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碰撞诱导去折叠对蛋白质和蛋白质复合物的极性敏感。

Collision-Induced Unfolding Is Sensitive to the Polarity of Proteins and Protein Complexes.

机构信息

Department of Chemistry, University of Washington, Box 351700, Seattle, WA, 98195-1700, USA.

出版信息

J Am Soc Mass Spectrom. 2019 Nov;30(11):2430-2437. doi: 10.1007/s13361-019-02326-z. Epub 2019 Sep 9.

Abstract

Collision-induced unfolding (CIU) uses ion mobility to probe the structures of ions of proteins and noncovalent complexes as a function of the extent of gas-phase activation prior to analysis. CIU can be sensitive to domain structures, isoform identities, and binding partners, which makes it appealing for many applications. Almost all previous applications of CIU have probed cations. Here, we evaluate the application of CIU to anions and compare the results for anions with those for cations. Towards that end, we developed a "similarity score" that we used to quantify the differences between the results of different CIU experiments and evaluate the significance of those differences relative to the variance of the underlying measurements. Many of the differences between anions and cations that were identified can be attributed to the lower absolute charge states of anions. For example, the extents of the increase in collision cross section over the full range of energies depended strongly on absolute charge state. However, over intermediate energies, there are significant difference between anions and cations with the same absolute charge state. Therefore, CIU is sensitive to the polarity of protein ions. Based on these results, we propose that the utility of CIU to differentiate similar proteins or noncovalent complexes may also depend on polarity. More generally, these results indicate that the relationship between the structures and dynamics of native-like cations and anions deserve further attention and that future studies may benefit from integrating results from ions of both polarities.

摘要

碰撞诱导 unfolding(CIU)利用离子淌度来探测蛋白质和非共价复合物的离子结构,作为在分析之前气相活化程度的函数。CIU 可以敏感地探测结构域、同工型身份和结合伴侣,这使其在许多应用中具有吸引力。几乎所有以前的 CIU 应用都探测了阳离子。在这里,我们评估了 CIU 对阴离子的应用,并将阴离子的结果与阳离子的结果进行了比较。为此,我们开发了一个“相似度得分”,用于量化不同 CIU 实验结果之间的差异,并评估这些差异相对于基础测量的方差的显著性。在阴离子和阳离子之间发现的许多差异可以归因于阴离子的绝对电荷状态较低。例如,在整个能量范围内,碰撞截面的增加程度强烈依赖于绝对电荷状态。然而,在中等能量下,具有相同绝对电荷状态的阴离子和阳离子之间存在显著差异。因此,CIU 对蛋白质离子的极性敏感。基于这些结果,我们提出 CIU 区分相似蛋白质或非共价复合物的效用也可能取决于极性。更一般地说,这些结果表明,天然样阳离子和阴离子的结构和动力学之间的关系值得进一步关注,未来的研究可能受益于整合来自极性离子的结果。

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