Three separable domains regulate GTP-dependent association of H-ras with the plasma membrane


Autoria(s): Rotblat, B.; Prior, I. A.; Muncke, C.; Parton, R. G.; Kloog, Y.; Henis, Y. I.; Hancock, J. F.
Data(s)

01/01/2004

Resumo

The microlocalization of Ras proteins to different microdomains of the plasma membrane is critical for signaling specificity. Here we examine the complex membrane interactions of H-ras with a combination of FRAP on live cells to measure membrane affinity and electron microscopy of intact plasma membrane sheets to spatially map microdomains. We show that three separable forces operate on H-ras at the plasma membrane. The lipid anchor, comprising a processed CAAX motif and two palmitic acid residues, generates one attractive force that provides a high-affinity interaction with lipid rafts. The adjacent hypervariable linker domain provides a second attractive force but for nonraft plasma membrane microdomains. Operating against the attractive interaction of the lipid anchor for lipid rafts is a repulsive force generated by the N-terminal catalytic domain that increases when H-ras is GTP loaded. These observations lead directly to a novel mechanism that explains how H-ras lateral segregation is regulated by activation state: GTP loading decreases H-ras affinity for lipid rafts and allows the hypervariable linker domain to target to nonraft microdomains, the primary site of H-ras signaling.

Identificador

http://espace.library.uq.edu.au/view/UQ:73686/UQ73686_OA.pdf

http://espace.library.uq.edu.au/view/UQ:73686

Idioma(s)

eng

Publicador

American Society for Microbiology

Palavras-Chave #Biochemistry & Molecular Biology #Cell Biology #Gpi-anchored Proteins #Lipid Rafts #Cell-surface #Lateral Mobility #Live Cells #Microdomains #Family #Signal
Tipo

Journal Article