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AT3G13300.1
Subcellular Consensus
(Prediction and Experimental)
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SUBAcon:
cytosol 1.000
ASURE: cytosol
What is SUBAcon?
Experimental Localisations and PPI
FP MS/MS PPI
  • PMID:31818904 (2020): mitochondrion
  • PMID:31615849 (2019): plastid plastid thylakoid
  • PMID:31520498 (2020): mitochondrion
  • PMID:31023727 (2019): mitochondrion
  • PMID:30961429 (2019): nucleus
  • PMID:28865150 (2017): extracellular region plant-type cell wall
  • PMID:26572690 (2016): extracellular region plant-type cell wall
  • PMID:25900983 (2015): plant-type vacuole plant-type vacuole membrane
  • PMID:25900983 (2015): Golgi trans-Golgi network multivesicular body
  • PMID:25900983 (2015): Golgi trans-Golgi network early endosome
  • PMID:25900983 (2015): Golgi trans-Golgi network
  • PMID:25900983 (2015): Golgi Golgi apparatus Golgi membrane
  • PMID:25900983 (2015): Golgi
  • PMID:24134884 (2013): cytoskeleton microtubules
  • PMID:23673981 (2013): plastid plastid stroma plastoglobules
  • PMID:22550958 (2012): plastid
  • PMID:21433285 (2011): plasma membrane
  • PMID:21166475 (2011): cytosol
  • PMID:19334764 (2009): plasma membrane
  • PMID:18433157 (2008): nucleus
  • PMID:18433157 (2008): cytosol
SUBAcon links
AGI-AGI relationships
Coexpression PPI
Description (TAIR10) protein_coding : Transducin/WD40 repeat-like superfamily protein
Curator
Summary (TAIR10)
Encodes VCS (VARICOSE). Involved in mRNA decapping. VCS forms a mRNA decapping complex with DCP1 (At1g08370) and DCP2 (At5g13570). Unlike DCP2, VCS itself does not have mRNA decapping activity in vitro. DCP1, DCP2 and VCS colocalize in cytoplasmic loci, which are putative Arabidopsis mRNA processing bodies. Null mutants of DCP1, DCP2, and VCS accumulate capped mRNAs with a reduced degradation rate. These mutants also share a similar lethal phenotype at the seedling cotyledon stage, with disorganized veins, swollen root hairs, and altered epidermal cell morphology. VCS is also required for leaf development.
Computational
Description (TAIR10)
VARICOSE (VCS); FUNCTIONS IN: protein homodimerization activity, nucleotide binding; INVOLVED IN: mRNA catabolic process, deadenylation-independent decapping of nuclear-transcribed mRNA, leaf morphogenesis; LOCATED IN: cytosol, nucleus, cytoplasmic mRNA processing body; EXPRESSED IN: whole plant, guard cell, cultured cell; CONTAINS InterPro DOMAIN/s: WD40 repeat-like-containing domain (InterPro:IPR011046), WD40 repeat 2 (InterPro:IPR019782), WD40-repeat-containing domain (InterPro:IPR017986), WD40 repeat (InterPro:IPR001680), WD40/YVTN repeat-like-containing domain (InterPro:IPR015943), WD40 repeat, subgroup (InterPro:IPR019781); BEST Arabidopsis thaliana protein match is: varicose-related (TAIR:AT3G13290.1); Has 1013 Blast hits to 919 proteins in 280 species: Archae - 4; Bacteria - 227; Metazoa - 270; Fungi - 225; Plants - 138; Viruses - 6; Other Eukaryotes - 143 (source: NCBI BLink).
Protein Annotations
BioGrid:5864DIP:DIP-61422NeggNOG:ENOG410XP6VeggNOG:KOG1916
EMBL:AB024034EMBL:AK221240EMBL:AK230280EMBL:AY128341
EMBL:CP002686EnsemblPlants:AT3G13300EnsemblPlants:AT3G13300.1entrez:820530
Gene3D:2.130.10.10GeneID:820530Genevisible:Q9LTT8GO:GO:0000932
GO:GO:0005634GO:GO:0005829GO:GO:0006397GO:GO:0006402
GO:GO:0009791GO:GO:0009965GO:GO:0010071GO:GO:0010072
GO:GO:0031087GO:GO:0071365hmmpanther:PTHR15598hmmpanther:PTHR15598:SF7
HOGENOM:HOG000029311InParanoid:Q9LTT8IntAct:Q9LTT8InterPro:IPR001680
InterPro:IPR015943InterPro:IPR017986InterPro:IPR032401iPTMnet:Q9LTT8
KEGG:ath:AT3G13300KO:K12616MINT:MINT-8393473ncoils:Coil
OMA:NGEINDHPaxDb:Q9LTT8Pfam:PF16529Pfam:Q9LTT8
Pfscan:PS50082Pfscan:PS50294PhylomeDB:Q9LTT8PRIDE:Q9LTT8
PRO:PR:Q9LTT8ProMEX:Q9LTT8PROSITE:PS50082PROSITE:PS50294
ProteinModelPortal:Q9LTT8Proteomes:UP000006548Reactome:R-ATH-430039RefSeq:NP_187938.2
RefSeq:NP_850576.1SMART:SM00320SMR:Q9LTT8STRING:3702.AT3G13300.1
SUPFAM:SSF50978TAIR:AT3G13300tair10-symbols:VCSUniGene:At.8098
UniProt:Q9LTT8
Coordinates (TAIR10) chr3:+:4304085..4309949
Molecular Weight (calculated) 145729.00 Da
IEP (calculated) 6.01
GRAVY (calculated) -0.36
Length 1344 amino acids
Sequence (TAIR10)
(BLAST)
0001: MASSPGNTNP HNTPPFDLGI LFKPSSNPYP PPAASYPPPT GPFLHNQYDQ QHYAPPGISA QPSPVTQQQQ DVSSSSAATN LHPQRTLSYP TPPLNLQSPR
0101: SNHNPGTHIL ALLNNTNNGA PVANQEPSHQ LPVVNHNEIA RSFPGGSGPI RVPSCKLPKG RRLIGEHAVY DVDVRLQGEI QPQLEVTPIT KYGSDPQLVV
0201: GRQIAVNKVY ICYGLKGGNI RVLNINTALR SLFRGHSQRV TDMAFFAEDV DMLASVSLDG KVFVWKISEG SEGEDQPQIT GKIVLALQIL GEEDTKHPRV
0301: CWHCHKQEIL VVSIGKHVLR IDTTKVGRGE VFSAEAPLQC PLDKLIDGVQ IVGKHDGEVT DLSMCQWMTT RLVSSSVDGT IKIWQDRKAQ PLVVLRPHDG
0401: HPVSSATFVT SPERPDHIIL ITGGPLNREM KIWVSAGEEG WLLPADAESW RCTQTLDLKS STEPRAEEAF FNQVIALSEA GLLLLANAKR NALYAVHLDY
0501: GSSPVGTRMD YLSEFTVTMP ILSFIGTNDP PEEPIVKVYC VQTLAIQQYT LDLCLCLPPP IENMGLEKSD SSVSREANLV EGMSEPSGLK PTDLPSVDSV
0601: PKPSIIVNRS ESANKLSFPS AEATSQAIVP PNGEPKTSGL PSQTSGAGSA YATLPQLPLS PRLSSKLSGY HTPVEAIEPV IPHHELGGKT PSADYSVDRQ
0701: MDAVGERNLD VSSVEEISRS KDSNVTPDDD VSGMRSPSAF FKHPTHLVTP SEILMGVSSA EASITTEDRR DRDANIQDVN NDPRDTEVEV KEISEARSTQ
0801: NGEINDHDET ENCTSENREK VFCSQVSNLS TEMARDCYPS TEGTFIPGES KAYGQPIKAG DESGVDSRGG PAKLLKGKKQ KAKNSQGPGL SSTSSNVANL
0901: ADSFNEQSQS LSHPMTDLLP QLLAMQETMN QVMASQKEMQ RQLSNAATGP IGKESKRLEV ALGRMIEKSS KSNADALWAR IQEETVKNEK ALRDHAQQIV
1001: NATTNFMSKE LNAMFEKTIK KELAAIGPAL ARSVVPVIEK TVSSAITESF QRGIGDKAVN QLDKSVNIKL EATVARQIQA QFQTSGKQAL QEGLRSSVES
1101: SVIPSFEKAC KAMFDQIDSA FQKGIAEHTN AAQQRFDSGH SQLAHTLKES ITSASSVAQA LSRELAETQR NLLALAAAGA NSGGSNSLVT QLSGGPLGAL
1201: LEKVEAPMDP TTELSRLISE RKYEESFTSA LQRSDVSIVS WLCSQVDLRG LLAMNPLPLS QGVLLSLLQQ LACDISKDTS RKLAWMTDVV AAINPSDQMI
1301: AVHARPIFEQ VYQILHHHRN APGSDVSAIR LIMHVINSML MGCK
See Also
Citation
If you find this resource useful please cite one of the following publications:

Hooper CM, Castleden I, Tanz SK, Aryamanesh, and Millar, AH (2017) SUBA4: the interactive data analysis centre for Arabidopsis subcellular protein locations Nucleic Acids Res. Jan 4;45(D1):D1064-D1074. doi: 10.1093/nar/gkw1041 (PubMed)

Hooper CM, Tanz SK, Castleden IR, Vacher MA, Small ID, Millar AH (2014) "SUBAcon: a consensus algorithm for unifying the subcellular localization data of the Arabidopsis proteome. Bioinformatics." 1;30(23):3356-64. (Bioinformatics) (PubMed)