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Mathew C. Lee

Researcher at University of Delaware

Publications -  3
Citations -  4603

Mathew C. Lee is an academic researcher from University of Delaware. The author has contributed to research in topics: Molecular dynamics & Dielectric. The author has an hindex of 3, co-authored 3 publications receiving 4284 citations.

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A point-charge force field for molecular mechanics simulations of proteins based on condensed-phase quantum mechanical calculations.

TL;DR: A third‐generation point‐charge all‐atom force field for proteins is developed and initial tests on peptides demonstrated a high‐degree of similarity between the calculated and the statistically measured Ramanchandran maps for both Ace‐Gly‐nme and Ace‐Ala‐Nme di‐peptides.
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Distinguish protein decoys by using a scoring function based on a new AMBER force field, short molecular dynamics simulations, and the generalized born solvent model.

TL;DR: This study developed an energy scoring function using a new set of AMBER parameters in conjunction with molecular dynamics and the Generalized Born solvent model and evaluated its ability to distinguish between the native and decoy protein structures.
Journal ArticleDOI

Ab initio Folding Simulation of the Trp-cage Mini-protein Approaches NMR Resolution

TL;DR: Analysis of the trajectory suggests that the rate-limiting step of folding of this mini-protein is the packing of the Trp side-chain, and the simulation has not only reached the correct main-chain conformation, but also a very high degree of accuracy in side- Chain packing conformation.