Wellcome Trust Sanger Institute, Hinxton, Cambridge, CB10 1SA, UK.
Department of Biomedical Science & Centre for Membrane Interactions and Dynamics (CMIAD), Firth Court, Western Bank, University of Sheffield, Sheffield, S10 2TN, UK.
Sci Rep. 2017 Jul 5;7(1):4683. doi: 10.1038/s41598-017-04580-1.
Protein S-acylation (palmitoylation) is a reversible lipid modification that is an important regulator of dynamic membrane-protein interactions. Proteomic approaches have uncovered many putative palmitoylated proteins however, methods for comprehensive palmitoylation site characterization are lacking. We demonstrate a quantitative site-specific-Acyl-Biotin-Exchange (ssABE) method that allowed the identification of 906 putative palmitoylation sites on 641 proteins from mouse forebrain. 62% of sites map to known palmitoylated proteins and 102 individual palmitoylation sites are known from the literature. 54% of palmitoylation sites map to synaptic proteins including many GPCRs, receptors/ion channels and peripheral membrane proteins. Phosphorylation sites were also identified on a subset of peptides that were palmitoylated, demonstrating for the first time co-identification of these modifications by mass spectrometry. Palmitoylation sites were identified on over half of the family of palmitoyl-acyltransferases (PATs) that mediate protein palmitoylation, including active site thioester-linked palmitoyl intermediates. Distinct palmitoylation motifs and site topology were identified for integral membrane and soluble proteins, indicating potential differences in associated PAT specificity and palmitoylation function. ssABE allows the global identification of palmitoylation sites as well as measurement of the active site modification state of PATs, enabling palmitoylation to be studied at a systems level.
蛋白质 S 酰化(棕榈酰化)是一种可逆的脂质修饰,是动态膜蛋白相互作用的重要调节剂。蛋白质组学方法已经发现了许多推测的棕榈酰化蛋白,但是缺乏全面的棕榈酰化位点表征方法。我们展示了一种定量的特异性酰基-生物素交换(ssABE)方法,该方法可以鉴定来自小鼠前脑的 641 种蛋白质中的 906 个推测的棕榈酰化位点。62%的位点映射到已知的棕榈酰化蛋白上,102 个单独的棕榈酰化位点来自文献。54%的棕榈酰化位点映射到突触蛋白上,包括许多 GPCR、受体/离子通道和外周膜蛋白。在被棕榈酰化的肽的一部分上也鉴定到了磷酸化位点,这是首次通过质谱法同时鉴定到这些修饰。超过一半的介导蛋白质棕榈酰化的棕榈酰基转移酶(PAT)家族的成员上都鉴定到了棕榈酰化位点,包括活性位点硫酯连接的棕榈酰中间产物。完整膜蛋白和可溶性蛋白的棕榈酰化位点具有不同的特征和拓扑结构,表明潜在的 PAT 特异性和棕榈酰化功能存在差异。ssABE 可以全面鉴定棕榈酰化位点,并测量 PAT 的活性位点修饰状态,从而能够在系统水平上研究棕榈酰化。