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Enhanced membrane binding of oncogenic G protein αqQ209L confers resistance to inhibitor YM-254890
Clinita E Randolph1, Morgan B Dwyer1, Jenna L Aumiller1
1Department of Biochemistry and Molecular Biology, Sidney Kimmel Medical College, Thomas Jefferson University, Philadelphia, Pennsylvania, USA.
Abstract:
Heterotrimeric G proteins couple activated G protein-coupled receptors (GPCRs) to intracellular signaling pathways. They can also function independently of GPCR activation upon acquiring mutations that prevent GTPase activity and result in constitutive signaling, as occurs with the αqQ209L mutation in uveal melanoma. YM-254890 (YM) can inhibit signaling by both GPCR-activated WT αq and GPCR-independent αqQ209L. Although YM inhibits WT αq by binding to αq-GDP and preventing GDP/GTP exchange, the mechanism of YM inhibition of cellular αqQ209L remains to be fully understood. Here, we show that YM promotes a subcellular redistribution of αqQ209L from the plasma membrane (PM) to the cytoplasm. To test if this loss of PM localization could contribute to the mechanism of inhibition of αqQ209L by YM, we developed and examined N-terminal mutants of αqQ209L, termed PM-restricted αqQ209L, in which the addition of membrane-binding motifs enhanced PM localization and prevented YM-promoted redistribution. Treatment of cells with YM failed to inhibit signaling by these PM-restricted αqQ209L. Additionally, pull-down experiments demonstrated that YM promotes similar conformational changes in both αqQ209L and PM-restricted αqQ209L, resulting in increased binding to βγ and decreased binding to regulator RGS2, and effectors p63RhoGEF-DH/PH and phospholipase C-β. GPCR-dependent signaling by PM-restricted WT αq is strongly inhibited by YM, demonstrating that resistance to YM inhibition by membrane-binding mutants is specific to constitutively active αqQ209L. Together, these results indicate that changes in membrane binding impact the ability of YM to inhibit αqQ209L and suggest that YM contributes to inhibition of αqQ209L by promoting its relocalization.
Insights
The drug YM-254890 inhibits constitutively active GαqQ209L by causing its relocation from the plasma membrane to the cytoplasm. This relocalization is essential for YM-254890
Area of Science:
- Molecular biology
- Cell signaling
- Cancer research
Background:
- Heterotrimeric G proteins link G protein-coupled receptors (GPCRs) to intracellular pathways.
- Mutations, like GαqQ209L in uveal melanoma, cause constitutive signaling independent of GPCRs.
- YM-254890 (YM) inhibits both GPCR-activated and constitutively active Gαq.
Purpose of the Study:
- To elucidate the mechanism by which YM inhibits constitutively active GαqQ209L.
- To investigate the role of subcellular localization in YM's inhibitory action.
Main Methods:
- Development of plasma membrane (PM)-restricted GαqQ209L mutants.
- Cellular assays to assess YM's effect on signaling and localization.
- Pull-down experiments to analyze protein-protein interactions.
Main Results:
- YM induced a redistribution of GαqQ209L from the PM to the cytoplasm.
- PM-restricted GαqQ209L mutants were resistant to YM-mediated inhibition.
- YM induced similar conformational changes in both wild-type and mutant GαqQ209L, affecting interactions with regulators and effectors.
- Resistance to YM was specific to the constitutively active GαqQ209L mutant.
Conclusions:
- Plasma membrane localization is critical for YM to inhibit constitutively active GαqQ209L.
- YM's inhibition mechanism involves promoting the relocalization of GαqQ209L from the PM.
- These findings offer insights into targeting oncogenic G protein signaling.
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