Publications

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Journal Article
Man VHoang, Nguyen PHoang, Derreumaux P.  2017.  Conformational Ensembles of the Wild-Type and S8C Aβ1-42 Dimers.. J Phys Chem B. 121(11):2434-2442.
Faraldo-Gomez JD, Forrest LR, Baaden M, Bond PJ, Domene C, Patargias G, Cuthbertson J, Sansom MSP.  2004.  Conformational sampling and dynamics of membrane proteins from 10-nanosecond computer simulations. Proteins: Struct., Funct., Bioinf.. 57:783–791.
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.
WILSON KJ, Derreumaux P, VERGOTEN G, PETICOLAS WL.  1989.  CONFORMATIONAL STUDIES OF NEUROACTIVE LIGANDS .2. SOLUTION-STATE CONFORMATIONS OF ACETYLCHOLINE. J. Phys. Chem.. 93:1351–1357.
Chen W, Mousseau N, Derreumaux P.  2006.  The conformations of the amyloid-beta (21-30) fragment can be described by three families in solution. J. Chem. Phys.. 125:084911.
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.
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.
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.
Puyo-Fourtine J, Juillé M, Hénin J, Clavaguéra C, Duboué-Dijon E.  2022.  Consistent Picture of Phosphate–Divalent Cation Binding from Models with Implicit and Explicit Electronic Polarization. J. Phys. Chem. B. 126(22):4022-4034.
Hitaishi VPratap, Clement R, Bourassin N, Baaden M, de Poulpiquet A, Sacquin-Mora S, Ciaccafava A, Lojou E.  2018.  Controlling Redox Enzyme Orientation at Planar Electrodes. Catalysts. 8
Chebaro Y, Derreumaux P.  2009.  The Conversion of Helix H2 to beta-Sheet Is Accelerated in the Monomer and Dimer of the Prion Protein upon T183A Mutation. J. Phys. Chem. B. 113:6942–6948.
Gill SJ, Robert CH, Coletta M, Di Cera E, Brunori M.  1986.  Cooperative free energies for nested allosteric models as applied to human hemoglobin. Biophys. J.. 50:747–752.
Pons S, Sallette J, Bourgeois JP, Taly A, Changeux J-P, Devillers-Thiéry A.  2004.  Critical role of the C-terminal segment in the maturation and export to the cell surface of the homopentameric $\alpha$7–5HT3A receptor. Eur. J. Neurosci.. 20:2022–2030.
Arluison V, Folichon M, Marco S, Derreumaux P, Pellegrini O, Seguin J, Hajnsdorf E, Regnier P.  2004.  The C-terminal domain of Escherichia coli Hfq increases the stability of the hexamer. Eur. J. Biochem.. 271:1258–1265.
Tung NThanh, Derreumaux P, Vu VV, Nam PCam, Ngo STung.  2019.  C-Terminal Plays as the Possible Nucleation of the Self-Aggregation of the S-Shape Aβ Tetramer in Solution: Intensive MD Study.. ACS Omega. 4(6):11066-11073.
Sikorav J.L., Duplantier B., Jannink G., Timsit Y.  1998.  DNA crossovers and type II DNA topoisomerases: A thermodynamical study. J. Mol. Biol.. 284:1279–1287.
Thevenet P., Shen Y., Maupetit J., Guyon F., Padilla A., Derreumaux P, Tuffery P.  2012.  Delivering the native structures of peptides from computer simulations and predicted NMR proton chemical shifts. J. Pept. Sci.. 18:S38.
Bestaoui-Berrekhchi-Berrahma N, Derreumaux P, Sekkal-Rahal M, Springborg M, Sayede A, Yousfi N, Kadoun A-E-D.  2013.  Density functional conformational study of 2-O-sulfated 3,6 anhydro-alpha-D-galactose and of neo-kappa- and iota-carrabiose molecules in gas phase and water. J. Mol. Model.. 19:893–904.
Tuffery P, Derreumaux P.  2005.  Dependency between consecutive local conformations helps assemble protein structures from secondary structures using Go potential and greedy algorithm. Proteins: Struct., Funct., Bioinf.. 61:732–740.
Mazur AK, Dorofeyev VE, Abagyan RA.  1991.  Derivation and testing of explicit equations of motion for polymers described by internal coordinates. J. Comput. Phys.. 92:261–272.
Alvarez J, Irrmann O, Djaouti D, Taly A, Rampnoux O, Sauvé L.  2019.  Design games and game design: Relations between design, codesign and serious games in adult education. From UXD to LivXD: Living eXperience Design. :229–253.
Colloc'h N., Sacquin-Mora S, Avella G., Dhaussy A.C, Prange T., Vallone B., Girard E..  2017.  Determinants of neuroglobin plasticity highlighted by joint coarse-grained simulations and high pressure crystallography. Sci Rep. 7:1858.
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.
Nguyen PHoang, Sterpone F, Pouplana R, Derreumaux P, Campanera JM.  2016.  Dimerization Mechanism of Alzheimer A beta(40) Peptides: The High Content of Intrapeptide-Stabilized Conformations in A2V and A2T Heterozygous Dimers Retards Amyloid Fibril Formation. J. Phys. Chem. B. 120:12111–12126.
Cote S, Laghaei R, Derreumaux P, Mousseau N.  2012.  Distinct Dimerization for Various Alloforms of the Amyloid-Beta Protein: A beta(1-40), A beta(1-42), and A beta(1-40)(D23N). J. Phys. Chem. B. 116:4043–4055.

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