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M Takiguchi

Showing results (211-220 of 279) with videos related to

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Cell and Tissue Research|October 31, 2001
Mice lacking CCAAt/enhancer-binding protein-alpha show hyperproliferation of alveolar type II cells and increased surfactant protein mRNAsK Sugahara, K I Iyama, T Kimura, et al.
Enzyme & Protein|January 1, 1993
A novel ornithine transcarbamylase present in mycoplasma-infected myeloma cellsF Matsuno, H Matsuzaki, Y Akahoshi, et al.
International Immunology|February 1, 1994
HLA-B*3501-peptide interactions: role of anchor residues of peptides in their binding to HLA-B*3501 moleculesY Takamiya, C Schönbach, K Nokihara, et al.
Biochemical and Biophysical Research Communications|January 22, 1998
Functional association between CBP and HNF4 in trans-activationE Yoshida, S Aratani, H Itou, et al.
International Immunology|June 1, 1995
Isolation of a human allo-peptide presented by HLA-B51 moleculesH Tomiyama, Y Takamiya, A B Hill, et al.
Journal of Immunology (Baltimore, Md. : 1950)|May 15, 1997
Evidence of presentation of multiple HIV-1 cytotoxic T lymphocyte epitopes by HLA-B*3501 molecules that are associated with the accelerated progression of AIDSH Tomiyama, K Miwa, H Shiga, et al.
The Journal of Veterinary Medical Science|February 17, 2000
Involvement of CD28/CTLA4-B7 costimulatory pathway in the development of lymphadenopathy and splenomegaly in MRL/lpr miceM Takiguchi, M Murakami, I Nakagawa, et al.
The Journal of Biological Chemistry|May 25, 1993
Chicken ovalbumin upstream promoter-transcription factor (COUP-TF) represses transcription from the promoter of the gene for ornithine transcarbamylase in a manner antagonistic to hepatocyte nuclear factor-4 (HNF-4)A Kimura, A Nishiyori, T Murakami, et al.
Human Immunology|March 1, 1994
Effect of single amino acid substitution at residue 167 of HLA-B51 on binding of antibodies and recognition of T cellsS Nakayama, G Kawaguchi, S Karaki, et al.
Oral Diseases|February 11, 2012
Link between inflammation and aquaporin-5 distribution in submandibular gland in Sjögren's syndrome?M S Soyfoo, A Konno, N Bolaky, et al.
Pageof 28

Showing results (211-220 of 279) with videos related to

Sort By:
Pageof 28
Cell and Tissue Research|October 31, 2001
Mice lacking CCAAt/enhancer-binding protein-alpha show hyperproliferation of alveolar type II cells and increased surfactant protein mRNAsK Sugahara, K I Iyama, T Kimura, et al.
Enzyme & Protein|January 1, 1993
A novel ornithine transcarbamylase present in mycoplasma-infected myeloma cellsF Matsuno, H Matsuzaki, Y Akahoshi, et al.
International Immunology|February 1, 1994
HLA-B*3501-peptide interactions: role of anchor residues of peptides in their binding to HLA-B*3501 moleculesY Takamiya, C Schönbach, K Nokihara, et al.
Biochemical and Biophysical Research Communications|January 22, 1998
Functional association between CBP and HNF4 in trans-activationE Yoshida, S Aratani, H Itou, et al.
International Immunology|June 1, 1995
Isolation of a human allo-peptide presented by HLA-B51 moleculesH Tomiyama, Y Takamiya, A B Hill, et al.
Journal of Immunology (Baltimore, Md. : 1950)|May 15, 1997
Evidence of presentation of multiple HIV-1 cytotoxic T lymphocyte epitopes by HLA-B*3501 molecules that are associated with the accelerated progression of AIDSH Tomiyama, K Miwa, H Shiga, et al.
The Journal of Veterinary Medical Science|February 17, 2000
Involvement of CD28/CTLA4-B7 costimulatory pathway in the development of lymphadenopathy and splenomegaly in MRL/lpr miceM Takiguchi, M Murakami, I Nakagawa, et al.
The Journal of Biological Chemistry|May 25, 1993
Chicken ovalbumin upstream promoter-transcription factor (COUP-TF) represses transcription from the promoter of the gene for ornithine transcarbamylase in a manner antagonistic to hepatocyte nuclear factor-4 (HNF-4)A Kimura, A Nishiyori, T Murakami, et al.
Human Immunology|March 1, 1994
Effect of single amino acid substitution at residue 167 of HLA-B51 on binding of antibodies and recognition of T cellsS Nakayama, G Kawaguchi, S Karaki, et al.
Oral Diseases|February 11, 2012
Link between inflammation and aquaporin-5 distribution in submandibular gland in Sjögren's syndrome?M S Soyfoo, A Konno, N Bolaky, et al.
Pageof 28