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Featured researches published by Shuya Ishii.


PLOS ONE | 2018

Estimation of actomyosin active force maintained by tropomyosin and troponin complex under vertical forces in the in vitro motility assay system

Shuya Ishii; Masataka Kawai; Shin'ichi Ishiwata; Madoka Suzuki

The interaction between actin filaments and myosin molecular motors is a power source of a variety of cellular functions including cell division, cell motility, and muscular contraction. In vitro motility assay examines actin filaments interacting with myosin molecules that are adhered to a substrate (e.g., glass surface). This assay has been the standard method of studying the molecular mechanisms of contraction under an optical microscope. While the force generation has been measured through an optically trapped bead to which an actin filament is attached, a force vector vertical to the glass surface has been largely ignored with the in vitro motility assay. The vertical vector is created by the gap (distance) between the trapped bead and the glass surface. In this report, we propose a method to estimate the angle between the actin filament and the glass surface by optically determining the gap size. This determination requires a motorized stage in a standard epi-fluorescence microscope equipped with optical tweezers. This facile method is applied to force measurements using both pure actin filaments, and thin filaments reconstituted from actin, tropomyosin and troponin. We find that the angle-corrected force per unit filament length in the active condition (pCa = 5.0) decreases as the angle between the filament and the glass surface increases; i.e. as the force in the vertical direction increases. At the same time, we demonstrate that the force on reconstituted thin filaments is approximately 1.5 times larger than that on pure actin filaments. The range of angles we tested was between 11° and 36° with the estimated measurement error less than 6°. These results suggest the ability of cytoplasmic tropomyosin isoforms maintaining actomyosin active force to stabilize cytoskeletal architecture.


Journal of Muscle Research and Cell Motility | 2012

Improvement of the yields of recombinant actin and myosin V–HMM in the insect cell/baculovirus system by the addition of nutrients to the high-density cell culture

Takashi Ohki; Sergey V. Mikhailenko; Tomomi Arai; Shuya Ishii; Shin'ichi Ishiwata


Biophysical Journal | 2015

Characterization of α-Tropomyosin (TM) Mutants that Cause Hypertrophic Cardiomyopathy (HCM) in Humans: In vitro Motility Assays with a Microscopic Heat Pulse

Shuya Ishii; Kotaro Oyama; Madoka Suzuki; Masataka Kawai; Shin'ichi Ishiwata


生物物理 | 2014

1P139 心筋症特異的なトロポミオシン変異体による再構成フィラメントの光ピンセット及び熱パルスを用いたin vitro assay(10. 筋肉,ポスター,第52回日本生物物理学会年会(2014年度))

Shuya Ishii; Kotaro Oyama; Madoka Suzuki; Masataka Kawai; Shin'ichi Ishiwata


Seibutsu Butsuri | 2014

1P139 Characterization of tropomyosin mutants that cause hypertrophic cardiomyopathy (HCM) : In vitro assays with optical tweezers and heat pulse(10. Muscle,Poster,The 52nd Annual Meeting of the Biophysical Society of Japan(BSJ2014))

Shuya Ishii; Kotaro Oyama; Madoka Suzuki; Masataka Kawai; Shin'ichi Ishiwata


Biophysical Journal | 2014

Thermal Activation of Cardiac Thin Filaments Induces Contraction without Intracellular Ca2+ Changes: Studies with Cardiomyocytes and an In Vitro Motility Assay

Kotaro Oyama; Shuya Ishii; Tomomi Arai; Seine A. Shintani; Hideki Itoh; Norio Fukuda; Madoka Suzuki; Shin'ichi Ishiwata


生物物理 | 2013

1P203 アクトミオシン収縮運動の制御機構 : α-カテニンの阻害作用を中心に(12.細胞生物的課題,ポスター,日本生物物理学会年会第51回(2013年度))

Shuya Ishii; Takashi Ohki; Hiroaki Kubota; Shin'ichi Ishiwata


Seibutsu Butsuri | 2013

1P203 Inhibition of actomyosin contractility by α-catenin, a component of adherens junction(12.Cell biology,Poster,The 51st Annual Meeting of the Biophysical Society of Japan)

Shuya Ishii; Takashi Ohki; Hiroaki Kubota; Shin'ichi Ishiwata


生物物理 | 2012

3B0948 αカテニンによるアクトミオシン収縮の阻害(蛋白質-構造機能相関III:動態,生体リズム,口頭発表,日本生物物理学会第50回年会(2012年度))

Shuya Ishii; Takashi Ohki; Hiroaki Kubota; Shin'ichi Ishiwata


Seibutsu Butsuri | 2012

3B0948 Inhibition of actomyosin contractility by α-catenin, a component of adherens junctions(Proteins:Structure & Function III:Dynamics and Circadian Rhythm,Oral Presentation,The 50th Annual Meeting of the Biophysical Society of Japan)

Shuya Ishii; Takashi Ohki; Hiroaki Kubota; Shin'ichi Ishiwata

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Norio Fukuda

Jikei University School of Medicine

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