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TCEB2 encodes the protein elongin B, which is a subunit of the transcription factor B (SIII) complex. Additionally we are shipping Transcription Elongation Factor B (SIII), Polypeptide 2 (18kDa, Elongin B) Antibodies (103) and Transcription Elongation Factor B (SIII), Polypeptide 2 (18kDa, Elongin B) Kits (3) and many more products for this protein.
Showing 9 out of 13 products:
EPOP (E130012A19Rik) functionally links elongin B, elongin C (show TCEB1 Proteins), and polycomb (show CBX2 Proteins) in pluripotent stem cells.
EPOP (E130012A19Rik) interacts with elongin B, elongin C (show TCEB1 Proteins), and USP7 (show USP7 Proteins) to modulate the chromatin landscape.
Crystal structure shows interaction between SOCS2 (show SOCS2 Proteins)-elongin BC and Cullin-5 (show CUL5 Proteins).
both P-TEFb (show CCNT1 Proteins) activity and H1 phosphorylation are necessary for the full differentiation of C2C12 myoblasts into myotubes.
Elongin B/C recruitment regulates substrate binding by CIS (show CISH Proteins)
SOCS (show CISH Proteins) box acts as an independent binding domain capable of recruiting elonginBC and cullin5 to promote E3 ligase formation.
Study shows that TCEB2 is involved in the development of acquired resistance to bevacizumab in ovarian cancer cells via the mechanisms of suppression of VEGF-A (show VEGFA Proteins) expression by promoting HIF-1alpha (show HIF1A Proteins) degradation and induction of interleukin-8 (IL-8 (show IL8 Proteins)) expression.
crystals of SOCS2 (show SOCS2 Proteins) in complex with its adaptor proteins, Elongin C (show TCEB1 Proteins) and Elongin B, underwent a change in crystallographic parameters when treated with dimethyl sulfoxide during soaking experiments.
The crystal structure of VHL (show VHL Proteins) bound to a Cul2 (show CUL2 Proteins) N-terminal domain, Elongin B, and Elongin C (show TCEB1 Proteins).
Vif (show BTG1 Proteins) interaction with EloB-EloC (show TCEB1 Proteins) may contribute to recruitment of CBF-beta (show CBFB Proteins) to Vif (show BTG1 Proteins), demonstrating that the EloB C-teminus may play a role in improving Vif (show BTG1 Proteins) function and that the over-expression of EloB results in Vif (show BTG1 Proteins) stabilization.
ASB9 (show ASB9 Proteins) is unstable alone but forms a stable ternary complex with EloBC that binds with high affinity to the Cullin 5 (show CUL5 Proteins) N-terminal domain.
Elongin B also enhances gene expression from the double-stranded DNA genome of human cytomegalovirus.
Recombinant full-length Vif (show BTG1 Proteins) interacted with the Elongin BC complex in vitro with a K(d) of 1.9 muM and resulted in observable changes in deuterium uptake in both Elongin C (show TCEB1 Proteins) and B.
findings report that HIV-1 Vif (show BTG1 Proteins) interacts with cellular proteins Cul5 (show CUL5 Proteins), elongins B and C, and Rbx1 to form an Skp1 (show SKP1 Proteins)-cullin-F-box (SCF (show KITLG Proteins))-like complex
show that ASB2, by interacting with the Elongin BC complex, can assemble with Cullin5.Rbx1 to form an E3 ubiquitin ligase complex that stimulates polyubiquitination by the E2 ubiquitin-conjugating enzyme Ubc5
the E3 ubiquitin ligase (show MUL1 Proteins) activity of the Vif (show BTG1 Proteins)-BC-Cul5 (show CUL5 Proteins) complex is essential for Vif (show BTG1 Proteins) function against APOBEC3G (show APOBEC3G Proteins)
This gene encodes the protein elongin B, which is a subunit of the transcription factor B (SIII) complex. The SIII complex is composed of elongins A/A2, B and C. It activates elongation by RNA polymerase II by suppressing transient pausing of the polymerase at many sites within transcription units. Elongin A functions as the transcriptionally active component of the SIII complex, whereas elongins B and C are regulatory subunits. Elongin A2 is specifically expressed in the testis, and capable of forming a stable complex with elongins B and C. The von Hippel-Lindau tumor suppressor protein binds to elongins B and C, and thereby inhibits transcription elongation. Two alternatively spliced transcript variants encoding different isoforms have been described for this gene. Pseudogenes have been identified on chromosomes 11 and 13.
18 kDa, elongin B
, RNA polymerase II transcription factor SIII subunit B
, SIII p18
, elongin 18 kDa subunit
, elongin B
, transcription elongation factor B (SIII), polypeptide 2 (18 kDa, elongin B)
, transcription elongation factor B polypeptide 2
, transcription elongation factor B (SIII) polypeptide 2 (18kD, elongin B)
, transcription elongation factor B, polypeptide 2
, RNA polymerase II transcription factor SIII p18 subunit
, elongin, 18-kD subunit