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Sci Adv ; 9(43): eadj1010, 2023 10 27.
Article in English | MEDLINE | ID: mdl-37878694

ABSTRACT

The time of day strongly influences adaptive behaviors like long-term memory, but the correlating synaptic and molecular mechanisms remain unclear. The circadian clock comprises a canonical transcription-translation feedback loop (TTFL) strictly dependent on the BMAL1 transcription factor. We report that BMAL1 rhythmically localizes to hippocampal synapses in a manner dependent on its phosphorylation at Ser42 [pBMAL1(S42)]. pBMAL1(S42) regulates the autophosphorylation of synaptic CaMKIIα and circadian rhythms of CaMKIIα-dependent molecular interactions and LTP but not global rest/activity behavior. Therefore, our results suggest a model in which repurposing of the clock protein BMAL1 to synapses locally gates the circadian timing of plasticity.


Subject(s)
ARNTL Transcription Factors , Circadian Clocks , Phosphorylation , ARNTL Transcription Factors/genetics , Circadian Rhythm/physiology , Hippocampus/metabolism
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