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AT5G11390.1
Subcellular Consensus
(Prediction and Experimental)
min: heatmap :max

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SUBAcon:
nucleus 0.978
What is SUBAcon?
Experimental Localisations and PPI
FP MS/MS PPI
  • PMID:19617588 (2009): endoplasmic reticulum nuclear envelope
  • PMID:19617588 (2009): nucleus nuclear envelope
  • PMID:30961429 (2019): nucleus
  • PMID:28865150 (2017): extracellular region plant-type cell wall
  • PMID:25900983 (2015): Golgi trans-Golgi network early endosome
SUBAcon links
AGI-AGI relationships
Coexpression PPI
Description (TAIR10) protein_coding : WPP domain-interacting protein 1
Curator
Summary (TAIR10)
Encodes one of the WPP domain-interacting proteins (WIT1/AT5G11390, WIT2/AT1G68910) required for RanGAP nuclear envelope association in root tip cells. Ran GTPase plays essential roles in multiple cellular processes, including nucleocytoplasmic transport, spindle formation, and postmitotic nuclear envelope reassembly. The cytoplasmic Ran GTPase activating protein RanGAP is critical to establish a functional RanGTP/RanGDP gradient across the nuclear envelope and is associated with the outer surface of the nuclear envelope in metazoan and higher plant cells. Arabidopsis thaliana RanGAP association with the root tip nuclear envelope requires a family of likely plant-specific nucleoporins combining coiled-coil and transmembrane domains (CC-TMD) and WPP domain-interacting proteins (WIPs). WIT1 and WIT2 have been identified as a second family of CC-TMD proteins, structurally similar, yet clearly distinct from the WIP family, that is required for RanGAP nuclear envelop association in root tip cells.
Computational
Description (TAIR10)
WPP domain-interacting protein 1 (WIT1); BEST Arabidopsis thaliana protein match is: WPP domain-interacting protein 2 (TAIR:AT1G68910.1); Has 69833 Blast hits to 39390 proteins in 2372 species: Archae - 1132; Bacteria - 10633; Metazoa - 34082; Fungi - 6202; Plants - 3742; Viruses - 161; Other Eukaryotes - 13881 (source: NCBI BLink).
Protein Annotations
BioGrid:16288eggNOG:ENOG410IGZIeggNOG:ENOG410YFHBEMBL:AL360314
EMBL:AY136301EMBL:BT000394EMBL:CP002688EnsemblPlants:AT5G11390
EnsemblPlants:AT5G11390.1entrez:831010GeneID:831010Genevisible:Q8L7E5
GO:GO:0005635GO:GO:0016021GO:GO:0031965Gramene:AT5G11390.1
hmmpanther:PTHR35705hmmpanther:PTHR35705:SF1HOGENOM:HOG000084097InParanoid:Q8L7E5
IntAct:Q8L7E5iPTMnet:Q8L7E5KEGG:ath:AT5G11390ncoils:Coil
OMA:KCIILSEPaxDb:Q8L7E5Pfam:Q8L7E5PhylomeDB:Q8L7E5
PRIDE:Q8L7E5PRO:PR:Q8L7E5ProteinModelPortal:Q8L7E5Proteomes:UP000006548
RefSeq:NP_196700.2STRING:3702.AT5G11390.1SUPFAM:SSF57997TAIR:AT5G11390
tair10-symbols:WIT1TMHMM:TMhelixUniGene:At.27962UniProt:Q8L7E5
Coordinates (TAIR10) chr5:+:3633971..3636418
Molecular Weight (calculated) 79052.80 Da
IEP (calculated) 4.41
GRAVY (calculated) -0.62
Length 703 amino acids
Sequence (TAIR10)
(BLAST)
001: METETEHDRT VSVDDNDSLV PEPSSTKESF FEDLSLTGQV MNPQLSSAGE VLTKVELDFA FVSEKLVNLS LLTMQLGTRE NDFESFVSKK EEDEEEPSSN
101: VDDDDDSAEK ALEFDLLSSI LNSEVKELES LLGFLQNEIQ SARVMISPFQ HDGEAFLDLE GKLNDTEQSL GQLMEQVVEM KKQSSNFQRL SSGLDEQGSW
201: SGGQTSVSQN DGEFGDLSAK INMQTADQQR NVLRMLEKSL AKEMELEKKL SESRNTEREL EMKLYSSEQD VVYMEEVTED AFSRWLEADN AAEVFKGTSK
301: EMSGKLQILQ FNLSGSFKRE DNLKSKLVDS KERLEAKECA LHKLDSSNAR LADFLVAQTE GLKESLQEAE EKLILLNTEN STLSEKVSSL EEQLNEYGIQ
401: TEDADATSGA LITDLERINE ELKDKLAKTE ARAEETESKC KILEESKKEL QDELGNFRDK GFTIHKLASL EKHLRDSDLQ LEHAVAAVEA SKEKQNLLYS
501: TVSDMEDVIE DLKSKVLKAE NRADITEEKL IMVSESNAEV NEELKFFKGR LKEGEKYLQQ AEERKLRTAK DIGVHNKIMK KLVMQLAAER ERLHKQITNL
601: SRENCVLMVK LKKVGKTGYM ESGNGSEVSP KSDQNASSCH QGSRLQATFI SLTNPEEEET GSKSDIGSVR RLDVGALRFK HILVAILVIL ISSIAYVISQ
701: QNM
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)