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Active Recombinant Human Transforming Growth Factor, Beta Receptor II (70/80kDa)

Cat.No. : TGFBR2-923H
Product Overview : TGFBR2 Human Recombinant produced in E.Coli is a single, non-glycosylated, polypeptide chain encoding 133 amino acids ( 27-159 a.a. ), the extracellular domain of TGFBR2, having a molecular mass of 15.1 kDa. TGFBR2 is purified by proprietary chromatographic techniques
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Cat. No. : TGFBR2-923H
Description : TGFBR2 is part of the Ser/Thr protein kinase family and the TGFB receptor subfamily. TGFBR2 is a transmembrane protein that has a protein kinase domain, forms a heterodimeric complex with another receptor protein, and binds TGF-beta. This receptor/ligand complex phosphorylates proteins, which then enter the nucleus and regulate the transcription of a subset of genes related to cell proliferation.
Source : Human
Host : Escherichia Coli.
Form : Lyophilized from a 0.2 μm filtered solution in buffer containing 150 mM NaCl & 50 mM sodium phosphate buffer pH-7.5.
Purity : Greater than 97.0 % as determined by SDS-PAGE.
Bio-activity : In ELISA assay, concentrations 0.5-1 µg/ml can be used for TGF-beta measurements.
Physical Appearance : Sterile Filtered White lyophilized ( freeze-dried ) powder.
Solubility : It is recommended to reconstitute the lyophilized TGFBR2 in sterile 18 Mμ-cm H2O not less than 100µg/ml, which can then be further diluted to other aqueous solutions.
Amino acid sequence : HVQK SVNNDMIVTD NNGAVKFPQL CKFCDVRFST CDNQKSCMSN CSITSICEKP QEVCVAVWRK NDENITLETV CHDPKLPYHD FILEDAASPK CIMKEKKKPG ETFFMCSCSS DECNDNIIFS EEYNTSNPD
Storage : Lyophilized TGFBR2 although stable at room temperature for 3 weeks, should be stored desiccated below -18°C. Upon reconstitution TGFBR2 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.
Gene Name : TGFBR2 transforming growth factor, beta receptor II (70/80kDa) [ Homo sapiens ]
Official Symbol : TGFBR2
Synonyms : TGFBR2; transforming growth factor, beta receptor II (70/80kDa); AAT3; FAA3; MFS2; RIIC; LDS1B; LDS2B; TAAD2; TGFR-2; TGFbeta-RII; TGF-beta receptor type-2; tbetaR-II; OTTHUMP00000161128; OTTHUMP00000208552; TGF-beta receptor type II; TGF-beta type II receptor; TGF-beta receptor type IIB; transforming growth factor-beta receptor type II; transforming growth factor beta receptor type IIC; transforming growth factor, beta receptor II (70/80kDa) isoform 1; transforming growth factor, beta receptor II (70/80kDa) isoform 2
Gene ID : 7048
mRNA Refseq : NM_001024847
Protein Refseq : NP_001020018
MIM : 190182
UniProt ID : P37173
Chromosome Location : 3p22
Pathway : ALK1 signaling events; Adherens junction; Chagas disease (American trypanosomiasis); Chronic myeloid leukemia; Colorectal cancer; Cytokine-cytokine receptor interaction; Endocytosis; Glypican 1 network; HTLV-I infection; Integrins in angiogenesis; MAPK signaling pathway; Osteoclast differentiation; Pancreatic cancer; Signaling by TGF beta; TGF-beta signaling pathway
Function : ATP binding; SMAD binding; glycosaminoglycan binding; metal ion binding; nucleotide binding; protein binding; contributes_to protein binding; receptor activity; receptor signaling protein serine/threonine kinase activity; transforming growth factor beta binding; transforming growth factor beta receptor activity; transforming growth factor beta receptor activity, type II; transmembrane receptor protein serine/threonine kinase activity; type I transforming growth factor beta receptor binding; type I transforming growth factor beta receptor binding

For Research Use Only. Not intended for any clinical use. No products from Creative BioMart may be resold, modified for resale or used to manufacture commercial products without prior written approval from Creative BioMart.

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How is TGFBR2 linked to autoimmune diseases? 04/26/2023

Dysregulation of TGF-beta signaling, including TGFBR2, has been associated with autoimmune diseases. Understanding these pathways may provide insights into developing targeted therapies.

Are there clinical trials targeting TGFBR2? 01/12/2020

Yes, there are ongoing clinical trials exploring the modulation of TGFBR2 for various conditions, including cancer and fibrotic diseases.

How does TGFBR2 affect cardiovascular health? 12/13/2019

TGFBR2 is involved in cardiovascular development and homeostasis. Dysregulation can contribute to conditions like aortic aneurysms and other cardiovascular diseases.

Is TGFBR2 involved in neurological disorders? 01/14/2019

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.

Can TGFBR2 be a therapeutic target for fibrotic diseases? 01/19/2018

Yes, TGFBR2 is implicated in fibrosis, and targeting it may offer therapeutic options for diseases characterized by excessive tissue scarring.

Customer Reviews (3)

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Reviews
04/14/2023

    TGFBR2 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.

    12/13/2022

      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.

      06/25/2021

        TGFBR2 protein is highly recommended for use in various research applications, including ELISA and protein electron microscopy structure analysis.

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