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模式植物中膜蛋白S-酰化的全局分析

Global analysis of membrane protein S-acylation in the model plant .

作者信息

Zhou Lijuan, Su Lingtao, Zhou Mowei, Gritsenko Marina A, Wan Jinrong, Ma Yahui, Zhao Yue, Paša-Tolić Ljiljana, Xu Dong, Stacey Gary

出版信息

bioRxiv. 2025 Jul 2:2025.07.01.658617. doi: 10.1101/2025.07.01.658617.

Abstract

Protein S-acylation is the addition of fatty acids to the cysteine residues in a protein, catalyzed by protein S-acyltransferases (PATs). Despite extensive research on protein S-acylation in animals, our understanding of this process in plants remains limited. In this study, we sought to characterize the S-acylproteome of membrane proteins in and identify potential substrates for two important plant immunity-related PATs (PAT5 and PAT9). To achieve this, S-acylated membrane proteins were first enriched via our optimized acyl-biotinyl exchange strategies at both the protein-level and peptide-level. The enriched samples were then analyzed by label-free quantitative liquid chromatography-mass spectrometry. The results from the two enrichment methods demonstrated that they were complementary in identifying S-acylated proteins and S-acylation sites. Using these methods, over 2500 S-acylation sites in more than 2000 putative S-acylated proteins were identified. Proteins involved in vesicle trafficking, plant phosphorylation, immune responses, and signal transduction pathways were significantly enriched. Additionally, certain amino acid patterns surrounding the S-acylation sites were identified. Comparisons of the S-acylproteomes between the wild type and the PAT5 and PAT9 mutants revealed over 100 potential substrates for both S-acyltransferases. The high quality of our data was supported by the significant overlap with the previously reported data and successful experimental verification of selected candidate proteins. Overall, our study revealed a well-represented S-acylproteome for (especially its membrane proteins) and identified potential substrates for PAT5 and PAT9. These findings will facilitate the functional characterization of S-acylated proteins in plants.

摘要

蛋白质S-酰化是指在蛋白质S-酰基转移酶(PATs)的催化下,将脂肪酸添加到蛋白质中的半胱氨酸残基上。尽管对动物体内的蛋白质S-酰化进行了广泛研究,但我们对植物中这一过程的了解仍然有限。在本研究中,我们试图表征[植物名称未给出]膜蛋白的S-酰基蛋白质组,并鉴定两种与植物免疫相关的重要PATs(PAT5和PAT9)的潜在底物。为实现这一目标,首先通过我们优化的酰基-生物素交换策略在蛋白质水平和肽水平上富集S-酰化膜蛋白。然后,通过无标记定量液相色谱-质谱法分析富集的样品。两种富集方法的结果表明,它们在鉴定S-酰化蛋白和S-酰化位点方面具有互补性。使用这些方法,在超过2000个推定的S-酰化蛋白中鉴定出了超过2500个S-酰化位点。参与囊泡运输、植物磷酸化、免疫反应和信号转导途径的蛋白质显著富集。此外,还鉴定了S-酰化位点周围的某些氨基酸模式。野生型与PAT5和PAT9突变体之间的S-酰基蛋白质组比较揭示了这两种S-酰基转移酶的100多个潜在底物。我们的数据质量很高,这得到了与先前报道数据的显著重叠以及所选候选蛋白的成功实验验证的支持。总体而言,我们的研究揭示了[植物名称未给出](尤其是其膜蛋白)中具有代表性的S-酰基蛋白质组,并鉴定了PAT5和PAT9的潜在底物。这些发现将有助于植物中S-酰化蛋白的功能表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1238/12236689/a67b57bee906/nihpp-2025.07.01.658617v1-f0001.jpg

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