Raftery Mark J
Redox Rep. 2014 Jul;19(4):140-7. doi: 10.1179/1351000214Y.0000000089. Epub 2014 Apr 4.
Numerous oxidative modifications to proteins and amino acids have been identified with most susceptible, to varying degrees, of some form of oxidative modification. The consequence of oxidation on protein structure and function reveals that some of these modifications are functionally important. The discovery and accurate characterization/description of existing and new modifications requires modern instrumentation, great care, and attention to detail, especially if the modifications are present in low stoichiometric quantities or they only exist transiently. The focus of this brief review is on the use of mass spectrometry, protein chemistry, and proteomics methods and tools to identify oxidatively modified proteins and peptides along with the characterization of specific sites. Many of the specialized mass spectrometry technologies and techniques are becoming more widely available in research laboratories with mass spectrometry or proteomics facilities allowing even non-expert researchers in the field to accurately determine modifications. Illustrative examples of some approaches are provided from the author's work, collaborative research projects, and elsewhere.
人们已经鉴定出蛋白质和氨基酸的多种氧化修饰,其中大多数在不同程度上对某种形式的氧化修饰敏感。氧化对蛋白质结构和功能的影响表明,其中一些修饰在功能上很重要。发现并准确表征/描述现有和新的修饰需要现代仪器设备、格外小心以及注重细节,特别是当修饰以低化学计量存在或仅短暂存在时。本简要综述的重点是使用质谱、蛋白质化学和蛋白质组学方法及工具来鉴定氧化修饰的蛋白质和肽,以及表征特定位点。许多专门的质谱技术在拥有质谱或蛋白质组学设施的研究实验室中越来越普遍,这使得该领域的非专业研究人员也能够准确确定修饰。文中提供了一些方法的示例,这些示例来自作者的工作、合作研究项目以及其他地方。