Panov Alexander V, Andreeva Larisa, Greenamyre J Timothy
Department of Neurology and the Center for Neurodegenerative Disease, Emory University, Whitehead Biomedical Research Building, Room 575, 615 Michael St., Atlanta, GA 30322, USA.
Arch Biochem Biophys. 2004 Apr 1;424(1):44-52. doi: 10.1016/j.abb.2004.01.013.
Mitochondria play a critical role in some forms of apoptosis, and the Ca(2+)-dependent permeability transition (PT) is a key initiator of this process. We quantitatively examined major control mechanisms of PT in rat brain (RBM) and liver (RLM) mitochondria. Compared with RLM, RBM were less sensitive to cyclosporin A (CsA), but the combined action of CsA+ADP was much more pronounced in RBM. Carboxyatractyloside abrogated the effects of all mPTP inhibitors in RBM but not in RLM, where the effects of CsA were not reduced. Estimated H(+)/Ca(2+) ratios were 0.81+/-0.01 for RLM and 0.84-0.93 for RBM, suggesting that Ca(2+) and Pi were sequestered in the matrix as CaHPO(4) and Ca(3)(PO(4))(2) salts, and that RBM sequester more CaPi as the least soluble salt. We conclude that: (1) RBM and RLM differ in their baseline behavior of the PT and in their responses to PT modifiers, and (2) PT modifiers can be functionally divided into those which directly affect the mitochondrial PT pore and are not energy-dependent (CsA, free Ca(2+), ADP(ex), and Mg(2+)), and those which affect the energy-dependent calcium phosphate sequestration process (ADP(mt), CATR, local anesthetics). We also conclude that ANT affects PT by changing mitochondrial capacity for energization.
线粒体在某些形式的细胞凋亡中起关键作用,而钙依赖性通透性转换(PT)是这一过程的关键启动因素。我们定量研究了大鼠脑(RBM)和肝(RLM)线粒体中PT的主要调控机制。与RLM相比,RBM对环孢素A(CsA)的敏感性较低,但CsA + ADP的联合作用在RBM中更为显著。羧基苍术苷消除了RBM中所有线粒体通透性转换孔(mPTP)抑制剂的作用,但在RLM中没有,在RLM中CsA的作用并未降低。RLM的估计H⁺/Ca²⁺比值为0.81±0.01,RBM为0.84 - 0.93,这表明Ca²⁺和Pi以CaHPO₄和Ca₃(PO₄)₂盐的形式螯合在基质中,并且RBM以最不易溶解的盐形式螯合更多的CaPi。我们得出以下结论:(1)RBM和RLM在PT的基线行为及其对PT调节剂的反应方面存在差异,(2)PT调节剂在功能上可分为直接影响线粒体PT孔且不依赖能量的(CsA、游离Ca²⁺、ADP(ex)和Mg²⁺),以及影响依赖能量的磷酸钙螯合过程的(ADP(mt)、CATR、局部麻醉剂)。我们还得出结论,腺苷酸转运体(ANT)通过改变线粒体的能量化能力来影响PT。