2017 - 2019 Design of Brownian motor assembly and deciphering the coordinated motion
2016 - 2017 Driving myosin by polymorphism and hydration-state control of actin filaments
2014 - 2017 Comprehensive analysis of Arabidopsis myosin XIs
2014 - 2016 Design of molecular assembly system and the single molecule observation
2012 - 2014 Designing and imaging of reconstructed muscle using DNA nanostructure
2008 - 2014 Organizing study of ATP energy research project
2008 - 2013 Single Molecule analysis for the Mechano-Chemical Conversion of ATP-driven proteins
2009 - 2011 Characterization of enzymatic property plant specific class VIII myosin
2009 - 2010 Mechanical control of the Brownian process for bio nano-motors
2003 - 2004 蛋白質分子の動的構造と機能の相関の計測
生体分子の機械刺激応答および環境応答機構の研究とその応用
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Papers (37):
Toshio Yanagida, Keisuke Fujita, Mitsuhiro Iwaki. The Demon Hidden Behind Life's Ultra-Energy-Efficient Information Processing -- Demonstrated by Biological Molecular Motors. arXiv. 2025
Nobumichi Takamatsu, Hiroko Furumoto, Takayuki Ariga, Mitsuhiro Iwaki, Kumiko Hayashi. Stall force measurement of the kinesin-3 motor KIF1A using a programmable DNA origami nanospring. eLife. 2025. 14:RP108477
Yoshihiko Kobayashi, Kazunori Sunadome, Koichiro Maki, Hiroki Fukunaga, Hitomi Matsubara, Sahomi Ohkubo, Ritsuko Maki, Maki Yoshikawa, Aleksandra Tata, Purushothama Rao Tata, et al. Distinct dermal fibroblasts direct mechano-chemical signaling to the epidermis during pregnancy. bioRxiv. 2025
Takumi Otake, Ryuki Kajita, Ikuma Ogasawara, Mitsuhiro Iwaki, Hiroshi Onishi, Akira Yoshimori, Ken-ichi Amano. Theoretical investigation of interaction measurements in liquid systems with viscosity distributions. Physica A: Statistical Mechanics and its Applications. 2024. 129918-129918
Mitsuhiro Iwaki. DNA mechanotechnology and high-resolution imaging of cellular mechanical forces. Proceedings for Annual Meeting of The Japanese Pharmacological Society. 2023. 97. 2-B-S41-1
Theoretical correction methods for optical tweezers : Acquisition of potentials of mean forces between colloidal particles in a bulk and on a substrate surface: 光ピンセットのための理論的補正法 : バルクや基板表面近傍におけるコロイド粒子間の平均力ポテンシャルの取得. 2021. 20. 17-26
Analyzing function of life using optical tweezers. 2020. 52. 2. 50-53
Revealing the mechanics of life one molecule at a time with DNA origami tools
(International Conference on Single-Molecule Biophysics (SiMBio2026) 2026)