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通过工程化二硫键将96度的结构域旋转捕获在两种不同的构象中。

Trapping a 96 degrees domain rotation in two distinct conformations by engineered disulfide bridges.

作者信息

Schultz-Heienbrok Robert, Maier Timm, Sträter Norbert

机构信息

Biotechnologisch-Biomedizinisches Zentrum der Universität Leipzig, Deutscher Platz 5, 04103 Leipzig, Germany.

出版信息

Protein Sci. 2004 Jul;13(7):1811-22. doi: 10.1110/ps.04629604.

Abstract

Engineering disulfide bridges is a common technique to lock a protein movement in a defined conformational state. We have designed two double mutants of Escherichia coli 5'-nucleotidase to trap the enzyme in both an open (S228C, P513C) and a closed (P90C, L424C) conformation by the formation of disulfide bridges. The mutant proteins have been expressed, purified, and crystallized, to structurally characterize the designed variants. The S228C, P513C is a double mutant crystallized in two different crystal forms with three independent conformers, which differ from each other by a rotation of up to 12 degrees of the C-terminal domain with respect to the N-terminal domain. This finding, as well as an analysis of the domain motion in the crystal, indicates that the enzyme still exhibits considerable residual domain flexibility. In the double mutant that was designed to trap the enzyme in the closed conformation, the structure analysis reveals an unexpected intermediate conformation along the 96 degrees rotation trajectory between the open and closed enzyme forms. A comparison of the five independent conformers analyzed in this study shows that the domain movement of the variant enzymes is characterized by a sliding movement of the residues of the domain interface along the interface, which is in contrast to a classical closure motion where the residues of the domain interface move perpendicular to the interface.

摘要

构建二硫键是将蛋白质运动锁定在特定构象状态的常用技术。我们设计了大肠杆菌5'-核苷酸酶的两个双突变体,通过形成二硫键将该酶捕获在开放构象(S228C,P513C)和封闭构象(P90C,L424C)中。已对突变蛋白进行表达、纯化和结晶,以从结构上表征设计的变体。S228C,P513C双突变体以两种不同的晶体形式结晶,具有三个独立的构象体,它们之间的差异在于C末端结构域相对于N末端结构域最多旋转12度。这一发现以及对晶体中结构域运动的分析表明,该酶仍表现出相当大的结构域残余灵活性。在设计用于将酶捕获在封闭构象的双突变体中,结构分析揭示了在开放和封闭酶形式之间沿96度旋转轨迹存在一个意外的中间构象。对本研究中分析的五个独立构象体的比较表明,变体酶的结构域运动的特征是结构域界面残基沿界面的滑动运动,这与经典的封闭运动相反,在经典封闭运动中结构域界面残基垂直于界面移动。

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