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本橋健 研究業績一覧 (10件)
論文
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Takatoshi Sekiguchi,
Keisuke Yoshida,
Yuki Okegawa,
takeshi motohashi,
Ken-Ichi Wakabayashi,
TORU HISABORI.
Chloroplast ATP synthase is reduced by both f-type and m-type thioredoxins,
Biochim. biophys. acta, Bioenerg,
Vol. 1861,
p. 148261,
Nov. 2020.
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Motohashi K,
Hisabori T.
CcdA Is a Thylakoid Membrane Protein Required for the Transfer of Reducing Equivalents from Stroma to Thylakoid Lumen in the Higher Plant Chloroplast.,
Antioxid Redox Signal.,
Vol. 13,
No. 8,
pp. 1169-76,
Oct. 2010.
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Kojima, K.,
Motohashi, K.,
Morota, T.,
Oshita, M.,
Hisabori, T.,
Hayashi, H.,
Nishiyama, Y..
Regulation of translation by the redox state of elongation factor G in the cyanobacterium Synechocystis sp. PCC 6803.,
J. Biol. Chem.,
Vol. 284,
No. 28,
pp. 28685-18691,
July 2009.
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Motohashi, K.,
Romano, P. G.,
Hisabori, T..
Identification of thioredoxin targeted proteins using thioredoxin single cysteine mutant-immobilized resin.,
Methods Mol. Biol.,
Vol. 479,
pp. 117-131,
2009.
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Kobayashi, K.,
Mochizuki, N.,
Yoshimura, N.,
Motohashi, K.,
Hisabori T.,
Masuda T..
Functional analysis of Arabidpsis thaliana isoforms of the Mg-chelatase CHLI subunit,
Photochem. Photobiol. Sci.,
Vol. 7,
pp. 1188-1195,
Oct. 2008.
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Hishiya, S.,
Hatakeyama, W.,
Mizota, Y.,
Hosoya-Matsuda, N.,
Motohashi, K.,
Ikeuchi, M.,
Hisabori, T..
Binary reducing equivalent pathways using NADPH-thioredoxin reductase and ferredoxin-thioredoxin reductase in the cyanobacterium Synechocystis sp. strain PCC 6803,
Plant Cell Physiology,
Vol. 49,
No. 1,
p. 11-18,
Jan. 2008.
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Ikegami A,
Yoshimura N,
Motohashi K,
Romano PG,
Hisabori T,
Takamiya K,
Masuda T.,
S Takahashi.
The CHLI1 Subunit of Arabidopsis thaliana Magnesium Chelatase Is a Target Protein of the Chloroplast Thioredoxin,
J. Biol. Chem.,
ASBMB,
Vol. 282,
No. 27,
Page 19282-19291,
July 2007.
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Yo-hei Watanabe,
takeshi motohashi,
Hideki Taguchi,
Masasuke Yoshida.
Heat-inactivated proteins managed by DnaKJ-GrpE-ClpB chaperones are released as a chaperonin-recognizable nonnative form.,
J. Biol. Chem.,
Vol. 275,
No. 17,
pp. 12388-12392,
Apr. 2000.
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Yuko Asahara,
Kyoko Atsuta,
takeshi motohashi,
Hideki Taguchi,
Masafumi Yohda,
Masasuke Yoshida.
FtsH recognizes unfolded proteins and hydrolyzes carboxyl side of hydrophobic residues.,
J. Biochem.,
Vol. 127,
pp. 931-937,
2000.
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