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Published on: May 12, 2013
RGS6 as a Novel Therapeutic Target in CNS Diseases and Cancer
Katelin E Ahlers1, Bandana Chakravarti1, Rory A Fisher2,3
1Department of Pharmacology, The Roy J. and Lucille A. Carver College of Medicine, University of Iowa, 2-505 Bowen Science Building, Iowa City, Iowa, 52242, USA.
Abstract:
Regulator of G protein signaling (RGS) proteins are gatekeepers regulating the cellular responses induced by G protein-coupled receptor (GPCR)-mediated activation of heterotrimeric G proteins. Specifically, RGS proteins determine the magnitude and duration of GPCR signaling by acting as a GTPase-activating protein for Gα subunits, an activity facilitated by their semiconserved RGS domain. The R7 subfamily of RGS proteins is distinguished by two unique domains, DEP/DHEX and GGL, which mediate membrane targeting and stability of these proteins. RGS6, a member of the R7 subfamily, has been shown to specifically modulate Gαi/o protein activity which is critically important in the central nervous system (CNS) for neuronal responses to a wide array of neurotransmitters. As such, RGS6 has been implicated in several CNS pathologies associated with altered neurotransmission, including the following: alcoholism, anxiety/depression, and Parkinson's disease. In addition, unlike other members of the R7 subfamily, RGS6 has been shown to regulate G protein-independent signaling mechanisms which appear to promote both apoptotic and growth-suppressive pathways that are important in its tumor suppressor function in breast and possibly other tissues. Further highlighting the importance of RGS6 as a target in cancer, RGS6 mediates the chemotherapeutic actions of doxorubicin and blocks reticular activating system (Ras)-induced cellular transformation by promoting degradation of DNA (cytosine-5)-methyltransferase 1 (DNMT1) to prevent its silencing of pro-apoptotic and tumor suppressor genes. Together, these findings demonstrate the critical role of RGS6 in regulating both G protein-dependent CNS pathology and G protein-independent cancer pathology implicating RGS6 as a novel therapeutic target.
Insights
Regulator of G protein signaling 6 (RGS6) modulates G protein activity in the central nervous system, impacting neurotransmission and related disorders. RGS6 also regulates G protein-independent pathways, showing tumor suppressor functions and mediating chemotherapy actions.
Area of Science:
- Molecular Biology
- Neuroscience
- Oncology
Background:
- Regulator of G protein signaling (RGS) proteins control G protein-coupled receptor (GPCR) signaling by acting as GTPase-activating proteins for Gα subunits.
- The R7 subfamily, including RGS6, possesses unique domains for membrane targeting and stability.
- RGS6 specifically regulates Gαi/o activity, crucial for central nervous system (CNS) neurotransmission.
Purpose of the Study:
- To elucidate the dual role of RGS6 in both G protein-dependent CNS pathologies and G protein-independent cancer pathways.
- To highlight RGS6 as a potential therapeutic target for neurological disorders and cancer.
Main Methods:
- The study reviews existing literature on RGS6 function in cellular signaling.
- Analysis of RGS6's involvement in G protein-dependent and independent pathways was synthesized.
- The role of RGS6 in CNS pathologies and cancer was investigated through reported findings.
Main Results:
- RGS6 modulates Gαi/o activity, implicating it in CNS disorders like alcoholism, anxiety, depression, and Parkinson's disease.
- RGS6 exhibits tumor suppressor functions by regulating G protein-independent apoptotic and growth-suppressive pathways.
- RGS6 mediates doxorubicin's chemotherapeutic effects and inhibits Ras-induced transformation by degrading DNMT1.
Conclusions:
- RGS6 plays a critical role in regulating both CNS and cancer pathologies.
- RGS6 represents a novel therapeutic target for a range of diseases, including neurological disorders and various cancers.
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