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The antibody against RUNX2 was raised in Rabbit using a synthetic peptide corresponding to a sequence within amino acids 242-521 of human RUNX2 (NP_001019801.3) as the immunogen. The polyclonal antibody exists as a isotype IgG, by affinity purification. This antibody has been validated on WB, IHC-P, IF/ICC, ELISA.
The antibody against RUNX2 was raised in Rabbit using a synthetic peptide corresponding to a sequence within amino acids 242-521 of human RUNX2 (NP_001019801.3) as the immunogen. The polyclonal antibody exists as a isotype IgG, by affinity purification. This antibody has been validated on WB, IHC-P, IF/ICC, ELISA.
| Cat.No | ADA-13127A | Clonality | Polyclonal |
|---|---|---|---|
| Host Species | Rabbit | Target Name | RUNX2 |
| Target Synonyms | CCD; AML3; CCD1; CLCD; OSF2; CBFA1; OSF-2; PEA2aA; PEBP2aA; CBF-alpha-1; RUNX2 | Form | Liquid |
| Species Reactivity | Human, Mouse, Rat | Isotype | IgG |
| Storage Buffer | 50% Glycerol, PBS with 0.05% proclin300, pH7.3. | Purification Method | Affinity purification |
| Positive Samples | HeLa, MCF7, Mouse testis | Application | ELISA, WB, IF/ICC, IHC-P |
| Immunogen Description | A synthetic peptide corresponding to a sequence within amino acids 242-521 of human RUNX2 (NP_001019801.3). | Target Species | Human |
|---|---|---|---|
| Uniprot ID | Q13950 | Immunogen Sequence |
Uniprot Id
Q13950
Target Species
Human
Target Name
RUNX2
Target Full Name
Runt-related transcription factor 2
Target Function
Transcription factor involved in osteoblastic differentiation and skeletal morphogenesis. Essential for the maturation of osteoblasts and both intramembranous and endochondral ossification. CBF binds to the core site, 5'-PYGPYGGT-3', of a number of enhancers and promoters, including murine leukemia virus, polyomavirus enhancer, T-cell receptor enhancers, osteocalcin, osteopontin, bone sialoprotein, alpha 1(I) collagen, LCK, IL-3 and GM-CSF promoters. In osteoblasts, supports transcription activation: synergizes with SPEN/MINT to enhance FGFR2-mediated activation of the osteocalcin FGF-responsive element (OCFRE). Inhibits KAT6B-dependent transcriptional activation.
Target Involvement
Cleidocranial dysplasia (CLCD); Metaphyseal dysplasia with maxillary hypoplasia with or without brachydactyly (MDMHB)
Target Subcellular Location
Nucleus.
Target Tissue Specificity
Specifically expressed in osteoblasts.
Target Synonyms
Acute myeloid leukemia 3 protein; Alpha subunit 1; AML3; CBF alpha 1 ; CBF-alpha-1; CBFA1; CCD; CCD1; Cleidocranial dysplasia 1; Core binding factor; Core binding factor runt domain alpha subunit 1; Core binding factor subunit alpha 1; Core-binding factor subunit alpha-1; MGC120022; MGC120023; Oncogene AML 3; Oncogene AML-3; OSF 2; OSF-2; OSF2; Osteoblast specific transcription factor 2 ; Osteoblast-specific transcription factor 2; OTTHUMP00000016533; PEA2 alpha A; PEA2-alpha A; PEA2aA; PEBP2 alpha A; PEBP2-alpha A; PEBP2A1; PEBP2A2; PEBP2aA; PEBP2aA1; Polyomavirus enhancer binding protein 2 alpha A subunit ; Polyomavirus enhancer-binding protein 2 alpha A subunit; Runt domain; Runt related transcription factor 2; Runt-related transcription factor 2; RUNX2; RUNX2_HUMAN; SL3 3 enhancer factor 1 alpha A subunit ; SL3-3 enhancer factor 1 alpha A subunit; SL3/AKV core binding factor alpha A subunit ; SL3/AKV core-binding factor alpha A subunit
Target Background
This gene is a member of the RUNX family of transcription factors and encodes a nuclear protein with an Runt DNA-binding domain. This protein is essential for osteoblastic differentiation and skeletal morphogenesis and acts as a scaffold for nucleic acids and regulatory factors involved in skeletal gene expression. The protein can bind DNA both as a monomer or, with more affinity, as a subunit of a heterodimeric complex. Two regions of potential trinucleotide repeat expansions are present in the N-terminal region of the encoded protein, and these and other mutations in this gene have been associated with the bone development disorder cleidocranial dysplasia (CCD). Transcript variants that encode different protein isoforms result from the use of alternate promoters as well as alternate splicing.
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