Division of Chemical and Life Sciences and Engineering, King Abdullah University of Science and Technology, Thuwal, 23955-6900, Saudi Arabia.
Cell Commun Signal. 2013 Jan 5;11(1):1. doi: 10.1186/1478-811X-11-1.
Increasing structural and biochemical evidence suggests that post-translational methionine oxidation of proteins is not just a result of cellular damage but may provide the cell with information on the cellular oxidative status. In addition, oxidation of methionine residues in key regulatory proteins, such as calmodulin, does influence cellular homeostasis. Previous findings also indicate that oxidation of methionine residues in signaling molecules may have a role in stress responses since these specific structural modifications can in turn change biological activities of proteins.
Here we use tandem mass spectrometry-based proteomics to show that treatment of Arabidopsis thaliana cells with a non-oxidative signaling molecule, the cell-permeant second messenger analogue, 8-bromo-3,5-cyclic guanosine monophosphate (8-Br-cGMP), results in a time-dependent increase in the content of oxidised methionine residues. Interestingly, the group of proteins affected by cGMP-dependent methionine oxidation is functionally enriched for stress response proteins. Furthermore, we also noted distinct signatures in the frequency of amino acids flanking oxidised and un-oxidised methionine residues on both the C- and N-terminus.
Given both a structural and functional bias in methionine oxidation events in response to a signaling molecule, we propose that these are indicative of a specific role of such post-translational modifications in the direct or indirect regulation of cellular responses. The mechanisms that determine the specificity of the modifications remain to be elucidated.
越来越多的结构和生化证据表明,蛋白质的翻译后蛋氨酸氧化不仅是细胞损伤的结果,还可能为细胞提供有关细胞氧化状态的信息。此外,关键调节蛋白(如钙调蛋白)中蛋氨酸残基的氧化确实会影响细胞内稳态。先前的研究结果还表明,信号分子中蛋氨酸残基的氧化可能在应激反应中发挥作用,因为这些特定的结构修饰可以反过来改变蛋白质的生物学活性。
在这里,我们使用基于串联质谱的蛋白质组学方法表明,用非氧化信号分子、可渗透细胞的第二信使类似物 8-溴-3,5-环鸟苷单磷酸(8-Br-cGMP)处理拟南芥细胞会导致氧化蛋氨酸残基的含量随时间推移而增加。有趣的是,受 cGMP 依赖性蛋氨酸氧化影响的蛋白质组在功能上富含应激响应蛋白。此外,我们还注意到在 C 端和 N 端的氧化和非氧化蛋氨酸残基两侧的氨基酸频率上存在明显的特征。
鉴于信号分子对蛋氨酸氧化事件的结构和功能偏向,我们提出这些修饰直接或间接调节细胞反应的具体作用。决定修饰特异性的机制仍有待阐明。