Reversible paired helical filament-like phosphorylation of tau is an adaptive process associated with neuronal plasticity in hibernating animals

被引:266
作者
Arendt, T
Stieler, J
Strijkstra, AM
Hut, RA
Rüdiger, J
Van der Zee, EA
Harkany, T
Holzer, M
Härtig, W
机构
[1] Univ Leipzig, Paul Flechsig Inst Brain Res, Dept Neuroanat, D-04109 Leipzig, Germany
[2] Univ Leipzig, Paul Flechsig Inst Brain Res, Dept Neurochem, D-04109 Leipzig, Germany
[3] Univ Groningen, Dept Anim Behav, NL-9757 NN Haren, Netherlands
[4] Univ Groningen, Dept Mol Neurobiol, NL-9757 NN Haren, Netherlands
[5] Univ Jena, Inst Anat 2, D-07743 Jena, Germany
关键词
Alzheimer's disease; hibernation; natural hypothermia; PHF; phosphorylation; plasticity; synapse; tau;
D O I
10.1523/JNEUROSCI.23-18-06972.2003
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Neurofibrillary pathology [ paired helical filaments (PHFs)] formed by the microtubule-associated protein tau in a hyperphosphorylated form is a major hallmark of Alzheimer's disease and related disorders. The process of tau phosphorylation, thought to be of critical importance for PHF formation, and its potential link to neurodegeneration, however, is not understood very well, mostly because of the lack of a physiological in vivo model of PHF-like tau phosphorylation. Here we describe the formation of highly phosphorylated tau, containing a number of PHF-like epitopes in torpor during hibernation. PHF-like phosphorylation of tau was not associated with fibril formation and was fully reversible after arousal. Distribution of PHF-like tau followed a consistent pattern, being most intense in the entorhinal cortex, hippocampus, and isocortical areas. Within the hippocampus, a particularly high labeling was seen in CA3 pyramidal cells. Somewhat lesser reactivity was present in CA1 neurons while dentate gyrus granule cells were not reactive. Formation of PHF-like tau in CA3 neurons was paralleled by the regression of synaptic contacts of the mossy fiber system terminating on CA3 apical dendrites. Mossy fiber afferentation was re-established during arousal, concomitantly with the decrease of PHF-like tau in CA3 neurons. These findings implicate an essential link between neuronal plasticity and PHF-like phosphorylation of tau. The repeated formation and degradation of PHF-like tau might, thus, represent a physiological mechanism not necessarily associated with pathological effects. Hibernation will, therefore, be a valuable model to study the regulation of PHF-like tau-phosphorylation and its cell biological sequelae under physiological in vivo conditions.
引用
收藏
页码:6972 / 6981
页数:10
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