Chu Andrew Chi-Yuen, Ho Philip Wing-Lok, Kwok Ken Hon-Hung, Ho Jessica Wing-Man, Chan Koon-Ho, Liu Hui-Fang, Kung Michelle Hiu-Wai, Ramsden David Boyer, Ho Shu-Leong
Division of Neurology, University Department of Medicine, University of Hong Kong, Queen Mary Hospital, Hong Kong, People's Republic of China.
Free Radic Biol Med. 2009 Mar 15;46(6):810-20. doi: 10.1016/j.freeradbiomed.2008.12.015. Epub 2008 Dec 25.
Mitochondrial uncoupling proteins (UCPs) uncouple oxidative phosphorylation from ATP synthesis. We explored the neuroprotective role of UCP4 with its stable overexpression in SH-SY5Y cells, after exposure to either MPP(+) or dopamine to induce ATP deficiency and oxidative stress. Cells overexpressing UCP4 proliferated faster in normal cultures and after exposure to MPP(+) and dopamine. Differentiated UCP4-overexpressing cells survived better when exposed to MPP(+) with decreased LDH release. Contrary to the mild uncoupling hypothesis, UCP4 overexpression resulted in increased absolute ATP levels (with ADP/ATP ratios similar to those of controls under normal conditions and ADP supplementation) associated with increased respiration rate. Under MPP(+) toxicity, UCP4 overexpression preserved ATP levels and mitochondrial membrane potential (MMP) and reduced oxidative stress; the preserved ATP level was not due to increased glycolysis. Under MPP(+) toxicity, the induction of UCP2 expression in vector controls was absent in UCP4-overexpressing cells, suggesting that UCP4 may compensate for UCP2 expression. UCP4 function does not seem to adhere to the mild uncoupling hypothesis in its neuroprotective mechanisms under oxidative stress and ATP deficiency. UCP4 overexpression increases cell survival by inducing oxidative phosphorylation, preserving ATP synthesis and MMP, and reducing oxidative stress.
线粒体解偶联蛋白(UCPs)使氧化磷酸化与ATP合成解偶联。我们通过在SH-SY5Y细胞中稳定过表达UCP4,探讨其在暴露于MPP(+)或多巴胺以诱导ATP缺乏和氧化应激后的神经保护作用。过表达UCP4的细胞在正常培养条件下以及暴露于MPP(+)和多巴胺后增殖更快。分化的过表达UCP4的细胞在暴露于MPP(+)时存活得更好,乳酸脱氢酶释放减少。与轻度解偶联假说相反,UCP4过表达导致绝对ATP水平升高(在正常条件下以及补充ADP时,ADP/ATP比值与对照相似),同时呼吸速率增加。在MPP(+)毒性作用下,UCP4过表达可维持ATP水平和线粒体膜电位(MMP),并降低氧化应激;ATP水平的维持并非由于糖酵解增加所致。在MPP(+)毒性作用下,过表达UCP4的细胞中载体对照中UCP2表达的诱导缺失,这表明UCP4可能补偿UCP2的表达。在氧化应激和ATP缺乏的神经保护机制中,UCP4的功能似乎并不遵循轻度解偶联假说。UCP4过表达通过诱导氧化磷酸化、维持ATP合成和MMP以及降低氧化应激来提高细胞存活率。