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核磁共振揭示的双泛素中的结构域间移动性

Interdomain mobility in di-ubiquitin revealed by NMR.

作者信息

Ryabov Yaroslav, Fushman David

机构信息

Department of Chemistry and Biochemistry, Center for Biomolecular Structure and Organization, University of Maryland, College Park, Maryland 20742-3360, USA.

出版信息

Proteins. 2006 Jun 1;63(4):787-96. doi: 10.1002/prot.20917.

Abstract

Domain orientation and dynamics can play an essential role in the function of multidomain proteins. Lys48-linked polyubiquitin chains, the principal signal for proteasomal protein degradation, adopt a closed conformation at physiological conditions, in which the functionally important residues Leu8, Ile44, and Val70 are sequestered at the interdomain interface. This interface must open in order for these groups to become available for interactions with various chain-recognition factors. Knowledge of the mechanism of domain motion leading to the opening of the interdomain interface in polyubiqutin is, therefore, essential for the understanding of the processes controlling molecular recognition events in polyubiquitin signaling. Here we use NMR to characterize the interdomain dynamics that open the interface in a di-ubiquitin chain. This process occurs via domain reorientations on a 10-ns time scale and with the amplitudes that are sufficient for making functionally important hydrophobic residues in polyubiquitin available for direct interactions with various ubiquitin-binding factors. The analysis revealed the structures of the interconverting conformational states of di-ubiquitin and the rates and amplitudes of this process at near-physiological and acidic pH. The proposed mechanism of domain reorientation is quite general and could serve as a paradigm of interdomain mobility in other multidomain systems.

摘要

结构域的取向和动力学在多结构域蛋白的功能中可能起着至关重要的作用。与蛋白酶体蛋白降解的主要信号赖氨酸48连接的多聚泛素链在生理条件下呈封闭构象,其中功能重要的残基亮氨酸8、异亮氨酸44和缬氨酸70被隔离在结构域间界面处。为了使这些基团能够与各种链识别因子相互作用,这个界面必须打开。因此,了解导致多聚泛素中结构域间界面打开的结构域运动机制,对于理解多聚泛素信号传导中控制分子识别事件的过程至关重要。在这里,我们使用核磁共振来表征在双泛素链中打开界面的结构域间动力学。这个过程通过10纳秒时间尺度上的结构域重新取向发生,其幅度足以使多聚泛素中功能重要的疏水残基能够与各种泛素结合因子直接相互作用。分析揭示了双泛素相互转化的构象状态的结构以及在接近生理和酸性pH条件下这个过程的速率和幅度。所提出的结构域重新取向机制相当普遍,可作为其他多结构域系统中结构域间流动性的范例。

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