Sw. Li et al., EVIDENCE FOR A REGULATED INTERACTION BETWEEN HETEROTRIMERIC G-PROTEINS AND CAVEOLIN, The Journal of biological chemistry, 270(26), 1995, pp. 15693-15701
Caveolae are flash-shaped plasma membrane specializations, A 22-kDa pr
otein, caveolin, is a principal component of caveolar membranes in viv
o, As recent evidence suggests that caveolae may participate in G prot
ein-coupled signaling events, we have investigated the potential inter
action of caveolin with heterotrimeric G proteins, Using cell fraction
ation techniques, we found that mutational or pharmacologic activation
of G(s alpha) prevents its co-fractionation with caveolin, In a secon
d independent approach, we directly examined the interaction of G prot
eins with caveolin, For this purpose, we recombinantly expressed caveo
lin as a glutathione S-transferase fusion protein, Using an in vitro b
inding assay, we found that caveolin interacts with G protein alpha su
bunits (G(s), G(o), and G(i)). Mutational or pharmacologic activation
(with guanosine 5'-O-(thiotriphosphate)) of G(alpha) subunits prevents
this interaction, indicating that the inactive GDP-bound form of G(al
pha) subunits preferentially interacts with caveolin, This G protein b
inding activity is located within a 41-amino acid region of caveolin's
cytoplasmic N-terminal. domain (residues 61-101), Further functional
analysis shows that a polypeptide derived from this region of caveolin
(residues 82-101) effectively suppresses the basal activity of purifi
ed G proteins, apparently by inhibiting GDP/GTP exchange, This caveoli
n sequence is homologous to a region of the Rab GDP dissociation inhib
itor, a known inhibitor of GDP/GTP exchange for Rab proteins, These da
ta suggest that caveolin could function to negatively regulate the act
ivation state of heterotrimeric G proteins.