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Dive into the research topics where Kiyohiro Imai is active.

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Featured researches published by Kiyohiro Imai.


PLOS ONE | 2015

An Origin of Cooperative Oxygen Binding of Human Adult Hemoglobin: Different Roles of the α and β Subunits in the α2β2 Tetramer

Shigenori Nagatomo; Yukifumi Nagai; Yayoi Aki; Hiroshi Sakurai; Kiyohiro Imai; Naoki Mizusawa; Takashi Ogura; Teizo Kitagawa; Masako Nagai

Human hemoglobin (Hb), which is an α2β2 tetramer and binds four O2 molecules, changes its O2-affinity from low to high as an increase of bound O2, that is characterized by ‘cooperativity’. This property is indispensable for its function of O2 transfer from a lung to tissues and is accounted for in terms of T/R quaternary structure change, assuming the presence of a strain on the Fe-histidine (His) bond in the T state caused by the formation of hydrogen bonds at the subunit interfaces. However, the difference between the α and β subunits has been neglected. To investigate the different roles of the Fe-His(F8) bonds in the α and β subunits, we investigated cavity mutant Hbs in which the Fe-His(F8) in either α or β subunits was replaced by Fe-imidazole and F8-glycine. Thus, in cavity mutant Hbs, the movement of Fe upon O2-binding is detached from the movement of the F-helix, which is supposed to play a role of communication. Recombinant Hb (rHb)(αH87G), in which only the Fe-His in the α subunits is replaced by Fe-imidazole, showed a biphasic O2-binding with no cooperativity, indicating the coexistence of two independent hemes with different O2-affinities. In contrast, rHb(βH92G), in which only the Fe-His in the β subunits is replaced by Fe-imidazole, gave a simple high-affinity O2-binding curve with no cooperativity. Resonance Raman, 1H NMR, and near-UV circular dichroism measurements revealed that the quaternary structure change did not occur upon O2-binding to rHb(αH87G), but it did partially occur with O2-binding to rHb(βH92G). The quaternary structure of rHb(αH87G) appears to be frozen in T while its tertiary structure is changeable. Thus, the absence of the Fe-His bond in the α subunit inhibits the T to R quaternary structure change upon O2-binding, but its absence in the β subunit simply enhances the O2-affinity of α subunit.


生物物理 | 2014

1P094 α鎖あるいはβ鎖の近位ヒスチジンがグリシンに置換された変異ヘモグロビンの機能と構造(02. ヘム蛋白質,ポスター,第52回日本生物物理学会年会(2014年度))

Shigenori Nagatomo; Y. Nagai; Yayoi Aki; Hiroshi Sakurai; Natsumi Maruyama; Kiyohiro Imai; Naoki Mizusawa; Takashi Ogura; Teizo Kitagawa; Masako Nagai


生物物理 | 2012

2PT159 ヒトヘモグロビンα鎖の近位ヒスチジンのグリシンへの置換が構造と酸素結合機能に与える影響(日本生物物理学会第50回年会(2012年度))

Yayoi Aki; Yukifumi Nagai; Kiyohiro Imai; Shigenori Nagatomo; Takashi Ogura; Teizo Kitagawa; Masako Nagai


生物物理 | 2012

2PT161 硬骨魚類の祖先型ヘモグロビン遺伝子の設計・合成および大腸菌内発現(日本生物物理学会第50回年会(2012年度))

Sho Sugiyama; Takatoshi Matsuo; Kazuha Seki; Taro Nakagawa; Kiyohiro Imai


生物物理 | 2012

2PT154 ヒトヘモグロビンのβ145TyrのThrまたはLeuへの置換が機能と構造に与える影響(日本生物物理学会第50回年会(2012年度))

Momoko Ichii; Yukifumi Nagai; Kiyohiro Imai; Masako Nagai


生物物理 | 2011

1I1412 逆分子系統解析法による硬骨魚類の祖先型ヘモグロビンの設計及び合成(ヘム蛋白質 1,第49回日本生物物理学会年会)

Hiroki Kajiwara; Taro Nakagawa; Takatoshi Matsuo; Kiyohiro Imai


生物物理 | 2011

1I1436 ヘム側鎖がミオグロビンの円偏光二色性(CD)に与える影響(ヘム蛋白質 1,第49回日本生物物理学会年会)

Chika Kobayashi; Kiyohiro Imai; Yukihumi Nagai; Saburo Neya; Masako Nagai


生物物理 | 2010

2P114 Cys-93βをN-ethylmaleimideで修飾したヘモグロビンは二量体への解難度が低い(ヘム蛋白質,第48回日本生物物理学会年会)

Takanori Inao; Kiyohiro Imai


生物物理 | 2010

3P107 ヒトヘモグロビンの四次構造転移における芳香族アミノ酸残基の関与 : 近紫外円二色性による研究(ヘム蛋白質,第48回日本生物物理学会年会)

Masako Nagai; Kiyohiro Imai; Yukifumi Nagai


生物物理 | 2010

2P112 逆分子系統解析法による円口類と硬骨魚類の祖先型ヘモグロビン(ヘム蛋白質,第48回日本生物物理学会年会)

Taro Nakagawa; Hiroki Kajiwara; Shinichi Maku; Yuta Ozawa; Kiyohiro Imai

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Takashi Ogura

Graduate University for Advanced Studies

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