Publications

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2008
Liang C, Derreumaux P, Mousseau N, Wei G.  2008.  The beta-strand-loop-beta-strand conformation is marginally populated in beta(2)-microglobulin (20-41) peptide in solution as revealed by replica exchange molecular dynamics simulations. Biophys. J.. 95:510–517.
St-Pierre J-F, Mousseau N, Derreumaux P.  2008.  The complex folding pathways of protein A suggest a multiple-funnelled energy landscape. J. Chem. Phys.. 128:045101.
Dong X, Chen W, Mousseau N, Derreumaux P.  2008.  Energy landscapes of the monomer and dimer of the Alzheimer's peptide A beta(1-28). J. Chem. Phys.. 128:125108.
Mousseau N, Derreumaux P.  2008.  Exploring energy landscapes of protein folding and aggregation. Front. Biosci.. 13:4495–4516.
Chebaro Y, Derreumaux P.  2008.  Free energy surface of Abeta(16-22) complexed by N-methylated Abeta16-22 inhibitors. Publication Series of the John von Neumann Institute for Computing NIC Series. 40:177–179.
Colas C., Nguyen PHoang, Gelly J-C., Derreumaux P.  2008.  OPERA: An OPtimized coarsed-grained Energy model for RnA. Publication Series of the John von Neumann Institute for Computing NIC Series. 40:185–187.
Melquiond A, Dong X, Mousseau N, Derreumaux P.  2008.  Role of the region 23-28 in A beta fibril formation: Insights from simulations of the monomers and dimers of Alzheimer's peptides A beta 40 and A beta 42. Curr. Alzheimer Res.. 5:244–250.
Wei G, Song W, Derreumaux P, Mousseau N.  2008.  Self-assembly of amyloid-forming peptides by molecular dynamics simulations. Front. Biosci.. 13:5681–5692.
Song W, Wei G, Mousseau N, Derreumaux P.  2008.  Self-assembly of the beta 2-microglobulin NHVTLSQ peptide using a coarse-grained protein model reveals beta-barrel species. J. Phys. Chem. B. 112:4410–4418.
Derreumaux P.  2008.  Simulating the early steps of amyloid fibril formation and disassembly. Publication Series of the John von Neumann Institute for Computing NIC Series. 40:7–12.
2007
Maupetit J, Tuffery P, Derreumaux P.  2007.  A coarse-grained protein force field for folding and structure prediction. Proteins: Struct., Funct., Bioinf.. 69:394–408.
Derreumaux P, Mousseau N.  2007.  Coarse-grained protein molecular dynamics simulations. J. Chem. Phys.. 126:025101.
Wei G, Mousseau N, Derreumaux P.  2007.  Computational Simulations of the Early Steps of Protein Aggregation. Prion. 1:3–8.
Atmane N, Dairou J, Flatters D, Martins M, Pluvinage B, Derreumaux P, Dupret J-M, Rodrigues-Lima F.  2007.  The conserved glycine/alanine residue of the active-site loop containing the putative acetylCoA-binding motif is essential for the overall structural integrity of Mesorhizobium loti arylamine N-acetyltransferase 1. Biochem. Biophys. Res. Commun.. 361:256–262.
Melquiond A., Gelly J.C., Mousseau N., Derreumaux P.  2007.  Probing amyloid fibril formation of the NFGAIL peptide by computer simulations. J. Chem. Phys.. 126:065101.
Yun M-R, Mousseau N., Derreumaux P.  2007.  Sampling small-scale and large-scale conformational changes in proteins and molecular complexes. J. Chem. Phys.. 126:105101.
De Simone A, Zagari A, Derreumaux P.  2007.  Structural and hydration properties of the partially unfolded states of the prion protein. Biophys. J.. 93:1284–1292.
Liang C, Derreumaux P, Wei G.  2007.  Structure and aggregation mechanism of beta 2-microglobulin (83-99) peptides studied by molecular dynamics Simulations. Biophys. J.. 93:3353–3362.

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