Mancuso David J, Sims Harold F, Han Xianlin, Jenkins Christopher M, Guan Shao Ping, Yang Kui, Moon Sung Ho, Pietka Terri, Abumrad Nada A, Schlesinger Paul H, Gross Richard W
Division of Bioorganic Chemistry and Molecular Pharmacology, Department of Medicine, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Biol Chem. 2007 Nov 30;282(48):34611-22. doi: 10.1074/jbc.M707795200. Epub 2007 Oct 8.
Previously, we identified a novel calcium-independent phospholipase, designated calcium-independent phospholipase A(2) gamma (iPLA(2)gamma), which possesses dual mitochondrial and peroxisomal subcellular localization signals. To identify the roles of iPLA(2)gamma in cellular bioenergetics, we generated mice null for the iPLA(2)gamma gene by eliminating the active site of the enzyme through homologous recombination. Mice null for iPLA(2)gamma display multiple bioenergetic dysfunctional phenotypes, including 1) growth retardation, 2) cold intolerance, 3) reduced exercise endurance, 4) greatly increased mortality from cardiac stress after transverse aortic constriction, 5) abnormal mitochondrial function with a 65% decrease in ascorbate-induced Complex IV-mediated oxygen consumption, and 6) a reduction in myocardial cardiolipin content accompanied by an altered cardiolipin molecular species composition. We conclude that iPLA(2)gamma is essential for maintaining efficient bioenergetic mitochondrial function through tailoring mitochondrial membrane lipid metabolism and composition.
此前,我们鉴定出一种新型的非钙依赖性磷脂酶,命名为非钙依赖性磷脂酶A2γ(iPLA2γ),它具有线粒体和过氧化物酶体双重亚细胞定位信号。为了确定iPLA2γ在细胞生物能量学中的作用,我们通过同源重组消除该酶的活性位点,构建了iPLA2γ基因敲除小鼠。iPLA2γ基因敲除小鼠表现出多种生物能量功能障碍表型,包括:1)生长迟缓;2)不耐寒;3)运动耐力降低;4)经主动脉缩窄后心脏应激导致的死亡率大幅增加;5)线粒体功能异常,抗坏血酸诱导的细胞色素c氧化酶(复合体IV)介导的氧消耗降低65%;6)心肌心磷脂含量减少,同时心磷脂分子种类组成改变。我们得出结论,iPLA2γ通过调节线粒体膜脂质代谢和组成,对于维持高效的线粒体生物能量功能至关重要。