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Heightened sensitivity of a lattice of membrane receptors

T A Duke1, D Bray

  • 1Institut Curie, Physico Chimie Curie, Section de Recherche, 26 rue d'Ulm, 75231 Paris Cedex 05, France. td18@cam.ac.uk

Insights

Cell receptors form clusters that coordinate responses. This simulation shows coupled receptors act like a biological "nose," enhancing cellular detection of external signals.

Area of Science:

  • Cellular biology
  • Biophysics
  • Computational biology

Background:

  • Receptor proteins in cell membranes often form 2D clusters.
  • These clusters may exhibit coordinated behavior through conformational state propagation.

Purpose of the Study:

  • To investigate if receptor clusters show coordinated responses via neighbor interactions.
  • To model the spread of conformational states within receptor lattices.

Main Methods:

  • Developed a Monte Carlo simulation for receptor state transitions (active/inactive).
  • Incorporated ligand binding, receptor adaptation, and neighbor activity into conformational energies.
  • Utilized rate constants from biological receptors (e.g., bacterial Tar receptor) and Ising model constraints.

Main Results:

  • Simulated coupled receptors demonstrated significantly enhanced signal sensitivity compared to uncoupled ones.
  • The system remained operational across a broader range of ambient concentrations.
  • Conformationally coupled receptor lattices exhibited properties suitable for cellular signal detection.

Conclusions:

  • Receptor clustering facilitates coordinated cellular responses to external stimuli.
  • Coupled receptor lattices can function as a sensitive cellular 'nose' for detecting environmental signals.
  • This model provides insights into the biophysical mechanisms underlying cellular sensing.

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