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Featured researches published by Haruo Sugi.


Circulation Research | 1998

Comparison of Unitary Displacements and Forces Between 2 Cardiac Myosin Isoforms by the Optical Trap Technique: Molecular Basis for Cardiac Adaptation

Seiryo Sugiura; Naoshi Kobayakawa; Hideo Fujita; Hiroshi Yamashita; Shin-ichi Momomura; Shigeru Chaen; Masao Omata; Haruo Sugi

To provide information on the mechanism of cardiac adaptation at the molecular level, we compared the unitary displacements and forces between the 2 rat cardiac myosin isoforms, V1 and V3. A fluorescently labeled actin filament, with a polystyrene bead attached, was caught by an optical trap and brought close to a glass surface sparsely coated with either of the 2 isoforms, so that the actin-myosin interaction took place in the presence of a low concentration of ATP (0.5 micromol/L). Discrete displacement events were recorded with a low trap stiffness (0.03 to 0.06 pN/nm). Frequency distribution of the amplitude of the displacements consisted of 2 gaussian curves with peaks at 9 to 10 and 18 to 20 nm for both V1 and V3, suggesting that 9 to 10 nm is the unitary displacement for both isoforms. The duration of the displacement events was longer for V3 than for V1. On the other hand, discrete force transients were recorded with a high trap stiffness (2.1 pN/nm), and their amplitude showed a broad distribution with mean values between 1 and 2 pN for V1 and V3. The durations of the force transients were also longer for V3 than for V1. These results indicate that both the unitary displacements and forces are similar in amplitude but different in duration between the 2 cardiac myosin isoforms, being consistent with the reports that the tension cost is higher in muscles consisting mainly of V1 than those consisting mainly of V3.


Archive | 2012

Evidence for the Essential Role of Myosin Head Lever Arm Domain and Myosin Subfragment-2 in Muscle Contraction

Haruo Sugi; Takakazu Kobayashi; Teizo Tsuchiya; Shigeru Chaen; Seiryo Sugiura

© 2012 Sugi et al., licensee InTech. This is an open access chapter distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0], which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Evidence for the Essential Role of Myosin Head Lever Arm Domain and Myosin Subfragment-2 in Muscle Contraction


Proceedings of the Japan Academy | 1973

Localization of Calcium-Accumulating Structures in the Anterior Byssal Retractor Muscle of Mytilus edulis and Their Role in Excitation-Contraction Coupling

Haruo Sugi; Saoko Atsumi


The Journal of General Physiology | 1967

The Mode of Transverse Spread of Contraction Initiated by Local Activation in Single Frog Muscle Fibers

Haruo Sugi; Rikuo Ochi


Proceedings of the Japan Academy | 1971

Activation of the Contractile Mechanism in Mytilus Smooth Muscle

Haruo Sugi; Toshio Yamaguchi


Japanese Journal of Physiology | 1964

SUMMATION OF CONTRACTION IN SINGLE CRAYFISH MUSCLE FIBRES.

Haruo Sugi; Kenji Kosaka


Biochimica et Biophysica Acta | 2004

Effect of deuterium oxide on contraction characteristics and ATPase activity in glycerinated single rabbit skeletal muscle fibers

Takakazu Kobayashi; Yasutake Saeki; Shigeru Chaen; Ibuki Shirakawa; Haruo Sugi


Proceedings of the Japan Academy | 1971

Contracture of Molluscan Smooth Muscle During Calcium Deprivation

Haruo Sugi


Advances in Experimental Medicine and Biology | 1993

Measurement of transverse stiffness change during contraction in frog skeletal muscle by scanning laser acoustic microscope

Teizo Tsuchiya; Hiroyuki Iwamoto; Tamura Y; Haruo Sugi


Advances in Experimental Medicine and Biology | 1988

A self-induced translation model of myosin head motion along thin filament in muscle contraction.

Toshio Mitsui; Katsuzo Wakabayashi; Hidehiro Tanaka; Takakazu Kobayashi; Amemiya Y; Hiroyuki Iwamoto; Wang Ez; Hamanaka T; Haruo Sugi

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Takakazu Kobayashi

Shibaura Institute of Technology

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