Active Recombinant Rhesus TGFBR2 protein, hFc-tagged
Cat.No. : | TGFBR2-464R |
Product Overview : | Recombinant Rhesus TGFBR2 protein (NP_001248080.1) (Met1-Asp159) was expressed in HEK293, fused with the Fc region of human IgG1 at the C-terminus. |
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Source : | HEK293 |
Species : | Rhesus |
Tag : | Fc |
Form : | Lyophilized from sterile PBS, pH 7.4. Normally 5 % - 8 % trehalose, mannitol and 0.01% Tween80 are added as protectants before lyophilization. |
Bio-activity : | 1. Measured by its binding ability in a functional ELISA. 2. Immobilized Rhesus TGFB1-His at 10 μg/mL (100 μL/well) can bind Rhesus TGFBR2-Fc. The EC50 of Rhesus TGFBR2-Fc is 28-56 ng/mL. |
Molecular Mass : | The recombinant rhesus TGFBR2 comprises 377 amino acids and has a calculated molecular mass of 42.4 KDa. |
Protein length : | Met1-Asp159 |
Endotoxin : | < 1.0 EU per μg of the protein as determined by the LAL method |
Purity : | >95% as determined by SDS-PAGE. |
Storage : | Samples are stable for up to twelve months from date of receipt at -20°C to -80°C Store it under sterile conditions at -20°C to -80°C. It is recommended that the protein be aliquoted for optimal storage. Avoid repeated freeze-thaw cycles. |
Reconstitution : | It is recommended to reconstitute the lyophilized powder in sterile water to 100-200 ug/ml, and further dilute with other solvents. The dissolved protein can be stored at 4°C for 2-7 days and should be used up as soon as possible. If not in use for a short time, please store at -20°C. |
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Not For Human Consumption!
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Customer Reviews (3)
Write a reviewTGFBR2 protein's remarkable performance in ELISA and protein electron microscopy structure analysis positions it as a valuable tool in various fields, including cardiovascular research, developmental biology, and molecular medicine.
TGFBR2 protein's utility extends to protein electron microscopy structure analysis, where it plays a crucial role in investigating the detailed architecture and conformational changes of proteins.
TGFBR2 protein is highly recommended for use in various research applications, including ELISA and protein electron microscopy structure analysis.
Q&As (5)
Ask a questionDysregulation of TGF-beta signaling, including TGFBR2, has been associated with autoimmune diseases. Understanding these pathways may provide insights into developing targeted therapies.
Yes, there are ongoing clinical trials exploring the modulation of TGFBR2 for various conditions, including cancer and fibrotic diseases.
TGFBR2 is involved in cardiovascular development and homeostasis. Dysregulation can contribute to conditions like aortic aneurysms and other cardiovascular diseases.
Some studies suggest a potential link between TGFBR2 and neurological disorders. Further research is ongoing to understand its role in conditions like Alzheimer's and Parkinson's disease.
Yes, TGFBR2 is implicated in fibrosis, and targeting it may offer therapeutic options for diseases characterized by excessive tissue scarring.
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