DEGENERATIVE AND PROTECTIVE SIGNALING MECHANISMS IN THE NEUROFIBRILLARY PATHOLOGY OF AD

被引:45
作者
MATTSON, MP [1 ]
机构
[1] UNIV KENTUCKY, DEPT ANAT & NEUROBIOL, LEXINGTON, KY 40536 USA
关键词
AMYLOID; ANTIOXIDANT ENZYMES; CALCIUM; EXCITATORY AMINO ACID; FREE RADICAL; GLUTAMATE; ION-MOTIVE ATPASE; MICROTUBULE-ASSOCIATED PROTEIN; NEUROTROPHIC FACTORS; TAU; TYROSINE KINASE;
D O I
10.1016/0197-4580(94)00182-Z
中图分类号
R592 [老年病学]; C [社会科学总论];
学科分类号
03 ; 0303 ; 100203 ;
摘要
Attention has focussed on the molecular alterations in neurofibrillary tangles (NFT) in Alzheimer's disease (AD) with the presumption that the events leading to the alterations are involved in the neurodegenerative mechanism. Here I propose that some of the manifestations of NFT result from activation of neuroprotective signaling cascades such as those induced by neurotrophic factors. Increasing data implicate free radicals and calcium in the mechanism of neuronal injury (including cytoskeletal pathology) and death in AD. Increased accumulation of beta-amyloid peptide (A beta), reduced energy availability, and increased oxidative processes are among the age-associated changes in AD that appear to be upstream to increases in cellular free radicals and calcium. Neurotrophic factors influence the expression of gene products known to stabilize calcium homeostasis, suppress free radical accumulation, and protect neurons against AD-relevant insults. The events leading to the cytoskeletal alterations in NFT are not clear although some of the alterations can be induced by excitotoxic and metabolic insults. On the other hand, kinases activated by neurotrophic factors may contribute to tau hyperphosphorylation during brain development and in AD. Activities in both degenerative and protective signaling pathways are subject to modification by aging, and by genetic and environmental factors, suggesting that the multiple cytoskeletal alterations in NFT probably result from concurrent activation of both neurodegenerative and neuroprotective cascades.
引用
收藏
页码:447 / 457
页数:11
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共 96 条
[1]  
Abe, Tanzi, Kogure, Selective induction of kunitz-type inhibitor domain-containing amyloid precursor protein mRNA after persistent focal ischemia in rat cerebral cortex, Neurosci. Lett., 125, pp. 172-174, (1991)
[2]  
Araki, Kitaguchi, Tokushima, Ishii, Aratake, Shimohama, Nakamura, Kimura, Trophic effect of β-amyloid precursor protein on cerebral cortical neurons in culture, Biochem. Biophys. Res. Commun., 181, pp. 265-271, (1991)
[3]  
Arispe, Rojas, Pollard, Alzheimer's disease amyloid β protein forms calcium channels in bilayer membranes: Blockade by tromethamine and aluminum, Proc. Natl. Acad. Sci. USA, 90, pp. 567-571, (1993)
[4]  
Beal, Does impairment of energy metabolism result in excitotoxic neuronal death in neurodegenerative illnesses?, Ann. Neurol., 31, pp. 119-130, (1992)
[5]  
Behl, Davis, Cole, Schubert, Vitamin E protects nerve cells from amyloid β protein toxicity, Biochem. Biophys. Res. Commun., 186, pp. 944-950, (1992)
[6]  
Blass, Baker, Ko, Black, Induction of Alzheimer antigens by an uncoupler of oxidative phosphorylation, Arch. Neurol., 47, pp. 864-869, (1990)
[7]  
Bramblett, Goedert, Jakes, Merrick, Trojanowski, Lee, Abnormal tau phosphorylation at Ser<sup>396</sup> in Alzheimer's disease recapitulates development and contributes to reduced microtubule binding, Neuron, 10, pp. 1089-1099, (1993)
[8]  
Brion, Smith, Couck, Gallo, Anderton, Developmental changes in tau phosphorylation: fetal tau is transiently phosphorylated in a manner similar to paired helical filament-tau characteristic of Alzheimer's disease, J. Neurochem., 61, pp. 2071-2080, (1993)
[9]  
Cai, Golde, Younkin, Release of excess amyloid β protein from a mutant amyloid β protein precursor, Science, 259, pp. 514-516, (1993)
[10]  
Cheng, Mattson, NGF and bFGF protect rat and human central neurons against hypoglycemic damage by stabilizing calcium homeostasis, Neuron, 7, pp. 1031-1041, (1991)