Papers - WADA Ikuo
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Nitric oxide-induced apoptosis in pancreatic -cells is mediated by the endoplasmic reticulum stress pathway
Oyadomari, S., Takeda, K., Takiguchi, M., Gotoh, T., Matsumoto, M., Wada I., Akira, S., Araki, E., and Mori, M.
Proc. Natl. Acad. Sci. U.S.A. 98 ( 19 ) 10845 - 10850 2001.9
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Oculocutaneous albinism types 1 and 3 are ER retention diseases: mutation of tyrosinase or tyrp1 can affect the processing of both mutant and wild-type proteins
Toyofuku K, Wada I, Valencia J, Kushimoto T, Ferrans V et al.
FASEB J 15 ( 9 ) 2149 - 2161 2001.9
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Extracellular toll-Like receptor 2 region containing serine 40 -isoleucine 64 but not cysteine 30 -serine 39 is critical for the recognition of Staphylococcus aureus peptidoglycan
Mitsuzawa,H., Wada I., Sano, H., Iwaki, D., Murakami, S., Himi, T., Matsushima, N., Kuroki, Y
J. Biol. Chem. 276 ( 44 ) 41350 - 41356 2001.9
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Identification of a novel melanogenesis marker, J1 which recognizes luminal membrane of "prelysosomes" common to biogenesis process of melanosomes and lysosomes
Shinoda, K., Wada I., Jin, H.Y. and Jimbow, K
Cell Struct. Func. 16 ( 1 ) 169 - 177 2001.7
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A novel ER alpha-mannosidase-like protein accelerates ER-associated degradation.
Hosokawa, N. Wada I., Hasegawa, K., Yorihuzi, T., Herscovics, A., & Nagata, K.
EMBO R 2 ( 5 ) 415 - 422 2001.5
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The molecular basis of oculocutaneous albinism type 1 (OCA1): sorting failure and degradation of mutant tyrosinases results in a lack of pigmentation.
Toyofuku, K., Wada I. Spritz, R.A. & Hearing V.J.
Biochem. J 35 ( 2 ) 259 - 269 2001.4
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Cell surface activities of the human type2b phosphatidic acid phosphatase
Ishikawa, T., Kai. M., Wada I. & Kanoh, H
J. Biochem. 127 ( 9 ) 645 - 651 1999.9
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Abberant expression of photoreceptor specific calcium binding protein (recoverin) in cancer cells
Maeda, A., Oguro, H., Maeda, T., Wada I. Sato, N. & Kuroki, Y.
Cancer Research 60 ( 4 ) 1914 - 1920 1999.4
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Different expression of calreticulin and immunoglobulin binding protein in Alzheimer's disease brain
Taguchi, J., Fujii, A., Tsujioka, Y., Wada I., & Yamada, T.
Acta Neuropathologica 100 ( 7 ) 153 - 160 1999.1
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Promoton of tyrosinase folding in Cos7 cells by calnexin.
Toyofuku, K., Wada I., Hirosaki, K., Park, J.-S., Hori, Y., and Jimbow
J. Biochem. 125 ( 1 ) 82 - 89 1998.1
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Promotion of trnasferrin folding by cyclic interactions with calnexin and calreticulin.
Wada I, Kai M, Imai S, Sakane F, Kanoh H
EMBO J. 16 ( 9 ) 5420 - 5432 1997.9
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Cloning and characterization of two human isozymes magnesium-independent phosphatidic acid phosphatase.
Kai M., Wada I., Imai S., Sakane F., Kanoh H.
J. Biol. Chem. 272 ( 39 ) 18931 - 18938 1997.9
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A new 12-kilodalton dimer associated with pre-TCR complex and clonotype-independent CD3 complex on immature thymocytes.
Takase K, Wakizaka K, von Boehmer H, Wada I, Moriya H, Saito T.
J. Immunology 159 ( 2 ) 741 - 747 1997.7
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The putative chaperone calmegin is needed for sperm fertility.
Ikawa M., Wada I., Komiyama K., Watanabe D., Toshimori K., Nishimune Y., Okabe M.
Nature 387 ( 6633 ) 607 - 611 1997.6
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Translocation of diacylglycerol kinase a to the nuclear matrix of rat thymocytes and peripheral T-lymphocytes
Wada I., Kai M., Imai S., Sakane F., Kanoh H
FEBS Let. 393 ( 1 ) 48 - 52 1996.9
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Identification and cDNA cloning of 35-kDa phosphatidic acid phosphatase (type 2) bound to plasma membranes.
Kai M., Wada I., Imai S., Sakane F., Kanoh H.
J. Biol. Chem. 271 ( 31 ) 18931 - 18938 1996.8
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BiP/GRP78 but not calnexin (p88) associates a precursor of GPI-linked membrane protein.
Oda K., Wada I. and Ikehara Y.
Biochem.J. 316 ( 10 ) 623 - 630 1996.5
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Molecular cloning of a diacylglycerol kinase isozymewith a pleckstrin homology domain and a C-terminal tail similar to those of the EPH family of protein tyrosine kinases
Sakane F., Imai S., Kai M., Wada I., Kanoh H.
J. Biol. Chem. 271 ( 14 ) 8394 - 8401 1996.4
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The C-terminal part of diacylglycerol kinase a lacking zinc fingers serves as a catalytic domain.
Sakane F., Imai S., Kai M., Wada I., Kanoh H.
Biochem.J. 318 ( 9 ) 8394 - 8401 1996.4
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Chaperone function of calreticulin when expressed in the endoplasmic reticulum as the membrane-anchored and soluble forms.
Wada I, Imai S, Kai M, Sakane F, Kanoh H.
J. Biol. Chem. 270 ( 35 ) 20298 - 20304 1995.9