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红外光激活可在线性离子阱质谱仪上实现组织中蛋白质复合物的纳米DESI质谱分析。

Infrared Photoactivation Enables nano-DESI MS of Protein Complexes in Tissue on a Linear Ion Trap Mass Spectrometer.

作者信息

Hale Oliver J, Mize Todd H, Cooper Helen J

机构信息

School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, U.K.

出版信息

J Am Soc Mass Spectrom. 2025 Jan 1;36(1):146-152. doi: 10.1021/jasms.4c00377. Epub 2024 Nov 27.

Abstract

Native mass spectrometry analysis of proteins directly from tissues can be performed by using nanospray-desorption electrospray ionization (nano-DESI). Typically, supplementary collisional activation is essential to decluster protein complex ions from solvent, salt, detergent, and lipid clusters that comprise the ion beam. As an alternative, we have implemented declustering by infrared (IR) photoactivation on a linear ion trap mass spectrometer equipped with a CO laser (λ = 10.6 μm). The prototype system demonstrates declustering of intact protein complex ions up to approximately 50 kDa in molecular weight that were sampled directly from brain and eye lens tissues by nano-DESI. For example, signals for different metal binding states of hSOD1 homodimers (approximately 32 kDa) separated by only approximately 6 Th (10+ ions) were resolved with IR declustering, but not with collisional activation. We found IR declustering to outperform collisional activation in its ability to reduce chemical background attributable to nonspecific clusters in the nano-DESI ion beam. The prototype system also demonstrates native MS on a low-cost mass spectrometer and the potential of linear ion trap mass spectrometers for this type of analysis.

摘要

使用纳米喷雾解吸电喷雾电离(nano-DESI)可直接对组织中的蛋白质进行原生质谱分析。通常,补充碰撞活化对于从包含离子束的溶剂、盐、去污剂和脂质簇中解簇蛋白质复合离子至关重要。作为一种替代方法,我们在配备CO激光器(λ = 10.6 μm)的线性离子阱质谱仪上通过红外(IR)光活化实现了解簇。该原型系统展示了通过nano-DESI直接从脑和眼晶状体组织中采样的分子量高达约50 kDa的完整蛋白质复合离子的解簇。例如,通过IR解簇可分辨仅相差约6 Th(10+离子)的hSOD1同二聚体(约32 kDa)不同金属结合状态的信号,但碰撞活化无法做到。我们发现IR解簇在减少nano-DESI离子束中非特异性簇所致化学背景的能力方面优于碰撞活化。该原型系统还展示了在低成本质谱仪上的原生质谱分析以及线性离子阱质谱仪用于此类分析的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cd6/11697349/b50da3a4dc41/js4c00377_0001.jpg

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