β-6 复合物的结构进行比较,揭示了结合伴侣蛋白的三维结构相似性,表明 14-3-3 的高度保守性质影响许多客户蛋白的结构。

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