UBE2V2 Protein, Human
UBE2V2 protein lacks independent ubiquitin ligase activity and forms a functional heterodimer with UBE2N. Together, they catalyze nonclassical polyubiquitin chain synthesis ("Lys-63"), distinct from proteasome-driven degradation. UBE2V2 Protein, Human is the recombinant human-derived UBE2V2 protein, expressed by E. coli, with tag free.
- Species: Human
- Source: E. coli
Biological Activity
UBE2V2 protein lacks independent ubiquitin ligase activity and forms a functional heterodimer with UBE2N. Together, they catalyze nonclassical polyubiquitin chain synthesis ("Lys-63"), distinct from proteasome-driven degradation. UBE2V2 Protein, Human is the recombinant human-derived UBE2V2 protein, expressed by E. coli, with tag free.
The UBE2V2 protein lacks ubiquitin ligase activity when acting alone, but forms a functional heterodimer with UBE2N to catalyze the synthesis of non-canonical poly-ubiquitin chains linked through 'Lys-63'. Notably, this type of poly-ubiquitination does not result in protein degradation by the proteasome. UBE2V2 plays a pivotal role in mediating the transcriptional activation of target genes, exerting influence over cell cycle progression, and contributing to cellular differentiation. Furthermore, it is involved in the error-free DNA repair pathway, enhancing cell survival following DNA damage. UBE2V2 primarily functions as a heterodimer with UBE2N and demonstrates binding affinity for CHFR, suggesting its involvement in various cellular processes and molecular interactions.
Technical Parameters
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Species Human
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Source E. coli
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Tag Tag Free
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Accession
Q15819 (M1-N145)
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Gene ID7336
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Molecular Construction
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N-term
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C-term
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Protein Length
Full Length
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Synonyms
UBE2V2; Ubiquitin Conjugating Enzyme E2 V2; Ubiquitin‑Conjugating Enzyme E2 Variant 2; EDPF‑1; EDAF‑1; MMS2; UEV2; DDVit‑1; DDVIT1; UEV‑2; EDPF1; Enterocyte Differentiation‑Associated Factor 1; Enterocyte Differentiation‑Promoting Factor 1; Vitamin D3‑Ind
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AA Sequence
MAVSTGVKVPRNFRLLEELEEGQKGVGDGTVSWGLEDDEDMTLTRWTGMIIGPPRTNYENRIYSLKVECGPKYPEAPPSVRFVTKINMNGINNSSGMVDARSIPVLAKWQNSYSIKVVLQELRRLMMSKENMKLPQPPEGQTYNN
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Predicted Molecular Mass
16 kDa
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Molecular Weight
Approximately 16 kDa, based on SDS-PAGE under reducing conditions.
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Purity
≥ 90%, as determined by reducing SDS-PAGE.
Documentation
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)