NT5C1B-RDH14 readthrough
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NT5C1B-RDH14 readthrough
Summary
NT5C1B-RDH14 readthrough is a protein[1]. It is known by 10 alternative names across languages and contexts.[2]
Key Facts
- NT5C1B-RDH14 readthrough's instance of is recorded as protein[3].
- NT5C1B-RDH14 readthrough is part of 5'-nucleotidase[4].
- NT5C1B-RDH14 readthrough's molecular function is recorded as hydrolase activity[5].
- NT5C1B-RDH14 readthrough's molecular function is recorded as nucleotide binding[6].
- NT5C1B-RDH14 readthrough's molecular function is recorded as magnesium ion binding[7].
- NT5C1B-RDH14 readthrough's molecular function is recorded as 5'-nucleotidase activity[8].
- NT5C1B-RDH14 readthrough's molecular function is recorded as 5'-nucleotidase activity[9].
- NT5C1B-RDH14 readthrough's cell component is recorded as nucleus[10].
- NT5C1B-RDH14 readthrough's cell component is recorded as cytoplasm[11].
- NT5C1B-RDH14 readthrough's cell component is recorded as cytosol[12].
- NT5C1B-RDH14 readthrough's cell component is recorded as nucleus[13].
- NT5C1B-RDH14 readthrough's cell component is recorded as cytosol[14].
- NT5C1B-RDH14 readthrough's biological process is recorded as purine nucleotide catabolic process[15].
- NT5C1B-RDH14 readthrough's biological process is recorded as nucleotide metabolic process[16].
- NT5C1B-RDH14 readthrough's biological process is recorded as dephosphorylation[17].
- NT5C1B-RDH14 readthrough's encoded by is recorded as NT5C1B[18].
- NT5C1B-RDH14 readthrough's encoded by is recorded as NT5C1B-RDH14[19].
- NT5C1B-RDH14 readthrough's found in taxon is recorded as Homo sapiens[20].
- NT5C1B-RDH14 readthrough's exact match is recorded as https://identifiers.org/uniprot:Q96P26[21].
- NT5C1B-RDH14 readthrough's exact match is recorded as http://purl.uniprot.org/uniprot/Q96P26[22].
- NT5C1B-RDH14 readthrough's exact match is recorded as https://www.ncbi.nlm.nih.gov/protein/Q96P26[23].
Why It Matters
NT5C1B-RDH14 readthrough is known by 10 alternative names across languages and contexts.[2]