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TRYPTASE, FROM HUMAN LUNG
Кат. №: T7063-5UG
Производитель: Sigma-Aldrich
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TRYPTASE, FROM HUMAN LUNG
Main image
Кат. №: T7063-5UG
Производитель: Sigma-Aldrich
Кол-во:
Цена по запросу
Товар оформляется под заказ
Main image
Печать
TRYPTASE, FROM HUMAN LUNG
Кат. №: T7063-5UG
Производитель: Sigma-Aldrich
Кол-во:
Цена по запросу
Товар оформляется под заказ
Description_x000D_ General description_x000D_ Tryptase is a glycoprotein released from mast cells during anaphylaxis, which performs a number of functions including catalyzing the activation of complement C3, converting prostromelysin to stromelysin (MMP-3), and cleaving fibrinogen resulting in a loss of clotting potential._x000D_ Tryptase is a glycoprotein released from mast cells during anaphylaxis, which performs a number of functions including catalyzing the activation of complement C3, converting prostromelysin to stromelysin (MMP-3), and cleaving fibrinogen resulting in a loss of clotting potential. Human tryptase is a major secretory protease of human lung mast cells._x000D_ Application_x000D_ Tryptase has been used in a study that purified and characterized recombinant rat mast cell protease 7 expressed in Pichia pastoris. Tryptase has also been used in a study to investigate drug allergies in mast cell disease._x000D_ Biochem/physiol Actions_x000D_ Tryptase is a member of the serine protease S1 family. It is the predominant neutral protease of the mast cell granules. Within the mast cell granule it exists as a heparin-stabilized active tetramer. Stabilization is a result of the high negative charge density of the glycosaminoglycan. This stabilization activity is observed with heparins with a MW greater than 6 kDa as well as other glycosaminoglycans such as dextran sulfate or chondroitin sulfates. Removal of heparin results in dissociation of the tetramer and inactivation of the enzyme. High concentrations of NaCl will result in the dissociation of heparin._x000D_ Tryptase is released from the mast cell as a result of the degranulation response during anaphylaxis. In addition, several tryptase genes and alleles (α, β, γ & δ) have been identified in various tissues and circulating in blood. Pro-β-tryptase is thought to be the constituative circulating form in blood._x000D_ The biological function of tryptase is unknown. However it has been reported to catalyze the activation of complement C3, convert prostromelysin to stromelysin (MMP-3), and cleave fibrinogen resulting in a loss of clottting potential. Tryptase also degrades fibronectin, calcitonin gene-related peptide, vasoactive intestinal peptide,_x000D_ and kininogen._x000D_ Quality_x000D_ Highly purified_x000D_ Physical properties_x000D_ Molecular Weight: ~135 kDa (Human)(Non-covalently linked tetramer with two sets of dissimilar subunits possibly resulting from heterogeneity in N-linked glycosylation and existence of a & b isoforms sequences in human lung). 31-33 kDa (Monomer MW)_x000D_ Unit Definition_x000D_ One unit will hydrolyze 1.0 μmole of N-benzyl-DL-Arg-pNA per minute at pH 8 at 25 °C._x000D_ Physical form_x000D_ Solution in 1 M NaCl, 50 mM sodium acetate, pH 5.0, containing 0.01% sodium azide
Related Categories
3.4.x.x Peptidases, 3.x.x.x Hydrolases, Application Index, Biochemicals and Reagents, Enzyme Class Index, Enzymes, Inhibitors, and Substrates, Proteases, Proteases & Protein Sequencing, Proteolytic Enzymes, Proteolytic Enzymes and Substrates, Selective Proteolytic Enzymes, TryptaseMore... Quality Level
Дорогой клиент, на сайте внедрена нейросеть для сбора информации о товаре. Это может привести к незначительным расхождениям в характеристиках продукции.
Description_x000D_ General description_x000D_ Tryptase is a glycoprotein released from mast cells during anaphylaxis, which performs a number of functions including catalyzing the activation of complement C3, converting prostromelysin to stromelysin (MMP-3), and cleaving fibrinogen resulting in a loss of clotting potential._x000D_ Tryptase is a glycoprotein released from mast cells during anaphylaxis, which performs a number of functions including catalyzing the activation of complement C3, converting prostromelysin to stromelysin (MMP-3), and cleaving fibrinogen resulting in a loss of clotting potential. Human tryptase is a major secretory protease of human lung mast cells._x000D_ Application_x000D_ Tryptase has been used in a study that purified and characterized recombinant rat mast cell protease 7 expressed in Pichia pastoris. Tryptase has also been used in a study to investigate drug allergies in mast cell disease._x000D_ Biochem/physiol Actions_x000D_ Tryptase is a member of the serine protease S1 family. It is the predominant neutral protease of the mast cell granules. Within the mast cell granule it exists as a heparin-stabilized active tetramer. Stabilization is a result of the high negative charge density of the glycosaminoglycan. This stabilization activity is observed with heparins with a MW greater than 6 kDa as well as other glycosaminoglycans such as dextran sulfate or chondroitin sulfates. Removal of heparin results in dissociation of the tetramer and inactivation of the enzyme. High concentrations of NaCl will result in the dissociation of heparin._x000D_ Tryptase is released from the mast cell as a result of the degranulation response during anaphylaxis. In addition, several tryptase genes and alleles (α, β, γ & δ) have been identified in various tissues and circulating in blood. Pro-β-tryptase is thought to be the constituative circulating form in blood._x000D_ The biological function of tryptase is unknown. However it has been reported to catalyze the activation of complement C3, convert prostromelysin to stromelysin (MMP-3), and cleave fibrinogen resulting in a loss of clottting potential. Tryptase also degrades fibronectin, calcitonin gene-related peptide, vasoactive intestinal peptide,_x000D_ and kininogen._x000D_ Quality_x000D_ Highly purified_x000D_ Physical properties_x000D_ Molecular Weight: ~135 kDa (Human)(Non-covalently linked tetramer with two sets of dissimilar subunits possibly resulting from heterogeneity in N-linked glycosylation and existence of a & b isoforms sequences in human lung). 31-33 kDa (Monomer MW)_x000D_ Unit Definition_x000D_ One unit will hydrolyze 1.0 μmole of N-benzyl-DL-Arg-pNA per minute at pH 8 at 25 °C._x000D_ Physical form_x000D_ Solution in 1 M NaCl, 50 mM sodium acetate, pH 5.0, containing 0.01% sodium azide
Related Categories
3.4.x.x Peptidases, 3.x.x.x Hydrolases, Application Index, Biochemicals and Reagents, Enzyme Class Index, Enzymes, Inhibitors, and Substrates, Proteases, Proteases & Protein Sequencing, Proteolytic Enzymes, Proteolytic Enzymes and Substrates, Selective Proteolytic Enzymes, TryptaseMore... Quality Level
Дорогой клиент, на сайте внедрена нейросеть для сбора информации о товаре. Это может привести к незначительным расхождениям в характеристиках продукции.