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Diverse Psychotomimetics Act Through a Common Signaling Pathway

Per Svenningsson, Eleni T. Tzavara, Robert Carruthers, Ilan Rachleff, Sigrid Wattler, Michael Nehls, David L. Mckinzie, Allen A. Fienberg, George G. Nomikos, Paul Greengard

Science November 21, 2003 DOI: 10.1126/science.1089681 via OpenAlex

Summary

AI-generated from the abstract

Three drug classes—dopaminergic agonists (e.g., D-amphetamine), serotonergic agonists (e.g., LSD), and glutamatergic antagonists (e.g., PCP)—produce schizophrenia-like effects in animals. A common signaling pathway involving the protein DARPP-32 mediates these effects. DARPP-32 is phosphorylated or dephosphorylated at three sites, leading to synergistic inhibition of protein phosphatase-1 and regulation of downstream effectors GSK-3, CREB, and c-Fos. In mice lacking DARPP-32 or with point mutations at its phosphorylation sites, the drugs' effects on sensorimotor gating and repetitive movements were strongly reduced, indicating DARPP-32's essential role in these psychotomimetic actions.

Study at a glance

Characteristics Experimental study with genetically modified mice Peer reviewed
Population Mice with genetic deletion or point mutations of DARPP-32
Interventions D-amphetamine LSD PCP
Topics Serotonin
Keywords Creb Amphetamine Protein kinase a Cyclic adenosine monophosphate
Citations 312
Key finding DARPP-32 is a common signaling mediator for psychotomimetic effects of dopaminergic, serotonergic, and glutamatergic drugs.

Abstract

Three distinct classes of drugs: dopaminergic agonists (such as D-amphetamine), serotonergic agonists (such as LSD), and glutamatergic antagonists (such as PCP) all induce psychotomimetic states in experimental animals that closely resemble schizophrenia symptoms in humans. Here we implicate a common signaling pathway in mediating these effects. In this pathway, dopamine- and an adenosine 3′,5′-monophosphate (cAMP)–regulated phospho-protein of 32 kilodaltons (DARPP-32) is phosphorylated or dephosphorylated at three sites, in a pattern predicted to cause a synergistic inhibition of protein phosphatase–1 and concomitant regulation of its downstream effector proteins glycogen synthesis kinase–3 (GSK-3), cAMP response element–binding protein (CREB), and c-Fos. In mice with a genetic deletion of DARPP-32 or with point mutations in phosphorylation sites of DARPP-32, the effects of D-amphetamine, LSD, and PCP on two behavioral parameters—sensorimotor gating and repetitive movements—were strongly attenuated.

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