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Molecular characterization of DnaK from the halotolerant cyanobacterium Aphanothece halophytica for ATPase, protein folding, and copper binding under various salinity conditions


T Hibino, N Kaku, H Yoshikawa, T Takabe, T Takabe ,Plant Molecular Biology, 40(3), 409-418(1999).

Target recognition by calmodulin: the role of acid region contiguous to the calmodulin-binding domain of calcineurin A


M. Noguchi, Y.Izumi, H.Yoshino ,FEBS Letters(2004).

Protein conformational changes studied by diffusion NMR spectroscopy: Application to helix-loop-helix calcium binding proteins


A,M,Weljie, A.P.Yamniuk, H.Yoshino, Y.Izumi, H.J.Vogel ,Protein Science (2003) 12, 228-236(2003).

Novel Molecular Receptors Based on a Thiacalix[4]arene Platform. Preparations of the Di- and Tetracarboxylic Acid Derivatives and Their Binding Properties towards Transition Metal Ions


N. Iki, N. Morohashi, F. Narumi, T. Fujimoto, T. Suzuki, and S. Miyano ,Tetrahedron Lett., 40, 7337(1999).

Sperm surface heparin/heparan sulfate is responsible for sperm binding to the uterine envelope in the newt, Cynops pyrrhogaster. Develop. Growth & Differ. 41(共著)


 , (1999).

Increase in the molecular weight and radius of gyration of apocalmodulin induced by binding of target peptide:Evidence for complex formation


Y.Izumi, S.Kuwamoto, Y.Jinbo, H.Yoshino ,FEBS Letters 495(2001)pp126-130(2001).

The binding of myrystoylated N-terminal nonapeptide from neuron-specfic protein CAP-23/NAP-22 to calmodulin does not induce the globular structure observed for the calmodulin-nonmyryristoylated peptide complex, Protein Science, 2000, vol. 9, pp1905-1913.


N.Hayashi, Y.Izumi,K.Titani,N.Matsushima , (2000).

Calcium-bound calmodulin forms a compact globular structure on binding four trifluoperazine molecules in solution, Biochem. J. 2000, vol. 347,pp211-215.


N.Matsushima,N.Hayashi,Y.Jinbo,Y.Izumi , (2000).

Evidence for calmodulin inter-domain compaction in solution induced by W-7 binding, FEBS Letters 1999, vol.442,pp173-177.


M.Osawa,S.Kuwamoto, Y.Izumi, K.L.Yap,M.Ikura,T.Shibamura,H.Yokokura,H.Hidaka, N.Matsushima , (1999).

Mannose-binding molecules of rat spermatozoa and sperm-egg interaction. Zygote 7:335-346, 1999.


 ,Yoshida-Komiya H., Tulsiani D.R.P,. Hirayama T., Araki Y.(1999).

Crystal structure of the sugar complexes of Streptomyces olivaceoviridis E-86 xylanase: Sugar binding structure of family 13 carbohydrate-binding module


Z. Fujimoto, A. Kuno, S. Kaneko, H. Kobayashi, I. Kusakabe, and H. Mizuno ,J. Mol. Biol., 316, 65-78 (2002).

Structure of the catalytic module and family 13 carbohydrate binding module of a family 10 xylanase from Streptomyces olivaceoviridis E-86 in complex with xylose and galactose.


Z. Fujimoto, A. Kuno, S. Kaneko, H. Kobayashi, I. Kusakabe, and H. Mizuno ,Carbohydrate Bioengineering, pp.106-112.(2002).

Significant enhancement in the binding of p-nitrophenyl-β-D-xylobioside by the E128H mutant F/10 xylanase from Streptomyces olivaceoviridis E-86.


Kuno, A., Shimizu, D., Kaneko, S., Hasegawa, T., Gama, Y., Hayashi, K., Kusakabe, I., and Taira, K. ,FEBS Lett., 450, 299-305(1999).

Crystal structure of Streptomyces olivaceoviridis E-86 β-xylanase; catalytic domain and xylan-binding domain.


Fujimoto, Z., Kuno, A., Kaneko, S., Yoshida, S., Kobayashi, H., Kusakabe, I., and Mizuno, H. ,J. Mol. Biol., 300, 575-585(2000).

Novel sugar-binding specificity of type XIII xylan binding domain of family F/10 xylanase from Streptomyces olivaceoviridis E-86.


Kuno, A., Kaneko, S., Ohtsuki, H., Ito, S., Hasegawa, T., Taira, K., Kusakabe, I., and Hayashi, K. ,FEBS Lett., 482, 231-236(2000).

Heme mediates depression of Maf recognition element through direct binding to transcription repressor Bach1


Ogawa K, Sun J, Taketani S, Nakajima O, et al. ,EMBO J(2001).

Dietary restriction of single essential amino acids reduces plasma insulin-like growth factor-I (IGF-I) but does not affect plasma IGF-binding protein-1 in rats. J. Nutr. 130, 2910-2914


A. Takenaka, N. Oki, S.-I. Takahashi, T. Noguchi ,(2000).

Effect of protein nutrition on the mRNA content of insulin-like growth factor-binding protein-1 in liver and kidney of rats. British Journal of Nutrition, 69,73-82


A. Takenaka, M. Hirosawa, M. Mori, S. Yamada, Y. Miura, H. Kato, S.-I. Takahashi, T. Noguchi ,(1993).

Nutritional regulation of gene expression of insulin-like growth factor-binding proteins and the acid-labile subunit in various tissues of rats. Journal of Endocrinology,150, 33-41


A. Takenaka, M. Mori, S. Yamada, J. Ohgane, S-I. Takahashi, T. Noguchi ,(1996).

Effect of protein restriction on the messenger RNA contents of the bone-matrix proteins, insulin-like growth factors and insulin-like growth factor binding proteins in femur of ovariectomized rats. British Journal of Nutrition, 75, 811-823


Y. Higashi, A. Takenaka, S-I. Takahashi, T. Noguchi ,(1996).

Drying and Debinding Behavior of Extruded Pipes Containing a Water-Based Binder


Z.Chen,K.Ikeda,T.Murakami,T.Takeda ,粉体および粉末冶金, 48-1(2001-1),pp.3-8 (2001).

Sperm surface heparin/heparan sulfate is responsible for sperm binding to the uterine enbelope in the newt, Cynops pyrrhogaster. Develop. Growth & Differ., 41, 101-107


 , (1999).

Binding of connectin to myosin filaments


Murayama, T., Nakauchi, Y., Kimura, S. and Maruyama, K. ,The Journal of Biochemistry 105, 323-326(1989).

Novel sugar-binding specififity of the type XIII xylan binding domain of a family F/10 xylanase from Streptomyces olivaceoviridis E-86


Kuno, A., Kaneko, S., Ohtsuki, H., Ito, S., Fujimoto, Z., Mizuno, H., Hasegawa, T., Taira, K., Kusakabe, I and Hayashi, K. ,FEBS Letters, 482(2), 231-236 (2000)(2000).

Significant enhancement in the binding of p-nitrophenyl-β-D-xylobioside by the E128H mutant F/10 xylanase from Streptomyces olivaceoviridis E-86.


Kuno, A., Shimizu, D., Kaneko, S., Hasegawa, T., Gama, Y., Hayashi, K., Kusakabe, I and Taira, K. ,FEBS Letters, 450(2), 299-305 (1999)(1999).

Catalytic and FAD-binding residues of mitochondrial very long chain acyl-coenzyme A dehydrogenase, J. Biol. Chem., 273(7): 4227-4231


Masayoshi Souri, Toshifumi Aoyama, Gerald F. Cox, and Takashi Hashimoto  , (1998).

Osteogenic protein-1 binds to activin type II receptor and induces certain activin-like effects. J Cell Biol 130:217-226, 1995.


Yamashita H, ten Dijke P, Huylebroeck D, Sampath TK, Andries M, Smith JC, Heldin C-H, and Miyazono K , J Cell Biol (1995).

Drying and Debinding Behavior of Extruded Pipes Containing a Water-Based Binder, Journal of the Japan Society of Powder and Powder Metallurgy, 48 (2001) 3-8.


 ,(2001).

Calcium dependent binding of surfactant protein A(SP-A)to surfactant lipids:application to a simple purification of SP-A, Arc Bioichem Biophys, 327(1996)


 ,(2001).

Comparison of receptor-binding properties among influenza C virus isolates, Virus Research, Ⅰ38,(1995)(共著)


 ,(2001).

Differential expression of Ca2+-binding proteins on follicular dendritic cells in non-neoplastic and neoplastic lymphoid follicles.


 ,Am J Pathol 155:805-814, 1999(2001).

WGA lectin binding sites of the apical surface of Corti epithelium:Enhancement by back-scattered electron imaging in quinea-pig inner ear. J. Electron Microsc. 45, 1996(共同)


 ,(2025).

The antigenic and receptor-binding properties of influenza C virueses adapted to growth in HMV-Ⅱ cells, Yamagata Med J, Ⅰ15(1997)(共著)


 ,(2025).

Comparison of receptor binding properties among influenza C virus isolates, Virus Res., Ⅰ38(1995)(共著)


 ,(2025).

Localization of Ca2+ binding proteins in lymphoid follicles, DENDRITIC CELLS, 5(1995)


 ,(2025).

Ca2+ binding proteins on follicular dendritic cell, DENDRITIC CELLS, 6(1996)


 ,(2025).

Disulfide bond requirements for assembly of the platelet glycoprotein Ib binding domain of von Willebrand factor, J. Biol. Chem., Ⅰ268(1993)(共著)


 ,(2025).

Binding of IDPN to rat spinal cord:its possible implication in the mechanism of spheroid formation in ALS. Neuropathology 17(1997)


 ,(2025).

In vitro immune complex binding assay to examine the mechanism of immune complex trapping by human follicular dendritic cells(FDC). Adv. Exp. Med. Biol. 378, 1995.


 ,(2025).
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