Multidimensional analysis of extended molecular dynamics simulations reveals the complexity of signal transduction by the histamine H3 membrane receptor
Herrera-Zuniga, L. D.; Moreno-Vargas, L. M.; Correa-Basurto, J.; Prada, D.; Curmi, P.; Arrang, J.-M.; Maroun, R. C.
Show abstract
In this work, we study the mechanisms of classical activation and inactivation of signal transduction by the histamine H3 receptor, a 7-helix transmembrane bundle G-Protein Coupled Receptor through long-time-scale molecular dynamics simulations of the receptor embedded in a hydrated double layer of dipalmitoyl phosphatidyl choline, a zwitterionic poly-saturated ordered lipid. Three systems were prepared: the apo receptor, representing the constitutively active receptor; and two holo-receptors -the receptor coupled to the antagonist/inverse agonist ciproxifan and representing the inactive state of the receptor, and the receptor coupled to the endogenous agonist histamine and representing the active state of the receptor. An extensive analysis of the simulation shows that the three states of H3R present significant structural and dynamical differences, as well as a complex behavior given that the measured properties interact in multiple and inter-dependent ways. In addition, the simulations describe an unexpected escape of histamine from the orthosteric binding site, in agreement with the experimental modest affinities and rapid off-rates of agonists.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Machine Learning-based Modeling of Olfactory Receptors in their Inactive State: Human OR51E2 as a Case Study 98%
- Computational investigation of BMAA and its carbamate adducts as potential GluR2 modulators 97%
- Selective Activation of GPCRs: Molecular Dynamics Shows Siponimod Binds but Fails to Activate S1PR2 Unlike S1PR1 97%
Similar papers in this journal
- G Protein-Coupled Receptor-Ligand Dissociation Rates and Mechanisms from {tau}RAMD Simulations 98%
- Coupling of conformational switches in calcium sensor unraveled with local Markov models and transfer entropy 97%
- A linear response theory based method for prediction of large scale protein conformational changes upon ligand binding 97%
Similar papers in this journal
- Coevolution-driven method for efficiently simulating conformational changes in proteins reveals molecular details of ligand effects in the beta2AR receptor 98%
- Coarse-graining the recognition of a glycolipid by the C-type lectin Mincle receptor 97%
- Molecular Mechanism of Brassinosteroids Perception by the Plant Growth Receptor BRI1 97%
Similar papers in this journal
- Energy landscapes and heat capacity signatures for monomers and dimers of amyloid forming hexapeptides 94%
- The molecular mechanism of positive allosteric modulation at the dopamine D1 receptor 94%
- Protocols for Multi-Scale Molecular Dynamics Simulations: A Comparative Study for Intrinsically Disordered Amyloid Beta in Amber & Gromacs on CPU & GPU 94%
Similar papers in this journal
- Conformational plasticity and dynamic interactions of the N-terminal domain of the chemokine receptor CXCR1 97%
- Molecular dynamics study of differential effects of serotonin-2A-receptor (5-HT2AR) modulators 97%
- Reconciling ASPP-p53 Binding Mode Discrepancies through an Ensemble Binding Framework that Bridges Crystallography and NMR Data 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.