- Enzymes
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Enzyme
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Enzyme (4381)
Laccase, Microorganisms is a multicopper oxidase. Laccase, Microorganisms catalyzes the oxidation of multiple substrates, including phenolic compounds, polyphenolic compounds, lignin, etc. Laccase, Microorganisms can be used in paper/textile/food industry, bioremediation, biomedicine and agriculture.
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Endo-1,3-β-glucanase (Lyticase) is an endoenzyme that can specifically cleave β-1,3-glycosidic bonds. Endo-1,3-β-glucanase recognizes and binds to β-1,3-glucan chains, catalyzing the cleavage of glycosidic bonds and hydrolyzing polysaccharides into oligosaccharides. Endo-1,3-β-glucanase eliminates vaginal Candida. Endo-1,3-β-glucanase can be used in the study of recurrent Candida vaginitis.
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- Molecular Weight: 55000 (average)
Hyaluronidase, Ovine testes is an endoglycosidase. Hyaluronidase, Ovine testes specifically degrades Hyaluronic acid (HY-B0633A) and Chondroitin sulfate (HY-B2162) by hydrolyzing β-glycosidic bonds in acidic mucopolysaccharides. Hyaluronidase, Ovine testes disperses follicular cells during fertilization by breaking down the hyaluronic acid-rich cumulus. Hyaluronidase, Ovine testes can be used in the study of fertility-related diseases.
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Glucose-6-phosphate dehydrogenase, Microorganism (G6PD) is the rate-limiting enzyme of the pentose phosphate pathway. Glucose-6-phosphate dehydrogenase, Microorganism is a primary source of NADPH in antioxidant pathways, nitric oxide synthase, NADPH oxidase, cytochrome p450 systems, and others. Glucose-6-phosphate dehydrogenase, Microorganism is applicable in research related to diabetes, endothelial dysfunction, cancer, and cardiomyopathy.
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Cellulase R-10 from Trichoderma Vride is an enzyme mixture that includes cellulase, hemicellulase, pectinase and protease, etc. Cellulase R-10 from Trichoderma Vride can act on the 1,4-β-D-glucosidic bonds in cellulose, catalyzing the hydrolysis of cellulose molecules and generating cellulose oligosaccharides, cellulose di-saccharides and glucose. Cellulase R-10 from Trichoderma Vride can be used in combination with lyase R-10 to break down the cell walls of plants, preparing protoplasts. Cellulase R-10 from Trichoderma Vride is widely applied in plant cell hybridization research.
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Heparitin sulfate lyase (Heparinase III) is a glycosidic lyase targeting heparan sulfate and heparin. Heparitin sulfate lyase is promising for research of low-molecular-weight heparin production and cancers.
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Acetylcholinesterase, Fly head (ACHE; EC 3.1.1.7) is a cholinergic enzyme mainly found in neuromuscular junctions and cholinergic type chemical synapses used in biochemical research. Acetylcholinesterase, Fly head catalyzes the breakdown or hydrolysis of acetylcholine and some other choline esters that act as neurotransmitters into acetate and choline. Acetylcholinesterase, Fly head's main role is to terminate neuronal transmission and signaling between synapses to prevent ACh spread and activation of nearby receptors.
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Lichenase, Microorganism (endo-1,3:1,4-β-D-Glucanase) is a specific, endo-(1-3),(1-4)-β-D-glucan 4-glucanohydrolase. Lichenase, Microorganism solubilizes β-glucans from cereal grains and gives gluco-oligosaccharides (GOS). Lichenase, Microorganism can be used in the degradation of polysaccharides in the cell walls.
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Glutathione reductase, baker's yeast (EC 1.6.4.2) is a reductase. Glutathione reductase, baker's yeast eliminates intracellular ROS. Glutathione reductase, baker's yeast reduces oxidized glutathione (GSSG) to reduced glutathione (GSH) using NADPH as an electron donor. Glutathione reductase, baker's yeast exerts antioxidant activity. Glutathione reductase is mainly used to study diseases associated with oxidative stress, such as Parkinson's disease and sickle cell anemia.
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Lipase,Candida antarctica (Immobilized) is an immobilized lipase isolated from Candida antarctica fraction B. Lipase,Candida antarctica (Immobilized) features high stability and selectivity. Lipase,Candida antarctica (Immobilized) is widely used in fields such as chemical synthesis, food oil modification, and biodiesel production.
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Neuraminidase, Microorganism (Exo-α-sialidase) is an exosialidase, is often used in biochemical studies. Neuraminidase cleaves α-ketosidic linkage between the sialic (N-acetylneuraminic) acid and an adjacent sugar residue. Neuraminidase, derived from mucosal pathogens, is a virulence factor that modifies the host's response to infection.
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Lysozyme (Muramidase) is a conserved antimicrobial protein. Lysozyme exerts its bactericidal effect by hydrolyzing bacterial cell wall peptidoglycan (PG). Lysozyme plays an important role in limiting bacterial growth on mucosal surfaces and other sites, not only controlling potential pathogens but also limiting overgrowth of microbiota to prevent dysbiosis. Extracellular lysozyme can also degrade polymeric PG into soluble fragments, activate NOD receptors in mucosal epithelial cells, and lead to the secretion of chemokines and activating factors by neutrophils and macrophages.
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Chitinase, Streptomyces griseus is a chitinase from Streptomyces griseus. Chitinase is a chitin-targeting enzyme with chitin hydrolysis activity. Chitinase inhibits chitin-induced innate type 2 inflammation in the lung. Chitinase augments chitin-free, allergen-induced Th2 inflammation. Chitinase mediates effector functions of IL-13.
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Hexokinase, Yeast is a hexokinase derived from yeast. Hexokinase, Yeast can be isolated from both fresh and dried baker's yeast. Hexokinases are evolutionarily conserved enzymes that phosphorylate six-carbon sugars (hexoses). Hexokinase prepares glucose for intracellular utilization. Hexokinase, Yeast is inhibited by 6-Deoxy-6-fluoroglucos.
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Subtilisin (EC 3.4.21.14) is a bacterial serine protease. Subtilisin induces Apoptosis. Subtilisin stimulates the expression of pro-allergic cytokines (IL-1α, IL-33). Subtilisin induces prototypic allergic lung inflammation. Subtilisin exhibits anticancer activity against breast and colon cancer. Subtilisin shows antifouling activity. Subtilisin can be used as a detergent additive.
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- Formula: C25H42Li3N7O18P3S
- Molecular Weight: 874.45
DL-β-Hydroxybutyryl coenzyme A lithium is an intermediate in the fermentation of butyric acid and the metabolism of lysine and tryptophan, and is produced from β-hydroxybutyric acid by short-chain-CoA synthase.
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Ribonucleoside vanadyl complexes are a class of potent RNase and Taq polymerase inhibitors. Ribonucleoside vanadyl complexes protect RNA during RNA isolation by inhibiting ribonucleases, and also reduce the viability of bacteria and eukaryotic cells by interfering with ribosomal subunit assembly. Ribonucleoside vanadyl complexes block PCR and reverse transcription reactions templated by viral nucleic acids and enhance the effects of antibiotics against Staphylococcus aureus, but do not directly inhibit protein synthesis. Ribonucleoside vanadyl complexes can be effectively removed by phenol-chloroform extraction, thus enabling subsequent PCR analysis. Ribonucleoside vanadyl complexes can be applied in research related to chronic hepatitis C (HCV) and Staphylococcus aureus infection.
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