Literature DB >> 33776658

Inhibition of 14-3-3 Proteins Alters Neural Oscillations in Mice.

Zachary B Jones1, Jiajing Zhang1, Yuying Wu1, Yi Zhou1.   

Abstract

Accumulating evidence suggests that schizophrenia is a disorder of the brain's communication, a result of functional and structural dysconnectivities. Patients with schizophrenia exhibit irregular neuronal circuit and network activity, but the causes and consequences of such activity remain largely unknown. Inhibition of 14-3-3 proteins in the mouse brain leads to the expression of multiple schizophrenia endophenotypes. Here we investigated how 14-3-3 inhibition alters neuronal network activity in the mouse hippocampus (HPC) and prefrontal cortex (PFC), key brain regions implicated in schizophrenia pathophysiology. We implanted monopolar recording electrodes in these two regions to record local field potentials both at rest and during a cognitive task. Through our assessment of band power, coherence, and phase-amplitude coupling, we found that neural oscillations in the theta and gamma frequency ranges were altered as a result of 14-3-3 dysfunction. Utilizing transgenic and viral mouse models to assess the effects of chronic and acute 14-3-3 inhibition on oscillatory activities, respectively, we observed several fundamental similarities and differences between the two models. We localized viral mediated 14-3-3 protein inhibition to either the HPC or PFC, allowing us to assess the individual contributions of each region to the observed changes in neural oscillations. These findings identify a novel role of 14-3-3 proteins in neural oscillations that may have implications for our understanding of schizophrenia neurobiology.
Copyright © 2021 Jones, Zhang, Wu and Zhou.

Entities:  

Keywords:  14-3-3 proteins; gamma band; local field potentials; neural oscillations; schizophrenia; theta band

Mesh:

Substances:

Year:  2021        PMID: 33776658      PMCID: PMC7994333          DOI: 10.3389/fncir.2021.647856

Source DB:  PubMed          Journal:  Front Neural Circuits        ISSN: 1662-5110            Impact factor:   3.492


  57 in total

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3.  Theta-gamma coupling increases during the learning of item-context associations.

Authors:  Adriano B L Tort; Robert W Komorowski; Joseph R Manns; Nancy J Kopell; Howard Eichenbaum
Journal:  Proc Natl Acad Sci U S A       Date:  2009-11-23       Impact factor: 11.205

4.  How Close Are We to Understanding What (if Anything) γ Oscillations Do in Cortical Circuits?

Authors:  Vikaas S Sohal
Journal:  J Neurosci       Date:  2016-10-12       Impact factor: 6.167

Review 5.  Oscillations and hippocampal-prefrontal synchrony.

Authors:  Laura Lee Colgin
Journal:  Curr Opin Neurobiol       Date:  2011-05-14       Impact factor: 6.627

6.  Impaired hippocampal-prefrontal synchrony in a genetic mouse model of schizophrenia.

Authors:  Torfi Sigurdsson; Kimberly L Stark; Maria Karayiorgou; Joseph A Gogos; Joshua A Gordon
Journal:  Nature       Date:  2010-04-01       Impact factor: 49.962

7.  Inhibition of 14-3-3 Proteins Leads to Schizophrenia-Related Behavioral Phenotypes and Synaptic Defects in Mice.

Authors:  Molly Foote; Haifa Qiao; Kourtney Graham; Yuying Wu; Yi Zhou
Journal:  Biol Psychiatry       Date:  2015-02-19       Impact factor: 13.382

8.  Dynamic cross-frequency couplings of local field potential oscillations in rat striatum and hippocampus during performance of a T-maze task.

Authors:  Adriano B L Tort; Mark A Kramer; Catherine Thorn; Daniel J Gibson; Yasuo Kubota; Ann M Graybiel; Nancy J Kopell
Journal:  Proc Natl Acad Sci U S A       Date:  2008-12-12       Impact factor: 11.205

Review 9.  The θ-γ neural code.

Authors:  John E Lisman; Ole Jensen
Journal:  Neuron       Date:  2013-03-20       Impact factor: 17.173

10.  Abnormal cortical neural synchrony during working memory in schizophrenia.

Authors:  Seung Suk Kang; Angus W MacDonald; Matthew V Chafee; Chang-Hwan Im; Edward M Bernat; Nicholas D Davenport; Scott R Sponheim
Journal:  Clin Neurophysiol       Date:  2017-11-06       Impact factor: 3.708

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  2 in total

Review 1.  The 14-3-3 Protein Family and Schizophrenia.

Authors:  Meaghan Navarrete; Yi Zhou
Journal:  Front Mol Neurosci       Date:  2022-03-14       Impact factor: 5.639

2.  14-3-3 Dysfunction in Dorsal Hippocampus CA1 (dCA1) Induces Psychomotor Behavior via a dCA1-Lateral Septum-Ventral Tegmental Area Pathway.

Authors:  Jiajing Zhang; Meaghan Navarrete; Yuying Wu; Yi Zhou
Journal:  Front Mol Neurosci       Date:  2022-02-14       Impact factor: 5.639

  2 in total

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