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Runt-Related Transcription Factor 1 (RUNX1) ELISA Kits

RUNX1 encodes a member of the myeloid translocation gene family which interact with DNA-bound transcription factors and recruit a range of corepressors to facilitate transcriptional repression. Additionally we are shipping Runt-Related Transcription Factor 1 Antibodies (262) and Runt-Related Transcription Factor 1 Proteins (7) and many more products for this protein.

list all ELISA KIts Gene Name GeneID UniProt
RUNX1 12394 Q03347
RUNX1 861 Q01196
RUNX1 50662 Q63046
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Top Runt-Related Transcription Factor 1 ELISA Kits at antibodies-online.com

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Catalog No. Reactivity Sensitivity Range Quantity Supplier Delivery Price Details
Rat 6.25 pg/ml 25-1600 pg/mL 96 Tests Log in to see 11 to 13 Days
$910.56
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Human
96 Tests Log in to see 2 to 3 Days
$450.00
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Human
96 Tests Log in to see 1 to 2 Days
$775.83
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Human
96 Tests Log in to see 6 Days
$707.14
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More ELISA Kits for Runt-Related Transcription Factor 1 Interaction Partners

Mouse (Murine) Runt-Related Transcription Factor 1 (RUNX1) interaction partners

  1. Runx1 has an important role in Nf1 (show NF1 ELISA Kits) neurofibroma initiation

  2. RUNX1 and ER occupy adjacent elements in AXIN1 (show AXIN1 ELISA Kits)'s second intron, and RUNX1 antagonizes oestrogen-mediated AXIN1 (show AXIN1 ELISA Kits) suppression.

  3. A high level of Runx1 mRNA expression was detected on days 6-8 of pregnancy and under artificial decidualization. Data suggest that Runx1 may play an important role during mouse decidualization.

  4. Results suggest that Runx1 is involved in targeting ventrocaudal hypoglossal neurons to specific muscles but is not necessary for neuronal survival, motoneuron specification, or synaptic development

  5. Setbp1 (show SETBP1 ELISA Kits) overexpression also causes transcriptional repression of critical hematopoiesis regulator gene Runx1

  6. Runx1-deficient hematopoietic stem and progenitor cells (HSPCs) have a slow growth, low biosynthetic, small cell phenotype and markedly reduced ribosome biogenesis.

  7. mutation of the five Src (show SRC ELISA Kits)-modified residues to aspartate but not phenylalanine allows Runx1 to increase Cebpa (show CEBPA ELISA Kits) and granulocyte colony formation by Runx1-deleted murine marrow.

  8. Runx1 is an important participant in the pathology of muscle wasting diseases.

  9. Having characterized the extensive activity of P1, we utilized a P1-GFP homozygous mouse model to analyze the impact of the complete absence of Runx1 P1 expression in adult mice and observed strong defects in the T cell lineage.

  10. Sox17 (show SOX17 ELISA Kits) inhibition of Runx1 and Gata2 (show GATA2 ELISA Kits) maintains endothelial fate in endothelial-to-haematopoietic transition

Human Runt-Related Transcription Factor 1 (RUNX1) interaction partners

  1. Thus, an NGF (show NGFB ELISA Kits)/TrkA (show NTRK1 ELISA Kits)-MAPK (show MAPK1 ELISA Kits)-CBFbeta (show CBFB ELISA Kits) pathway converges with Islet1 (show ISL1 ELISA Kits)-Runx1 signaling to promote Runx1/CBFbeta (show CBFB ELISA Kits) holocomplex formation and nonpeptidergic nociceptor maturation.

  2. Exon splicing patterns in the human RUNX1-RUNX1T1 (show RUNX1T1 ELISA Kits) fusion gene present in acute myeloid leukemia (show BCL11A ELISA Kits) patients have been decoded.

  3. we observed that inhibition of RUNX1/ETO (show RUNX1T1 ELISA Kits) in Kasumi1 cells and in RUNX1/ETO (show RUNX1T1 ELISA Kits) positive primary acute myeloid leukemia (show BCL11A ELISA Kits) patient samples leads to up-regulation of miR144/451

  4. Data suggest that biosynthesis and folding of leukemogenic fusion oncoprotein AML1-ETO (show RUNX1T1 ELISA Kits)/RUNX1-RUNX1T1 (show RUNX1T1 ELISA Kits) is facilitated by interaction with the chaperonin (show HSPD1 ELISA Kits) TRiC/CCT1/TCP1 and HSP70 (heat shock protein 70 (show HSP70 ELISA Kits)).

  5. We conclude that the distal P1-Runx1 promoter is a direct transcriptional target of Wnt (show WNT2 ELISA Kits)/beta-catenin (show CTNNB1 ELISA Kits) signaling that may be important in normal hematopoiesis or its transition into malignant stem cells during the onset or progression of leukemia.

  6. RUNX1 amplification may predispose to early thrombotic events in children with B-cell acute lymphoblastic leukemia

  7. in hematopoietic cells RUNX1 protein is recruited to its own promoter to regulate RUNX1 gene transcription in a positive feedback loop.

  8. The study reveals a role of CBL (show CBL ELISA Kits) in restricting myeloid proliferation of human AML1-ETOinduced leukemia, and identifies UBASH3B (show STS1 ELISA Kits) as a potential target for pharmaceutical intervention.

  9. RUNX1 and ER occupy adjacent elements in AXIN1 (show AXIN1 ELISA Kits)'s second intron, and RUNX1 antagonizes oestrogen-mediated AXIN1 (show AXIN1 ELISA Kits) suppression.

  10. our results demonstrate that MIR181A1 and ETV6 (show ETV6 ELISA Kits)/RUNX1 regulate each other, and we propose that a double negative loop involving MIR181A1 and ETV6 (show ETV6 ELISA Kits)/RUNX1 may contribute to ETV6 (show ETV6 ELISA Kits)/RUNX1-driven arrest of differentiation in pre-B ALL.

Zebrafish Runt-Related Transcription Factor 1 (RUNX1) interaction partners

  1. Our data suggest that runx1 and cbfb are required at 2 different steps during early hematopoietic stem cell development

  2. We propose that cohesin and CTCF (show CTCF ELISA Kits) have distinct functions in the regulation of runx1 during zebrafish embryogenesis.

  3. Morpholino knockdown of Myef2 or Runx1 in zebrafish results in reduced numbers of hematopoietic stem cells, suggesting that these two factors also interact in vivo to regulate hematopoiesis.

  4. Runx1 is induced by high Pu.1 level and in turn transrepresses pu.1 expression, thus constituting a negative feedback loop that fashions a favorable Pu.1 level required for balanced fate commitment to neutrophils versus macrophages.

  5. hematopoietic stem cell numbers depended on activity of the transcription factor Runx1, on blood flow, and on proper development of the dorsal aorta

  6. in zebrafish adult HSCs can be formed without an intact runx1.

  7. Zebrafish embryos lacking Rad21 (show RAD21 ELISA Kits), or cohesin subunit Smc3 (show SMC3 ELISA Kits), fail to express runx3 (show RUNX3 ELISA Kits) and lose hematopoietic runx1 expression in early embryonic development.

Xenopus laevis Runt-Related Transcription Factor 1 (RUNX1) interaction partners

  1. Xaml1/Runx1 is required for the specification of Rohon-Beard sensory neurons in Xenopus.

  2. ETV6-RUNX1 (TEL-AML1) fusion and hyperdiploidy (>50 chromosomes) are favorable genetic features in childhood acute lymphoblastic leukemia (ALL).

  3. reveal a shift in Runx2 (show RUNX2 ELISA Kits) function protein during vertebrate evolution towards its exclusive roles in cartilage hypertrophy and bone differentiation within the amniote lineage

Runt-Related Transcription Factor 1 (RUNX1) Antigen Profile

Antigen Summary

Core binding factor (CBF) is a heterodimeric transcription factor that binds to the core element of many enhancers and promoters. The protein encoded by this gene represents the alpha subunit of CBF and is thought to be involved in the development of normal hematopoiesis. Chromosomal translocations involving this gene are well-documented and have been associated with several types of leukemia. Three transcript variants encoding different isoforms have been found for this gene.

Gene names and symbols associated with RUNX1

  • runt-related transcription factor 1 (RUNX1) antibody
  • runt-related transcription factor (runt) antibody
  • runt related transcription factor 1 (Runx1) antibody
  • runt-related transcription factor 1 (runx1) antibody
  • runt-related transcription factor 1 (Runx1) antibody
  • AI462102 antibody
  • aml antibody
  • aml-1 antibody
  • Aml1 antibody
  • aml1-evi-1 antibody
  • amlcr1 antibody
  • cbfa2 antibody
  • evi-1 antibody
  • Pebp2a2 antibody
  • pebp2ab antibody
  • Pebpa2b antibody
  • Runx-1 antibody
  • runx1 antibody
  • runxa antibody
  • XAML antibody
  • Xaml1 antibody

Protein level used designations for RUNX1

runt-related transcription factor 1 , runt-related transcription factor 1 (acute myeloid leukemia 1; aml1 oncogene) , runt-related transcription factor , runt protein , CBF-alpha-2 , PEA2-alpha B , PEBP2-alpha B , SL3-3 enhancer factor 1 alpha B subunit , SL3/AKV core-binding factor alpha B subunit , acute myeloid leukemia 1 protein , core binding factor alpha 2 , core-binding factor subunit alpha-2 , oncogene AML-1 , polyomavirus enhancer-binding protein 2 alpha B subunit , runt domain, alpha subunit 2 , AML1-EVI-1 fusion protein , core-binding factor, runt domain, alpha subunit 2 , aml1 , runt-related transcription factor a , runx1a , Acute myeloid leukemia 1 protein , Core-binding factor subunit alpha-2 , aml1 oncogene , ch-runtB2 , acute myeloid leukemia 1 , factor, runt domain, alpha subunit 2 , core-binding factor runt domain alpha subunit 2 (acute myeloid leukemia 1 oncogene) , runt related transcription factor 1

GENE ID SPECIES
473981 Pan troglodytes
100302713 Saccoglossus kowalevskii
12394 Mus musculus
861 Homo sapiens
58126 Danio rerio
379657 Xenopus laevis
396152 Gallus gallus
487746 Canis lupus familiaris
529631 Bos taurus
50662 Rattus norvegicus
100512633 Sus scrofa
100724149 Cavia porcellus
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