학술논문

Structural basis for nucleotide exchange in heterotrimeric G proteins
Document Type
article
Source
Science. 348(6241)
Subject
1.1 Normal biological development and functioning
Underpinning research
Generic health relevance
GTP-Binding Protein alpha Subunits
Gi-Go
GTP-Binding Protein alpha Subunits
Gs
Guanine Nucleotide Exchange Factors
Humans
Models
Chemical
Molecular Dynamics Simulation
Protein Structure
Secondary
Protein Structure
Tertiary
Receptors
G-Protein-Coupled
Signal Transduction
General Science & Technology
Language
Abstract
G protein-coupled receptors (GPCRs) relay diverse extracellular signals into cells by catalyzing nucleotide release from heterotrimeric G proteins, but the mechanism underlying this quintessential molecular signaling event has remained unclear. Here we use atomic-level simulations to elucidate the nucleotide-release mechanism. We find that the G protein α subunit Ras and helical domains-previously observed to separate widely upon receptor binding to expose the nucleotide-binding site-separate spontaneously and frequently even in the absence of a receptor. Domain separation is necessary but not sufficient for rapid nucleotide release. Rather, receptors catalyze nucleotide release by favoring an internal structural rearrangement of the Ras domain that weakens its nucleotide affinity. We use double electron-electron resonance spectroscopy and protein engineering to confirm predictions of our computationally determined mechanism.