| Description | HOXC8 Human Pre-designed siRNA Set A contains three designed siRNAs for HOXC8 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control. Components HOXC8 siRNA-1: 5 nmol (HPLC) HOXC8 siRNA-2: 5 nmol (HPLC) HOXC8 siRNA-3: 5 nmol (HPLC) siRNA Negative Control:HOXC8 Human Pre-designed siRNA Set A contains three designed siRNAs for HOXC8 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control. Components HOXC8 siRNA-1: 5 nmol (HPLC) HOXC8 siRNA-2: 5 nmol (HPLC) HOXC8 siRNA-3: 5 nmol (HPLC) siRNA Negative Control: 5 nmol (HPLC) FAM-labeled siRNA Negative Control: 5 nmol (HPLC) GAPDH siRNA Positive Control:5 nmol (HPLC)... Read More | Purity:>90%, by SDS-PAGE visualized with Coomassie® Blue Staining.This protein is one of the nuclear-coded polypeptide chains of cytochrome c oxidase, the terminal oxidase in mitochondrial electron transport | Purity:>90%, by SDS-PAGE visualized with Coomassie® Blue Staining.Implicated in the control of cell proliferation and cellular aging. May also act as a chaperone | Purity>95% SDS-PAGE. Protein Content and Purity (typically = 95%) determined by reducing and Non-reducing SDS-PAGE, UV spectroscopy at 280 nm.Additional sequence informationThis product is for the mature full length protein. The signal peptide is not included.FunctionCytokine with a wide variety Purity>95% SDS-PAGE. Protein Content and Purity (typically = 95%) determined by reducing and Non-reducing SDS-PAGE, UV spectroscopy at 280 nm.Additional sequence informationThis product is for the mature full length protein. The signal peptide is not included.FunctionCytokine with a wide variety of biological functions. It is a potent inducer of the acute phase response. Plays an essential role in the final differentiation of B-cells into Ig-secreting cells Involved in lymphocyte and monocyte differentiation. It induces myeloma and plasmacytoma growth and induces nerve cells differentiation Acts on B-cells, T-cells, hepatocytes, hematopoeitic progenitor cells and cells of the CNS. Also acts as a myokine. It is discharged into the bloodstream after muscle contraction and acts to increase the breakdown of fats and to improve insulin resistance.Post-translational:N- and O-glycosylated... Read More | Purity:>95%, by SDS-PAGE visualized with Coomassie® Blue Staining. Description: Neuron specific enolase (NSE), also known as ENO2 or gamma-enolase, is a dimeric, Mg2+-dependent enzyme that catalyzes the dehydration of 2-phospho-D glycate (PGA) to phosphoenolpyruvate (PEP) in the Purity:>95%, by SDS-PAGE visualized with Coomassie® Blue Staining. Description: Neuron specific enolase (NSE), also known as ENO2 or gamma-enolase, is a dimeric, Mg2+-dependent enzyme that catalyzes the dehydration of 2-phospho-D glycate (PGA) to phosphoenolpyruvate (PEP) in the glycolytic pathway and catalyzes the reverse reaction in gluconeogenesis. There are three major isozymes of enolase expressed in selective vertebrate tissues from separate genes: alpha (ENO1), beta (ENO3), and gamma (ENO2). NSE is a highly expressed, specific neuron isozyme making it a useful marker for tumors derived from neuronal cells. Neuron-specific enolase is implicated as a diagnostic and prognostic marker in numerous diseases including early small cell lung cancer, prostate cancer, multiple myeloma, traumatic brain injury, acute spinal cord injury, acute ischemic stroke, and post-concussion symptoms. NSE expression and activity are increased in neuronal and glial activation and injury, risk factors implicated in neurodegenerative disease. Elevation of NSE promotes glycolysis, proliferation, activation and migration through its C-terminus to activate PI3K and MAPK signal transduction pathways while inhibition of enolase has been shown to attenuate inflammatory events. NSE can be regulated through cleavage of the C-termini by cathepsin X or inhibited directly by antibiotic SF2312. Inhibition has been proposed as a therapeutic strategy in cancer... Read More |