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protein coding gene - rpn501 (SPAC1420.03) - 19S proteasome regulatory subunit Rpn501

Gene summary

Standard name
rpn501
Systematic ID
SPAC1420.03
Product
19S proteasome regulatory subunit Rpn501
Organism
Schizosaccharomyces pombe (fission yeast)
Synonyms
rpn5-a, rpn5
UniProt ID
P0CU17
ORFeome ID
21/21D01
Characterisation status
biological role published
Feature type
mRNA gene
Genomic location
chromosome I: 1266269..1267780 forward strand

Annotation

Disease association

MONDO:0054591 - Stankiewicz-Isidor syndrome

References:

GO biological process

GO:0043161 - proteasome-mediated ubiquitin-dependent protein catabolic process

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GO cellular component

GO:0005829 - cytosol

References:

GO:0005635 - nuclear envelope

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GO:0034399 - nuclear periphery

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GO:0005634 - nucleus

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GO:0000502 - proteasome complex

References:

GO:0008541 - proteasome regulatory particle, lid subcomplex

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GO molecular function

GO:0005515 - protein binding

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Genome organisation

PBO:0000875 - duplicated in S. pombe

Modification

MOD:00046 - O-phospho-L-serine

References:

MOD:01149 - sumoylated lysine

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MOD:01148 - ubiquitinylated lysine

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Qualitative gene expression

PomGeneEx:0000019 - protein level decreased

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Quantitative gene expression

PBO:0006310 - protein level

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PBO:0011963 - RNA level

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Single locus phenotype

FYPO:0006518 - loss of viability in G0

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Genotypes:

FYPO:0000245 - loss of viability in stationary phase

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Genotypes:

FYPO:0007553 - normal G1 to G0 transition

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Genotypes:

FYPO:0009031 - resistance to bleomycin

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Genotypes:

FYPO:0001453 - resistance to ethanol

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Genotypes:

FYPO:0009087 - resistance to magnesium chloride and sodium dodecyl sulfate

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Genotypes:

FYPO:0009043 - resistance to potassium chloride and sodium dodecyl sulfate

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Genotypes:

FYPO:0000096 - sensitive to cadmium

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Genotypes:

FYPO:0007931 - sensitive to egtazic acid

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Genotypes:

FYPO:0002060 - viable vegetative cell population

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Genotypes:

FYPO:0002177 - viable vegetative cell with normal cell morphology

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Genotypes:

Taxonomic conservation

PBO:0011065 - conserved in eukaryotes

PBO:0011071 - conserved in eukaryotes only

PBO:0011064 - conserved in fungi

PBO:0011069 - conserved in metazoa

PBO:0011070 - conserved in vertebrates

PBO:0006222 - predominantly single copy (one to one)

Warnings

PBO:0017576 - expression level is tightly controlled so that deletion of either copy is compensated

References:

Protein features

IDNameInterPro nameDB name
PF18098RPN5_CRPN5_CPFAM
PF01399PCIPCI_domPFAM
PF22241PSMD12-CSN4_NPSMD12-CSN4-like_NPFAM
PS50250PCIPCI_domPROSITE_PROFILES
SM00088PINTPCI_domSMART
G3DSA:1.10.10.10:FF:000070FUNFAM
SSF46785"Winged helix" DNA-binding domainWH_DNA-bd_sfSUPERFAMILY
G3DSA:1.10.10.10WH-like_DNA-bd_sfGENE3D
PTHR1085526S PROTEASOME NON-ATPASE REGULATORY SUBUNIT 12/COP9 SIGNALOSOME COMPLEX SUBUNIT 4PSMD12/CSN4PANTHER
CoilCoilCOILS

Orthologs

References / Literature

PB_REF:0000006 - Disease associations from Monarch via human-pombe orthologs
PMID:26537787 - Targeting of SUMO substrates to a Cdc48-Ufd1-Npl4 segregase and STUbL pathway in fission yeast.
Køhler JB et al. Nat Commun 2015 Nov 05;6:8827
PMID:37787768 - Broad functional profiling of fission yeast proteins using phenomics and machine learning.
Rodríguez-López M et al. Elife 2023 Oct 03;12
PMID:38285941 - Specialized replication of heterochromatin domains ensures self-templated chromatin assembly and epigenetic inheritance.
Nathanailidou P et al. Proc Natl Acad Sci U S A 2024 Feb 06;121(6):e2315596121
GO_REF:0000024 - Manual transfer of experimentally-verified manual GO annotation data to orthologs by curator judgment of sequence similarity.
PMID:35820914 - Antagonistic effects of mitochondrial matrix and intermembrane space proteases on yeast aging.
Vega M et al. BMC Biol 2022 Jul 12;20(1):160
PMID:20668161 - Proteasome nuclear import mediated by Arc3 can influence efficient DNA damage repair and mitosis in Schizosaccharomyces pombe.
Cabrera R et al. Mol Biol Cell 2010 Sep 15;21(18):3125-36
PMID:19139265 - The SH3 domains of two PCH family members cooperate in assembly of the Schizosaccharomyces pombe contractile ring.
Roberts-Galbraith RH et al. J Cell Biol 2009 Jan 12;184(1):113-27
PMID:37970674 - SUMOylation regulates Lem2 function in centromere clustering and silencing.
Strachan J et al. J Cell Sci 2023 Dec 01;136(23)
PMID:20473289 - Analysis of a genome-wide set of gene deletions in the fission yeast Schizosaccharomyces pombe.
Kim DU et al. Nat Biotechnol 2010 Jun;28(6):617-623
PMID:25720772 - Quantitative phosphoproteomics reveals pathways for coordination of cell growth and division by the conserved fission yeast kinase pom1.
Kettenbach AN et al. Mol Cell Proteomics 2015 May;14(5):1275-87
PMID:33260998 - High-Throughput Flow Cytometry Combined with Genetic Analysis Brings New Insights into the Understanding of Chromatin Regulation of Cellular Quiescence.
Zahedi Y et al. Int J Mol Sci 2020 Nov 27;21(23)
PMID:21511999 - Comparative functional genomics of the fission yeasts.
Rhind N et al. Science 2011 May 20;332(6032):930-6
PMID:12553909 - Schizosaccharomyces pombe Int6 and Ras homologs regulate cell division and mitotic fidelity via the proteasome.
Yen HC et al. Cell 2003 Jan 24;112(2):207-17
PMID:31064814 - Proximity-dependent biotinylation mediated by TurboID to identify protein-protein interaction networks in yeast.
Larochelle M et al. J Cell Sci 2019 May 31;132(11)
PMID:20231270 - Schizosaccharomyces pombe Dss1p is a DNA damage checkpoint protein that recruits Rad24p, Cdc25p, and Rae1p to DNA double-strand breaks.
Selvanathan SP et al. J Biol Chem 2010 May 07;285(19):14122-33
PMID:18257517 - Phosphoproteome analysis of fission yeast.
Wilson-Grady JT et al. J Proteome Res 2008 Mar;7(3):1088-97
PMID:20838651 - A global census of fission yeast deubiquitinating enzyme localization and interaction networks reveals distinct compartmentalization profiles and overlapping functions in endocytosis and polarity.
Kouranti I et al. PLoS Biol 2010 Sep 07;8(9)
PMID:16149916 - Fission yeast Dss1 associates with the proteasome and is required for efficient ubiquitin-dependent proteolysis.
Jossé L et al. Biochem J 2006 Jan 01;393(Pt 1):303-9
PMID:12783882 - Rpn5 is a conserved proteasome subunit and required for proper proteasome localization and assembly.
Yen HC et al. J Biol Chem 2003 Aug 15;278(33):30669-76
PMID:21652630 - Characterization of Mug33 reveals complementary roles for actin cable-dependent transport and exocyst regulators in fission yeast exocytosis.
Snaith HA et al. J Cell Sci 2011 Jul 01;124(Pt 13):2187-99
PMID:28784663 - The 19S proteasome is directly involved in the regulation of heterochromatin spreading in fission yeast.
Seo HD et al. J Biol Chem 2017 Oct 13;292(41):17144-17155
PMID:17761670 - Isolation of the Schizosaccharomyces pombe proteasome subunit Rpn7 and a structure-function study of the proteasome-COP9-initiation factor domain.
Sha Z et al. J Biol Chem 2007 Nov 02;282(44):32414-23
PMID:21098295 - Structure of the 26S proteasome from Schizosaccharomyces pombe at subnanometer resolution.
Bohn S et al. Proc Natl Acad Sci U S A 2010 Dec 07;107(49):20992-7
PMID:16823372 - ORFeome cloning and global analysis of protein localization in the fission yeast Schizosaccharomyces pombe.
Matsuyama A et al. Nat Biotechnol 2006 Jul;24(7):841-7
PMID:23101633 - Quantitative analysis of fission yeast transcriptomes and proteomes in proliferating and quiescent cells.
Marguerat S et al. Cell 2012 Oct 26;151(3):671-83
PMID:24763107 - Absolute proteome and phosphoproteome dynamics during the cell cycle of Schizosaccharomyces pombe (Fission Yeast).
Carpy A et al. Mol Cell Proteomics 2014 Aug;13(8):1925-36
PMID:39705284 - Proteomic and phosphoproteomic analyses reveal that TORC1 is reactivated by pheromone signaling during sexual reproduction in fission yeast.
Bérard M et al. PLoS Biol 2024 Dec 20;22(12):e3002963
PMID:23697806 - A genome-wide resource of cell cycle and cell shape genes of fission yeast.
Hayles J et al. Open Biol 2013 May 22;3(5):130053
PMID:20133687 - Synergistic roles of the proteasome and autophagy for mitochondrial maintenance and chronological lifespan in fission yeast.
Takeda K et al. Proc Natl Acad Sci U S A 2010 Feb 23;107(8):3540-5