Title of article :
Neurotoxicity from glutathione depletion is mediated by Cu-dependent p53 activation
Author/Authors :
Tai Du، نويسنده , , Giuseppe D. Ciccotosto، نويسنده , , Greg A. Cranston، نويسنده , , Gulcan Kocak، نويسنده , , Colin L. Masters، نويسنده , , Peter J. Crouch، نويسنده , , Roberto Cappai، نويسنده , , Anthony R. White، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Abstract :
Loss of intracellular neuronal glutathione (GSH) is an important feature of neurodegenerative disorders including Alzheimerʹs disease, Parkinsonʹs disease, and amyotrophic lateral sclerosis. The consequences of GSH depletion include increased oxidative damage to proteins, lipids, and DNA and subsequent cytotoxic effects. GSH is also an important modulator of cellular copper (Cu) homeostasis and altered Cu metabolism is central to the pathology of several neurodegenerative diseases. The cytotoxic effects of Cu in cells depleted of GSH are not well understood. We have previously reported that depletion of neuronal GSH levels results in cell death from trace levels of extracellular Cu due to elevated Cu(I)-mediated free radical production. In this study we further examined the molecular pathway of trace Cu toxicity in neurons and fibroblasts depleted of GSH. Treatment of primary cortical neurons or 3T3 fibroblasts with the glutathione synthetase inhibitor buthionine sulfoximine resulted in substantial loss of intracellular GSH and increased cytotoxicity. We found that both neurons and fibroblasts revealed increased expression and activation of p53 after depletion of GSH. The increased p53 activity was induced by extracellular trace Cu. Furthermore, we showed that in GSH-depleted cells, Cu induced an increase in oxidative stress resulting in DNA damage and activation of p53-dependent cell death. These findings may have important implications for neurodegenerative disorders that involve GSH depletion and aberrant Cu metabolism.
Keywords :
glutathione , copper , p53 , Neurons , oxidative stress , free radicals
Journal title :
Free Radical Biology and Medicine
Journal title :
Free Radical Biology and Medicine