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通过电喷雾质谱法分析蛋白质混合物:构象和去溶剂化行为对血红蛋白亚基信号强度的影响。

Analysis of protein mixtures by electrospray mass spectrometry: effects of conformation and desolvation behavior on the signal intensities of hemoglobin subunits.

作者信息

Kuprowski Mark C, Boys Brian L, Konermann Lars

机构信息

Department of Chemistry, The University of Western Ontario, London, Ontario, Canada.

出版信息

J Am Soc Mass Spectrom. 2007 Jul;18(7):1279-85. doi: 10.1016/j.jasms.2007.04.002. Epub 2007 Apr 15.

Abstract

The determination of solution-phase protein concentration ratios based on ESI-MS intensity ratios is not always straightforward. For example, equimolar mixtures of hemoglobin alpha- and beta-subunits consistently result in much higher peak intensities for the alpha-chain. The current work explores the origin of this effect. Under mildly acidic conditions (pH 3.4) alpha-globin is extensively unfolded, whereas beta-globin retains residual structure. Because of its greater nonpolar character, the more unfolded alpha-subunit can more effectively compete for charge. This leads to suppression of beta-globin signals under conditions where the protein ion yield is limited by the charge concentration on the initially formed ESI droplets. More balanced intensities are observed when operating under charge excess conditions and/or in a solvent environment where both proteins are unfolded to a similar degree (pH 2.2). However, even in these cases the overall alpha-globin peak intensity is still twice as high as that of the beta-subunit. The persistent imbalance under these conditions originates from the different declustering behaviors of the two proteins. A considerable fraction of beta-globin undergoes incomplete desolvation during ESI, thereby reducing the intensity of bare beta + zH ions. When including the contributions of incompletely desolvated species, the overall alpha:beta ion intensity ratio is close to unity. The alpha:beta intensity imbalance can also be eliminated by a strongly elevated declustering potential in the ion sampling interface. In conclusion, important factors that have to be considered for the ESI-MS analysis of protein mixtures are (1) conformational effects, resulting in differential surface activities, and (2) dissimilarities in the protein desolvation behavior.

摘要

基于电喷雾电离质谱(ESI-MS)强度比来测定溶液相蛋白质浓度比并非总是简单直接的。例如,血红蛋白α亚基和β亚基的等摩尔混合物始终会导致α链的峰强度高得多。当前的工作探究了这种效应的起源。在轻度酸性条件(pH 3.4)下,α-珠蛋白会大量展开,而β-珠蛋白保留残余结构。由于其更大的非极性特征,展开程度更高的α亚基能更有效地竞争电荷。这导致在蛋白质离子产率受初始形成的ESI液滴上电荷浓度限制的条件下,β-珠蛋白信号受到抑制。在电荷过量条件下和/或在两种蛋白质都展开到相似程度的溶剂环境(pH 2.2)中操作时,会观察到更平衡的强度。然而,即使在这些情况下,α-珠蛋白的整体峰强度仍比β亚基高两倍。这些条件下持续存在的不平衡源于两种蛋白质不同的去簇行为。相当一部分β-珠蛋白在ESI过程中经历不完全去溶剂化,从而降低了裸β + zH离子的强度。当计入不完全去溶剂化物种的贡献时,整体α:β离子强度比接近1。α:β强度不平衡也可通过离子采样界面中强烈升高的去簇电位来消除。总之,蛋白质混合物的ESI-MS分析必须考虑的重要因素有:(1)构象效应,导致不同的表面活性;(2)蛋白质去溶剂化行为的差异。

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