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Active Native Pig Thrombin

Cat.No. : Thrombin-20H
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Description : Thrombin enzyme (Activated Factor IIa) is an important clotting promoter that controls the transformation of soluble fibrinogen to insoluble active fibrin strands. Thrombin is a coagulation protein and a serine protease (EC 3.4.21.5) that catalyzes many coagulation-related reactions. Thrombin triggers factor-XI, factor-V, Factor-XIII and factor-VIII. Thrombin endorses platelet activation, using activation of protease-activated receptors on the platelet. As a result of its high proteolytic specificity, thrombin has become an important biochemical protein. The thrombin cleavage site (Leu-Val-Pro-Arg-Gly-Ser) is widely used in linker regions of recombinant fusion protein constructs. After the purification of the fusion protein, thrombin is used to cleave between the Arginine and Glycine residues of the cleavage site, efficiently removing the purification tag from the protein of interest with a high degree of specificity.
Source : Pig Blood
Species : Pig
Form : Sterile Filtered White lyophilized (freeze-dried) powder.
Bio-activity : 150 u/mg
Purity : Single band
Storage : Upon reconstitution Thrombin should be stored at 4°C between 2-7 days and for future use below -18°C. For long term storage it is recommended to add a carrier protein (0.1% HSA or BSA). Please prevent freeze-thaw cycles.
Reconstitution : It is recommended to reconstitute the lyophilized Thrombin in sterile 18 M Ω-cm H2O.
Tag : Non
Gene Name : F2 coagulation factor II (thrombin) [ Sus scrofa ]
Official Symbol : F2
Synonyms : prothrombin; thrombin
Gene ID : 100144442
mRNA Refseq : NM_001122985
Protein Refseq : NP_001116457
UniProt ID : Q19AZ8
Chromosome Location : 2; 2
Pathway : Complement and coagulation cascades, organism-specific biosystem; Neuroactive ligand-receptor interaction, organism-specific biosystem; Neuroactive ligand-receptor interaction, conserved biosystem
Function : calcium ion binding; serine-type endopeptidase activity

Not For Human Consumption!

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Customer Reviews (3)

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Reviews
01/01/2022

    Quality control is evident. This product ensures accuracy in our studies.

    01/27/2019

      Our lab swears by this protein. Fast shipping is a definite bonus.

      12/18/2018

        Consistently reliable. The shipping speed is appreciated in our fast-paced lab.

        Q&As (5)

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        Can you discuss the role of the F2 gene in the synthesis of vitamin K-dependent clotting factors, and how disruptions in this process may lead to coagulation disorders? 04/10/2022

        The F2 gene plays a crucial role in the synthesis of vitamin K-dependent clotting factors, including prothrombin. Disruptions in this process, often due to genetic or nutritional factors, can contribute to coagulation disorders, impacting hemostasis and blood clotting.

        How is the F2 gene regulated at the transcriptional level, and what factors influence prothrombin synthesis in hepatocytes? 08/07/2021

        Transcriptional regulation of the F2 gene involves factors like vitamin K-dependent gamma-carboxylation. Hepatocytes synthesize prothrombin under the influence of vitamin K and other coagulation factors.

        The F2 gene encodes prothrombin, a crucial factor in blood coagulation. Prothrombin is converted to thrombin, a key enzyme in the clotting cascade, facilitating fibrin formation. 04/07/2020

        The F2 gene encodes prothrombin, a crucial factor in blood coagulation. Prothrombin is converted to thrombin, a key enzyme in the clotting cascade, facilitating fibrin formation.

        What are the implications of genetic variations in the F2 gene, particularly polymorphisms, on prothrombin function and susceptibility to thrombotic or bleeding disorders? 11/20/2019

        Genetic variations in F2, including polymorphisms, can influence prothrombin function. Certain variants may predispose individuals to thrombotic or bleeding disorders.

        How does genetic variation in the F2 gene impact prothrombin levels, and what are the consequences for an individual's risk of thrombotic events? 04/16/2018

        Genetic variations in the F2 gene can influence prothrombin levels, affecting an individual's propensity for thrombotic events. Certain variants may predispose individuals to a higher or lower risk of abnormal blood clot formation.

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