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. 2011 Aug 8:5:49.
doi: 10.3389/fnana.2011.00049. eCollection 2011.

Control of striatal signaling by g protein regulators

Affiliations

Control of striatal signaling by g protein regulators

Keqiang Xie et al. Front Neuroanat. .

Abstract

Signaling via heterotrimeric G proteins plays a crucial role in modulating the responses of striatal neurons that ultimately shape core behaviors mediated by the basal ganglia circuitry, such as reward valuation, habit formation, and movement coordination. Activation of G protein-coupled receptors (GPCRs) by extracellular signals activates heterotrimeric G proteins by promoting the binding of GTP to their α subunits. G proteins exert their effects by influencing the activity of key effector proteins in this region, including ion channels, second messenger enzymes, and protein kinases. Striatal neurons express a staggering number of GPCRs whose activation results in the engagement of downstream signaling pathways and cellular responses with unique profiles but common molecular mechanisms. Studies over the last decade have revealed that the extent and duration of GPCR signaling are controlled by a conserved protein family named regulator of G protein signaling (RGS). RGS proteins accelerate GTP hydrolysis by the α subunits of G proteins, thus promoting deactivation of GPCR signaling. In this review, we discuss the progress made in understanding the roles of RGS proteins in controlling striatal G protein signaling and providing integration and selectivity of signal transmission. We review evidence on the formation of a macromolecular complex between RGS proteins and other components of striatal signaling pathways, their molecular regulatory mechanisms and impacts on GPCR signaling in the striatum obtained from biochemical studies and experiments involving genetic mouse models. Special emphasis is placed on RGS9-2, a member of the RGS family that is highly enriched in the striatum and plays critical roles in drug addiction and motor control.

Keywords: G proteins; GPCR; RGS proteins; striatum.

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References

    1. Abrams P., Andersson K. E., Buccafusco J. J., Chapple C., de Groat W. C., Fryer A. D., Kay G., Laties A., Nathanson N. M., Pasricha P. J., Wein A. J. (2006). Muscarinic receptors: their distribution and function in body systems, and the implications for treating overactive bladder. Br. J. Pharmacol. 148, 565–578 10.1038/sj.bjp.0706780 - DOI - PMC - PubMed
    1. Akins P. T., Surmeier D. J., Kitai S. T. (1990). Muscarinic modulation of a transient K+ conductance in rat neostriatal neurons. Nature 344, 240–242 - PubMed
    1. Ambrosio A. F., Malva J. O., Carvalho A. P., Carvalho C. M. (1996). Modulation of Ca2+ channels by activation of adenosine A1 receptors in rat striatal glutamatergic nerve terminals. Neurosci. Lett. 220, 163–166 10.1016/S0304-3940(96)13252-3 - DOI - PubMed
    1. Anderson G. R., Cao Y., Davidson S., Truong H. V., Pravetoni M., Thomas M. J., Wickman K., Giesler G. J., Jr., Martemyanov K. A. (2010). R7BP complexes with RGS9-2 and RGS7 in the striatum differentially control motor learning and locomotor responses to cocaine. Neuropsychopharmacology 35, 1040–1050 - PMC - PubMed
    1. Anderson G. R., Lujan R., Martemyanov K. A. (2009a). Changes in striatal signaling induce remodeling of RGS complexes containing Gbeta5 and R7BP subunits. Mol. Cell. Biol. 29, 3033–3044 10.1128/MCB.00698-09 - DOI - PMC - PubMed

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