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Publication : Intraneuronal accumulation of C99 contributes to synaptic alterations, apathy-like behavior, and spatial learning deficits in 3×TgAD and 2×TgAD mice.

First Author  Bourgeois A Year  2018
Journal  Neurobiol Aging Volume  71
Pages  21-31 PubMed ID  30071370
Mgi Jnum  J:271557 Mgi Id  MGI:6279523
Doi  10.1016/j.neurobiolaging.2018.06.038 Citation  Bourgeois A, et al. (2018) Intraneuronal accumulation of C99 contributes to synaptic alterations, apathy-like behavior, and spatial learning deficits in 3xTgAD and 2xTgAD mice. Neurobiol Aging 71:21-31
abstractText  The triple transgenic mouse model (3xTgAD: APPswe, TauP301L, PS1M146V) recapitulates both amyloid beta (Abeta)- and tau-related lesions as well as synaptic and memory deficits. In these mice, we reported an early apathy-like behavior and alterations in synaptic plasticity appearing concomitantly with intraneuronal accumulation of C99 in the subiculum. To delineate the genuine contribution of C99 on the above phenotypes, we generated double transgenic mice (2xTgAD: APPswe, TauP301L) that accumulate C99 without Abeta deposition or hyperphosphorylation of tau and compared them to 3xTgAD mice. Here, we show that both TgAD mice display similar decreases in long-term potentiation and in spontaneous locomotor activity measured by actimetry suggesting that the synaptic alterations and the apathy-like behavior were likely linked to C99 rather than Abeta. However, spatial learning alterations, assessed by the Morris water maze task, are more pronounced in 3xTgAD than in 2xTgAD, suggesting that both Abeta and C99 contribute to defects in the acquisition of spatial information. Finally, even if similar results are observed in males, cognitive and non-cognitive deficits are more severe in females.
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