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      GSK3 activity regulates rhythms in hippocampal clock gene expression and synaptic plasticity

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          Abstract

          Hippocampal rhythms in clock gene expression, enzymatic activity, and long-term potentiation (LTP) are thought to underlie day-night differences in memory acquisition and recall. Glycogen synthase kinase 3-beta (GSK3β) is a known regulator of hippocampal function, and inhibitory phosphorylation of GSK3β exhibits region-specific differences over the light-dark cycle. Here, we sought to determine whether phosphorylation of both GSK3α and GSK3β isoforms have an endogenous circadian rhythm in specific areas of the hippocampus and whether chronic inhibition or activation alters the molecular clock and hippocampal plasticity (LTP). Results indicated a significant endogenous circadian rhythm in phosphorylation of GSK3β, but not GSK3α, in hippocampal CA1 extracts from mice housed in constant darkness for at least two weeks. To examine the importance of this rhythm, genetic and pharmacological strategies were used to disrupt the GSK3 activity rhythm by chronically activating or inhibiting GSK3. Chronic activation of both GSK3 isoforms in transgenic mice (GSK3-KI mice) diminished rhythmic BMAL1 expression. On the other hand, chronic treatment with a GSK3 inhibitor significantly shortened the molecular clock period of organotypic hippocampal PER2::LUC cultures. While WT mice exhibited higher LTP magnitude at night compared to day, the day-night difference in LTP magnitude remained with greater magnitude at both times of day in mice with chronic GSK3 activity. On the other hand, pharmacological GSK3 inhibition impaired day-night differences in LTP by blocking LTP selectively at night. Taken together, these results support the model that circadian rhythmicity of hippocampal GSK3β activation state regulates day/night differences in molecular clock periodicity and a major form of synaptic plasticity (LTP).

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          Author and article information

          Journal
          9108167
          2510
          Hippocampus
          Hippocampus
          Hippocampus
          1050-9631
          1098-1063
          15 May 2017
          27 May 2017
          August 2017
          01 August 2018
          : 27
          : 8
          : 890-898
          Affiliations
          Department of Psychiatry and Behavioral Neurobiology, University of Alabama at Birmingham, Birmingham, AL, USA
          Author notes
          []Author for Correspondence: Karen L. Gamble, klgamble@ 123456uab.edu , Phone: 205-934-4663, Fax: 205-975-4879, Psychiatry and Behavioral Neurobiology, University of Alabama at Birmingham, SC 721, 1720 7th Avenue South, Birmingham, Alabama 35294-0017, USA
          Article
          PMC5511075 PMC5511075 5511075 nihpa875328
          10.1002/hipo.22739
          5511075
          28556462
          8a706da1-66e6-4674-ac3d-b7584e64daec
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