Human ACVR1B Matched Antibody Pair Set [ABP-Q-0279] (CAT#: ABP-Q-0279)

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Human ACVR1B Matched Antibody Pair set for ELISA use
Capture Antibody: Mouse monoclonal anti-ACVR1B, IgG1 Kappa
Detection Antibody: Mouse monoclonal anti-ACVR1B, IgG1 Kappa

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Antigen Detail

TargetACVR1B
DescriptionActivin receptor type-1B is a protein that in humans is encoded by the ACVR1B gene. ACVR1B or ALK-4 acts as a transducer of activin or activin-like ligands (e.g., inhibin) signals. Activin binds to either ACVR2A or ACVR2B and then forms a complex with ACVR1B. These go on to recruit the R-SMADs SMAD2 or SMAD3.[7] ACVR1B also transduces signals of nodal, GDF-1, and Vg1; however, unlike activin, they require other coreceptor molecules such as the protein Cripto.
Species ReactivityHuman

Capture Antibody

Capture ClonalityMonoclonal
Host SpeciesMouse
CloneIV01714
IsotypeIgG1, kappa
PurificationAffinity chromatography
BufferPBS, pH 7.4, containing 0.1% Proclin 300
ApplicationELISA

Detection Antibody

Det-ClonalityMonoclonal
Host SpeciesMouse
ConjugationBiotin
CloneRD10220
IsotypeIgG1, kappa
PurificationAffinity chromatography
BufferPBS, pH 7.4

General Product Property

Product OverviewHuman ACVR1B Matched Antibody Pair set for ELISA use
Capture Antibody: Mouse monoclonal anti-ACVR1B, IgG1 Kappa
Detection Antibody: Mouse monoclonal anti-ACVR1B, IgG1 Kappa
SpecificityValidated for detecting natural and recombinant human ACVR1B
Research AreaKinase; Tumor
ApplicationELISA
Application NotesOptimal dilutions should be determined experimentally by the user.
FormLyophilized
StorageAvoid repeated freeze/thaw cycles. Store at 2-8°C for short term. Aliquot and store at -20°C for long term storage.
Size1 Set
Sample TypeSerum; Supernatant; Urine; Cell lysate; Plasma; Tissue Homogenates
Usage StatementAvailable for Research Use Only. Not for use in therapeutic or diagnostic applications.

Target Overview

Gene SymbolACVR1B
Full NameActivin A Receptor Type 1B
BackgroundThis gene encodes an activin A type IB receptor. Activins are dimeric growth and differentiation factors which belong to the transforming growth factor-beta (TGF-beta) superfamily of structurally related signaling proteins. Activins signal through a heteromeric complex of receptor serine kinases which include at least two type I and two type II receptors. This protein is a type I receptor which is essential for signaling. Mutations in this gene are associated with pituitary tumors. Alternate splicing results in multiple transcript variants.[provided by RefSeq, Jun 2010]
Alternative NamesActivin A Receptor Type 1B; ALK4; SKR2; Serine/Threonine-Protein Kinase Receptor R2; Activin Receptor-Like Kinase 4; Activin A Receptor; Type IB; ACVRLK4; ActRIB; ALK-4
Gene ID91
Uniprot IDP36896
GeneCardsACVR1B
HGNC172
EnsemblENSG00000135503
OMIM601300
Involvement in DiseaseDiseases associated with ACVR1B include Rare Carcinoma Of Pancreas and Pancreatic Cancer.
FunctionTransmembrane serine/threonine kinase activin type-1 receptor forming an activin receptor complex with activin receptor type-2 (ACVR2A or ACVR2B). Transduces the activin signal from the cell surface to the cytoplasm and is thus regulating a many physiological and pathological processes including neuronal differentiation and neuronal survival, hair follicle development and cycling, FSH production by the pituitary gland, wound healing, extracellular matrix production, immunosuppression and carcinogenesis. Activin is also thought to have a paracrine or autocrine role in follicular development in the ovary. Within the receptor complex, type-2 receptors (ACVR2A and/or ACVR2B) act as a primary activin receptors whereas the type-1 receptors like ACVR1B act as downstream transducers of activin signals. Activin binds to type-2 receptor at the plasma membrane and activates its serine-threonine kinase. The activated receptor type-2 then phosphorylates and activates the type-1 receptor such as ACVR1B. Once activated, the type-1 receptor binds and phosphorylates the SMAD proteins SMAD2 and SMAD3, on serine residues of the C-terminal tail. Soon after their association with the activin receptor and subsequent phosphorylation, SMAD2 and SMAD3 are released into the cytoplasm where they interact with the common partner SMAD4. This SMAD complex translocates into the nucleus where it mediates activin-induced transcription. Inhibitory SMAD7, which is recruited to ACVR1B through FKBP1A, can prevent the association of SMAD2 and SMAD3 with the activin receptor complex, thereby blocking the activin signal. Activin signal transduction is also antagonized by the binding to the receptor of inhibin-B via the IGSF1 inhibin coreceptor. ACVR1B also phosphorylates TDP2.
Related PathwaysIts related pathways are Signaling by NODAL and Signaling by GPCR.

For Research Use Only.

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