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Anal Chem. 2022 Jun 14;94(23):8497-8505. doi: 10.1021/acs.analchem.2c01488. Epub 2022 May 27.
2
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Elife. 2022 Mar 7;11:e76766. doi: 10.7554/eLife.76766.
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J Am Soc Mass Spectrom. 2021 Dec 1;32(12):2860-2873. doi: 10.1021/jasms.1c00269. Epub 2021 Oct 29.
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Anal Chem. 2021 Jul 27;93(29):10013-10021. doi: 10.1021/acs.analchem.1c00150. Epub 2021 Jul 14.
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红外光光激活可实现跨膜蛋白的改进的天然从头质谱分析。

Infrared Photoactivation Enables Improved Native Top-Down Mass Spectrometry of Transmembrane Proteins.

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109, United States.

出版信息

Anal Chem. 2023 Sep 5;95(35):13361-13367. doi: 10.1021/acs.analchem.3c02788. Epub 2023 Aug 23.

DOI:10.1021/acs.analchem.3c02788
PMID:37610409
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11081007/
Abstract

Membrane proteins are often challenging targets for native top-down mass spectrometry experimentation. The requisite use of membrane mimetics to solubilize such proteins necessitates the application of supplementary activation methods to liberate protein ions prior to sequencing, which typically limits the sequence coverage achieved. Recently, infrared photoactivation has emerged as an alternative to collisional activation for the liberation of membrane proteins from surfactant micelles. However, much remains unknown regarding the mechanism by which IR activation liberates membrane protein ions from such micelles, the extent to which such methods can improve membrane protein sequence coverage, and the degree to which such approaches can be extended to support native proteomics. Here, we describe experiments designed to evaluate and probe infrared photoactivation for membrane protein sequencing, proteoform identification, and native proteomics applications. Our data reveal that infrared photoactivation can dissociate micelles composed of a variety of detergent classes, without the need for a strong IR chromophore by leveraging the relatively weak association energies of such detergent clusters in the gas phase. Additionally, our data illustrate how IR photoactivation can be extended to include membrane mimetics beyond micelles and liberate proteins from nanodiscs, liposomes, and bicelles. Finally, our data quantify the improvements in membrane protein sequence coverage produced through the use of IR photoactivation, which typically leads to membrane protein sequence coverage values ranging from 40 to 60%.

摘要

膜蛋白通常是天然自上而下质谱实验的挑战性靶标。为了溶解这些蛋白质,需要使用膜类似物,这就需要在测序前应用补充激活方法来释放蛋白质离子,这通常会限制所达到的序列覆盖率。最近,红外光激活已成为从表面活性剂胶束中释放膜蛋白的替代碰撞激活方法。然而,对于红外激活从这些胶束中释放膜蛋白离子的机制、这些方法在多大程度上可以提高膜蛋白序列覆盖率以及这些方法在多大程度上可以扩展以支持天然蛋白质组学,仍有许多未知之处。在这里,我们描述了旨在评估和探测用于膜蛋白测序、蛋白质形式鉴定和天然蛋白质组学应用的红外光激活的实验。我们的数据表明,红外光激活可以使由各种去污剂类别的胶束解离,而无需利用气相中此类去污剂簇的相对较弱的结合能来使用强 IR 发色团。此外,我们的数据说明了如何将红外光激活扩展到包括胶束以外的膜类似物,并从纳米盘、脂质体和双分子层中释放蛋白质。最后,我们的数据量化了通过使用红外光激活产生的膜蛋白序列覆盖率的提高,通常会导致膜蛋白序列覆盖率值在 40%至 60%之间。