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AT2G36850.1
Subcellular Consensus
(Prediction and Experimental)
min: heatmap :max

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SUBAcon:
plasma membrane 1.000
ASURE: plasma membrane
What is SUBAcon?
Experimental Localisations and PPI
FP MS/MS PPI
  • PMID:31520498 (2020): mitochondrion
  • PMID:30447334 (2019): plasma membrane
  • PMID:28865150 (2017): extracellular region plant-type cell wall
  • PMID:26781341 (2016): plasma membrane
  • PMID:26748395 (2016): plasma membrane
  • 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
  • PMID:25900983 (2015): Golgi
  • PMID:25900983 (2015): Golgi trans-Golgi network early endosome
  • PMID:25641898 (2015): plasma membrane
  • PMID:24030099 (2013): plasma membrane
  • PMID:23990937 (2013): plasma membrane
  • PMID:23673981 (2013): plastid plastid stroma plastoglobules
  • PMID:22923678 (2012): plasma membrane
  • PMID:22550958 (2012): plastid
  • PMID:22430844 (2012): Golgi
  • PMID:22318864 (2012): plasma membrane
  • PMID:22215637 (2012): plasma membrane
  • PMID:21826108 (2012): Golgi trans-Golgi network multivesicular body
  • PMID:21533090 (2011): extracellular region plant-type cell wall
  • PMID:21433285 (2011): plasma membrane
  • PMID:19334764 (2009): plasma membrane
  • PMID:17644812 (2007): plasma membrane
  • PMID:17317660 (2007): plasma membrane
SUBAcon links
AGI-AGI relationships
Coexpression PPI
no PPI data
Description (TAIR10) protein_coding : glucan synthase-like 8
Curator
Summary (TAIR10)
Encodes GSL8, a member of the Glucan Synthase-Like (GSL) family believed to be involved in the synthesis of the cell wall component callose. GSL8 is required for male gametophyte development and plant growth. Has a role in entry of microspores into mitosis. Also refer to GSL10 (At3g07160).
Computational
Description (TAIR10)
glucan synthase-like 8 (GSL8); FUNCTIONS IN: transferase activity, transferring glycosyl groups, 1,3-beta-glucan synthase activity; INVOLVED IN: microsporogenesis, 1,3-beta-glucan biosynthetic process, pollen development, developmental growth; LOCATED IN: 1,3-beta-glucan synthase complex, plasma membrane; EXPRESSED IN: 26 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: Glycosyl transferase, family 48 (InterPro:IPR003440); BEST Arabidopsis thaliana protein match is: glucan synthase-like 10 (TAIR:AT3G07160.1); Has 1219 Blast hits to 893 proteins in 146 species: Archae - 0; Bacteria - 0; Metazoa - 0; Fungi - 675; Plants - 477; Viruses - 0; Other Eukaryotes - 67 (source: NCBI BLink).
Protein Annotations
BioCyc:ARA:AT2G36850-MONOMERCAZy:GT48EC:2.4.1.34eggNOG:ENOG410XQ8V
eggNOG:KOG0916EMBL:AC006922EMBL:AK229594EMBL:CP002685
EMBL:GQ373182EnsemblPlants:AT2G36850EnsemblPlants:AT2G36850.1entrez:818258
GeneID:818258Genevisible:Q9SJM0GO:GO:0000148GO:GO:0003843
GO:GO:0006075GO:GO:0008360GO:GO:0016021GO:GO:0071555
Gramene:AT2G36850.1hmmpanther:PTHR12741hmmpanther:PTHR12741:SF5HOGENOM:HOG000029513
InParanoid:Q9SJM0InterPro:IPR003440InterPro:IPR026899iPTMnet:Q9SJM0
KEGG:00500+2.4.1.34KEGG:ath:AT2G36850KO:K11000OMA:RIAFIHE
PaxDb:Q9SJM0Pfam:PF02364Pfam:PF14288Pfam:Q9SJM0
PIR:E84785PRIDE:Q9SJM0PRO:PR:Q9SJM0ProteinModelPortal:Q9SJM0
Proteomes:UP000006548RefSeq:NP_850271.5SMART:SM01205STRING:3702.AT2G36850.1
SwissPalm:Q9SJM0TAIR:AT2G36850tair10-symbols:ATGSL08tair10-symbols:ATGSL8
tair10-symbols:CHORtair10-symbols:GSL08tair10-symbols:GSL8TMHMM:TMhelix
UniGene:At.37496UniProt:Q9SJM0
Coordinates (TAIR10) chr2:-:15454935..15469666
Molecular Weight (calculated) 218390.00 Da
IEP (calculated) 8.26
GRAVY (calculated) -0.00
Length 1904 amino acids
Sequence (TAIR10)
(BLAST)
0001: MARVYSNWDR LVRATLRREQ LRNTGQGHER VSSGLAGAVP PSLGRATNID AILQAADEIQ SEDPSVARIL CEQAYSMAQN LDPNSDGRGV LQFKTGLMSV
0101: IKQKLAKRDG ASIDRDRDIE RLWEFYKLYK RRHRVDDIQK EEQKWRESGT TFSSNVGEIL KMRKVFATLR ALIEVLEVLS RDADPNGVGR SIRDELGRIK
0201: KADATLSAEL TPYNIVPLEA QSMTNAIGVF PEVRGAVQAI RYTEHFPRLP VDFEISGQRD ADMFDLLEYI FGFQRDNVRN QREHLVLTLS NAQSQLSIPG
0301: QNDPKIDENA VNEVFLKVLD NYIKWCKYLR IRVVYNKLEA IDRDRKLFLV SLYFLIWGEA ANVRFLPECI CYIFHNMAKE LDAKLDHGEA VRADSCLTGT
0401: DTGSVSFLER IICPIYETIS AETVRNNGGK AAHSEWRNYD DFNEYFWTPA CFELSWPMKT ESRFLSKPKG RKRTAKSSFV EHRTYLHLFR SFIRLWIFMF
0501: IMFQSLTIIA FRNEHLNIET FKILLSAGPT YAIMNFIECL LDVVLMYGAY SMARGMAISR LVIRFLWWGL GSAFVVYYYV KVLDERNKPN QNEFFFHLYI
0601: LVLGCYAAVR LIFGLLVKLP ACHALSEMSD QSFFQFFKWI YQERYFVGRG LFENLSDYCR YVAFWLVVLA SKFTFAYFLQ IKPLVKPTNT IIHLPPFQYS
0701: WHDIVSKSND HALTIVSLWA PVLAIYLMDI HIWYTLLSAI IGGVMGAKAR LGEIRTIEMV HKRFESFPEA FAQNLVSPVV KRVPLGQHAS QDGQDMNKAY
0801: AAMFSPFWNE IIKSLREEDY LSNREMDLLS IPSNTGSLRL VQWPLFLLCS KILVAIDLAM ECKETQEVLW RQICDDEYMA YAVQECYYSV EKILNSMVND
0901: EGRRWVERIF LEISNSIEQG SLAITLNLKK LQLVVSRFTA LTGLLIRNET PDLAKGAAKA MFDFYEVVTH DLLSHDLREQ LDTWNILARA RNEGRLFSRI
1001: AWPRDPEIIE QVKRLHLLLT VKDAAANVPK NLEARRRLEF FTNSLFMDMP QARPVAEMVP FSVFTPYYSE TVLYSSSELR SENEDGISIL FYLQKIFPDE
1101: WENFLERIGR SESTGDADLQ ASSTDALELR FWVSYRGQTL ARTVRGMMYY RRALMLQSFL ERRGLGVDDA SLTNMPRGFE SSIEARAQAD LKFTYVVSCQ
1201: IYGQQKQQKK PEATDIGLLL QRYEALRVAF IHSEDVGNGD GGSGGKKEFY SKLVKADIHG KDEEIYSIKL PGDPKLGEGK PENQNHAIVF TRGEAIQTID
1301: MNQDNYLEEA IKMRNLLEEF HGKHGIRRPT ILGVREHVFT GSVSSLAWFM SNQETSFVTL GQRVLAYPLK VRMHYGHPDV FDRIFHITRG GISKASRVIN
1401: ISEDIYAGFN STLRQGNITH HEYIQVGKGR DVGLNQIALF EGKVAGGNGE QVLSRDVYRI GQLFDFFRMM SFYFTTVGFY VCTMMTVLTV YVFLYGRVYL
1501: AFSGADRAIS RVAKLSGNTA LDAALNAQFL VQIGIFTAVP MVMGFILELG LLKAIFSFIT MQFQLCSVFF TFSLGTRTHY FGRTILHGGA KYRATGRGFV
1601: VQHIKFADNY RLYSRSHFVK AFEVALLLII YIAYGYTDGG ASSFVLLTIS SWFLVISWLF APYIFNPSGF EWQKTVEDFE DWVSWLMYKG GVGVKGELSW
1701: ESWWEEEQAH IQTLRGRILE TILSLRFFMF QYGIVYKLDL TRKNTSLALY GYSWVVLVVI VFLFKLFWYS PRKSSNILLA LRFLQGVASI TFIALIVVAI
1801: AMTDLSIPDM FACVLGFIPT GWALLSLAIT WKQVLRVLGL WETVREFGRI YDAAMGMLIF SPIALLSWFP FISTFQSRLL FNQAFSRGLE ISIILAGNRA
1901: NVET
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)