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protein coding gene - atg22 (SPAC2G11.13) - vacuolar amino acid transmembrane transporter Atg22

Gene summary

Standard name
atg22
Systematic ID
SPAC2G11.13
Product
vacuolar amino acid transmembrane transporter Atg22
Organism
Schizosaccharomyces pombe (fission yeast)
UniProt ID
Q09812
ORFeome ID
25/25F02
Characterisation status
biological role published
Feature type
mRNA gene
Genomic location
chromosome I: 836276..838256 forward strand

Annotation

GO biological process

GO:0032974 - amino acid transmembrane export from vacuole

References:

GO:1902475 - L-alpha-amino acid transmembrane transport

References:

GO cellular component

GO:0000329 - fungal-type vacuole membrane

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GO molecular function

GO:0034639 - L-amino acid efflux transmembrane transporter activity

References:

GO:0015179 - L-amino acid transmembrane transporter activity

References:

Modification

MOD:00006 - N-glycosylated residue

References:

MOD:00046 - O-phospho-L-serine

References:

Multi-locus phenotype

FYPO:0001355 - decreased vegetative cell population growth

References:

Genotypes:

Protein sequence feature

SO:0001812 - transmembrane_helix

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Qualitative gene expression

PomGeneEx:0000018 - protein level increased

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PomGeneEx:0000011 - RNA level increased

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Quantitative gene expression

PBO:0006310 - protein level

References:

PBO:0011963 - RNA level

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Single locus phenotype

FYPO:0001621 - decreased cellular arginine level

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Genotypes:

FYPO:0001613 - decreased cellular aspartate level

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Genotypes:

FYPO:0001563 - decreased cellular glutamate level

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Genotypes:

FYPO:0001562 - decreased cellular histidine level

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Genotypes:

FYPO:0001617 - decreased cellular isoleucine level

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Genotypes:

FYPO:0001619 - decreased cellular lysine level

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Genotypes:

FYPO:0001564 - decreased cellular ornithine level

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Genotypes:

FYPO:0001560 - decreased cellular threonine level

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Genotypes:

FYPO:0001616 - decreased cellular valine level

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Genotypes:

FYPO:0000708 - decreased mating efficiency

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Genotypes:

FYPO:0000584 - decreased sporulation frequency

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Genotypes:

FYPO:0001612 - decreased vacuolar arginine level

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Genotypes:

FYPO:0001607 - decreased vacuolar aspartate level

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Genotypes:

FYPO:0001608 - decreased vacuolar glutamate level

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Genotypes:

FYPO:0001611 - decreased vacuolar histidine level

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Genotypes:

FYPO:0001610 - decreased vacuolar lysine level

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Genotypes:

FYPO:0001609 - decreased vacuolar ornithine level

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Genotypes:

FYPO:0005261 - increased cell population growth on galactose carbon source

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Genotypes:

FYPO:0009094 - increased cell population growth on lysine and proline nitrogen source

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Genotypes:

FYPO:0009072 - increased cell population growth on lysine nitrogen source

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Genotypes:

FYPO:0004295 - multiseptate cell

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Genotypes:

FYPO:0001638 - normal cellular alanine level

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Genotypes:

FYPO:0001636 - normal cellular glutamine level

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Genotypes:

FYPO:0001637 - normal cellular glycine level

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Genotypes:

FYPO:0001640 - normal cellular leucine level

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Genotypes:

FYPO:0001639 - normal cellular methionine level

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Genotypes:

FYPO:0001642 - normal cellular phenylalanine level

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Genotypes:

FYPO:0001635 - normal cellular serine level

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Genotypes:

FYPO:0001643 - normal cellular tryptophan level

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Genotypes:

FYPO:0001641 - normal cellular tyrosine level

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Genotypes:

FYPO:0001627 - normal vacuolar alanine level

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Genotypes:

FYPO:0001624 - normal vacuolar asparagine level

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Genotypes:

FYPO:0001625 - normal vacuolar glutamine level

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Genotypes:

FYPO:0001626 - normal vacuolar glycine level

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Genotypes:

FYPO:0001630 - normal vacuolar isoleucine level

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Genotypes:

FYPO:0001631 - normal vacuolar leucine level

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Genotypes:

FYPO:0001629 - normal vacuolar methionine level

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Genotypes:

FYPO:0001633 - normal vacuolar phenylalanine level

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Genotypes:

FYPO:0001623 - normal vacuolar serine level

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Genotypes:

FYPO:0001622 - normal vacuolar threonine level

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Genotypes:

FYPO:0001634 - normal vacuolar tryptophan level

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Genotypes:

FYPO:0001632 - normal vacuolar tyrosine level

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Genotypes:

FYPO:0001628 - normal vacuolar valine level

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Genotypes:

FYPO:0009031 - resistance to bleomycin

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Genotypes:

FYPO:0009038 - resistance to egtazic acid

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Genotypes:

FYPO:0009035 - resistance to formamide

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Genotypes:

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

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Genotypes:

FYPO:0009039 - resistance to potassium chloride

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Genotypes:

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

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Genotypes:

FYPO:0000830 - resistance to vanadate

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Genotypes:

FYPO:0000085 - sensitive to camptothecin

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Genotypes:

FYPO:0000799 - sensitive to diamide

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Genotypes:

FYPO:0000089 - sensitive to methyl methanesulfonate

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Genotypes:

FYPO:0009082 - sensitive to potassium chloride and methyl methanesulfonate

References:

Genotypes:

FYPO:0002060 - viable vegetative cell population

References:

Genotypes:

FYPO:0002177 - viable vegetative cell with normal cell morphology

References:

Genotypes:

Taxonomic conservation

PBO:0011065 - conserved in eukaryotes

PBO:0011064 - conserved in fungi

Protein features

IDNameInterPro nameDB name
PF11700ATG22Atg22-likePfam
cd17483MFS_Atg22_likeAtg22CDD
SSF103473MFS_trans_sfSUPERFAMILY
PTHR23519ATG22/LtaA-likePANTHER
Transmembrane alpha helixDeepTMHMM

Orthologs

References / Literature

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:30726745 - Fission Yeast NDR/LATS Kinase Orb6 Regulates Exocytosis via Phosphorylation of the Exocyst Complex.
Tay YD et al. Cell Rep 2019 Feb 05;26(6):1654-1667.e7
PMID:31626996 - Multiplexed proteome profiling of carbon source perturbations in two yeast species with SL-SP3-TMT.
Paulo JA et al. J Proteomics 2020 Jan 06;210:103531
PMID:39367033 - Quantitative proteomics and phosphoproteomics profiling of meiotic divisions in the fission yeast Schizosaccharomyces pombe.
Sivakova B et al. Sci Rep 2024 Oct 04;14(1):23105
PMID:20537132 - Global fitness profiling of fission yeast deletion strains by barcode sequencing.
Han TX et al. Genome Biol 2010;11(6):R60
PMID:27984744 - Survival in Quiescence Requires the Euchromatic Deployment of Clr4/SUV39H by Argonaute-Associated Small RNAs.
Joh RI et al. Mol Cell 2016 Dec 15;64(6):1088-1101
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:29432178 - General amino acid control in fission yeast is regulated by a nonconserved transcription factor, with functions analogous to Gcn4/Atf4.
Duncan CDS et al. Proc Natl Acad Sci U S A 2018 Feb 20;115(8):E1829-E1838
PMID:29996109 - Quantitative Phosphoproteomics Reveals the Signaling Dynamics of Cell-Cycle Kinases in the Fission Yeast Schizosaccharomyces pombe.
Swaffer MP et al. Cell Rep 2018 Jul 10;24(2):503-514
PMID:33823663 - A TOR (target of rapamycin) and nutritional phosphoproteome of fission yeast reveals novel targets in networks conserved in humans.
Halova L et al. Open Biol 2021 Apr;11(4):200405
PMID:33313903 - Ribosome profiling reveals ribosome stalling on tryptophan codons and ribosome queuing upon oxidative stress in fission yeast.
Rubio A et al. Nucleic Acids Res 2021 Jan 11;49(1):383-399
PMID:36408920 - UniProt: the Universal Protein Knowledgebase in 2023.
UniProt Consortium Nucleic Acids Res 2023 Jan 06;51(D1):D523-D531
PMID:21511999 - Comparative functional genomics of the fission yeasts.
Rhind N et al. Science 2011 May 20;332(6032):930-6
PMID:19778961 - Autophagy-deficient Schizosaccharomyces pombe mutants undergo partial sporulation during nitrogen starvation.
Mukaiyama H et al. Microbiology (Reading) 2009 Dec;155(Pt 12):3816-3826
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:28410370 - A systematic screen for morphological abnormalities during fission yeast sexual reproduction identifies a mechanism of actin aster formation for cell fusion.
Dudin O et al. PLoS Genet 2017 Apr;13(4):e1006721
GO_REF:0000033 - Annotation inferences using phylogenetic trees
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:21712547 - Mitotic substrates of the kinase aurora with roles in chromatin regulation identified through quantitative phosphoproteomics of fission yeast.
Koch A et al. Sci Signal 2011 Jun 28;4(179):rs6
PMID:25375137 - Systematic analysis of the role of RNA-binding proteins in the regulation of RNA stability.
Hasan A et al. PLoS Genet 2014 Nov;10(11):e1004684
PMID:25795664 - Genetic Interaction Landscape Reveals Critical Requirements for Schizosaccharomyces pombe Brc1 in DNA Damage Response Mutants.
Sánchez A et al. G3 (Bethesda) 2015 Mar 19;5(5):953-62
PMID:36793083 - The SAGA histone acetyltransferase module targets SMC5/6 to specific genes.
Mahrik L et al. Epigenetics Chromatin 2023 Feb 16;16(1):6
PMID:12161753 - The transcriptional program of meiosis and sporulation in fission yeast.
Mata J et al. Nat Genet 2002 Sep;32(1):143-7
PMID:11152613 - Predicting transmembrane protein topology with a hidden Markov model: application to complete genomes.
Krogh A et al. J Mol Biol 2001 Jan 19;305(3):567-80
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:22681890 - Hierarchical modularity and the evolution of genetic interactomes across species.
Ryan CJ et al. Mol Cell 2012 Jun 08;46(5):691-704
GO_REF:0000024 - Manual transfer of experimentally-verified manual GO annotation data to orthologs by curator judgment of sequence similarity.
PMID:21307582 - Atg22p, a vacuolar membrane protein involved in the amino acid compartmentalization of Schizosaccharomyces pombe.
Sugimoto N et al. Biosci Biotechnol Biochem 2011;75(2):385-7
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: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