Nicotinamide Prevents NAD+ Depletion and Protects Neurons Against Excitotoxicity and Cerebral Ischemia: NAD+ Consumption by SIRT1 may Endanger Energetically Compromised Neurons

被引:210
|
作者
Liu, Dong [1 ]
Gharavi, Robert [1 ]
Pitta, Michael [1 ]
Gleichmann, Marc [1 ]
Mattson, Mark P. [1 ]
机构
[1] NIA, Neurosci Lab, Intramural Res Program, Baltimore, MD 21224 USA
关键词
Excitotoxicity; Glutamate; NMDA; NAD(+); NADH; SIRT1; PARP-1; PAR; Nicotinamide; MCAO; TUNEL; HISTONE DEACETYLASE INHIBITORS; POLY(ADP-RIBOSE) POLYMERASE; CELL-DEATH; CALORIE RESTRICTION; ENERGY-METABOLISM; OXIDATIVE STRESS; BRAIN-INJURY; MITOCHONDRIAL; MECHANISMS; APOPTOSIS;
D O I
10.1007/s12017-009-8058-1
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Neurons require large amounts of energy to support their survival and function, and are therefore susceptible to excitotoxicity, a form of cell death involving bioenergetic stress that may occur in several neurological disorders including stroke and Alzheimer's disease. Here we studied the roles of NAD(+) bioenergetic state, and the NAD(+)-dependent enzymes SIRT1 and PARP-1, in excitotoxic neuronal death in cultured neurons and in a mouse model of focal ischemic stroke. Excitotoxic activation of NMDA receptors induced a rapid decrease of cellular NAD(P)H levels and mitochondrial membrane potential. Decreased NAD(+) levels and poly (ADP-ribose) polymer (PAR) accumulation in nuclei were relatively early events (< 4 h) that preceded the appearance of propidium iodide- and TUNEL-positive cells (markers of necrotic cell death and DNA strand breakage, respectively) which became evident by 6 h. Nicotinamide, an NAD(+) precursor and an inhibitor of SIRT1 and PARP1, inhibited SIRT1 deacetylase activity without affecting SIRT1 protein levels. NAD(+) levels were preserved and PAR accumulation and neuronal death induced by excitotoxic insults were attenuated in nicotinamide-treated cells. Treatment of neurons with the SIRT1 activator resveratrol did not protect them from glutamate/NMDA-induced NAD(+) depletion and death. In a mouse model of focal cerebral ischemic stroke, NAD(+) levels were decreased in both the contralateral and ipsilateral cortex 6 h after the onset of ischemia. Stroke resulted in dynamic changes of SIRT1 protein and activity levels which varied among brain regions. Administration of nicotinamide (200 mg/kg, i.p.) up to 1 h after the onset of ischemia elevated brain NAD(+) levels and reduced ischemic infarct size. Our findings demonstrate that the NAD(+) bioenergetic state is critical in determining whether neurons live or die in excitotoxic and ischemic conditions, and suggest a potential therapeutic benefit in stroke of agents that preserve cellular NAD(+) levels. Our data further suggest that, SIRT1 is linked to bioenergetic state and stress responses in neurons, and that under conditions of reduced cellular energy levels SIRT1 enzyme activity may consume sufficient NAD(+) to nullify any cell survival-promoting effects of its deacetylase action on protein substrates.
引用
收藏
页码:28 / 42
页数:15
相关论文
共 26 条
  • [1] Nicotinamide Prevents NAD+ Depletion and Protects Neurons Against Excitotoxicity and Cerebral Ischemia: NAD+ Consumption by SIRT1 may Endanger Energetically Compromised Neurons
    Dong Liu
    Robert Gharavi
    Michael Pitta
    Marc Gleichmann
    Mark P. Mattson
    NeuroMolecular Medicine, 2009, 11 : 28 - 42
  • [2] Preventing NAD+ Depletion Protects Neurons against Excitotoxicity Bioenergetic Effects of Mild Mitochondrial Uncoupling and Caloric Restriction
    Liu, Dong
    Pitta, Michael
    Mattson, Mark P.
    MITOCHONDRIA AND OXIDATIVE STRESS IN NEURODEGENERATIVE DISORDERS, 2008, 1147 : 275 - 282
  • [3] NICOTINAMIDE ADENINE NUCLEOTIDE (NAD+) REGULATION OF SIRTUIN 1 (SIRT1) IN THE TREATMENT OF DIABETIC NEUROPATHY
    Russell, J. W.
    Chandrasekaran, K.
    Choi, J.
    Chen, H.
    JOURNAL OF THE PERIPHERAL NERVOUS SYSTEM, 2013, 18 : 98 - 99
  • [4] Nicotinamide Adenine Nucleotide (NAD+) Regulation of Sirtuin 1 (SIRT1) in the Treatment of Diabetic Neuropathy
    Chandrasekaran, Krish
    Choi, Joungil
    Chen, Helen
    Russell, James W.
    ANNALS OF NEUROLOGY, 2013, 74 : S95 - S95
  • [5] Nicotinamide Mononucleotide Adenylyltransferase 1 Regulates Cerebral Ischemia–Induced Blood–Brain Barrier Disruption Through NAD+/SIRT1 Signaling Pathway
    Yang Zhang
    Xun Guo
    Zhifeng Peng
    Chang Liu
    Lili Ren
    Jia Liang
    Peng Wang
    Molecular Neurobiology, 2022, 59 : 4879 - 4891
  • [6] Palmitic Acid-Induced NAD+ Depletion is Associated with the Reduced Function of SIRT1 and Increased Expression of BACE1 in Hippocampal Neurons
    Flores-Leon, Manuel
    Perez-Dominguez, Martha
    Gonzalez-Barrios, Rodrigo
    Arias, Clorinda
    NEUROCHEMICAL RESEARCH, 2019, 44 (07) : 1745 - 1754
  • [7] Palmitic Acid-Induced NAD+ Depletion is Associated with the Reduced Function of SIRT1 and Increased Expression of BACE1 in Hippocampal Neurons
    Manuel Flores-León
    Martha Pérez-Domínguez
    Rodrigo González-Barrios
    Clorinda Arias
    Neurochemical Research, 2019, 44 : 1745 - 1754
  • [8] Nicotinamide Mononucleotide Adenylyltransferase 1 Regulates Cerebral Ischemia-Induced Blood-Brain Barrier Disruption Through NAD+/SIRT1 Signaling Pathway
    Zhang, Yang
    Guo, Xun
    Peng, Zhifeng
    Liu, Chang
    Ren, Lili
    Liang, Jia
    Wang, Peng
    MOLECULAR NEUROBIOLOGY, 2022, 59 (08) : 4879 - 4891
  • [9] Nicotinamide Phosphoribosyltransferase (Nampt) Induces NAD+/SIRT1 Mediated Deacetylation of p53 in Myeloid Cells
    Thakur, Basant Kumar
    Lippka, Yannick
    Skokowa, Julia
    Welte, Karl
    BLOOD, 2009, 114 (22) : 1390 - 1390
  • [10] Nicotinamide-induced Mitophagy EVENT MEDIATED BY HIGH NAD+/NADH RATIO AND SIRT1 PROTEIN ACTIVATION
    Jang, So-young
    Kang, Hyun Tae
    Hwang, Eun Seong
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (23) : 19304 - 19314