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用间硝基苄醇和碳酸丙烯酯进行超电荷化:形成具有扩展的、近乎线性构象的高电荷离子。

Supercharging with m-nitrobenzyl alcohol and propylene carbonate: forming highly charged ions with extended, near-linear conformations.

机构信息

Department of Chemistry, University of California, Berkeley, Berkeley, California 94720-1460, United States.

出版信息

Anal Chem. 2015 Apr 7;87(7):3973-80. doi: 10.1021/acs.analchem.5b00071. Epub 2015 Mar 10.

Abstract

The effectiveness of the supercharging reagents m-nitrobenzyl alcohol (m-NBA) and propylene carbonate at producing highly charged protein ions in electrospray ionization is compared. Addition of 5% m-NBA or 15% propylene carbonate increases the average charge of three proteins by ∼21% or ∼23%, respectively, when these ions are formed from denaturing solutions (water/methanol/acetic acid). These results indicate that both reagents are nearly equally effective at supercharging when used at their optimum concentrations. A narrowing of the charge state distribution occurs with both reagents, although this effect is greater for propylene carbonate. Focusing the ion signal into fewer charge states has the advantage of improving sensitivity. The maximum charge state of ubiquitin formed with propylene carbonate is 21+, four charges higher than previously reported. Up to nearly 30% of all residues in a protein can be charged, and the collisional cross sections of the most highly charged ions of both ubiquitin and cytochrome c formed with these supercharging reagents were measured for the first time and found to be similar to those calculated for theoretical highly extended, linear or near-linear conformations. Under native supercharging conditions, m-NBA is significantly more effective at producing high charge states than propylene carbonate.

摘要

比较了超离试剂间硝基苄醇(m-NBA)和碳酸丙烯酯在电喷雾电离中产生高电荷蛋白质离子的效果。当这些离子由变性溶液(水/甲醇/乙酸)形成时,添加 5%的 m-NBA 或 15%的碳酸丙烯酯分别将三种蛋白质的平均电荷增加了约 21%或 23%。这些结果表明,在最佳浓度下,这两种试剂在超离时的效果几乎相同。尽管碳酸丙烯酯的效果更大,但两种试剂都会使电荷状态分布变窄。将离子信号聚焦到更少的电荷状态具有提高灵敏度的优点。与以前报道的相比,用碳酸丙烯酯形成的泛素的最大电荷状态为 21+,高出 4 个电荷。高达近 30%的蛋白质残基可以被带电,并且首次测量了用这些超离试剂形成的泛素和细胞色素 c 的最高电荷离子的碰撞截面,发现与理论上高度扩展的线性或近线性构象的计算值相似。在天然超离条件下,m-NBA 在产生高电荷状态方面比碳酸丙烯酯更有效。

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