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离子-离子电荷减少解决了完整质量分析中常见的多种变性挑战。

Ion-Ion Charge Reduction Addresses Multiple Challenges Common to Denaturing Intact Mass Analysis.

机构信息

University of Texas Medical Branch, 301 University Drive, Galveston, Texas 77551, United States.

Thermo Fisher Scientific, 355 River Oaks Pkwy, San Jose, California 95134, United States.

出版信息

Anal Chem. 2022 Mar 8;94(9):3930-3938. doi: 10.1021/acs.analchem.1c04973. Epub 2022 Feb 21.

Abstract

Complete LC-MS-based protein primary sequence characterization requires measurement of intact protein profiles under denaturing and/or reducing conditions. To address issues of protein overcharging of unstructured proteins under acidic, denaturing conditions and sample heterogeneity (macro- and micro-scales) which often confound denaturing intact mass analysis of a wide variety of protein samples, we propose the use of broadband isolation of entire charge state distributions of intact proteins followed by ion-ion proton transfer charge reduction, which we have termed "full scan PTCR" (fsPTCR). Using rapid denaturing size exclusion chromatography coupled to fsPTCR-Orbitrap MS and time-resolved deconvolution data analysis, we demonstrate a strategy for method optimization, leading to significant analytical advantages over conventional MS1. Denaturing analysis of the flexible bacterial translation initiation factor 2 (91 kDa) using fsPTCR reduced overcharging and showed an 11-fold gain in S/N compared to conventional MS1. Analysis by fsPTCR-MS of the microheterogeneous glycoprotein fetuin revealed twice as many proteoforms as MS1 (112 vs 56). In a macroheterogeneous mixture of proteins ranging from 14 to 148 kDa, fsPTCR provided more than 10-fold increased sensitivity and quantitative accuracy for diluted bovine serum albumin (66 kDa). Finally, our analysis shows that collisional gas pressure is a key parameter which can be utilized during fsPTCR to retain or remove larger proteins from acquired spectra.

摘要

完成基于 LC-MS 的蛋白质一级序列特征描述需要在变性和/或还原条件下测量完整蛋白质的图谱。为了解决在酸性变性条件下未折叠蛋白质过度荷电以及样品异质性(宏观和微观尺度)的问题,这些问题常常使各种蛋白质样品的变性完整质量分析复杂化,我们提出使用完整蛋白质的整个电荷状态分布的宽带隔离,然后进行离子-离子质子转移电荷还原,我们称之为“全扫描 PTCR”(fsPTCR)。使用快速变性尺寸排阻色谱法与 fsPTCR-Orbitrap MS 和时间分辨解卷积数据分析相结合,我们展示了一种方法优化策略,与传统的 MS1 相比具有显著的分析优势。使用 fsPTCR 对柔性细菌翻译起始因子 2(91 kDa)进行变性分析可减少过度荷电,并与传统的 MS1 相比,S/N 提高了 11 倍。通过 fsPTCR-MS 对微异质糖蛋白胎球蛋白的分析显示,其蛋白形式比 MS1 多两倍(112 比 56)。在 14 至 148 kDa 的宏观异质蛋白质混合物中,fsPTCR 提供了超过 10 倍的稀释牛血清白蛋白(66 kDa)的灵敏度和定量准确性。最后,我们的分析表明,碰撞气体压力是 fsPTCR 中的一个关键参数,可以用于在获得的光谱中保留或去除较大的蛋白质。

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