Publications

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Journal Article
Dama JF, Rotskoff J, Parrinello M, Voth GA. Transition-Tempered Metadynamics: Robust, Convergent Metadynamics via On-The-Fly Transition Barrier Estimation. J. Chem. Theor. Comp. 2014 .
Sun R, Dama JF, Tan JS, Rose JP, Voth GA. Transition-Tempered Metadynamics is a Promising Tool for Studying the Permeation of Drug-like Molecules through Membranes. J. Chem. Theory Comp. . 2016 .
Dama JF, Sinitskiy AV, McCullagh M, Weare J, Roux B, Dinner AR, Voth GA. Theory of Ultra Coarse-Graining. I. General Principles. J. Chem. Theor. Comp. 2013 ;9:2466−2480.
Zhou S, He P, Dhindwal S, Grum-Tokars VL, K. Li PY, Modica JA, Bleher R, R. Reis dos, Zuchniarz J, Dravid VP, et al. Synthesis, Characterization and Simulation of Four-Armed Megamolecules. Biomacromolecules. 2021 ;22(6):2363–2372.
Zhou S, He P, Dhindwal S, Grum-Tokars VL, K. Li PY, Modica JA, Bleher R, R. Reis dos, Zuchniarz J, Dravid VP, et al. Synthesis, Characterization and Simulation of Four-Armed Megamolecules. Biomacromolecules. 2021 ;22(6):2363–2372.
Reichman DR, Voth GA. Self-consistent Harmonic Theory of Solvation in Glassy Systems: Quantum Solvation. The Journal of Chemical Physics. 2000 ;112:3280-3284.
Reichman DR, Voth GA. Self-consistent Harmonic Theory of Solvation in Glassy Systems: Classical Solvation. The Journal of Chemical Physics. 2000 ;112:3267-3279.
Simunovic M, Mim C, Marlovits T, Resch G, Unger G, Voth GA. Protein-Mediated Transformation of Lipid Vesicles into Tubular Networks. Biophys. J. 2013 ;105(3):711-719.
Blinov NV, Roy PN, Voth GA. Path Integral Formulation of Centroid Dynamics for Systems Obeying Bose-Einstein Statistics. J. Chem. Phys. 2001 ;115:4484.
Saunders MG, Tempkin J, Weare J, Dinner AR, Roux B, Voth GA. Nucleotide Regulation of the Structure and Dynamics of G-actin. Biophys. J. 2014 ;106:1710-1720.
Sun R, Han Y, Swanson JMJ, Tan JS, Rose JP, Voth GA. Molecular transport through membranes: Accurate permeability coefficients from multidimensional potentials of mean force and local diffusion constants. J. Chem. Phys. 2018 ;149(7):072310.
Randa HS, Forrest LR, Voth GA, Sansom MS. Molecular Dynamics of Synthetic Leucine-serine Ion Channels in a Phospholipid Membrane. Biophys J. 1999 ;77:2400-10.
Chen Y, Aardema J, Kale S, Whichard ZL, Awomolo A, Blanchard E, Chang B, Myers DR, Ju L, Tran R, et al. Loss of the F-BAR Protein CIP4 Reduces Platelet Production by Impairing Membrane-Cytoskeleton Remodeling. Blood. 2013 ;122:1695-1706.
Chen Y, Aardema J, Kale S, Whichard ZL, Awomolo A, Blanchard E, Chang B, Myers DR, Ju L, Tran R, et al. Loss of the F-BAR Protein CIP4 Reduces Platelet Production by Impairing Membrane-Cytoskeleton Remodeling. Blood. 2013 ;122:1695-1706.
Oakes PW, Bidone TC, Beckham Y, Skeeters AV, Ramirez-San-Juan GR, Winter SP, Voth GA, Gardel ML. The Lamellipodia is a Myosin Independent Mechanosensor. Proc. Nat. Acad. Sci. USA. 2018 ;115(11):2646–2651.
Rega N, Iyengar SS, Voth GA, Schlegel HB, Vreven T, Frisch MJ. Hybrid Ab Initio Empirical Molecular Dynamics: Combining the ONIOM Scheme with the Atom-centered Density Matrix Propagation (ADMP) Approach. J. Phys. Chem. B. 2004 ;108:4210 - 4220.
Simunovic M, Evergren E, Golushko I, Prévost C, Renard H-F, Johannes L, McMahon H, Lorman V, Voth GA, Bassereau P. How Curvature-Generating Proteins Build Scaffolds on Membrane Nanotubes. Proc. Nat. Acad. Sci. USA. 2016 .
Flower TG, Takahashi Y, Hudait A, Rose K, Tjahjono N, Pak AJ, Yokom AL, Liang X, Wang HG, Bouamr F, et al. A Helical Assembly of Human ESCRT-I Scaffolds Reverse-Topology Membrane Scission. Nat. Struct. Mol. Biol. 2020 ;27(6):570–580.
Simunovic M, Manneville J-B, Renard H-F, Evergren E, Raghunathan K, Kenworthy AK, Voth GA, Prost J, McMahon HT, Johannes L, et al. Friction Mediates Scission of Tubular Membranes Scaffolded by BAR Proteins. Cell. 2017 ;170.
Simunovic M, Manneville J-B, Renard H-F, Evergren E, Raghunathan K, Kenworthy AK, Voth GA, Prost J, McMahon HT, Johannes L, et al. Friction Mediates Scission of Tubular Membranes Scaffolded by BAR Proteins. Cell. 2017 ;170.
Roy P-N, Jang S, Voth GA. Feynman Path Centroid Dynamics for Fermi–Dirac Statistics. The Journal of Chemical Physics. 1999 ;111:5303-5305.
Reichman DR, Roy P-N, Jang S, Voth GA. A Feynman Path Centroid Dynamics Approach for the Computation of Time Correlation Functions Involving Nonlinear Operators. The Journal of Chemical Physics. 2000 ;113:919-929.
Reichman DR, Roy P-N, Jang S, Voth GA. A Feynman Path Centroid Dynamics Approach for the Computation of Time Correlation Functions Involving Nonlinear Operators. The Journal of Chemical Physics. 2000 ;113:919-929.
Roy P-N, Voth GA. On the Feynman Path Centroid Density for Bose-Einstein and Fermi-Dirac Statistics. The Journal of Chemical Physics. 1999 ;110:3647-3652.
Madsen JJ, Grime JMA, Rossman JS, Voth GA. Entropic forces drive clustering and spatial localization of influenza A M2 during viral budding. Proc. Natl. Acad. Sci. USA. 2018 ;115(37):E8595–E8603.
Hone TD, Rossky PJ, Voth GA. A Comparative Study of Imaginary Time Path Integral Based Methods for Quantum Dynamics. J Chem Phys. 2006 ;124:154103.
Ryu WH, Han Y, Voth GA. Coarse-graining of many-body path integrals: Theory and numerical approximations. J. Chem. Phys. 2019 ;150(24):244103.
Ryu WH, Voth GA. Coarse-Graining of Imaginary Time Feynman Path Integrals: Inclusion of Intramolecular Interactions and Bottom-up Force-Matching. J. Phys. Chem. A. 2022 ;126(35):6004–6019.
Martyna A, Bahsoun B, Madsen JJ, Clifton LA, Jackson FSJS, Badham MD, Voth GA, Rossman JS. Cholesterol Alters the Membrane Orientation and Activity of the Influenza Virus M2 Amphipathic Helix. J. Phys. Chem. B. 2020 ;124(31):6738–6747 .
Barry E, Burns R, Chen W, de Hoe GX, de Oca JMM, de Pablo JJ, Dombrowski J, Elam JW, Felts AM, Gali G, et al. Advanced Materials for Energy-Water Systems: The Central Role of Water/Solid Interfaces in Adsorption, Reactivity, and Transport. Chem. Rev. 2021 ;121(21):9450−9501.
Book Chapter
Wang Y, Jiang W, Voth GA. Spatial Heterogeneity in Ionic Liquids. In: Brennecke JF, Rogers RD, Seddon KR Ionic Liquids IV. Not Just Solvents Anymore. Ionic Liquids IV. Not Just Solvents Anymore. Washington DC: American Chemical Society; 2007. pp. 272-307.