Norman S G, Johnson G V
Department of Psychiatry and Behavioral Neurobiology, University of Alabama at Birmingham 35294-0017.
Neurochem Res. 1994 Sep;19(9):1151-8. doi: 10.1007/BF00965149.
Mitochondria play an important role in modulating intracellular levels of calcium, and therefore compromised mitochondrial function often leads to disruptions in calcium homeostasis. In this study, the effects of two uncouplers of oxidative phosphorylation, carbonyl cyanide-3-chlorophenylhydrazone (CCCP) and p-trifluoromethoxyphenylhydrazone (FCCP), on calcium-mediated modifications of the microtubule-associated protein, tau, in rat brain slices were examined. Incubation of slices with CCCP or FCCP resulted in an increase in electrophoretic mobility of several of the tau isoforms, with no apparent loss of intact tau or the appearance of degradation products. These data indicated that disrupting mitochondrial function by dissipating the transmembrane potential resulted in the dephosphorylation of tau. This finding was confirmed by using a front phosphorylation assay to demonstrate a CCCP-induced decrease in the phosphorylation state of tau. The dephosphorylation of tau induced by the proton-ionophores appeared to be calcium-dependent since the effect was blocked by EGTA. In addition, the CCCP-induced dephosphorylation of tau was blocked by cyclosporin A, a selective inhibitor of the calcium-dependent phosphatase, calcineurin. These data strongly indicate that tau is a substrate for calcineurin in vivo. Finally, the levels of ATP were depleted to a similar extent in brain slices incubated in the presence of CCCP or CCCP and EGTA. These results demonstrated depletion of ATP alone was not sufficient to stimulate the dephosphorylation of tau in this experimental paradigm.
线粒体在调节细胞内钙水平方面发挥着重要作用,因此线粒体功能受损往往会导致钙稳态的破坏。在本研究中,检测了两种氧化磷酸化解偶联剂,即羰基氰化物-3-氯苯腙(CCCP)和对三氟甲氧基苯腙(FCCP),对大鼠脑片中钙介导的微管相关蛋白tau修饰的影响。用CCCP或FCCP孵育脑片会导致几种tau异构体的电泳迁移率增加,完整的tau没有明显损失,也没有降解产物出现。这些数据表明,通过耗散跨膜电位破坏线粒体功能会导致tau去磷酸化。使用前沿磷酸化测定法证明CCCP诱导tau磷酸化状态降低,从而证实了这一发现。质子离子载体诱导的tau去磷酸化似乎依赖于钙,因为这种作用被乙二醇双四乙酸(EGTA)阻断。此外,CCCP诱导的tau去磷酸化被环孢菌素A阻断,环孢菌素A是钙依赖性磷酸酶钙调神经磷酸酶的选择性抑制剂。这些数据有力地表明,tau在体内是钙调神经磷酸酶的底物。最后,在存在CCCP或CCCP与EGTA的情况下孵育的脑片中,三磷酸腺苷(ATP)水平被消耗到相似程度。这些结果表明,在这个实验范式中,仅ATP的消耗不足以刺激tau的去磷酸化。