TY - JOUR
T1 - Palmitoylation regulates plasma membrane-nuclear shuttling of R7BP, a novel membrane anchor for the RGS7 family
AU - Drenan, Ryan M.
AU - Doupnik, Craig A.
AU - Boyle, Maureen P.
AU - Muglia, Louis J.
AU - Huettner, James E.
AU - Linder, Maurine E.
AU - Blumer, Kendall J.
PY - 2005/5
Y1 - 2005/5
N2 - The RGS7 (R7) family of RGS proteins bound to the divergent Gβ subunit Gβ 5 is a crucial regulator of G protein-coupled receptor (GPCR) signaling in the visual and nervous systems. Here, we identify R7BP, a novel neuronally expressed protein that binds R7-Gβ5 complexes and shuttles them between the plasma membrane and nucleus. Regional expression of R7BP, Gβ5,and R7 isoforms in brain is highly coincident. R7BP is palmitoylated near its COOH terminus, which targets the protein to the plasma membrane. Depalmitoylation of R7BP translocates R7BP-R7-Gβ5 complexes from the plasma membrane to the nucleus. Compared with nonpalmitoylated R7BP, palmitoylated R7BP greatly augments the ability of RGS7 to attenuate GPCR-mediated G protein-regulated inward rectifying potassium channel activation. Thus, by controlling plasma membrane nuclear-shuttling of R7BP-R7-Gβ5 complexes, reversible palmitoylation of R7BP provides a novel mechanism that regulates GPCR signaling and potentially transduces signals directly from the plasma membrane to the nucleus.
AB - The RGS7 (R7) family of RGS proteins bound to the divergent Gβ subunit Gβ 5 is a crucial regulator of G protein-coupled receptor (GPCR) signaling in the visual and nervous systems. Here, we identify R7BP, a novel neuronally expressed protein that binds R7-Gβ5 complexes and shuttles them between the plasma membrane and nucleus. Regional expression of R7BP, Gβ5,and R7 isoforms in brain is highly coincident. R7BP is palmitoylated near its COOH terminus, which targets the protein to the plasma membrane. Depalmitoylation of R7BP translocates R7BP-R7-Gβ5 complexes from the plasma membrane to the nucleus. Compared with nonpalmitoylated R7BP, palmitoylated R7BP greatly augments the ability of RGS7 to attenuate GPCR-mediated G protein-regulated inward rectifying potassium channel activation. Thus, by controlling plasma membrane nuclear-shuttling of R7BP-R7-Gβ5 complexes, reversible palmitoylation of R7BP provides a novel mechanism that regulates GPCR signaling and potentially transduces signals directly from the plasma membrane to the nucleus.
UR - https://www.scopus.com/pages/publications/22344431893
U2 - 10.1083/jcb.200502007
DO - 10.1083/jcb.200502007
M3 - Article
C2 - 15897264
AN - SCOPUS:22344431893
SN - 0021-9525
VL - 169
SP - 623
EP - 633
JO - Journal of Cell Biology
JF - Journal of Cell Biology
IS - 4
ER -