Epilepsy and apoptosis pathways

被引:254
作者
Henshall, DC
Simon, RP
机构
[1] Royal Coll Surgeons Ireland, Dept Physiol & Med Phys, Dublin 2, Ireland
[2] RS Dow Neurobiol Labs, Legacy Res, Portland, OR USA
关键词
apoptosis; death receptor; endoplasmic reticulum; mitochondria; necrosis; neurodegeneration; 14-3-3;
D O I
10.1038/sj.jcbfm.9600149
中图分类号
R5 [内科学];
学科分类号
1002 [临床医学]; 100201 [内科学];
摘要
Epilepsy is a common, chronic neurologic disorder characterized by recurrent unprovoked seizures. Experimental modeling and clinical neuroimaging of patients has shown that certain seizures are capable of causing neuronal death. Such brain injury may contribute to epileptogenesis, impairments in cognitive function or the epilepsy phenotype. Research into cell death after seizures has identified the induction of the molecular machinery of apoptosis. Here, the authors review the clinical and experimental evidence for apoptotic cell death pathway function in the wake of seizure activity. We summarize work showing intrinsic (mitochondrial) and extrinsic (death receptor) apoptotic pathway function after seizures, activation of the caspase and Bcl-2 families of cell death modulators and the acute and chronic neuropathologic impact of intervening in these molecular cascades. Finally, we describe evolving data on nonlethal roles for these proteins in neuronal restructuring and cell excitability that have implications for shaping the epilepsy phenotype. This review highlights the work to date on apoptosis pathway signaling during seizure-induced neuronal death and epileptogenesis, and speculates on how emerging roles in brain remodeling and excitability have enriched the number of therapeutic strategies for protection against seizure-damage and epileptogenesis.
引用
收藏
页码:1557 / 1572
页数:16
相关论文
共 145 条
[1]
The neuroprotective effects of heat shock protein 27 overexpression in transgenic animals against kainate-induced seizures and hippocampal cell death [J].
Akbar, MT ;
Lundberg, AMC ;
Liu, K ;
Vidyadaran, S ;
Wells, KE ;
Dolatshad, H ;
Wynn, S ;
Wells, DJ ;
Latchman, DS ;
de Belleroche, J .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (22) :19956-19965
[2]
Heat shock protein 27 shows a distinctive widespread spatial and temporal pattern of induction in CNS glial and neuronal cells compared to heat shock protein 70 and caspase 3 following kainate administration [J].
Akbar, MT ;
Wells, DJ ;
Latchman, DS ;
de Belleroche, J .
MOLECULAR BRAIN RESEARCH, 2001, 93 (02) :148-163
[3]
Potential roles for tumor necrosis factor and nuclear factor-κB in seizure activity [J].
Albensi, BC .
JOURNAL OF NEUROSCIENCE RESEARCH, 2001, 66 (02) :151-154
[4]
Caspase 6 activity initiates caspase 3 activation in cerebellar granule cell apoptosis [J].
Allsopp, TE ;
McLuckie, J ;
Kerr, LE ;
Macleod, M ;
Sharkey, J ;
Kelly, JS .
CELL DEATH AND DIFFERENTIATION, 2000, 7 (10) :984-993
[5]
Domoic acid-induced neuronal damage in the rat hippocampus: Changes in apoptosis related genes (bcl-2, bax, caspase-3) and microglial response [J].
Ananth, C ;
Dheen, ST ;
Gopalakrishnakone, P ;
Kaur, C .
JOURNAL OF NEUROSCIENCE RESEARCH, 2001, 66 (02) :177-190
[6]
Characterization of neuronal death induced by focally evoked limbic seizures in the C57BL/6 mouse [J].
Araki, T ;
Simon, RP ;
Taki, W ;
Lan, JQ ;
Henshall, DC .
JOURNAL OF NEUROSCIENCE RESEARCH, 2002, 69 (05) :614-621
[7]
Apoptosis control by death and decoy receptors [J].
Ashkenazi, A ;
Dixit, VM .
CURRENT OPINION IN CELL BIOLOGY, 1999, 11 (02) :255-260
[8]
Apoptosis and proliferation of dentate gyrus neurons after single and intermittent limbic seizures [J].
Bengzon, J ;
Kokaia, Z ;
Elmer, E ;
Nanobashvili, A ;
Kokaia, M ;
Lindvall, O .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (19) :10432-10437
[9]
Defects in regulation of apoptosis in caspase-2-deficient mice [J].
Bergeron, L ;
Perez, GI ;
Macdonald, G ;
Shi, LF ;
Sun, Y ;
Jurisicova, A ;
Varmuza, S ;
Latham, KE ;
Flaws, JA ;
Salter, JCM ;
Hara, H ;
Moskowitz, MA ;
Li, E ;
Greenberg, A ;
Tilly, JL ;
Yuan, JY .
GENES & DEVELOPMENT, 1998, 12 (09) :1304-1314
[10]
N-methyl-D-aspartate receptor blockade after status epilepticus protects against limbic brain damage but not against epilepsy in the kainate model of temporal lobe epilepsy [J].
Brandt, C ;
Potschka, H ;
Löscher, W ;
Ebert, U .
NEUROSCIENCE, 2003, 118 (03) :727-740