A mass spectrometry-based proteomics strategy to detect long-chain S-acylated peptides

IF 3.3 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Analyst Pub Date : 2025-08-28 DOI:10.1039/D5AN00557D
Samiksha Sardana, Andrea Trezza, Francine Rodrigues Ianiski, Anneroos E. Nederstigt and Marc P. Baggelaar
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引用次数: 0

Abstract

Long-chain S-acylation is the addition of long-chain fatty acids to cysteine residues on proteins. This lipid modification is essential for protein membrane association and signalling but presents analytical challenges due to both its hydrophobicity and the labile nature of thioester bonds. We developed and optimised a bottom-up mass spectrometry workflow tailored for the detection of long-chain S-acylated peptides. Following liquid chromatography optimisation for improved separation and elution of long-chain S-acylated peptides from a C18 stationary phase, we investigated thioester stability under typical proteomics sample preparation conditions, including variations in pH, reducing agents, and trypsin digestion. Stability analyses revealed that long-chain S-acylated peptides were generally resistant to pH variations and reducing agents, while extended digestion times resulted in a loss of signal from some peptides. For MS/MS analysis, CID, HCD and ETD were applied to analyse long-chain S-acylated peptides. Neutral losses of the modification were observed with all these fragmentation methods. However, HCD proved to be the most effective, as the fragment ions resulting from the neutral losses provided sequence information, unlike those from CID and ETD. Applying this workflow to HEK293T cells overexpressing the long-chain S-acylated proteins GNA13 and RhoB, we detected dual acylation states of GNA13 and observed both long-chain S-acylation and prenylation on RhoB. Our optimised analytical strategy facilitates the identification and analysis of long-chain S-acylation on proteins without the need for chemical derivatization by alkyne-tagged probes or acyl-biotin exchange. Although recombinant overexpression of the long-chain S-acylated proteins was still required for long-chain S-acylation detection, this direct analysis strategy for protein long-chain S-acylation enables the study of lipid modifications with lipid-specific resolution, laying a foundation for deeper insights into the regulatory roles of these hydrophobic modifications in protein function and cellular signalling.

Abstract Image

Abstract Image

基于质谱的蛋白质组学策略检测长链s酰化肽
长链s酰化是将长链脂肪酸添加到蛋白质上的半胱氨酸残基上。这种脂质修饰对蛋白质膜结合和信号传导至关重要,但由于其疏水性和硫酯键的不稳定性,提出了分析上的挑战。我们开发并优化了为检测长链s酰化肽量身定制的自下而上的质谱工作流程。通过液相色谱优化,从C18固定相中分离和洗脱长链s酰化肽,我们研究了典型蛋白质组学样品制备条件下硫酯的稳定性,包括pH、还原剂和胰蛋白酶消化的变化。稳定性分析表明,长链s酰化肽通常对pH变化和还原剂具有抗性,而消化时间的延长导致一些肽的信号丢失。MS/MS分析采用CID、HCD和ETD对长链s酰化肽进行分析。用各种破碎方法观察了改性的中性损失。然而,HCD被证明是最有效的,因为与CID和ETD不同,由中性损失产生的片段离子提供了序列信息。将此工作流程应用于过表达长链s酰化蛋白GNA13和RhoB的HEK293T细胞,我们检测到GNA13的双酰化状态,并观察到RhoB上的长链s酰化和戊酰化。我们优化的分析策略有助于识别和分析蛋白质上的长链s -酰化,而无需通过炔标记探针或酰基生物素交换进行化学衍生化。尽管长链s -酰化检测仍然需要重组过表达长链s -酰化蛋白,但这种蛋白质长链s -酰化的直接分析策略使得脂质修饰的研究具有脂质特异性分辨率,为深入了解这些疏水修饰在蛋白质功能和细胞信号传导中的调节作用奠定了基础。
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来源期刊
Analyst
Analyst 化学-分析化学
CiteScore
7.80
自引率
4.80%
发文量
636
审稿时长
1.9 months
期刊介绍: "Analyst" journal is the home of premier fundamental discoveries, inventions and applications in the analytical and bioanalytical sciences.
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