Venter Andre R
Department of Chemistry, Western Michigan University, Kalamazoo, Michigan, USA.
Mass Spectrom Rev. 2025 Sep-Oct;44(5):757-772. doi: 10.1002/mas.21900. Epub 2024 Jul 26.
This review presents progress made in the ambient analysis of proteins, in particular by desorption electrospray ionization-mass spectrometry (DESI-MS). Related ambient ionization techniques are discussed in comparison to DESI-MS only to illustrate the larger context of protein analysis by ambient ionization mass spectrometry. The review describes early and current approaches for the analysis of undigested proteins, native proteins, tryptic digests, and indirect protein determination through reporter molecules. Applications to mass spectrometry imaging for protein spatial distributions, the identification of posttranslational modifications, determination of binding stoichiometries, and enzymatic transformations are discussed. The analytical capabilities of other ambient ionization techniques such as LESA and nano-DESI currently exceed those of DESI-MS for in situ surface sampling of intact proteins from tissues. This review shows, however, that despite its many limitations, DESI-MS is making valuable contributions to protein analysis. The challenges in sensitivity, spatial resolution, and mass range are surmountable obstacles and further development and improvements to DESI-MS is justified.
本综述介绍了蛋白质常压分析方面取得的进展,特别是解吸电喷雾电离质谱法(DESI-MS)。仅将相关常压电离技术与DESI-MS进行比较讨论,以说明常压电离质谱法分析蛋白质的更广泛背景。本综述描述了分析未消化蛋白质、天然蛋白质、胰蛋白酶消化产物以及通过报告分子间接测定蛋白质的早期和当前方法。讨论了其在蛋白质空间分布的质谱成像、翻译后修饰的鉴定、结合化学计量的测定以及酶促转化方面的应用。目前,其他常压电离技术如液相萃取表面分析(LESA)和纳米DESI在从组织原位表面采样完整蛋白质方面的分析能力超过了DESI-MS。然而,本综述表明,尽管DESI-MS有许多局限性,但它仍在为蛋白质分析做出有价值的贡献。灵敏度、空间分辨率和质量范围方面的挑战是可以克服的障碍,并证明对DESI-MS进行进一步开发和改进是合理的。