Analysis of Protein Cysteine Acylation Using a Modified Suspension Trap (Acyl-Trap)

酰化 化学 棕榈酰化 硫酯 半胱氨酸 羟胺 试剂 生物化学 酰基载体蛋白 组合化学 有机化学 生物合成 催化作用
作者
Michael T. Forrester,Jacob R. Egol,Aleksandra Tata,Purushothama Rao Tata,Matthew W. Foster
出处
期刊:Journal of Proteome Research [American Chemical Society]
卷期号:23 (8): 3716-3725 被引量:3
标识
DOI:10.1021/acs.jproteome.4c00225
摘要

Proteins undergo reversible S-acylation via a thioester linkage in vivo. S-palmitoylation, modification by C16:0 fatty acid, is a common S-acylation that mediates critical protein–membrane and protein–protein interactions. The most widely used S-acylation assays, including acyl-biotin exchange and acyl resin-assisted capture, utilize blocking of free Cys thiols, hydroxylamine-dependent cleavage of the thioester and subsequent labeling of nascent thiol. These assays generally require >500 μg of protein input material per sample and numerous reagent removal and washing steps, making them laborious and ill-suited for high throughput and low input applications. To overcome these limitations, we devised "Acyl-Trap", a suspension trap-based assay that utilizes a thiol-reactive quartz to enable buffer exchange and hydroxylamine-mediated S-acyl enrichment. We show that the method is compatible with protein-level detection of S-acylated proteins (e.g., H-Ras) as well as S-acyl site identification and quantification using "on trap" isobaric labeling and LC-MS/MS from as little as 20 μg of protein input. In mouse brain, Acyl-Trap identified 279 reported sites of S-acylation and 1298 previously unreported putative sites. Also described are conditions for long-term hydroxylamine storage, which streamline the assay. More generally, Acyl-Trap serves as a proof-of-concept for PTM-tailored suspension traps suitable for both traditional protein detection and chemoproteomic workflows.

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