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Sustained effects of rapidly acting antidepressants require BDNF-dependent MeCP2 phosphorylation.


ABSTRACT: The rapidly acting antidepressants ketamine and scopolamine exert behavioral effects that can last from several days to more than a week in some patients. The molecular mechanisms underlying the maintenance of these antidepressant effects are unknown. Here we show that methyl-CpG-binding protein 2 (MeCP2) phosphorylation at Ser421 (pMeCP2) is essential for the sustained, but not the rapid, antidepressant effects of ketamine and scopolamine in mice. Our results reveal that pMeCP2 is downstream of BDNF, a critical factor in ketamine and scopolamine antidepressant action. In addition, we show that pMeCP2 is required for the long-term regulation of synaptic strength after ketamine or scopolamine administration. These results demonstrate that pMeCP2 and associated synaptic plasticity are essential determinants of sustained antidepressant effects.

SUBMITTER: Kim JW 

PROVIDER: S-EPMC8338784 | biostudies-literature | 2021 Aug

REPOSITORIES: biostudies-literature

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Sustained effects of rapidly acting antidepressants require BDNF-dependent MeCP2 phosphorylation.

Kim Ji-Woon JW   Autry Anita E AE   Na Elisa S ES   Adachi Megumi M   Björkholm Carl C   Kavalali Ege T ET   Monteggia Lisa M LM  

Nature neuroscience 20210628 8


The rapidly acting antidepressants ketamine and scopolamine exert behavioral effects that can last from several days to more than a week in some patients. The molecular mechanisms underlying the maintenance of these antidepressant effects are unknown. Here we show that methyl-CpG-binding protein 2 (MeCP2) phosphorylation at Ser421 (pMeCP2) is essential for the sustained, but not the rapid, antidepressant effects of ketamine and scopolamine in mice. Our results reveal that pMeCP2 is downstream of  ...[more]

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