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通过表面碰撞实现非共价蛋白质复合物的对称气相解离。

Symmetrical gas-phase dissociation of noncovalent protein complexes via surface collisions.

作者信息

Jones Christopher M, Beardsley Richard L, Galhena Asiri S, Dagan Shai, Cheng Guilong, Wysocki Vicki H

机构信息

Department of Chemistry, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

J Am Chem Soc. 2006 Nov 29;128(47):15044-5. doi: 10.1021/ja064586m.

Abstract

Previous gas-phase dissociation experiments of protein-protein complexes have resulted in product ion distributions that are asymmetric by charge and mass, providing limited insight into the chemical nature of subunit organization and interaction. In these experiments, a symmetric charge distribution results from an "energy sudden" collision of protein-protein complexes with a surface, indicating that it may be possible to probe the suboligomeric structure of noncovalent complexes in the gas phase. It is proposed that energy sudden surface activation of cytochrome C homodimers results in dissociation without significant unfolding of one of the monomeric subunits. Previously proposed mechanisms for the dissociation of protein-protein complexes are discussed in the context of these results. These experiments demonstrate the potential to preserve the structural details of subunit interaction within a protein-protein complex and help elucidate the asymmetric nature of macromolecular dissociation in the gas phase.

摘要

先前对蛋白质-蛋白质复合物进行的气相解离实验产生了电荷和质量不对称的产物离子分布,这对亚基组织和相互作用的化学性质的洞察有限。在这些实验中,蛋白质-蛋白质复合物与表面的“能量骤变”碰撞导致了对称的电荷分布,这表明有可能在气相中探测非共价复合物的亚寡聚体结构。有人提出,细胞色素C同二聚体的能量骤变表面活化导致解离,而其中一个单体亚基不会发生明显的展开。在这些结果的背景下讨论了先前提出的蛋白质-蛋白质复合物解离机制。这些实验证明了保留蛋白质-蛋白质复合物内亚基相互作用结构细节的潜力,并有助于阐明气相中大分子解离的不对称性质。

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