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嗜热栖热菌OT3肽基-tRNA水解酶2的结构:对其二聚体状态功能作用的深入了解。

Structure of peptidyl-tRNA hydrolase 2 from Pyrococcus horikoshii OT3: insight into the functional role of its dimeric state.

作者信息

Shimizu Katsumi, Kuroishi Chizu, Sugahara Mitsuaki, Kunishima Naoki

机构信息

Advanced Protein Crystallography Research Group, RIKEN SPring-8 Center, Harima Institute, 1-1-1 Kouto, Sayo-cho, Sayo-gun, Hyogo 679-5148, Japan.

出版信息

Acta Crystallogr D Biol Crystallogr. 2008 Apr;64(Pt 4):444-53. doi: 10.1107/S0907444908002850. Epub 2008 Mar 19.

Abstract

Peptidyl-tRNA hydrolases catalyze the hydrolytic removal of the peptidyl moiety from the peptidyl-tRNA molecule to prevent misreading during translation. Here, the expression, purification, crystallization and X-ray diffraction study of peptidyl-tRNA hydrolase 2 from Pyrococcus horikoshii OT3 (PhPth2) are described. The crystal structures were determined as similar biological dimers in two different forms: P4(1)2(1)2 at 1.2 A resolution (form 1) and P4(3)22 at 1.9 A resolution (form 2). In the form 1 structure, the asymmetric unit contains one PhPth2 subunit and a crystallographic twofold axis defines the dimeric association with the cognate subunit. In the form 2 structure, there are two PhPth2 subunits in the asymmetric unit that make a similar dimer with a noncrystallographic twofold axis. In order to evaluate the thermodynamic stability, the intra-protomer and inter-protomer interactions of PhPth2 were analyzed and compared with those of other Pth2-family members. The thermodynamic parameters show that the large number of ion pairs compared with family members from other mesophilic organisms would contribute to the thermostability of PhPth2. The structural difference between the two dimers was quantitatively evaluated by a multiple C(alpha)-atom superposition. A significant structural difference between the two dimers was observed around the putative active site of this enzyme. A rigid-body rotation takes place so as to retain the dimeric twofold symmetry, suggesting positive cooperativity upon tRNA binding. The mechanism of ligand binding was further investigated using a docking model with a tRNA molecule. The docking study suggests that the binding of tRNA requires its simultaneous interaction with both subunits of the PhPth2 dimer.

摘要

肽基 - tRNA水解酶催化从肽基 - tRNA分子中水解去除肽基部分,以防止翻译过程中的错读。本文描述了来自嗜热栖热菌OT3(PhPth2)的肽基 - tRNA水解酶2的表达、纯化、结晶及X射线衍射研究。晶体结构以两种不同形式确定为相似的生物二聚体:分辨率为1.2 Å的P4(1)2(1)2(形式1)和分辨率为1.9 Å的P4(3)22(形式2)。在形式1结构中,不对称单元包含一个PhPth2亚基,一个晶体学二重轴定义了与同源亚基的二聚体结合。在形式2结构中,不对称单元中有两个PhPth2亚基,它们通过一个非晶体学二重轴形成类似的二聚体。为了评估热力学稳定性,分析了PhPth2的亚基内和亚基间相互作用,并与其他Pth2家族成员的相互作用进行了比较。热力学参数表明,与来自其他嗜温生物的家族成员相比,大量的离子对有助于PhPth2的热稳定性。通过多个Cα原子叠加对两个二聚体之间的结构差异进行了定量评估。在该酶的假定活性位点周围观察到两个二聚体之间存在显著的结构差异。发生了刚体旋转以保持二聚体的二重对称性,表明在tRNA结合时存在正协同作用。使用与tRNA分子的对接模型进一步研究了配体结合机制。对接研究表明,tRNA的结合需要其与PhPth2二聚体的两个亚基同时相互作用。

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