Kiebish Michael A, Han Xianlin, Cheng Hua, Lunceford Adam, Clarke Catherine F, Moon Hwi, Chuang Jeffrey H, Seyfried Thomas N
Biology Department, Boston College, Chestnut Hill, Massachusetts 02467, USA.
J Neurochem. 2008 Jul;106(1):299-312. doi: 10.1111/j.1471-4159.2008.05383.x. Epub 2008 Jul 1.
The objective of this study was to characterize the lipidome and electron transport chain activities in purified non-synaptic (NS) and synaptic (Syn) mitochondria from C57BL/6J mouse cerebral cortex. Contamination from subcellular membranes, especially myelin, has hindered past attempts to accurately characterize the lipid composition of brain mitochondria. An improved Ficoll and sucrose discontinuous gradient method was employed that yielded highly enriched mitochondrial populations free of myelin contamination. The activities of Complexes I, II, III, and II/III were lower in Syn than in NS mitochondria, while Complexes I/III and IV activities were similar in both populations. Shotgun lipidomics showed that levels of cardiolipin (Ptd(2)Gro) were lower, whereas levels of ceramide and phosphatidylserine were higher in Syn than in NS mitochondria. Coenzyme Q(9) and Q(10) was also lower in Syn than in NS mitochondria. Gangliosides, phosphatidic acid, sulfatides, and cerebrosides were undetectable in brain mitochondria. The distribution of Ptd(2)Gro molecular species was similar in both populations and formed a unique pattern, consisting of seven major molecular species groups, when arranged according to mass to charge ratios. Remodeling involving choline and ethanolamine phosphoglycerides could explain Ptd(2)Gro heterogeneity. NS and Syn mitochondrial lipidomic heterogeneity could influence energy metabolism, which may contribute to metabolic compartmentation of the brain.
本研究的目的是对来自C57BL/6J小鼠大脑皮层的纯化非突触(NS)和突触(Syn)线粒体中的脂质组和电子传递链活性进行表征。亚细胞膜尤其是髓磷脂的污染阻碍了过去准确表征脑线粒体脂质组成的尝试。采用了一种改进的Ficoll和蔗糖不连续梯度方法,该方法产生了高度富集且无髓磷脂污染的线粒体群体。与NS线粒体相比,Syn线粒体中复合物I、II、III和II/III的活性较低,而复合物I/III和IV的活性在两个群体中相似。鸟枪法脂质组学表明,与NS线粒体相比,Syn线粒体中的心磷脂(Ptd(2)Gro)水平较低,而神经酰胺和磷脂酰丝氨酸水平较高。Syn线粒体中的辅酶Q(9)和Q(10)也低于NS线粒体。脑线粒体中未检测到神经节苷脂、磷脂酸、硫脂和脑苷脂。两个群体中Ptd(2)Gro分子种类的分布相似,当按质荷比排列时,形成了一种独特的模式,由七个主要分子种类组组成。涉及胆碱和乙醇胺磷酸甘油酯的重塑可以解释Ptd(2)Gro的异质性。NS和Syn线粒体脂质组的异质性可能会影响能量代谢,这可能有助于大脑的代谢区室化。