TY - JOUR
T1 - Aggregation of detergent-insoluble tau is involved in neuronal loss but not in synaptic loss
AU - Kimura, Tetsuya
AU - Fukuda, Tetsuya
AU - Sahara, Naruhiko
AU - Yamashita, Shunji
AU - Murayama, Miyuki
AU - Mizoroki, Tatsuya
AU - Yoshiike, Yuji
AU - Lee, Boyoung
AU - Sotiropoulos, Ioannis
AU - Maeda, Sumihiro
AU - Takashima, Akihiko
PY - 2010/12/3
Y1 - 2010/12/3
N2 - Neurofibrillary tangles (NFTs), which consist of highly phosphorylated tau, are hallmarks of neurodegenerative diseases including Alzheimer disease (AD). In neurodegenerative diseases, neuronal dysfunction due to neuronal loss and synaptic loss accompanies NFT formation, suggesting that a process associated with NFT formation may be involved in neuronal dysfunction. To clarify the relationship between the tau aggregation process and synapse and neuronal loss, we compared two lines of mice expressing human tau with or without an aggregation-prone P301L mutation. P301L tau transgenic (Tg) mice exhibited neuronal loss and produced sarcosyl-insoluble tau in old age but did not exhibit synaptic loss and memory impairment. By contrast, wild-type tau Tg mice neither exhibited neuronal loss nor produced sarcosyl-insoluble tau but did exhibit synaptic loss and memory impairment. Moreover, P301L tau was less phosphorylated than wild-type tau, suggesting that the tau phosphorylation state is involved in synaptic loss, whereas the tau aggregation state is involved in neuronal loss. Finally, increasing concentrations of insoluble tau aggregates leads to the formation of fibrillar tau, which causes NFTs to form.
AB - Neurofibrillary tangles (NFTs), which consist of highly phosphorylated tau, are hallmarks of neurodegenerative diseases including Alzheimer disease (AD). In neurodegenerative diseases, neuronal dysfunction due to neuronal loss and synaptic loss accompanies NFT formation, suggesting that a process associated with NFT formation may be involved in neuronal dysfunction. To clarify the relationship between the tau aggregation process and synapse and neuronal loss, we compared two lines of mice expressing human tau with or without an aggregation-prone P301L mutation. P301L tau transgenic (Tg) mice exhibited neuronal loss and produced sarcosyl-insoluble tau in old age but did not exhibit synaptic loss and memory impairment. By contrast, wild-type tau Tg mice neither exhibited neuronal loss nor produced sarcosyl-insoluble tau but did exhibit synaptic loss and memory impairment. Moreover, P301L tau was less phosphorylated than wild-type tau, suggesting that the tau phosphorylation state is involved in synaptic loss, whereas the tau aggregation state is involved in neuronal loss. Finally, increasing concentrations of insoluble tau aggregates leads to the formation of fibrillar tau, which causes NFTs to form.
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U2 - 10.1074/jbc.M110.136630
DO - 10.1074/jbc.M110.136630
M3 - Article
C2 - 20921222
AN - SCOPUS:78649660787
SN - 0021-9258
VL - 285
SP - 38692
EP - 38699
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 49
ER -