Ring finger protein 111
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Ring finger protein 111
Summary
Ring finger protein 111 is a protein[1]. It is known by 5 alternative names across languages and contexts.[2]
Key Facts
- Ring finger protein 111's instance of is recorded as protein[3].
- Ring finger protein 111 is part of Zinc finger, RING/FYVE/PHD-type[4].
- Ring finger protein 111 is part of Zinc finger, RING-type, protein family[5].
- Ring finger protein 111 is part of E3 ubiquitin-protein ligase Arkadia, N-terminal domain, protein family[6].
- Ring finger protein 111 comprises Zinc finger, RING-type[7].
- Ring finger protein 111 comprises E3 ubiquitin-protein ligase Arkadia, N-terminal[8].
- Ring finger protein 111's molecular function is recorded as SUMO polymer binding[9].
- Ring finger protein 111's molecular function is recorded as protein binding[10].
- Ring finger protein 111's molecular function is recorded as metal ion binding[11].
- Ring finger protein 111's molecular function is recorded as ubiquitin protein ligase activity[12].
- Ring finger protein 111's molecular function is recorded as transferase activity[13].
- Ring finger protein 111's molecular function is recorded as SMAD binding[14].
- Ring finger protein 111's molecular function is recorded as SUMO polymer binding[15].
- Ring finger protein 111's molecular function is recorded as SMAD binding[16].
- Ring finger protein 111's molecular function is recorded as ubiquitin protein ligase activity[17].
- Ring finger protein 111's cell component is recorded as nucleoplasm[18].
- Ring finger protein 111's cell component is recorded as nucleus[19].
- Ring finger protein 111's cell component is recorded as cytoplasm[20].
- Ring finger protein 111's cell component is recorded as cytosol[21].
- Ring finger protein 111's cell component is recorded as PML body[22].
- Ring finger protein 111's cell component is recorded as protein-containing complex[23].
- Ring finger protein 111's biological process is recorded as positive regulation of transcription, DNA-templated[24].
- Ring finger protein 111's biological process is recorded as ubiquitin-dependent SMAD protein catabolic process[25].
- Ring finger protein 111's biological process is recorded as protein polyubiquitination[26].
- Ring finger protein 111's biological process is recorded as multicellular organism development[27].
Why It Matters
Ring finger protein 111 is known by 5 alternative names across languages and contexts.[2]