Methods for detecting G-protein coupled receptor (GPCR) activity; methods
for assaying GPCR activity; and methods for screening for GPCR ligands,
G-protein-coupled receptor kinase (GRK) activity, and compounds that
interact with components of the GPCR regulatory process are described.
Included are methods for expanding ICAST technologies for assaying GPCR
activity with applications for ligand fishing, and agonist or antagonist
screening. These methods include: engineering seronine/threonine
phosphorylation sites into known or orphan GPCR open reading frames in
order to increase the affinity of arrestin for the activated form of the
GPCR or to increase the reside time of arrestin on the activated GPCR;
engineering mutant arrestin proteins that bind to activated GPCRs in the
absence of G-protein coupled receptor kinases which may be limiting; and
engineering mutant super arrestin proteins that have an increased
affinity for activated GPCRs with or without phosphorylation. These
methods are intended to increase the robustness of the GPCR/ICAST
technology in situations in which G-protein coupled receptor kinases are
absent or limiting, or in which the GPCR is not efficiently
down-regulated or is rapidly resensitized (thus having a labile
interaction with arrestin). Included are also more specific methods for
using ICAST complementary enzyme fragments to monitor GPCR homo- and
hetero-dimerization with applications for drug lead discovery and ligand
and function discovery for orphan GPCRs.