G-protein Signaling Modulator-3 Regulates Heterotrimeric G-protein Dynamics through Dual Association with Gβ and Gαi Protein Subunits
G-protein Signaling Modulator-3 Regulates Heterotrimeric G-protein Dynamics through Dual Association with Gβ and Gαi Protein Subunits
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DOI:
10.1074/jbc.m111.311712
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发表时间:
2012-02-10
影响因子:
4.8
通讯作者:
Siderovski, David P.
中科院分区:
文献类型:
--
作者:
Giguere, Patrick M.;Laroche, Genevieve;Siderovski, David P.
Regulation of the assembly and function of G-protein heterotrimers (G alpha center dot GDP/G beta gamma) is a complex process involving the participation of many accessory proteins. One of these regulators, GPSM3, is a member of a family of proteins containing one or more copies of a small regulatory motif known as the GoLoco (or GPR) motif. Although GPSM3 is known to bind G alpha(i)center dot GDP subunits via its GoLoco motifs, here we report that GPSM3 also interacts with the G beta subunits G beta 1 to G beta 4, independent of G gamma or G alpha center dot GDP subunit interactions. Bimolecular fluorescence complementation studies suggest that the G beta-GPSM3 complex is formed at, and transits through, the Golgi apparatus and also exists as a soluble complex in the cytoplasm. GPSM3 and G beta co-localize endogenously in THP-1 cells at the plasma membrane and in a juxtanuclear compartment. We provide evidence that GPSM3 increases G beta stability until formation of the G beta gamma dimer, including association of the G beta-GPSM3 complex with phosducin-like protein PhLP and T-complex protein 1 subunit eta (CCT7), two known chaperones of neosynthesized G beta subunits. The G beta interaction site within GPSM3 was mapped to a leucinerich region proximal to the N-terminal side of its first GoLoco motif. Both G beta and G alpha(i)center dot GDP binding events are required for GPSM3 activity in inhibiting phospholipase-C beta activation. GPSM3 is also shown in THP-1 cells to be important for Akt activation, a known G beta gamma-dependent pathway. Discovery of a G beta/GPSM3 interaction, independent of G alpha center dot GDP and G gamma involvement, adds to the combinatorial complexity of the role of GPSM3 in heterotrimeric G-protein regulation.