1. Gene
  2. Rnf111 - ring finger 111 Gene

Rnf111 - ring finger 111 Gene

Mus musculus

Also known as ARK; Arkadia

Gene ID: 93836 | Gene type: protein coding

About Rnf111

Summary

Enables ubiquitin protein Ligase activity. Involved in positive regulation of transcription, DNA-templated. Acts upstream of or within several processes, including cellular protein metabolic process; positive regulation of protein ubiquitination; and positive regulation of transforming growth factor beta receptor signaling pathway. Located in cytoplasm and nucleus. Part of protein-containing complex. Is expressed in several structures, including heart; nervous system; testis; and urinary system. Orthologous to human RNF111 (ring finger protein 111). [provided by Alliance of Genome Resources, Apr 2022]

Rnf111 Products(3)

mRNA Protein Name
NM_001357494.1 NP_001344423.1 E3 ubiquitin-protein ligase Arkadia isoform 2
NM_001374753.1 NP_001361682.1 E3 ubiquitin-protein ligase Arkadia isoform 3
NM_033604.3 NP_291082.1 E3 ubiquitin-protein ligase Arkadia isoform 1
Gene Ontology
  • Molecular Function
  • Biological Process
  • Cellular Component
Molecular Function GO Annotation Evidence Reference Source
enables protein binding IPI
IPI: Inferred from physical interaction
16601693 MGI
enables ubiquitin protein ligase activity IMP
IMP: Inferred from mutant phenotype
16601693 MGI
Biological Process GO Annotation Evidence Reference Source
acts upstream of or within pattern specification process IMP
IMP: Inferred from mutant phenotype
11298452 MGI
acts upstream of or within positive regulation of protein ubiquitination IDA
IDA: Inferred from direct assay
16601693 MGI
acts upstream of or within positive regulation of protein ubiquitination IMP
IMP: Inferred from mutant phenotype
16601693 MGI
acts upstream of or within positive regulation of transforming growth factor beta receptor signaling pathway IDA
IDA: Inferred from direct assay
16601693 MGI
acts upstream of or within positive regulation of transforming growth factor beta receptor signaling pathway IMP
IMP: Inferred from mutant phenotype
16601693 MGI
involved in positive regulation of transforming growth factor beta receptor signaling pathway IMP
IMP: Inferred from mutant phenotype
16601693 MGI
acts upstream of or within protein polyubiquitination IDA
IDA: Inferred from direct assay
16601693 MGI
acts upstream of or within protein polyubiquitination IGI
IGI: Inferred from genetic interaction
16601693 MGI
acts upstream of or within protein polyubiquitination IMP
IMP: Inferred from mutant phenotype
16601693 MGI
involved in protein polyubiquitination IMP
IMP: Inferred from mutant phenotype
16601693 MGI
acts upstream of or within ubiquitin-dependent protein catabolic process IDA
IDA: Inferred from direct assay
16601693 MGI
acts upstream of or within ubiquitin-dependent protein catabolic process IMP
IMP: Inferred from mutant phenotype
16601693 MGI
Cellular Component GO Annotation Evidence Reference Source
located in cytoplasm IDA
IDA: Inferred from direct assay
16601693 MGI
located in nucleus IDA
IDA: Inferred from direct assay
11555636 MGI
part of protein-containing complex IDA
IDA: Inferred from direct assay
16601693 MGI
EXP: Inferred from Experiment IDA: Inferred from direct assay IPI: Inferred from physical interaction IMP: Inferred from mutant phenotype IGI: Inferred from genetic interaction IEP: Inferred from expression pattern
Protein Preferred Names Protein Names

E3 ubiquitin-protein ligase Arkadia

RING finger protein 111

RING-type E3 ubiquitin transferase Arkadia

Rnf111 Protein-protein interaction Information

Type
Protein Name Protein ID Interactor Interactor Species Interactor ID Detection Method Reference
Intra
Rnf111 Q99ML9 Axin1 Mus musculus O35625 16601693
Intra
Rnf111 Q99ML9 Axin1 Mus musculus O35625 16601693
Cross
Rnf111 Q99ML9 SMAD7 Homo sapiens O15105 16601693
Cross
Rnf111 Q99ML9 AXIN1 Homo sapiens O15169 16601693
Cross
Rnf111 Q99ML9 AXIN1 Homo sapiens O15169 16601693
Cross: Cross-species interaction Intra: Intraspecies interaction

Orthologs Information

Species Symbol Source ID
Homo sapiens Rnf111 NCBI NCBI:54778