Nup84p YDL116W
fungal protein found in Saccharomyces cerevisiae S288c
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Nup84p YDL116W
Summary
Nup84p YDL116W is a protein[1].
Key Facts
- Nup84p YDL116W's instance of is recorded as protein[2].
- Nup84p YDL116W's UniProt protein ID is recorded as P52891[3].
- Nup84p YDL116W's part of is recorded as Nuclear pore protein 84/107[4].
- Nup84p YDL116W's part of is recorded as membrane protein[5].
- Nup84p YDL116W's part of is recorded as nuclear pore complex, fungi[6].
- Nup84p YDL116W's RefSeq protein ID is recorded as NP_010167[7].
- Nup84p YDL116W's molecular function is recorded as protein binding[8].
- Nup84p YDL116W's molecular function is recorded as identical protein binding[9].
- Nup84p YDL116W's molecular function is recorded as structural constituent of nuclear pore[10].
- Nup84p YDL116W's molecular function is recorded as structural constituent of nuclear pore[11].
- Nup84p YDL116W's cell component is recorded as nuclear pore[12].
- Nup84p YDL116W's cell component is recorded as nuclear membrane[13].
- Nup84p YDL116W's cell component is recorded as membrane[14].
- Nup84p YDL116W's cell component is recorded as nucleus[15].
- Nup84p YDL116W's cell component is recorded as nuclear pore outer ring[16].
- Nup84p YDL116W's cell component is recorded as telomere[17].
- Nup84p YDL116W's cell component is recorded as nuclear pore outer ring[18].
- Nup84p YDL116W's biological process is recorded as silent mating-type cassette heterochromatin assembly[19].
- Nup84p YDL116W's biological process is recorded as protein import into nucleus[20].
- Nup84p YDL116W's biological process is recorded as positive regulation of transcription, DNA-templated[21].
- Nup84p YDL116W's biological process is recorded as mRNA export from nucleus[22].
- Nup84p YDL116W's biological process is recorded as positive regulation of transcription by RNA polymerase II[23].
- Nup84p YDL116W's biological process is recorded as double-strand break repair[24].
- Nup84p YDL116W's biological process is recorded as mRNA transport[25].
- Nup84p YDL116W's biological process is recorded as posttranscriptional tethering of RNA polymerase II gene DNA at nuclear periphery[26].