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Biochemical Society Transactions|February 26, 2021
Structural dynamics of ABC transporters: molecular simulation studiesTadaomi FurutaProceedings of the National Academy of Sciences of the United States of America|July 22, 2022
Multiple dimeric structures and strand-swap dimerization of E-cadherin in solution visualized by high-speed atomic force microscopyShigetaka Nishiguchi, Tadaomi Furuta, Takayuki UchihashiPhysical Chemistry Chemical Physics : PCCP|November 9, 2019
A novel ring-shaped reaction pathway with interconvertible intermediates in chitinase A as revealed by QM/MM simulation combined with a one-dimensional projection techniqueTsubasa Iino, Minoru Sakurai, Tadaomi FurutaBiochemistry|December 10, 2016
Structural Dynamics of the Heterodimeric ABC Transporter TM287/288 Induced by ATP and Substrate BindingTadaomi Furuta, Yukiko Sato, Minoru SakuraiThe Journal of Physical Chemistry. B|July 20, 2016
Kirkwood-Buff Integrals for Aqueous Urea Solutions Based upon the Quantum Chemical Electrostatic Potential and Interaction EnergiesShuntaro Chiba, Tadaomi Furuta, Seishi ShimizuBiophysics and Physicobiology|January 25, 2018
Analysis of an ATP-induced conformational transition of ABC transporter MsbA using a coarse-grained modelNaoki Arai, Tadaomi Furuta, Minoru SakuraiThe Journal of Physical Chemistry. B|July 10, 2015
Analysis of the Free Energy Landscapes for the Opening-Closing Dynamics of the Maltose Transporter ATPase MalK2 Using Enhanced-Sampling Molecular Dynamics SimulationWei-Lin Hsu, Tadaomi Furuta, Minoru SakuraiProteins|December 2, 2017
The mechanism of nucleotide-binding domain dimerization in the intact maltose transporter as studied by all-atom molecular dynamics simulationsWei-Lin Hsu, Tadaomi Furuta, Minoru SakuraiThe Journal of Physical Chemistry. B|October 8, 2016
ATP Hydrolysis Mechanism in a Maltose Transporter Explored by QM/MM Metadynamics SimulationWei-Lin Hsu, Tadaomi Furuta, Minoru SakuraiJournal of Biochemistry|August 4, 2023
Binding profile of quinonoid-dihydrobiopterin to quinonoid-dihydropteridine reductase examined by in silico and in vitro analysesHaruka Kono, Satoshi Hara, Tadaomi Furuta, et al.Pageof 8