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カタログ番号 | 製品名 | 別名 | ターゲット |
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TP1954 | PHM-27 (human) | ||
Endogenous peptide product of human prepro-VIP and analog of porcine PHI-27; potent agonist for the human calcitonin receptor (EC50 = 11 nM). Transgenic mice expressing the human VIP/PHM 27 gene in pancreatic β-islets di... |
カタログ番号 | 製品名 | Species | Expression System |
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TMPK-01535 | Chimeric HLA-A*02:01 (mα3) &B2M&LMP2 (CLGGLLTMV) Tetramer Protein, Human&Mouse, MHC (His & Avi) | Human & Mouse | HEK293 Cells |
The immunoproteasome, having been linked to neurodegenerative diseases and hematological cancers, has been shown to play an important role in MHC class I antigen presentation. The development of molecular probes that sel... | |||
TMPK-01534 | Chimeric HLA-A*02:01 (mα3) &B2M&LMP2 (CLGGLLTMV) Monomer Protein, Human&Mouse, MHC (His & Avi) | Human & Mouse | HEK293 Cells |
The immunoproteasome, having been linked to neurodegenerative diseases and hematological cancers, has been shown to play an important role in MHC class I antigen presentation. The development of molecular probes that sel... | |||
TMPK-01523 | Chimeric HLA-A*02:01 (mα3) &B2M&WT-1 (RMFPNAPYL) Monomer Protein, Human&Mouse, MHC (His & Avi) | Human & Mouse | HEK293 Cells |
The WT1 protein plays a role in cell growth, the process by which cells mature to perform specific functions (differentiation), and the self-destruction of cells (apoptosis). WT1 is differentially expressed in serous, en... | |||
TMPK-01522 | Chimeric HLA-A*02:01 (mα3) &B2M&WT-1 (RMFPNAPYL) Tetramer Protein, Human&Mouse, MHC (His & Avi) | Human & Mouse | HEK293 Cells |
The WT1 protein plays a role in cell growth, the process by which cells mature to perform specific functions (differentiation), and the self-destruction of cells (apoptosis). WT1 is differentially expressed in serous, en... | |||
TMPY-03597 | VIP Protein, Human, Recombinant (His) | Human | HEK293 Cells |
VIP, or vasoactive intestinal peptide, is a neuropeptide of 28 amino acid residues that belongs to a glucagon/secretin superfamily, and it exerts its actions through three G-protein-coupled receptors (PAC1, VPAC1, and VP... |