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The Journal of Chemical Physics|February 10, 2019
Analyses based on statistical thermodynamics for large difference between thermophilic rhodopsin and xanthorhodopsin in terms of thermostabilitySatoshi Yasuda, Tomohiko Hayashi, Yuta Kajiwara, et al.Journal of Computational Chemistry|November 19, 2016
Identification of thermostabilizing mutations for a membrane protein whose three-dimensional structure is unknownYuta Kajiwara, Satoshi Yasuda, Yuuki Takamuku, et al.The Journal of Physical Chemistry. B|April 9, 2016
Identification of Thermostabilizing Mutations for Membrane Proteins: Rapid Method Based on Statistical ThermodynamicsSatoshi Yasuda, Yuta Kajiwara, Yuuki Takamuku, et al.The Journal of Physical Chemistry. B|April 5, 2018
Physical Origin of Thermostabilization by a Quadruple Mutation for the Adenosine A2a Receptor in the Active StateYuta Kajiwara, Satoshi Yasuda, Simon Hikiri, et al.The Journal of Physical Chemistry. B|June 24, 2017
Hot-Spot Residues to be Mutated Common in G Protein-Coupled Receptors of Class A: Identification of Thermostabilizing Mutations Followed by Determination of Three-Dimensional Structures for Two Example ReceptorsSatoshi Yasuda, Yuta Kajiwara, Yosuke Toyoda, et al.Nature Chemical Biology|December 5, 2018
Ligand binding to human prostaglandin E receptor EP4 at the lipid-bilayer interfaceYosuke Toyoda, Kazushi Morimoto, Ryoji Suno, et al.Pageof 1