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中间切割肽酶的晶体结构和生化分析:动力学在酶功能中的作用。

Crystal structures and biochemical analyses of intermediate cleavage peptidase: role of dynamics in enzymatic function.

机构信息

High Pressure and Synchrotron Radiation Physics Division, Bhabha Atomic Research Centre, Mumbai, India.

出版信息

FEBS Lett. 2019 Feb;593(4):443-454. doi: 10.1002/1873-3468.13321. Epub 2019 Jan 9.

Abstract

Intermediate cleavage peptidase (Icp55) processes a subset of mitochondrial matrix proteins by removing a bulky residue at their N termini, leaving behind smaller N-terminal residues (icp activity). This contributes towards the stability of the mitochondrial proteome. We report crystal structures of yeast Icp55 including one bound to the apstatin inhibitor. Apart from icp activity, the enzyme was found to exhibit Xaa-Pro aminopeptidase activity in vitro. Structural and biochemical data suggest that the enzyme exists in a rapid equilibrium between monomer and dimer. Furthermore, the dimer, and not the monomer, was found to be the active species with loop dynamics at the dimer interface playing an important role in activity. Based on the new evidence, we propose a model for binding and processing of cellular targets by Icp55. DATABASE: The atomic coordinates and structure factors for the structures of Icp55 (code 6A9T, 6A9U, 6A9V) have been deposited in the Protein Data Bank (PDB) (http://www.pdb.org/).

摘要

中间切割肽酶(Icp55)通过去除其 N 末端的大体积残基,将线粒体基质蛋白的一个亚组加工成较小的 N 末端残基(icp 活性)。这有助于稳定线粒体蛋白质组。我们报告了酵母 Icp55 的晶体结构,包括一个与 apstatin 抑制剂结合的结构。除了 icp 活性外,该酶在体外还表现出 Xaa-Pro 氨肽酶活性。结构和生化数据表明,该酶在单体和二聚体之间快速平衡。此外,发现二聚体而不是单体是具有活性的物种,二聚体界面上的环动力学在活性中起着重要作用。基于新的证据,我们提出了 Icp55 结合和加工细胞靶标的模型。数据库:Icp55(代码 6A9T、6A9U、6A9V)的结构的原子坐标和结构因子已被提交到蛋白质数据库(PDB)(http://www.pdb.org/)。

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