Publications

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Derreumaux P.  2003.  Role of supersecondary structural elements in protein G folding. J. Chem. Phys.. 119:4940–4944.
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.  1998.  Finding the low-energy forms of avian pancreatic polypeptide with the diffusion-process-controlled Monte Carlo method. J. Chem. Phys.. 109:1567–1574.
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, 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.  2000.  Predicting helical hairpins from sequences by Monte Carlo simulations. J. Comput. Chem.. 21:582–589.
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.  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.  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, 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.  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, Wei GH, Santini S, Mousseau NN.  2004.  Early steps of amyloid-petide oligomerisation explored by simulations. Neurobiol. Aging. 25:S143.
Derreumaux P, Schlick T..  1998.  The loop opening/closing motion of the enzyme triosephosphate isomerase. Biophys. J.. 74:72–81.
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.  1997.  Folding a 20 amino acid alpha beta peptide with the diffusion process-controlled Monte Carlo method. J. Chem. Phys.. 107:1941–1947.
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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