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A beta-arrestin 2 Signaling Complex Mediates Lithium Action on Behavior.

A beta-arrestin 2 Signaling Complex Mediates Lithium Action on Behavior. Research Abstract Details 

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  • A beta-arrestin 2 Signaling Complex Mediates Lithium Action on Behavior. Abstract Text:

    jean-martin beaulieuJean-Martin Beaulieu, marion Marion,ramona m rodriguizRamona M Rodriguiz,ivan o medvedevIvan O Medvedev,tatyana d sotnikovaTatyana D Sotnikova,valentina ghisiValentina Ghisi,william c wetselWilliam C Wetsel,robert j lefkowitzRobert J Lefkowitz,raul r gainetdinovRaul R Gainetdinov,marc g caronMarc G Caron,jean-martin beaulieuJean-Martin Beaulieu,sébastien marionSébastien Marion,ramona m rodriguizRamona M Rodriguiz,ivan o medvedevIvan O Medvedev,tatyana d sotnikovaTatyana D Sotnikova,valentina ghisiValentina Ghisi,william c wetselWilliam C Wetsel,robert j lefkowitzRobert J Lefkowitz,raul r gainetdinovRaul R Gainetdinov,marc g caronMarc G Caron,jean-martin beaulieuJean-Martin Beaulieu, marion Marion,ramona m rodriguizRamona M Rodriguiz,ivan o medvedevIvan O Medvedev,tatyana d sotnikovaTatyana D Sotnikova,valentina ghisiValentina Ghisi,william c wetselWilliam C Wetsel,robert j lefkowitzRobert J Lefkowitz,raul r gainetdinovRaul R Gainetdinov,marc g caronMarc G Caron,

    Besides their role in desensitization, beta-arrestin 1 and 2 promote the formation of signaling complexes allowing G protein-coupled receptors (GPCR) to signal independently from G proteins. Here we show that lithium, a pharmacological agent used for the management of psychiatric disorders such as bipolar disorder, schizophrenia, and depression, regulates Akt/glycogen synthase kinase 3 (GSK3) signaling and related behaviors in mice by disrupting a signaling complex composed of Akt, beta-arrestin 2, and protein phosphatase 2A. When administered to beta-arrestin 2 knockout mice, lithium fails to affect Akt/GSK3 signaling and induce behavioral changes associated with GSK3 inhibition as it does in normal animals. These results point toward a pharmacological approach to modulating GPCR function that affects the formation of beta-arrestin-mediated signaling complexes.

    A beta-arrestin 2 Signaling Complex Mediates Lithium Action on Behavior. Publishing Authors By Initials

    jm beaulieuJM Beaulieu,s marionS Marion,rm rodriguizRM Rodriguiz,io medvedevIO Medvedev,td sotnikovaTD Sotnikova,v ghisiV Ghisi,wc wetselWC Wetsel,rj lefkowitzRJ Lefkowitz,rr gainetdinovRR Gainetdinov,mg caronMG Caron,jm beaulieuJM Beaulieu,s marionS Marion,rm rodriguizRM Rodriguiz,io medvedevIO Medvedev,td sotnikovaTD Sotnikova,v ghisiV Ghisi,wc wetselWC Wetsel,rj lefkowitzRJ Lefkowitz,rr gainetdinovRR Gainetdinov,mg caronMG Caron,jm beaulieuJM Beaulieu,s marionS Marion,rm rodriguizRM Rodriguiz,io medvedevIO Medvedev,td sotnikovaTD Sotnikova,v ghisiV Ghisi,wc wetselWC Wetsel,rj lefkowitzRJ Lefkowitz,rr gainetdinovRR Gainetdinov,mg caronMG Caron,

    For similar abstracts research abstracts see: abstracts research

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    A beta-arrestin 2 Signaling Complex Mediates Lithium Action on Behavior. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: Cell

    VOLUME: 132

    Page Numbers: 125-36

    Journal Abbreviation: Cell

    ISSN: 0092-8674

    DAY: 11

    MONTH: Jan

    YEAR: 2008

    A beta-arrestin 2 Signaling Complex Mediates Lithium Action on Behavior. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 413066

    A beta-arrestin 2 Signaling Complex Mediates Lithium Action on Behavior. Keywords Mesh Terms:

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    Grant and Affiliation Information for A beta-arrestin 2 Signaling Complex Mediates Lithium Action on Behavior.

    AFFILIATION: Department of Cell Biology, Duke University Medical Center, Durham, NC, USA.

    Country: United States

    United States Research PublicationUnited States Research Publication

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    MEDLINETA: Cell

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