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利用数字波形缓解蛋白质质量过滤分析过程中溶剂聚结。

Using Digital Waveforms to Mitigate Solvent Clustering During Mass Filter Analysis of Proteins.

机构信息

Department of Chemistry, Washington State University, Pullman, WA, USA.

出版信息

J Am Soc Mass Spectrom. 2018 Oct;29(10):2081-2085. doi: 10.1007/s13361-018-2012-0. Epub 2018 Jul 9.

Abstract

With advances in the precision of digital electronics, waveform generation technology has progressed to a state that enables the creation of m/z filters that are purely digitally driven. These advances present new methods of performing mass analyses that provide information from a chemical system that are inherently difficult to achieve by other means. One notable characteristic of digitally driven mass filters is the capacity to transmit ions at m/z ratios that vastly exceed the capabilities of traditional resonant systems. However, the capacity to probe ion m/z ratios that span multiple orders of magnitudes across multiple orders of magnitude presents a new set of issues requiring a solution. In the present work, when probing multiply charged protein species beyond m/z 2000 using a gentle atmospheric pressure interface, the presence of solvent adducts and poorly resolved multimers can severely degrade spectral fidelity. Increasing energy imparted into a target ion population is one approach minimizing these clusters; however, the use of digital waveform technology provides an alternative that maximizes ion transport efficiency and simultaneously minimizes solvent clustering. In addition to the frequency of the applied waveform, digital manipulation also provides control over the duty cycle of the target waveform. This work examines the conditions and approach leading to optimal digital waveform operation to minimize solvent clustering. Graphical Abstract ᅟ.

摘要

随着数字电子技术精度的提高,波形产生技术已经发展到可以创建完全由数字驱动的 m/z 滤波器的地步。这些进展提供了新的质谱分析方法,这些方法可以提供通过其他手段难以获得的化学系统信息。数字驱动质量滤波器的一个显著特点是能够传输 m/z 比远远超过传统共振系统能力的离子。然而,探测跨越多个数量级的多个数量级的离子 m/z 比的能力提出了一系列需要解决的新问题。在本工作中,当使用温和的大气压接口探测 m/z 超过 2000 的多重电荷蛋白质物种时,溶剂加合物和分辨率差的多聚体的存在会严重降低光谱保真度。增加传递到目标离子群的能量是一种最小化这些簇的方法;然而,数字波形技术的使用提供了一种替代方法,可以最大限度地提高离子传输效率,同时最大限度地减少溶剂聚类。除了施加波形的频率外,数字处理还可以控制目标波形的占空比。这项工作研究了导致最小化溶剂聚类的最佳数字波形操作的条件和方法。

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