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Featured researches published by Ryo Ishiguro.


High Pressure Research | 2013

Analysis of oligomeric transition of silkworm small heat shock protein sHSP20.8 using high hydrostatic pressure native PAGE

Tetsuro Fujisawa; Toshifumi Ueda; Keiichi Kameyama; Yoichi Aso; Ryo Ishiguro

The small heat shock proteins (sHSPs) solubilize thermo-denatured proteins without adenosine triphosphate energy consumption to facilitate protein refolding. sHSP20.8 is one of the silkworm (Bombyx mori) sHSPs having only one cystein in the N-terminal domain: Cys43. We report a simple measurement of oligomeric transition of sHSP20.8 using high hydrostatic pressure native polyacrylamide gel electrophoresis (high hydrostatic pressure (HP) native polyacrylamide gel electrophoresis (PAGE)). At ambient pressure under oxydative condition, the native PAGE of thermal transition of sHSP20.8 oligomer displayed a cooperative association. In contrast, HP native PAGE clearly demonstrated that sHSP20.8 dissociated at 80 MPa and 25°C, and the resultant molecular species gradually reassociated with time under that condition. In addition, the reassociation process was suppressed in the presence of the reductant. These results are consistent with the idea that sHSP20.8 oligomer temporally dissociates at the first thermo-sensing step and reassociates with the oxidation of Cys43.


Electrophoresis | 2015

Negative thermal expansibility change for dissociation of lysozyme variant amyloid protofibril

Ryo Ishiguro; Hiroshi Matsuo; Keiichi Kameyama; Hideki Tachibana; Tetsuro Fujisawa

A disulfide‐deficient variant of hen lysozyme, 0SS, is known to form an amyloid protofibril spontaneously, and to dissociate into monomers at high hydrostatic pressure. We carried out native PAGE at various temperatures (20–35°C) and pressures (0.1–200 MPa), to characterize the dissociation equilibrium of disulfide‐deficient variant of hen lysozyme amyloid protofibril. Based on the density profiles, the partial molar volume and thermal expansibility changes for dissociation, ΔvD and ΔeD, were obtained to be −74 cm3/mol at 25°C and −2.3 cm3 mol−1 K−1, respectively. The dissociation of amyloid fibril destroys the cross β‐structure, and such conformational destruction in native protein fold rarely accompanies negative thermal expansibility change. We discussed the negative thermal expansibility change in terms of hydration and structural packing of the amyloid protofibril.


Journal of Colloid and Interface Science | 2005

Modes of conformational changes of proteins adsorbed on a planar hydrophobic polymer surface reflecting their adsorption behaviors.

Ryo Ishiguro; Yasuhiro Yokoyama; Hirotaka Maeda; Aya Shimamura; Keiichi Kameyama; Koichi Hiramatsu


Journal of Colloid and Interface Science | 2003

Quantitative analysis of protein adsorption on a planar surface by Fourier transform infrared spectroscopy: lysozyme adsorbed on hydrophobic silicon-containing polymer

Yasuhiro Yokoyama; Ryo Ishiguro; Hirotaka Maeda; Mayumi Mukaiyama; Keiichi Kameyama; Koichi Hiramatsu


publisher | None

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The Review of High Pressure Science and Technology | 2017

Quantitative Analysis of Protein Association System Using High-Pressure Electrophoresis

Ryo Ishiguro; Tetsuro Fujisawa


生物物理 | 2013

1P068 高圧Native PAGE法によるリゾチーム変異体が形成するアミロイド原繊維のかい離過程の定量的解析(01C. 蛋白質:物性,ポスター,日本生物物理学会年会第51回(2013年度))

Ryo Ishiguro; Hiroshi Matsuo; Keiichi Kameyama; Hideki Tachibana; Tetsuro Fujisawa


生物物理 | 2013

3P028 Rhodococcus rhodochrous J1由来ニトリラーゼの温度による構造変化の^1H NMRによる追跡(01B.蛋白質:構造機能相関,ポスター,日本生物物理学会年会第51回(2013年度))

Kyouhei Oyama; Ryo Ishiguro; Teturo Fujisawa


生物物理 | 2013

1P025 蛋白質複合体の高圧放射光X線小角散乱データに対するグローバルフィット解析(01B. 蛋白質:構造機能相関,ポスター,日本生物物理学会年会第51回(2013年度))

Tetsuro Fujisawa; Keiichi Kameyama; Ryo Ishiguro


生物物理 | 2013

2P009 X線小角散乱と電子顕微鏡像を用いたハイブリッド構造解析(01A. 蛋白質:構造,ポスター,日本生物物理学会年会第51回(2013年度))

Shota Kaimi; Ryo Ishiguro; Tetsuro Fujisawa

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