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Molecular Mechanisms of Early and Late LTP
Neurochemical Research Cilt 44 ss. 281-296
Scopus Toplam 127 atıf DOI
LTP is the most intensively studied cellular model of the memory and generally divided at least two distinct phases as early and late. E-LTP requires activation of CaMKII that initiates biochemical events and trafficking of proteins, which eventually potentiate synaptic transmission, and is independent of de novo protein synthesis. In contrast, L-LTP requires gene expression and local protein synthesis regulated via TrkB receptor- and functional prions CPEB2-3-mediated translation. Maintenance of LTP for longer periods depends on constitutively active PKMζ. Throughout this review, current knowledge about early and late phases of LTP will be reviewed.
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Atıf Yapan Yayın
Site-Specific Regulation of Tau phosphorylation by MAPK pathways during HFS-Induced synaptic plasticity in the Rat hippocampus
Neuroscience Letters
Scopus