Astudillo Alma M, Balgoma David, Balboa María A, Balsinde Jesús
Instituto de Biología y Genética Molecular, Consejo Superior de Investigaciones Científicas (CSIC), 47003 Valladolid, Spain.
Biochim Biophys Acta. 2012 Feb;1821(2):249-56. doi: 10.1016/j.bbalip.2011.11.006. Epub 2011 Dec 2.
The development of mass spectrometry-based techniques is opening new insights into the understanding of arachidonic acid (AA) metabolism. AA incorporation, remodeling and release are collectively controlled by acyltransferases, phospholipases and transacylases that exquisitely regulate the distribution of AA between the different glycerophospholipid species and its mobilization during cellular stimulation. Traditionally, studies involving phospholipid AA metabolism were conducted by using radioactive precursors and scintillation counting from thin layer chromatography separations that provided only information about lipid classes. Today, the input of lipidomic approaches offers the possibility of characterizing and quantifying specific molecular species with great accuracy and within a biological context associated to protein and/or gene expression in a temporal frame. This review summarizes recent results applying mass spectrometry-based lipidomic approaches to the identification of AA-containing glycerophospholipids, phospholipid AA remodeling and synthesis of oxygenated metabolites.
基于质谱技术的发展为深入理解花生四烯酸(AA)代谢开辟了新途径。AA的掺入、重塑和释放由酰基转移酶、磷脂酶和转酰基酶共同控制,这些酶精确调节AA在不同甘油磷脂种类之间的分布及其在细胞刺激过程中的动员。传统上,涉及磷脂AA代谢的研究是通过使用放射性前体并对薄层色谱分离后的闪烁计数进行的,这些方法仅提供有关脂质类别的信息。如今,脂质组学方法的引入使得在与蛋白质和/或基因表达相关的生物学背景下,在时间框架内以极高的准确性对特定分子种类进行表征和定量成为可能。本综述总结了近期应用基于质谱的脂质组学方法来鉴定含AA的甘油磷脂、磷脂AA重塑以及氧化代谢物合成的研究结果。