Division of Bioorganic Chemistry and Molecular Pharmacology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Biol Chem. 2009 Dec 18;284(51):35632-44. doi: 10.1074/jbc.M109.055194.
Genetic ablation of calcium-independent phospholipase A(2)gamma (iPLA(2)gamma) results in profound alterations in hippocampal phospholipid metabolism and mitochondrial phospholipid homeostasis resulting in enlarged and degenerating mitochondria leading to autophagy and cognitive dysfunction. Shotgun lipidomics demonstrated multiple alterations in hippocampal lipid metabolism in iPLA(2)gamma(-/-) mice including: 1) a markedly elevated hippocampal cardiolipin content with an altered molecular species composition characterized by a shift to shorter chain length molecular species; 2) alterations in both choline and ethanolamine glycerophospholipids, including a decreased plasmenylethanolamine content; 3) increased oxidized phosphatidylethanolamine molecular species; and 4) an increased content of ceramides. Electron microscopic examination demonstrated the presence of enlarged heteromorphic lamellar structures undergoing degeneration accompanied by the presence of ubiquitin positive spheroid inclusion bodies. Purification of these enlarged heteromorphic lamellar structures by buoyant density centrifugation and subsequent SDS-PAGE and proteomics identified them as degenerating mitochondria. Collectively, these results identify the obligatory role of iPLA(2)gamma in neuronal mitochondrial lipid metabolism and membrane structure demonstrating that iPLA(2)gamma loss of function results in a mitochondrial neurodegenerative disorder characterized by degenerating mitochondria, autophagy, and cognitive dysfunction.
钙非依赖性磷脂酶 A2γ(iPLA2γ)的基因缺失导致海马磷脂代谢和线粒体磷脂动态平衡发生深刻改变,导致线粒体增大和退化,进而引发自噬和认知功能障碍。鸟枪法脂质组学研究表明,iPLA2γ(-/-)小鼠海马脂质代谢发生多种改变,包括:1)心磷脂含量显著升高,分子种类组成发生改变,表现为短链长分子种类的转移;2)胆碱和乙醇胺甘油磷脂发生改变,包括溶血磷脂酰乙醇胺含量降低;3)氧化的磷脂酰乙醇胺分子种类增加;4)神经酰胺含量增加。电镜检查显示存在增大的异质层状结构,伴有退化,并伴有泛素阳性球形包涵体。通过浮力密度离心和随后的 SDS-PAGE 和蛋白质组学对这些增大的异质层状结构进行纯化,鉴定为退化的线粒体。总之,这些结果确定了 iPLA2γ 在神经元线粒体脂质代谢和膜结构中的必需作用,表明 iPLA2γ 功能丧失会导致以退化线粒体、自噬和认知功能障碍为特征的线粒体神经退行性疾病。