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羧基光反应性 MS 可裂解交联剂:揭示重氮化合物试剂的一个隐藏方面。

Carboxyl-Photo-Reactive MS-Cleavable Cross-Linkers: Unveiling a Hidden Aspect of Diazirine-Based Reagents.

机构信息

Department of Pharmaceutical Chemistry and Bioanalytics, Institute of Pharmacy, Martin Luther University Halle-Wittenberg , Wolfgang-Langenbeck-Strasse 4, Halle/Saale D-06120, Germany.

出版信息

Anal Chem. 2018 Feb 20;90(4):2805-2809. doi: 10.1021/acs.analchem.7b04915. Epub 2018 Feb 8.

Abstract

A major challenge in cross-linking/mass spectrometry (MS) is targeting carboxyl functions in proteins under physiological conditions that do not disturb the protein's conformation. Cross-linking of glutamic acid and aspartic acid residues in proteins will greatly expand the scope of structural mass spectrometry. We discovered that carboxyl-reactive cross-linkers have already been employed for many years in cross-linking/MS studies, yet in a completely different context. Diazirine-based cross-linkers, such as photomethionine and succinimidyldiazirine cross-linkers, are currently considered to react nonspecifically upon UV-A photoactivation with all 20 proteinogenic amino acids through a reactive carbene that inserts mainly into C-H bonds. We discovered that the cross-linking capability of diazirines based on X-H (X = C, N, O) insertion is in fact only the tip of the iceberg. Diazirines isomerize to linear diazo compounds that can react with carboxylic acids to yield esters. On top of that, the resulting cross-linked products are MS-cleavable allowing an automated analysis of cross-links via customized software tools. Therefore, diazirines open an entirely new route for photo-cross-linking of carboxylic acids. Previous cross-linking studies using diazirines have to be revisited in the light of these findings.

摘要

交联/质谱(MS)的一个主要挑战是在不干扰蛋白质构象的生理条件下靶向蛋白质中的羧基功能。交联谷氨酸和天冬氨酸残基在蛋白质中会极大地扩展结构质谱的范围。我们发现,羧基反应性交联剂已经在交联/MS 研究中使用了多年,但在完全不同的背景下。基于重氮甲烷的交联剂,如光甲硫氨酸和琥珀酰亚胺基重氮甲烷交联剂,目前被认为在 UV-A 光激活下通过反应性卡宾与所有 20 种蛋白质氨基酸非特异性反应,主要插入 C-H 键。我们发现,基于 X-H(X = C、N、O)插入的重氮化合物的交联能力实际上只是冰山一角。重氮化合物异构化为线性重氮化合物,可与羧酸反应生成酯。除此之外,所得交联产物可通过 MS 裂解,允许通过自定义软件工具自动分析交联。因此,重氮化合物为羧酸的光交联开辟了一条全新的途径。基于这些发现,先前使用重氮化合物的交联研究必须重新审视。

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