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Overview

Uniprot IDP61089
Protein NameUbiquitin-conjugating enzyme E2 N
Gene NameUbe2n
OrganismMus musculus

Kla Sites from experimental identification

Position Flanking peptide
10 GLPRRIIKETQRLLA
74 PKVRFMTKIYHPNVD
92 RICLDILKDKWSPAL

Function

The UBE2V1-UBE2N and UBE2V2-UBE2N heterodimers catalyze the synthesis of non-canonical 'Lys-63'-linked polyubiquitin chains (PubMed:22424771, PubMed:28039360). This type of polyubiquitination does not lead to protein degradation by the proteasome. Mediates transcriptional activation of target genes. Plays a role in the control of progress through the cell cycle and differentiation. Plays a role in the error-free DNA repair pathway and contributes to the survival of cells after DNA damage. Acts together with the E3 ligases, HLTF and SHPRH, in the 'Lys-63'-linked poly-ubiquitination of PCNA upon genotoxic stress, which is required for DNA repair. Appears to act together with E3 ligase RNF5 in the 'Lys-63'-linked polyubiquitination of JKAMP thereby regulating JKAMP function by decreasing its association with components of the proteasome and ERAD. Promotes TRIM5 capsid-specific restriction activity and the UBE2V1-UBE2N heterodimer acts in concert with TRIM5 to generate 'Lys-63'-linked polyubiquitin chains which activate the MAP3K7/TAK1 complex which in turn results in the induction and expression of NF-kappa-B and MAPK-responsive inflammatory genes. Together with RNF135 and UB2V1, catalyzes the RNA-dependent 'Lys-63'-linked polyubiquitination of RIGI to activate the downstream signaling pathway that leads to interferon beta production (PubMed:22424771). UBE2V1-UBE2N together with TRAF3IP2 E3 ubiquitin ligase mediate 'Lys-63'-linked polyubiquitination of TRAF6, a component of IL17A-mediated signaling pathway

Protein Sequence

10 MAGLPRRIIK 20 ETQRLLAEPV 30 PGIKAEPDES 40 NARYFHVVIA 50 GPQDSPFEGG 60 TFKLELFLPE 70 EYPMAAPKVR 80 FMTKIYHPNV 90 DKLGRICLDI 100 LKDKWSPALQ 110 IRTVLLSIQA 120 LLSAPNPDDP 130 LANDVAEQWK 140 TNEAQAIETA 150 RAWTRLYAMN NI

Gene Ontology

Classification GO ID Description
Cellular Component GO:0005737 cytoplasm
Cellular Component GO:0005829 cytosol
Cellular Component GO:0001650 fibrillar center
Cellular Component GO:0098978 glutamatergic synapse
Cellular Component GO:0005654 nucleoplasm
Cellular Component GO:0005634 nucleus
Cellular Component GO:0098794 postsynapse
Cellular Component GO:0032991 protein-containing complex
Cellular Component GO:0031372 UBC13-MMS2 complex
Cellular Component GO:0031371 ubiquitin conjugating enzyme complex
Cellular Component GO:0000151 ubiquitin ligase complex
Molecular Function GO:0005524 ATP binding
Molecular Function GO:0043130 ubiquitin binding
Molecular Function GO:0061631 ubiquitin conjugating enzyme activity
Molecular Function GO:0031625 ubiquitin protein ligase binding
Molecular Function GO:0097027 ubiquitin-protein transferase activator activity
Molecular Function GO:0004842 ubiquitin-protein transferase activity
Biological Process GO:0140374 antiviral innate immune response
Biological Process GO:0006301 DNA damage tolerance
Biological Process GO:0000729 DNA double-strand break processing
Biological Process GO:0000724 double-strand break repair via homologous recombination
Biological Process GO:1904262 negative regulation of TORC1 signaling
Biological Process GO:0043123 positive regulation of canonical NF-kappaB signal transduction
Biological Process GO:0045739 positive regulation of DNA repair
Biological Process GO:2000781 positive regulation of double-strand break repair
Biological Process GO:1902523 positive regulation of protein K63-linked ubiquitination
Biological Process GO:0043161 proteasome-mediated ubiquitin-dependent protein catabolic process
Biological Process GO:0070534 protein K63-linked ubiquitination
Biological Process GO:0006513 protein monoubiquitination
Biological Process GO:0140252 regulation protein catabolic process at postsynapse
Biological Process GO:0050852 T cell receptor signaling pathway
Biological Process GO:0006511 ubiquitin-dependent protein catabolic process

Reference

[1] Chang J, Wu W, Qian P, Lu Z, He X et al.. Multi-omics study on the effect of moderate-intensity exercise on protein lactylation in mouse muscle tissue.. Front Cell Dev Biol 12:1472338. 2024. PMID: 39935788.

[2] Wu D, Tang Y, Li X, Xiong S, Zhang Z et al.. Characterization of protein lactylation in healthy and ischemic mouse hearts.. Front Cardiovasc Med 12:1644886. 2025. PMID: 41089239.