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  • TGFBR2 Antibodies

OriGene

TGFBR2 Monoclonal Antibody (OTI3B4), TrueMAB™

1 Reference
View all (31) TGFBR2 antibodies

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Datasheet
Protocols
Questions & Answers
Datasheet
Protocols
Questions & Answers

Cite TGFBR2 Monoclonal Antibody (OTI3B4), TrueMAB™

  • Antibody Testing Data (3)
TGFBR2 Antibody in Immunohistochemistry (Paraffin) (IHC (P))
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TGFBR2 Antibody in Immunohistochemistry (Paraffin) (IHC (P))
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FIGURE: 1 / 3

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TGFBR2 Antibody (TA807912) in IHC (P)

Immunohistochemical staining of paraffin-embedded Adenocarcinoma of Human colon tissue using anti-TGFBR2 mouse monoclonal antibody. (Heat-induced epitope retrieval by 1mM EDTA in 10mM Tris buffer (pH8.5) at 120°C for 3 min, TA807912)(1:2000). {{ $ctrl.currentElement.advancedVerification.fullName }} validation info. View more
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TGFBR2 Antibody in Immunohistochemistry (Paraffin) (IHC (P))
TGFBR2 Antibody in Immunohistochemistry (Paraffin) (IHC (P))
TGFBR2 Antibody in Western Blot (WB)
TGFBR2 Monoclonal Antibody (OTI3B4), TrueMAB™

Product Details

TA807912

Applications
Tested Dilution
Publications

Western Blot (WB)

1:2,000
-

Immunohistochemistry (Paraffin) (IHC (P))

1:2,000
-

Miscellaneous PubMed (MISC)

-
View 1 publication 1 publication
Product Specifications

Species Reactivity

Human

Host/Isotype

Mouse / IgG2a

Class

Monoclonal

Type

Antibody

Clone

OTI3B4

Immunogen

Human recombinant protein fragment corresponding to amino acids 23-294 of human TGFBR2 produced in E.coli.
View immunogen

Conjugate

Unconjugated Unconjugated Unconjugated

Form

Liquid

Concentration

1 mg/mL

Purification

Affinity chromatography

Storage buffer

PBS with 1% BSA, 50% glycerol

Contains

0.02% sodium azide

Storage conditions

-20°C, Avoid Freeze/Thaw Cycles

Shipping conditions

Ambient (domestic); Wet ice (international)

Target Information

Transforming Growth Factor, beta receptor 2 (AAT3, FAA3, MFS2, RIIC, LDS1B, LDS2B, TAAD2, TGFR-2, TGFbeta-RII) is a member of the TGF-beta family of receptor Serine/Threonine kinases. It is involved in the regulation of cell proliferation. Mitochondrial ATP synthase catalyzes ATP synthesis, utilizing an electrochemical gradient of protons across the inner membrane during oxidative phosphorylation. ATP synthase is composed of two linked multi-subunit complexes: the soluble catalytic core, F1, and the membrane-spanning component, Fo, comprising the proton channel. The catalytic portion of mitochondrial ATP synthase consists of 5 different subunits (alpha, beta, gamma, delta, and epsilon) assembled with a stoichiometry of 3 alpha, 3 beta, and a single representative of the other 3. The proton channel consists of three main subunits (a, b, c). TGFBR2 encodes the gamma subunit of the catalytic core. Alternatively spliced transcript variants encoding different isoforms have been identified. TGFBR2 also has a pseudogene on chromosome 14.

For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.

Bioinformatics

Protein Aliases: tbetaR-II; tgf beta receptor 2; TGF-beta receptor type II; TGF-beta receptor type IIB; TGF-beta receptor type-2; TGF-beta type II receptor; TGFbeta RII; TGFR-2; TGFR2; transforming growth factor beta receptor II; transforming growth factor beta receptor type IIC; transforming growth factor, beta receptor II (70/80kDa); transforming growth factor, beta receptor II alpha; transforming growth factor, beta receptor II beta; transforming growth factor, beta receptor II delta; transforming growth factor, beta receptor II epsilon; transforming growth factor, beta receptor II gamma; Transforming growth factor-beta receptor type II

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Gene Aliases: AAT3; FAA3; LDS1B; LDS2; LDS2B; MFS2; RIIC; TAAD2; TGFbeta-RII; TGFBR2; TGFR-2

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UniProt ID: (Human) P37173

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Entrez Gene ID: (Human) 7048

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Function(s)
transmembrane receptor protein serine/threonine kinase activity receptor signaling protein serine/threonine kinase activity transforming growth factor beta-activated receptor activity transforming growth factor beta receptor activity, type II protein binding ATP binding glycosaminoglycan binding mitogen-activated protein kinase kinase kinase binding type I transforming growth factor beta receptor binding SMAD binding metal ion binding transforming growth factor beta binding
Process(es)
blood vessel development patterning of blood vessels vasculogenesis in utero embryonic development heart looping positive regulation of mesenchymal cell proliferation lens development in camera-type eye positive regulation of tolerance induction to self antigen positive regulation of B cell tolerance induction positive regulation of T cell tolerance induction outflow tract morphogenesis growth plate cartilage chondrocyte growth protein phosphorylation receptor-mediated endocytosis apoptotic process transforming growth factor beta receptor signaling pathway common-partner SMAD protein phosphorylation Notch signaling pathway smoothened signaling pathway gastrulation brain development heart development embryo implantation aging response to nutrient positive regulation of cell proliferation response to mechanical stimulus response to glucose regulation of gene expression positive regulation of epithelial cell migration positive regulation of epithelial to mesenchymal transition peptidyl-serine phosphorylation peptidyl-threonine phosphorylation signal transduction by protein phosphorylation negative regulation of transforming growth factor beta receptor signaling pathway organ regeneration activation of protein kinase activity embryonic hemopoiesis wound healing regulation of cell proliferation response to drug myeloid dendritic cell differentiation positive regulation of skeletal muscle tissue regeneration response to estrogen positive regulation of angiogenesis response to steroid hormone digestive tract development positive regulation of smooth muscle cell proliferation embryonic cranial skeleton morphogenesis positive regulation of NK T cell differentiation palate development negative regulation of cardiac muscle cell proliferation pathway-restricted SMAD protein phosphorylation ventricular septum morphogenesis bronchus morphogenesis trachea formation mammary gland morphogenesis lung lobe morphogenesis response to cholesterol positive regulation of epithelial to mesenchymal transition involved in endocardial cushion formation lens fiber cell apoptotic process positive regulation of reactive oxygen species metabolic process
It has to be done as per old AB suggested Products section.
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