Publications

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Derreumaux P, Mousseau N.  2007.  Coarse-grained protein molecular dynamics simulations. J. Chem. Phys.. 126:025101.
Derreumaux P, SCHLICK T.  1995.  LONG TIMESTEP DYNAMICS OF PEPTIDES BY THE DYNAMICS DRIVER APPROACH. Proteins-structure Function and Genetics. 21:282–302.
Derreumaux P.  2000.  Ab initio polypeptide structure prediction. Theor. Chem. Acc.. 104:1–6.
Derreumaux P.  1997.  A diffusion process-controlled Monte Carlo method for finding the global energy minimum of a polypeptide chain .1. Formulation and test on a hexadecapeptide. J. Chem. Phys.. 106:5260–5270.
Derreumaux P, Man VHoang, Wang J, Nguyen PHoang.  2020.  Tau R3-R4 Domain Dimer of the Wild Type and Phosphorylated Ser356 Sequences. I. In Solution by Atomistic Simulations.. J Phys Chem B.
Derreumaux P, VERGOTEN G.  1991.  EFFECT OF UREY-BRADLEY-SHIMANOUCHI FORCE-FIELD ON THE HARMONIC DYNAMICS OF PROTEINS. Proteins-structure Function and Genetics. 11:120–132.
Derreumaux P.  2000.  Predicting helical hairpins from sequences by Monte Carlo simulations. J. Comput. Chem.. 21:582–589.
Derreumaux P, VERGOTEN G.  1993.  INFLUENCE OF THE SPECTROSCOPIC POTENTIAL-ENERGY FUNCTION SPASIBA ON MOLECULAR-DYNAMICS OF PROTEINS - COMPARISON WITH THE AMBER POTENTIAL. Theochem-journal of Molecular Structure. 105:55–64.
Derreumaux P, VERGOTEN G.  1993.  HARMONIC AND MOLECULAR-DYNAMICS OF N-OCTANE - COMPARISON BETWEEN THE AMBER AND SPASIBA FORCE-FIELDS. J. Mol. Struct.. 295:233–244.
Derreumaux P.  2002.  Insight into protein topology from Monte Carlo simulations. J. Chem. Phys.. 117:3499–3503.
Derreumaux P.  2009.  Exploring amyloid aggregates with the OPEP coarse-grained force field. Abstracts of Papers of the American Chemical Society. 238
Derreumaux P.  2000.  Generating ensemble averages for small proteins from extended conformations by Monte Carlo simulations. Phys. Rev. Lett.. 85:206–209.
Derreumaux P, VERGOTEN G, LAGANT P.  1990.  A VIBRATIONAL MOLECULAR-FORCE FIELD OF MODEL COMPOUNDS WITH BIOLOGICAL INTEREST .1. HARMONIC DYNAMICS OF CRYSTALLINE UREA AT 123-K. J. Comput. Chem.. 11:560–568.
Derreumaux P, Schlick T..  1998.  The loop opening/closing motion of the enzyme triosephosphate isomerase. Biophys. J.. 74:72–81.
Derreumaux P.  1997.  Folding a 20 amino acid alpha beta peptide with the diffusion process-controlled Monte Carlo method. J. Chem. Phys.. 107:1941–1947.
Derreumaux P, WILSON KJ, VERGOTEN G, PETICOLAS WL.  1989.  CONFORMATIONAL STUDIES OF NEUROACTIVE LIGANDS .1. FORCE-FIELD AND VIBRATIONAL-SPECTRA OF CRYSTALLINE ACETYLCHOLINE. J. Phys. Chem.. 93:1338–1350.
Derreumaux P, LAGANT P, VERGOTEN G.  1993.  COMPARISON OF THE IR AND RAMAN VIBRATIONAL FREQUENCIES AND INTENSITIES OF ALKANES USING THE AMBER AND SPASIBA FORCE-FIELDS - APPLICATION TO ETHANE, AND GAUCHE-N-BUTANE AND TRANS-N-BUTANE. J. Mol. Struct.. 295:223–232.
Derreumaux P, Wei GH, Santini S, Mousseau NN.  2004.  Early steps of amyloid-petide oligomerisation explored by simulations. Neurobiol. Aging. 25:S143.
Derreumaux P.  2013.  coarse-grained models for protein folding ang aggregation. Methods Mol. Biol.. 924:585–600.
Di Cera E, Robert CH, Gill SJ.  1987.  Allosteric interpretation of the oxygen-binding reaction of human hemoglobin tetramers. Biochemistry. 26:4003–4008.
Doig AJ, Del Castillo-Frias MP, Berthoumieu O, Tarus B, Nasica-Labouze J, Sterpone F, Nguyen PHoang, Hooper NM, Faller P, Derreumaux P.  2017.  Why Is Research on Amyloid-β Failing to Give New Drugs for Alzheimer's Disease? ACS Chem Neurosci. 8(7):1435-1437.
Doig AJ, Derreumaux P.  2015.  Inhibition of protein aggregation and amyloid formation by small molecules. Curr. Opin. Struct. Biol.. 30:50–56.
Domin D, Man VHoang, Van-Oanh N-T, Wang J, Kawasaki T, Derreumaux P, Nguyen PHoang.  2018.  Breaking down cellulose fibrils with a mid-infrared laser. Cellulose. 25:5553–5568.
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.
Dorofeyev VE, Mazur AK.  1993.  Investigation of conformational equilibrium of polypeptides by internal coordinate stochastic dynamics: Met-enkephalin. J. Biomol. Struct. Dyn.. 10:143–167.

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