EPH Receptor B2 Proteine (EPHB2)

Bezeichnung:
EPH Receptor B2 Proteine (EPHB2)
Auf www.antikoerper-online.de finden Sie aktuell 21 EPH Receptor B2 (EPHB2) Proteine von 7 unterschiedlichen Herstellern. Zusätzlich bieten wir Ihnen EPH Receptor B2 Antikörper (171) und EPH Receptor B2 Kits (8) und viele weitere Produktgruppen zu diesem Protein an. Insgesamt sind aktuell 213 EPH Receptor B2 Produkte verfügbar.
Synonyme:
CAPB, Cek5, Drt, EK5, EPHT3, Erk, ETECK, Hek5, Nuk, PCBC, Prkm5, Qek5, RGD1564232, Sek3, Tyro5
alle Proteine anzeigen Gen GeneID UniProt
EPHB2 2048 P29323
EPHB2 13844  
Ratte EPHB2 EPHB2 313633  

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EPH Receptor B2 Proteine (EPHB2) nach Spezies

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Am meisten referenzierte EPH Receptor B2 Proteine

  1. Mouse (Murine) EPH Receptor B2 Protein expressed in Human Cells - ABIN2008777 : Fox, Holst, Chute, Lindberg, Janssen, Basu, Welcher: cDNA cloning and tissue distribution of five human EPH-like receptor protein-tyrosine kinases. in Oncogene 1995 (PubMed)
    Zeige alle 5 Referenzen für 2008777

  2. Human EPH Receptor B2 Protein expressed in Baculovirus infected Insect Cells - ABIN2003359 : Tang, Pleasure, Brodeur, Ikegaki: A variant transcript encoding an isoform of the human protein tyrosine kinase EPHB2 is generated by alternative splicing and alternative use of polyadenylation signals. in Oncogene 1998 (PubMed)
    Zeige alle 5 Referenzen für 2003359

  3. Human EPH Receptor B2 Protein expressed in Human Cells - ABIN2003357 : Cowan, Yokoyama, Bianchi, Henkemeyer, Fritzsch: EphB2 guides axons at the midline and is necessary for normal vestibular function. in Neuron 2000 (PubMed)
    Zeige alle 5 Referenzen für 2003357

Weitere Proteine zu EPH Receptor B2 Interaktionspartnern

Human EPH Receptor B2 (EPHB2) Interaktionspartner

  1. showed that patients with SSc (zeige CYP11A1 Proteine) or SLE have AAb against EphB2, a protein involved in angiogenesis, and THEX1 (zeige ERI1 Proteine), a 3'-5' exoribonuclease involved in histone mRNA degradation. We have further identified a peptide from EphB2 as a specific and sensitive tool for SLE diagnosis

  2. show that expression of EPHB2 and SNAIL1 (zeige SNAI1 Proteine) - an inducer of epithelial-mesenchymal transition (EMT (zeige ITK Proteine)) - is anti-correlated in colorectal cancer cell lines and tumors

  3. Tiam2 (zeige TIAM2 Proteine)/Rac (zeige AKT1 Proteine) are key components of EphB2 trans-endocytosis and are important for cell repulsion.

  4. High expression of junctional adhesion molecule-A (zeige F11R Proteine) and EphB2 can predict poor overall survival and high mortality rate, and EphB2 is an independent prognostic biomarker in lung adenocarcinoma patients.

  5. Data show that activation of EphB2 receptor kinase arrests tau protein hyperphosphorylation through phosphatidylinositol 3-kinase (PI3K)/Akt protein-mediated glycogen synthase kinase-3beta (GSK-3beta) inhibition.

  6. Expression of the Receptor Tyrosine Kinase (zeige RET Proteine) EphB2 on Dendritic Cells Is Modulated by Toll (zeige TLR4 Proteine)-Like Receptor Ligation but Is Not Required for T Cell Activation

  7. Myosin 1 functions as an effector of EphB2/ephrinB signaling, controls cell morphology, and thereby cell repulsion.

  8. EphB2 activation is required for ependymoma development as well as it inhibits differentiation and promotes proliferation of the transformed cell.

  9. EphB2/ephrin-B1 (zeige EFNB1 Proteine) were invoked in dental pulp stem cells with TNF-alpha (zeige TNF Proteine) treatment via the JNK (zeige MAPK8 Proteine)-dependent pathway, but not NF-kB, p38 MAPK (zeige MAPK14 Proteine) or MEK (zeige MAP2K1 Proteine) signalling.

  10. The results show an intricate interplay between p53 (zeige TP53 Proteine) and TGF-beta3 (zeige TGFB3 Proteine) whereby p53 (zeige TP53 Proteine) inhibits the TGF-beta3 (zeige TGFB3 Proteine)-induced expression of genes, e.g., EPHB2, to impede tumor cell invasion and migration

Mouse (Murine) EPH Receptor B2 (EPHB2) Interaktionspartner

  1. ephrin B3 (zeige EFNB3 Proteine)/EphB2 are obvious candidates for driving the Syk (zeige SYK Proteine)-dependent repulsive response.

  2. The results of this study indicated that the decrease in spine density in the mPFC was associated with susceptibility to stress, and EphB2 downregulation in the mPFC increased the vulnerability to stress.

  3. We here identify that EphB2 receptor tyrosine kinase (zeige ERBB3 Proteine), which is specifically expressed in glutamatergic neurons, is required for the innate fear responses in the neonatal brain.

  4. Here, we identified the interaction sites of the EphB2 FN domain with ADDLs for the first time to develop a small (10 aa) peptide (Pep63) capable of blocking the EphB2-ADDL (zeige ADD3 Proteine) interaction.

  5. EphB4 (zeige EPHB4 Proteine) plays an irreplaceable role in bone regeneration in an inflammatory microenvironment, whereas the functional loss of ephrinB2 (zeige EFNB2 Proteine) can be effectively compensated, most possibly by other ephrins with similar chemical structures

  6. Authors suggest that aging is accompanied by the upregulation of miR-204 in the hippocampus, which downregulates EphB2 and results in reduced surface and total NR1 expression.

  7. Findings suggest that a combination of forward and reverse EphB1 (zeige EPHB1 Proteine)/2 receptor-mediated signaling contribute to posterior branch of the anterior commissure and corpus callosum axon guidance

  8. Results demonstrate that EphB2 reverse signaling plays a unique and requisite role in inhibiting the development of opiate-dependent tolerance in vivo

  9. During re-epithelialization ephrin-B1 (zeige EFNB1 Proteine) and its receptor EphB2 are both upregulated in vivo, just for the duration of repair.

  10. EphB2 prevents amyloid-beta-induced depletion of cell surface GluN1 (zeige GRIN1 Proteine) requiring the PDZ-binding motif of EphB2.

EPH Receptor B2 (EPHB2) Protein Überblick

Protein Überblick

Ephrin receptors and their ligands, the ephrins, mediate numerous developmental processes, particularly in the nervous system. Based on their structures and sequence relationships, ephrins are divided into the ephrin-A (EFNA) class, which are anchored to the membrane by a glycosylphosphatidylinositol linkage, and the ephrin-B (EFNB) class, which are transmembrane proteins. The Eph family of receptors are divided into 2 groups based on the similarity of their extracellular domain sequences and their affinities for binding ephrin-A and ephrin-B ligands. Ephrin receptors make up the largest subgroup of the receptor tyrosine kinase (RTK) family. The protein encoded by this gene is a receptor for ephrin-B family members.

Alternative names and synonyms associated with EPH Receptor B2 (EPHB2)

  • EPH receptor B2 (EPHB2)
  • EPH receptor B2 (LOC100218346)
  • Eph receptor B2 (Ephb2)
  • CAPB Protein
  • Cek5 Protein
  • Drt Protein
  • EK5 Protein
  • EPHT3 Protein
  • Erk Protein
  • ETECK Protein
  • Hek5 Protein
  • Nuk Protein
  • PCBC Protein
  • Prkm5 Protein
  • Qek5 Protein
  • RGD1564232 Protein
  • Sek3 Protein
  • Tyro5 Protein

Bezeichner auf Proteinebene für EPH Receptor B2 Proteine (EPHB2)

ephrin receptor EphB2 , EPH receptor B2 , ephrin type-B receptor 2-like , EPH-like kinase 5 , developmentally-regulated Eph-related tyrosine kinase , elk-related tyrosine kinase , eph tyrosine kinase 3 , ephrin type-B receptor 2 , protein-tyrosine kinase HEK5 , renal carcinoma antigen NY-REN-47 , tyrosine-protein kinase TYRO5 , tyrosine-protein kinase receptor EPH-3 , neural kinase , nuk receptor tyrosine kinase , tyrosine-protein kinase receptor SEK-3 , EK5 , cEK5 , embryo kinase 5 protein CEK5

GENE ID SPEZIES
456613 Pan troglodytes
100218346 Taeniopygia guttata
100405872 Callithrix jacchus
100519549 Sus scrofa
100605350 Nomascus leucogenys
2048 Homo sapiens
13844 Mus musculus
487380 Canis lupus familiaris
396513 Gallus gallus
535137 Bos taurus
313633 Rattus norvegicus
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