Subcellular Localization
min:
: max
Winner_takes_all: plasma membrane
Predictor Summary:
Predictor Summary:
- plastid 1
- golgi 3
- extracellular 2
- endoplasmic reticulum 2
- vacuole 2
- plasma membrane 4
Predictors | GFP | MS/MS | Papers | ||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
HORVU7Hr1G030540.15 | Barley | vacuole | 91.97 | 91.84 |
EER89345 | Sorghum | plasma membrane | 79.2 | 78.77 |
Zm00001d045097_P001 | Maize | plasma membrane | 77.9 | 77.53 |
KRH23646 | Soybean | plasma membrane | 57.72 | 57.29 |
CDY01519 | Canola | plasma membrane | 55.66 | 56.67 |
AT2G07680.3 | Thale cress | plasma membrane | 55.18 | 56.38 |
Bra012617.1-P | Field mustard | plasma membrane | 54.22 | 55.24 |
Solyc03g117540.2.1 | Tomato | extracellular | 55.73 | 54.83 |
VIT_09s0018g00310.t01 | Wine grape | plasma membrane | 50.38 | 53.77 |
TraesCS1B01G321200.1 | Wheat | peroxisome | 25.6 | 29.05 |
TraesCS2B01G442400.1 | Wheat | plasma membrane | 24.85 | 28.68 |
TraesCS4B01G343800.2 | Wheat | plasma membrane | 29.44 | 28.5 |
TraesCS2B01G529000.2 | Wheat | plasma membrane | 25.19 | 28.36 |
TraesCS5B01G479900.1 | Wheat | golgi | 28.89 | 27.94 |
TraesCS2B01G473000.1 | Wheat | endoplasmic reticulum | 28.07 | 27.28 |
TraesCS3B01G395000.2 | Wheat | plasma membrane | 27.39 | 27.18 |
TraesCS4B01G253200.1 | Wheat | plasma membrane | 27.52 | 27.06 |
TraesCS3B01G148100.2 | Wheat | plasma membrane, plastid | 27.52 | 26.73 |
TraesCS2B01G069000.2 | Wheat | plastid | 28.07 | 26.71 |
TraesCS2B01G150600.1 | Wheat | plasma membrane | 27.45 | 26.65 |
TraesCS3B01G425500.1 | Wheat | cytosol, peroxisome, plasma membrane | 26.63 | 26.52 |
TraesCS7B01G269700.1 | Wheat | cytosol, golgi, plasma membrane | 26.77 | 26.48 |
TraesCS7B01G016500.1 | Wheat | plasma membrane | 26.49 | 26.06 |
TraesCS2B01G472800.1 | Wheat | cytosol, peroxisome, plasma membrane | 28.89 | 25.35 |
Protein Annotations
Gene3D:1.20.1560.10 | MapMan:24.1.3.1.2 | Gene3D:3.40.50.300 | InterPro:AAA+_ATPase | InterPro:ABC1_TM_dom | InterPro:ABC1_TM_sf |
InterPro:ABC_transporter-like | InterPro:ABC_transporter_CS | GO:GO:0000166 | GO:GO:0003674 | GO:GO:0003824 | GO:GO:0005215 |
GO:GO:0005488 | GO:GO:0005524 | GO:GO:0005575 | GO:GO:0006810 | GO:GO:0008150 | GO:GO:0016020 |
GO:GO:0016021 | GO:GO:0016787 | GO:GO:0016887 | GO:GO:0042626 | GO:GO:0055085 | InterPro:IPR003439 |
InterPro:IPR011527 | InterPro:IPR036640 | InterPro:P-loop_NTPase | PFAM:PF00005 | PFAM:PF00664 | ScanProsite:PS00211 |
PFscan:PS50893 | PFscan:PS50929 | PANTHER:PTHR24223 | PANTHER:PTHR24223:SF330 | SMART:SM00382 | SUPFAM:SSF52540 |
SUPFAM:SSF90123 | TMHMM:TMhelix | EnsemblPlantsGene:TraesCS7B01G052900 | EnsemblPlants:TraesCS7B01G052900.1 | TIGR:cd03244 | TIGR:cd03250 |
SEG:seg | : | : | : | : | : |
Description
No Description!
Coordinates
chr7B:+:55840714..55853033
Molecular Weight (calculated)
162682.0 Da
IEP (calculated)
7.172
GRAVY (calculated)
0.212
Length
1457 amino acids
Sequence
(BLAST)
(BLAST)
0001: MNFLCPGDPT VWHGRRFAPC FADLVLGLGG NVVATVAVLA LFIAKRNESR AENVRRRLPE KLFVFGIPSF AACLSLLGLI VLVKKKIEGI DVPNHESFFR
0101: CSQFLAWVAV LISANGPWSE ILSNPIICIC WMLKILLEIP HLQYKLTEMK AMAYVMEIVS FSTSITFGLF LIVITAVRKL CNKREVNSIE APLILNNENS
0201: EAENANLVNK QHNVWELLTF KSVNPMMDIG IRRQLDFTDL LELPTELRTA SCYDKLLSSW TAEHQKYHAD SSLLRAMFYA YGWSYLRLGI LKVVNDSISF
0301: VSPLLLNKFI KLIQEGSVGM DGYIIAISLG LTSIIKSFLD TQYSFRLAKL KLMLRSSMMG IVYRKCLCLS LSERSRFSEG EIQTFMSVDV DRTVNICNNL
0401: HDAWSFPLQI GLALYLLYTQ VNYAFLSGLA ITIILIPVNK WISTRIATAT QKMMKQKDER ISCAGELLAH IRTVKMYSWD KLFTQRLNKR RELEVKHLAT
0501: RKYLDAWCVY FWATTPTLFS LFTFSIFAIM GHSLDAATVF TCVALFNTLI SPLNSLPWVI NGMIDSFISS RRLHNYLSTP EHCSSELTIS SDVVKDDSNR
0601: HTETIYDPTA VIIRNLCCSW SSISTVEPQI ILRDISLQLQ NGLFIAIVGE VGSGKSSLLN SIIGEMSVIS GSINSCGSVA YVPQVPWILS GSLRDNILLG
0701: KGFDTRRYEE VIQACTLDVD ISTMIGGDMS HIGEKGLNLS GGQRARLALA RALYHDSGVY LFDDILSAVD SQVASWILEK AIMGPQMKRK TRLLSTHNLQ
0801: AIYAADMIVV MANGFVKWFG TLDSFLATPY SKISNPDSSS AVSATSSQKN KGPSTFEFNT KDVLDNGSVV DQEEQRDQTE AEGRKEGMVE IIVYKKYATL
0901: AGWSMVFLIF VTAFLMQASR NGNDLWLTYW VDSSSGTNNT RFYLTILAGF GIINSFFTLG RAFSFAYGGL CAAIQIHADL LGSLIGAPVS FFDQNPSGRI
1001: LNRLSSDLYT VDDSLPFILN IFVANFFGLL GTLVVLCYSQ VMFLLILVPL WLIYSKVQFY YRSTSREVRR LDSVARSPIY SSFTETLDGS STIRAFQKED
1101: FFLERFIQQL TLYQKTSYSE LTASLWLSLR LQLLAGLIIL FIAVISVVGF HSNSPVKFGT PGLVGLALSY AAPVVSLLNS FLTTFTETEK EMISVERVVE
1201: YVDIPQEELQ GSESPDRSWP TEGKIEFEHV TLRYKADLPP ALDEISFHIE SGMQVGIIGR TGAGKSSILN ALFRLTPICN GRILVDGFDV AKVAVRDLRA
1301: HFAVVPQSPF LFDGSLRENL DPFGITTDIR IWEALEKCHM KAEIESIGGL NIHVKESGGS FSVGQRQLLC LARAILKSSK VLCLDECTAN VDNQTAFLLQ
1401: NTISAECKGM TVLTIAHRIS TVMKMDNILV LDQGKLVEEG NPEVLMNDNR SRFSRFA
0101: CSQFLAWVAV LISANGPWSE ILSNPIICIC WMLKILLEIP HLQYKLTEMK AMAYVMEIVS FSTSITFGLF LIVITAVRKL CNKREVNSIE APLILNNENS
0201: EAENANLVNK QHNVWELLTF KSVNPMMDIG IRRQLDFTDL LELPTELRTA SCYDKLLSSW TAEHQKYHAD SSLLRAMFYA YGWSYLRLGI LKVVNDSISF
0301: VSPLLLNKFI KLIQEGSVGM DGYIIAISLG LTSIIKSFLD TQYSFRLAKL KLMLRSSMMG IVYRKCLCLS LSERSRFSEG EIQTFMSVDV DRTVNICNNL
0401: HDAWSFPLQI GLALYLLYTQ VNYAFLSGLA ITIILIPVNK WISTRIATAT QKMMKQKDER ISCAGELLAH IRTVKMYSWD KLFTQRLNKR RELEVKHLAT
0501: RKYLDAWCVY FWATTPTLFS LFTFSIFAIM GHSLDAATVF TCVALFNTLI SPLNSLPWVI NGMIDSFISS RRLHNYLSTP EHCSSELTIS SDVVKDDSNR
0601: HTETIYDPTA VIIRNLCCSW SSISTVEPQI ILRDISLQLQ NGLFIAIVGE VGSGKSSLLN SIIGEMSVIS GSINSCGSVA YVPQVPWILS GSLRDNILLG
0701: KGFDTRRYEE VIQACTLDVD ISTMIGGDMS HIGEKGLNLS GGQRARLALA RALYHDSGVY LFDDILSAVD SQVASWILEK AIMGPQMKRK TRLLSTHNLQ
0801: AIYAADMIVV MANGFVKWFG TLDSFLATPY SKISNPDSSS AVSATSSQKN KGPSTFEFNT KDVLDNGSVV DQEEQRDQTE AEGRKEGMVE IIVYKKYATL
0901: AGWSMVFLIF VTAFLMQASR NGNDLWLTYW VDSSSGTNNT RFYLTILAGF GIINSFFTLG RAFSFAYGGL CAAIQIHADL LGSLIGAPVS FFDQNPSGRI
1001: LNRLSSDLYT VDDSLPFILN IFVANFFGLL GTLVVLCYSQ VMFLLILVPL WLIYSKVQFY YRSTSREVRR LDSVARSPIY SSFTETLDGS STIRAFQKED
1101: FFLERFIQQL TLYQKTSYSE LTASLWLSLR LQLLAGLIIL FIAVISVVGF HSNSPVKFGT PGLVGLALSY AAPVVSLLNS FLTTFTETEK EMISVERVVE
1201: YVDIPQEELQ GSESPDRSWP TEGKIEFEHV TLRYKADLPP ALDEISFHIE SGMQVGIIGR TGAGKSSILN ALFRLTPICN GRILVDGFDV AKVAVRDLRA
1301: HFAVVPQSPF LFDGSLRENL DPFGITTDIR IWEALEKCHM KAEIESIGGL NIHVKESGGS FSVGQRQLLC LARAILKSSK VLCLDECTAN VDNQTAFLLQ
1401: NTISAECKGM TVLTIAHRIS TVMKMDNILV LDQGKLVEEG NPEVLMNDNR SRFSRFA
0001: MAITLTNFTF LYMDANLKRL GDIVLGFGAN VVTLLLILIL TITRRNGRCN RRKSYIEKCL LYVTPALGAC LSCVDLVLLV RTNRRREVIL CFVPLSGFVM
0101: WIAVILSLKF ACCACHVFTS QILCFWWIFR FLTDALHLNM IFTLQEICLI MLDIAFGISI NVLRIKQAHP KIIPLEDPLI EDDDDQKRIE KNGSWWDLFT
0201: FGYIGSIMKH GSVKQLELEN LLTLPPEMDP FTCCENLLRC WQLQECNNYS TPSLIWSIYG VYGWPYFRLG LLKVFNDCIG FAGPLLLNRL IKYLEKGSGS
0301: SVGYTLAISL GFISIFKSFL DTQYTFRLSK LKLKLRSSIM SVIYRKCLWV NTANRSGFSE GEIQTFMSVD ADRIVNLCNS LHDLWSLPLQ IGIALYLLYT
0401: QVKFAFLSGL AITILLIPVN KWISVLIASA TEKMMKLKDE RIRKTGELLT NIRTLKMYGW DNWFADWLKE TRATEVTHLA TRKYLDAWCV FFWATTPTLF
0501: SLCTFGLFAL MGHQLDAATV FTCLALFNSL ISPLNSFPWV INGLIDAFIS TRRVSKFLCC LEHSRDFSID SGFTSEDLAV CVEDASCTWS SNVEEDYNLT
0601: IKQVSLRVPK GSFVAVIGEV GSGKTSLLNS LLGEMRCVHG SILLNGSVAY VPQVPWLLSG TVRENILFGK PFDSKRYFET LSACALDVDI SLMVGGDMAC
0701: IGDKGLNLSG GQRARFALAR AVYHGSDMYL LDDVLSAVDS QVGCWILQRA LLGPLLNKKT RVMCTHNIQA ISCADMIVVM DKGKVNWSGS VTDMPKSISP
0801: TFSLTNEFDM SSPNHLTKRK ETLSIKEDGV DEISEAAADI VKLEERKEGR VEMMVYRNYA VFSGWFITIV ILVSAVLMQG SRNGNDLWLS YWVDKTGKGV
0901: SHYSTSFYLM VLCIFCIINS ILTLVRAFSF AFGGLKAAVH VHNALISKLI NAPTQFFDQT PSGRILNRFS SDLYTIDDSL PFILNILLAN FVGLLGIIVV
1001: LSYVQVLFLL LLLPFWYIYS KLQVFYRSTS RELRRLDSVS RSPIYASFTE TLDGSSTIRA FKSEEHFVGR FIEHLTLYQR TSYSEIIASL WLSLRLQLLG
1101: SMIVLFVAVM AVLGSGGNFP ISFGTPGLVG LALSYAAPLV SLLGSLLTSF TETEKEMVSV ERVLQYMDVP QEEVSGPQSL SDKWPVHGLV EFHNVTMRYI
1201: STLPPALTQI SFTIQGGMHV GVIGRTGAGK SSILNALFRL TPVCSGEILV DGKNISHLPI RELRSCLAVV PQSPFLFQGS LRDNLDPLGL SEDWRIWEIL
1301: DKCKVKAAVE SVGGLDSYVK ESGCSFSVGQ RQLLCLARAL LKSSKILCLD ECTANIDVHT ASLLHNTISS ECKGVTVITI AHRISTVVDL DSILILDRGI
1401: LVEQGKPQHL LQDDSSTFSS FVRASQ
0101: WIAVILSLKF ACCACHVFTS QILCFWWIFR FLTDALHLNM IFTLQEICLI MLDIAFGISI NVLRIKQAHP KIIPLEDPLI EDDDDQKRIE KNGSWWDLFT
0201: FGYIGSIMKH GSVKQLELEN LLTLPPEMDP FTCCENLLRC WQLQECNNYS TPSLIWSIYG VYGWPYFRLG LLKVFNDCIG FAGPLLLNRL IKYLEKGSGS
0301: SVGYTLAISL GFISIFKSFL DTQYTFRLSK LKLKLRSSIM SVIYRKCLWV NTANRSGFSE GEIQTFMSVD ADRIVNLCNS LHDLWSLPLQ IGIALYLLYT
0401: QVKFAFLSGL AITILLIPVN KWISVLIASA TEKMMKLKDE RIRKTGELLT NIRTLKMYGW DNWFADWLKE TRATEVTHLA TRKYLDAWCV FFWATTPTLF
0501: SLCTFGLFAL MGHQLDAATV FTCLALFNSL ISPLNSFPWV INGLIDAFIS TRRVSKFLCC LEHSRDFSID SGFTSEDLAV CVEDASCTWS SNVEEDYNLT
0601: IKQVSLRVPK GSFVAVIGEV GSGKTSLLNS LLGEMRCVHG SILLNGSVAY VPQVPWLLSG TVRENILFGK PFDSKRYFET LSACALDVDI SLMVGGDMAC
0701: IGDKGLNLSG GQRARFALAR AVYHGSDMYL LDDVLSAVDS QVGCWILQRA LLGPLLNKKT RVMCTHNIQA ISCADMIVVM DKGKVNWSGS VTDMPKSISP
0801: TFSLTNEFDM SSPNHLTKRK ETLSIKEDGV DEISEAAADI VKLEERKEGR VEMMVYRNYA VFSGWFITIV ILVSAVLMQG SRNGNDLWLS YWVDKTGKGV
0901: SHYSTSFYLM VLCIFCIINS ILTLVRAFSF AFGGLKAAVH VHNALISKLI NAPTQFFDQT PSGRILNRFS SDLYTIDDSL PFILNILLAN FVGLLGIIVV
1001: LSYVQVLFLL LLLPFWYIYS KLQVFYRSTS RELRRLDSVS RSPIYASFTE TLDGSSTIRA FKSEEHFVGR FIEHLTLYQR TSYSEIIASL WLSLRLQLLG
1101: SMIVLFVAVM AVLGSGGNFP ISFGTPGLVG LALSYAAPLV SLLGSLLTSF TETEKEMVSV ERVLQYMDVP QEEVSGPQSL SDKWPVHGLV EFHNVTMRYI
1201: STLPPALTQI SFTIQGGMHV GVIGRTGAGK SSILNALFRL TPVCSGEILV DGKNISHLPI RELRSCLAVV PQSPFLFQGS LRDNLDPLGL SEDWRIWEIL
1301: DKCKVKAAVE SVGGLDSYVK ESGCSFSVGQ RQLLCLARAL LKSSKILCLD ECTANIDVHT ASLLHNTISS ECKGVTVITI AHRISTVVDL DSILILDRGI
1401: LVEQGKPQHL LQDDSSTFSS FVRASQ
Arabidopsis Description
ATMRP11multidrug resistance-associated protein 11 [Source:TAIR;Acc:AT2G07680]
SUBAcon: [plasma membrane]
SUBAcon: [plasma membrane]
Hydropathy Plot
About CropPAL
The Protein Annotated Locations Database (CropPAL) houses large scale proteomic and GFP localization data from published experimental studies in Soybean (Glycine max), Maize (Zea mays), Wheat (Triticum aestivum), Barley (Hordeum vulgare), Rice (Oryza sativa), Field mustard (Brassica rapa), Canola (Brassica napus), Sorghum (Sorghum bicolor), Potato (Solanum tuberosum), Tomato (Solanum lycopersicum), Banana (Musa acuminata) and Wine grape (Vitis vinifera) as well as precomputed predictions for protein subcellular localizations using protein sequences.