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TCEB1 encodes the protein elongin C, which is a subunit of the transcription factor B (SIII) complex. Additionally we are shipping TCEB1 Antibodies (65) and many more products for this protein.
Showing 8 out of 9 products:
EPOP (E130012A19Rik) functionally links elongin B (show TCEB2 Proteins), elongin C, and polycomb (show CBX2 Proteins) in pluripotent stem cells.
EPOP (E130012A19Rik) interacts with elongin B (show TCEB2 Proteins), elongin C, 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).
PRAME (show PRAME Proteins) expression in leukaemic cell lines is upregulated by IFN gamma (show IFNG Proteins) and LPS (show TLR4 Proteins), suggesting a possible role in immune responses. PRAME (show PRAME Proteins) associates with Elongin BC complexes by binding Elongin C.
Elongin B (show TCEB2 Proteins)/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.
TCEB1 promotes invasion of prostate cancer cells and is involved in development of hormone-refractory prostate cancer
crystals of SOCS2 (show SOCS2 Proteins) in complex with its adaptor proteins, Elongin C and Elongin B (show TCEB2 Proteins), underwent a change in crystallographic parameters when treated with dimethyl sulfoxide during soaking experiments.
TCEB1-mutated renal cell carcinoma (show MOK Proteins) is a distinct entity with recurrent hotspot mutations, specific copy number alterations, pathway activation, and characteristic morphological features.
The crystal structure of VHL (show VHL Proteins) bound to a Cul2 (show CUL2 Proteins) N-terminal domain, Elongin B (show TCEB2 Proteins), and Elongin C.
Vif (show BTG1 Proteins) interaction with EloB (show TCEB2 Proteins)-EloC may contribute to recruitment of CBF-beta (show CBFB Proteins) to Vif (show BTG1 Proteins), demonstrating that the EloB (show TCEB2 Proteins) C-teminus may play a role in improving Vif (show BTG1 Proteins) function and that the over-expression of EloB (show TCEB2 Proteins) results in Vif (show BTG1 Proteins) stabilization.
AFF1 is a ubiquitous P-TEFb (show CCNT1 Proteins) partner; full Tat (show TAT Proteins) transactivation requires the complete super elongation complexes
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.
PRAME (show PRAME Proteins) expression in leukaemic cell lines is upregulated by IFN gamma (show IFNG Proteins) and LPS (show IRF6 Proteins), suggesting a possible role in immune responses. PRAME (show PRAME Proteins) associates with Elongin BC complexes by binding Elongin C.
TCEB1 and SELC14L1 are good candidate markers for predicting prognosis and progression of prostate cancer.
Functional interaction of Notch4 (show NOTCH4 Proteins)(ICD (show GNPTAB Proteins)) and Elongin C provides novel insight into regulation of Notch (show NOTCH1 Proteins) signaling in epithelial cell biology and disease.
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 and B.
results indicate that antagonistic regulation of gene expression by PAF1Cand p-TEFb (show CCNT1 Proteins) plays a crucial role in oligodendrocyte development in the CNS.
P-TEFb (show CCNT1 Proteins) has a role in coupling transcription elongation with alternative splicing, and maintaining core 7SK snRNP (show LSM2 Proteins) is essential for vertebrate development
This gene encodes the protein elongin C, 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. Multiple alternatively spliced transcript variants encoding two distinct isoforms have been identified.
RNA polymerase II transcription factor SIII subunit C
, SIII p15
, elongin 15 kDa subunit
, elongin C
, stromal membrane-associated protein SMAP1B homolog
, transcription elongation factor B polypeptide 1
, elongation factor SIII p15 subunit
, Elongin C
, transcription elongation factor B (SIII), polypeptide 1