Confined diffusion without fences of a g-protein-coupled receptor as revealed by single particle tracking. - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Biophysical Journal Année : 2003

Confined diffusion without fences of a g-protein-coupled receptor as revealed by single particle tracking.

Résumé

Single particle tracking is a powerful tool for probing the organization and dynamics of the plasma membrane constituents. We used this technique to study the micro -opioid receptor belonging to the large family of the G-protein-coupled receptors involved with other partners in a signal transduction pathway. The specific labeling of the receptor coupled to a T7-tag at its N-terminus, stably expressed in fibroblastic cells, was achieved by colloidal gold coupled to a monoclonal anti T7-tag antibody. The lateral movements of the particles were followed by nanovideomicroscopy at 40 ms time resolution during 2 min with a spatial precision of 15 nm. The receptors were found to have either a slow or directed diffusion mode (10%) or a walking confined diffusion mode (90%) composed of a long-term random diffusion and a short-term confined diffusion, and corresponding to a diffusion confined within a domain that itself diffuses. The results indicate that the confinement is due to an effective harmonic potential generated by long-range attraction between the membrane proteins. A simple model for interacting membrane proteins diffusion is proposed that explains the variations with the domain size of the short-term and long-term diffusion coefficients.
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Dates et versions

hal-00123814 , version 1 (11-01-2007)

Identifiants

  • HAL Id : hal-00123814 , version 1
  • PUBMED : 12524289

Citer

Frédéric Daumas, Nicolas Destainville, Claire Millot, André Lopez, David S. Dean, et al.. Confined diffusion without fences of a g-protein-coupled receptor as revealed by single particle tracking.. Biophysical Journal, 2003, 84 (1), pp.356-66. ⟨hal-00123814⟩
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