| Description | ATP13A3 Human Pre-designed siRNA Set A contains three designed siRNAs for ATP13A3 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control. Components ATP13A3 siRNA-1: 5 nmol (HPLC) ATP13A3 siRNA-2: 5 nmol (HPLC) ATP13A3 siRNA-3: 5 nmol (HPLC) siRNA ATP13A3 Human Pre-designed siRNA Set A contains three designed siRNAs for ATP13A3 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control. Components ATP13A3 siRNA-1: 5 nmol (HPLC) ATP13A3 siRNA-2: 5 nmol (HPLC) ATP13A3 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 | Extinction Coeff.A280 nm = 1.0 at 1.0 mg/mLSpecificityMonospecific for Factor B in human plasma and serumGeneral DescriptionProduct is whole polyclonal antiserum from goats immunized with highly purified human complement protein. Product is not a purified IgG fraction. Goats are maintained in FDA Extinction Coeff.A280 nm = 1.0 at 1.0 mg/mLSpecificityMonospecific for Factor B in human plasma and serumGeneral DescriptionProduct is whole polyclonal antiserum from goats immunized with highly purified human complement protein. Product is not a purified IgG fraction. Goats are maintained in FDA certified facilities.Physical Characteristics & StructureAntibodies present in the antisera are primarily IgGApplicationsWestern Blots: Effective at dilutions 1/4,000 to 1/8,000 depending on conditions.Most effective against non-reduced antigen.ELISA: Effective at dilutions 1/8,000 to 1/16,000 depending on conditions.Immunodiffusion: Effective against NHS and plasma at 1/16 dilution... Read More | Mammalian lactate dehydrogenases (LDH) exist as five tetrameric isozymes composed of combinations of two different subunits. The H subunit predominates in heart muscle, which is geared for aerobic oxidation of pyruvate. The M subunit predominates in skeletal muscle and is concerned more with Mammalian lactate dehydrogenases (LDH) exist as five tetrameric isozymes composed of combinations of two different subunits. The H subunit predominates in heart muscle, which is geared for aerobic oxidation of pyruvate. The M subunit predominates in skeletal muscle and is concerned more with anaerobic metabolism and pyruvate reduction.Catalyzes the interconversion of pyruvate and lactate with concomitant interconversion of NADH and NAD+Recombinant rabbit muscle Lactate Dehydrogenase produced in E.Coli. Chromatographically purified. A lyophilized powder... Read More | Inquire | Purity> 95% by SDS-PAGE and HPLC analyses.FunctionGrowth factor that controls proliferation and cellular differentiation in the retina and bone formation. Plays a key role in regulating apoptosis during retinal development. Establishes dorsal-ventral positional information in the retina and Purity> 95% by SDS-PAGE and HPLC analyses.FunctionGrowth factor that controls proliferation and cellular differentiation in the retina and bone formation. Plays a key role in regulating apoptosis during retinal development. Establishes dorsal-ventral positional information in the retina and controls the formation of the retinotectal map (PubMed:23307924). Required for normal formation of bones and joints in the limbs, skull, digits and axial skeleton. Plays a key role in establishing boundaries between skeletal elements during development. Regulation of GDF6 expression seems to be a mechanism for evolving species-specific changes in skeletal strucutres. Seems to positively regulates differentiation of chondrogenic tissue through the growth factor receptors subunits BMPR1A, BMPR1B, BMPR2 and ACVR2A, leading to the activation of SMAD1-SMAD5-SMAD8 complex. The regulation of chondrogenic differentiation is inhibited by NOG (PubMed:26643732). Also involved in the induction of adipogenesis from mesenchymal stem cells. This mechanism acts through the growth factor receptors subunits BMPR1A, BMPR2 and ACVR2A and the activation of SMAD1-SMAD5-SMAD8 complex and MAPK14/p38... Read More |