Investigating Medin Cleavage Accessibility in MfgE8: Conformational Insights Derived from Molecular Dynamics Simulations and AlphaFold2 Models
Mesdaghi, S.; Price, R.; Madine, J.; Migrino, R.; Li, M.; Rigden, D. J.
Show abstract
Recent studies have indicated that the human amyloidogenic protein medin is associated with a range of vascular diseases, including aortic aneurysms, vascular dementia, and Alzheimers disease. Medin accumulates in the vasculature with age, leading to endothelial dysfunction through oxidative and nitrative stress and inducing pro-inflammatory activation. Medin is a cleavage product from the C2 domain of MfgE8. The exact mechanism of medin production from MfgE8 is unknown, with crystal structures of homologous C2 domains suggesting that the cleavage sites are buried, requiring a conformational transition for medin production. Molecular dynamics simulations can explore a wide range of conformations, from small-scale bond rotations to large-scale changes like protein folding or ligand binding. This study employed a combination of full-atom and coarse-grained molecular dynamics simulations, along with CONCOORD- and AlphaFold2-generated models, to investigate MfgE8 conformations and their implications for medin cleavage site accessibility. The simulations revealed that MfgE8 tends to adopt a compact conformation with the RGD motif, important for cell attachment within the N-terminal domain, and the medin region in the C-terminal domain close in proximity. Formation of this compact structure is facilitated by interdomain electrostatic interactions that promote stability and in turn decrease the solvent-accessible surface area of the medin region and particularly the C-terminal medin cleavage site. This data enhances current knowledge on medin generation to propose that alterations in local environmental conditions, possibly through changes in glycosylation or other post-translational modifications are required to induce MfgE8 to unfold partially or fully: this would result in enhanced accessibility of the cleavage sites and therefore enable medin generation.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Structural Insights into the ATP-dependent Activation of NOD-like Receptor with Pyrin 3 (NLRP3) Protein by Molecular Dynamics Simulation 95%
- Fibroblast Growth Factor 5 (FGF5) and Its Missense Mutant FGF5-H174 Underlying Trichomegaly: A Molecular Dynamics Simulation Investigation 94%
- Function and evolution of B-Raf loop dynamics relevant to cancer recurrence under drug inhibition 94%
Similar papers in this journal
- Assessing Protein Surface-Based Scoring for Interpreting Genomic Variants 95%
- Protocols for Multi-Scale Molecular Dynamics Simulations: A Comparative Study for Intrinsically Disordered Amyloid Beta in Amber & Gromacs on CPU & GPU 94%
- Single nucleotide polymorphism induces divergent dynamic patterns in CYP3A5: a microsecond scale biomolecular simulation of variants identified in Sub-Saharan African populations 94%
Similar papers in this journal
- Flap dynamics in pepsin-like aspartic proteases: a computational perspective using Plasmepsin-II and BACE-1 as model systems 96%
- cpSRP43 is both highly flexible and stable: Structural insights using a combined experimental and computational approach 95%
- Determination of hydrogen bonds in Gromacs: new implementation to overcome the limitation 94%
"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.