GIV/Girdin activates Gαi and inhibits Gαs via the same motif

Author:

Gupta Vijay,Bhandari Deepali,Leyme Anthony,Aznar Nicolas,Midde Krishna K.,Lo I-Chung,Ear Jason,Niesman Ingrid,López-Sánchez Inmaculada,Blanco-Canosa Juan Bautista,von Zastrow Mark,Garcia-Marcos Mikel,Farquhar Marilyn G.,Ghosh Pradipta

Abstract

We previously showed that guanine nucleotide-binding (G) protein α subunit (Gα)-interacting vesicle-associated protein (GIV), a guanine-nucleotide exchange factor (GEF), transactivates Gα activity-inhibiting polypeptide 1 (Gαi) proteins in response to growth factors, such as EGF, using a short C-terminal motif. Subsequent work demonstrated that GIV also binds Gαs and that inactive Gαs promotes maturation of endosomes and shuts down mitogenic MAPK–ERK1/2 signals from endosomes. However, the mechanism and consequences of dual coupling of GIV to two G proteins, Gαi and Gαs, remained unknown. Here we report that GIV is a bifunctional modulator of G proteins; it serves as a guanine nucleotide dissociation inhibitor (GDI) for Gαs using the same motif that allows it to serve as a GEF for Gαi. Upon EGF stimulation, GIV modulates Gαi and Gαs sequentially: first, a key phosphomodification favors the assembly of GIV–Gαi complexes and activates GIV’s GEF function; then a second phosphomodification terminates GIV’s GEF function, triggers the assembly of GIV–Gαs complexes, and activates GIV’s GDI function. By comparing WT and GIV mutants, we demonstrate that GIV inhibits Gαs activity in cells responding to EGF. Consequently, the cAMP→PKA→cAMP response element-binding protein signaling axis is inhibited, the transit time of EGF receptor through early endosomes are accelerated, mitogenic MAPK–ERK1/2 signals are rapidly terminated, and proliferation is suppressed. These insights define a paradigm in G-protein signaling in which a pleiotropically acting modulator uses the same motif both to activate and to inhibit G proteins. Our findings also illuminate how such modulation of two opposing Gα proteins integrates downstream signals and cellular responses.

Funder

HHS | NIH | National Cancer Institute

HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases

Burroughs Wellcome Fund

American Cancer Society

HHS | NIH | National Institute of General Medical Sciences

Susan G. Komen for the Cure

American Heart Association

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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