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阐明真空状态下蛋白质离子的三级结构的特异性光引发自由基反应。

Elucidating the tertiary structure of protein ions in vacuo with site specific photoinitiated radical reactions.

机构信息

Department of Chemistry, University of California, Riverside, California 92521, USA.

出版信息

J Am Chem Soc. 2010 Jun 30;132(25):8602-9. doi: 10.1021/ja910665d.

Abstract

A new method for identifying residue specific through space contacts as a function of protein secondary and tertiary structure in the gas phase is presented. Photodissociation of a non-native carbon-iodine bond incorporated into Tyr59 of ubiquitin yields a radical site specifically at that residue. The subsequent radical migration is shown to be highly dependent on the structure of the protein. Radical-directed dissociation (RDD) of low charge states, which adopt compact structures, generates backbone fragmentation that is prominently distributed throughout the protein sequence, including residues that are distant in sequence from Tyr59. Higher charge states of ubiquitin, which adopt elongated, unfolded structures, yield RDD that is primarily nearby in sequence to Tyr59. Regardless of which structure is probed, information at the residue-level is obtained by examining specific radical-donor and radical-acceptor pairs. The relative importance of a particular interaction pair for a specific conformation can be revealed by tracking the charge state dependence of the dissociation. Structurally important contact pairs exhibit strong and concerted changes in relative intensities as a function of charge state and can also be used to reveal structural features which persist among different protein structures. Moreover, incorporation of distance constraint information into molecular mechanics conformational searches can be used to drive the search toward relevant conformational space. Implementation of this approach has revealed highly stable, previously undiscovered structures for the +4 and +6 charge states of ubiquitin, which bear little resemblance to the crystal structure.

摘要

本文提出了一种新方法,可用于鉴定气相中蛋白质二级和三级结构中特定残基的空间接触。非天然的碳-碘键在泛素的 Tyr59 处的光解产生了一个自由基,该自由基只位于该残基处。随后的自由基迁移被证明高度依赖于蛋白质的结构。低电荷态的自由基定向解离(RDD),其采用紧凑的结构,产生的骨架碎片在整个蛋白质序列中分布广泛,包括与 Tyr59 序列较远的残基。采用伸展、未折叠结构的泛素的较高电荷态,产生的 RDD 主要位于 Tyr59 序列附近。无论探测到哪种结构,通过检查特定的自由基供体和自由基受体对,都可以获得残基水平的信息。通过跟踪解离的电荷态依赖性,可以揭示特定相互作用对特定构象的相对重要性。结构重要的接触对表现出随着电荷态而强烈协同变化的相对强度,也可用于揭示不同蛋白质结构之间存在的结构特征。此外,将距离约束信息纳入分子力学构象搜索中,可以用于驱动搜索到相关的构象空间。该方法的实施揭示了泛素的+4 和+6 电荷态的高度稳定的、以前未发现的结构,这些结构与晶体结构几乎没有相似之处。

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