Gu Si, Nie Xinghua, George Amal, Tyler Kyle, Xing Yu, Qin Ling, Qi Baoxiu
School of Pharmacy and BioMolecular Sciences, Liverpool John Moores University, Byram Street, Liverpool L3 3AF, UK.
College of Plant Science and Technology, Beijing University of Agriculture, Beijing 102208, China.
Plants (Basel). 2025 Jan 4;14(1):127. doi: 10.3390/plants14010127.
Protein S-acyl transferases (PATs) are a family of enzymes that catalyze protein S-acylation, a post-translational lipid modification involved in protein membrane targeting, trafficking, stability, and protein-protein interaction. S-acylation plays important roles in plant growth, development, and stress responses. Here, we report the genome-wide analysis of the family genes in the woodland strawberry (), a model plant for studying the economically important Rosaceae family. In total, 21 'Asp-His-His-Cys' Cys Rich Domain (DHHC-CRD)-containing sequences were identified, named here as FvPAT1-21. Expression profiling by reverse transcription quantitative PCR (RT-qPCR) showed that all the 21 were expressed ubiquitously in seedlings and different tissues from adult plants, with notably high levels present in vegetative tissues and young fruits. Treating seedlings with hormones indole-3-acetic acid (IAA), abscisic acid (ABA), and salicylic acid (SA) rapidly increased the transcription of most . A complementation assay in yeast PAT mutant and auto-S-acylation assay of one FvPAT (FvPAT19) confirmed its enzyme activity where the Cys in the DHHC motif was required. An AlphaFold prediction of the DHHC and the mutated DHHC155S of FvPAT19 provided further proof of the importance of C155 in fatty acid binding. Together, our data clearly demonstrated that S-acylation catalyzed by FvPATs plays important roles in growth, development, and stress signaling in strawberries. These preliminary results could contribute to further research to understand S-acylation in strawberries and plants in general.
蛋白质S-酰基转移酶(PATs)是一类催化蛋白质S-酰化作用的酶,蛋白质S-酰化是一种翻译后脂质修饰,参与蛋白质的膜靶向、运输、稳定性以及蛋白质-蛋白质相互作用。S-酰化在植物生长、发育和应激反应中发挥重要作用。在此,我们报告了对森林草莓(一种用于研究具有重要经济价值的蔷薇科的模式植物)中该家族基因的全基因组分析。总共鉴定出21个含有“Asp-His-His-Cys”富含半胱氨酸结构域(DHHC-CRD)的序列,在此命名为FvPAT1-21。通过逆转录定量PCR(RT-qPCR)进行的表达谱分析表明,所有这21个基因在幼苗和成年植物的不同组织中均普遍表达,在营养组织和幼果中表达水平尤其高。用激素吲哚-3-乙酸(IAA)、脱落酸(ABA)和水杨酸(SA)处理幼苗会迅速增加大多数基因的转录。在酵母PAT突变体中的互补试验以及一个FvPAT(FvPAT19)的自S-酰化试验证实了其酶活性,其中DHHC基序中的半胱氨酸是必需的。对FvPAT19的DHHC和突变的DHHC155S进行的AlphaFold预测进一步证明了C155在脂肪酸结合中的重要性。总之,我们的数据清楚地表明,FvPATs催化的S-酰化在草莓的生长、发育和应激信号传导中发挥重要作用。这些初步结果可能有助于进一步研究以全面了解草莓及其他植物中的S-酰化作用。