Subcellular Localization
min:
: max
Winner_takes_all: cytosol
Predictor Summary:
Predictor Summary:
- cytosol 1
Predictors | GFP | MS/MS | Papers | ||||||
---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
TraesCSU01G097600.2 | Wheat | plasma membrane | 97.65 | 97.31 |
TraesCS7A01G391000.1 | Wheat | plasma membrane | 97.44 | 97.11 |
TraesCS7D01G386500.1 | Wheat | plasma membrane | 97.37 | 97.04 |
HORVU7Hr1G092510.2 | Barley | plasma membrane | 93.57 | 93.96 |
Os08t0384500-01 | Rice | plasma membrane | 45.54 | 86.37 |
PGSC0003DMT400005785 | Potato | cytosol, peroxisome, plasma membrane | 30.82 | 71.36 |
Solyc12g019640.1.1 | Tomato | plasma membrane | 29.37 | 69.9 |
GSMUA_Achr9P01490_001 | Banana | plasma membrane | 72.01 | 69.79 |
HORVU3Hr1G053350.8 | Barley | vacuole | 70.01 | 69.53 |
VIT_09s0002g05370.t01 | Wine grape | mitochondrion, plasma membrane | 68.21 | 69.46 |
KRH09797 | Soybean | endoplasmic reticulum | 67.8 | 68.75 |
HORVU3Hr1G071470.1 | Barley | cytosol, mitochondrion, nucleus, plasma membrane | 68.21 | 68.54 |
Solyc09g091660.2.1 | Tomato | plastid | 67.52 | 67.85 |
PGSC0003DMT400034130 | Potato | cytosol, mitochondrion, peroxisome, plasma membrane, plastid | 58.33 | 67.79 |
PGSC0003DMT400076208 | Potato | plastid | 67.45 | 67.78 |
KRH23522 | Soybean | mitochondrion | 66.76 | 67.74 |
HORVU3Hr1G053380.1 | Barley | cytosol, mitochondrion, peroxisome, plasma membrane | 69.04 | 67.73 |
KRH47506 | Soybean | endoplasmic reticulum | 66.48 | 67.46 |
Solyc05g053590.2.1 | Tomato | cytosol, mitochondrion, peroxisome, plasma membrane | 65.72 | 67.35 |
VIT_04s0008g04790.t01 | Wine grape | cytosol, peroxisome, plasma membrane, plastid | 66.62 | 67.13 |
PGSC0003DMT400061280 | Potato | cytosol, nucleus, plasma membrane, plastid | 66.34 | 66.9 |
CDY39660 | Canola | cytosol, nucleus, plasma membrane | 65.31 | 66.78 |
Bra026124.1-P | Field mustard | cytosol, nucleus, plasma membrane, plastid | 65.17 | 66.74 |
Solyc12g098210.1.1 | Tomato | plastid | 65.72 | 66.74 |
Solyc08g067620.2.1 | Tomato | nucleus | 66.9 | 66.62 |
CDY36570 | Canola | cytosol, nucleus, plasma membrane, plastid | 65.03 | 66.6 |
KRH61824 | Soybean | cytosol, mitochondrion, peroxisome, plasma membrane | 66.62 | 66.53 |
VIT_09s0002g05560.t01 | Wine grape | plasma membrane | 66.83 | 66.51 |
HORVU6Hr1G036800.21 | Barley | plasma membrane | 66.48 | 66.44 |
KRH52503 | Soybean | cytosol, peroxisome, plasma membrane | 66.48 | 66.44 |
Solyc12g100180.1.1 | Tomato | mitochondrion, nucleus, plasma membrane, plastid | 65.65 | 66.2 |
PGSC0003DMT400076209 | Potato | plasma membrane | 65.45 | 66.09 |
HORVU3Hr1G105140.4 | Barley | cytosol, peroxisome, plasma membrane | 66.0 | 66.04 |
KRH67471 | Soybean | endoplasmic reticulum | 65.58 | 65.67 |
AT1G15520.1 | Thale cress | plastid | 64.55 | 65.64 |
PGSC0003DMT400048449 | Potato | cytosol, peroxisome, plasma membrane | 54.94 | 65.32 |
HORVU5Hr1G056280.6 | Barley | cytosol, nucleus, plasma membrane | 65.17 | 65.03 |
KRG95762 | Soybean | mitochondrion | 64.13 | 64.9 |
KRH16029 | Soybean | cytosol | 64.89 | 64.89 |
KRH05088 | Soybean | endoplasmic reticulum | 64.2 | 64.2 |
KRH47220 | Soybean | plasma membrane | 41.53 | 63.2 |
KRH09795 | Soybean | endoplasmic reticulum | 65.1 | 62.3 |
PGSC0003DMT400005783 | Potato | cytosol, peroxisome, plasma membrane | 66.97 | 61.33 |
PGSC0003DMT400043433 | Potato | endoplasmic reticulum, plasma membrane | 6.22 | 59.21 |
HORVU3Hr1G022800.1 | Barley | plasma membrane | 56.67 | 57.3 |
Solyc12g019620.1.1 | Tomato | cytosol, nucleus, plasma membrane | 33.03 | 57.11 |
KRG95752 | Soybean | cytosol, peroxisome, plasma membrane | 63.44 | 56.98 |
HORVU7Hr1G088630.1 | Barley | vacuole | 50.86 | 56.62 |
HORVU5Hr1G124650.12 | Barley | plasma membrane | 28.96 | 55.2 |
HORVU7Hr1G037750.8 | Barley | cytosol, plasma membrane | 42.29 | 55.09 |
HORVU5Hr1G106850.1 | Barley | cytosol | 53.9 | 52.14 |
HORVU3Hr1G116680.1 | Barley | mitochondrion, plasma membrane | 44.23 | 50.59 |
HORVU7Hr1G016870.2 | Barley | cytosol | 48.58 | 50.5 |
HORVU7Hr1G056530.12 | Barley | cytosol, nucleus | 46.72 | 50.11 |
HORVU5Hr1G049490.3 | Barley | nucleus, plastid | 47.55 | 49.35 |
HORVU4Hr1G081040.4 | Barley | cytosol, nucleus, plasma membrane | 45.27 | 48.59 |
VIT_04s0008g04840.t01 | Wine grape | plasma membrane | 36.35 | 47.01 |
Protein Annotations
MapMan:24.1.3.2.2 | Gene3D:3.40.50.300 | InterPro:AAA+_ATPase | InterPro:ABCG_PDR_1 | InterPro:ABCG_PDR_2 | InterPro:ABC_2_trans |
InterPro:ABC_trans_N | InterPro:ABC_transporter-like | GO:GO:0000166 | GO:GO:0003674 | GO:GO:0003824 | GO:GO:0005488 |
GO:GO:0005524 | GO:GO:0005575 | GO:GO:0016020 | GO:GO:0016787 | GO:GO:0016887 | EnsemblPlantsGene:HORVU7Hr1G092380 |
EnsemblPlants:HORVU7Hr1G092380.8 | InterPro:IPR003439 | InterPro:P-loop_NTPase | InterPro:PDR_assoc | PFAM:PF00005 | PFAM:PF01061 |
PFAM:PF08370 | PFAM:PF14510 | PFscan:PS50893 | PANTHER:PTHR19241 | PANTHER:PTHR19241:SF313 | SMART:SM00382 |
SUPFAM:SSF52540 | TMHMM:TMhelix | SEG:seg | : | : | : |
Description
No Description!
Coordinates
chrchr7H:+:566231700..566238936
Molecular Weight (calculated)
161411.0 Da
IEP (calculated)
8.546
GRAVY (calculated)
0.106
Length
1447 amino acids
Sequence
(BLAST)
(BLAST)
0001: MDTAEAAXXX ASLRMGSRSS YRERGADVFS RASSAAGAGS EDDEEALMWA ALERLPTHSR VRKGFVVGDD GGGAGLGLID VAGLGFQERT RLLDRLVRVA
0101: EEDHERFLLR LKQRIDRVGI DFPTIQVRYE HLNIEALAHV GNRGLPTFIN TTLNCLESLA NLLHIIPNKK IPINILHDVN GIIKPKRMTL LLGPPGSGKT
0201: TLLLALAGKL DSDLKVSGKV TYNGHGMNEF VAQRSAAYIS QHDLHIAEMT VRETLAFSAR CQGIGSRYDM LTELSRREKA ANIKPDPDLD VYMKAISVGG
0301: QDTNIITDYI LKILGLDICA DTMVGDDMLR GISGGQRKRV TTGEMMVGAE RALFMDEIST GLDSSTTYQI VKSLGLITNI LGGTTVISLL QPAPETYNLF
0401: DDIILLSDGH IVYQGPREHV LEFFELMGFK CPDRKGVADF LQEVTSRKDQ PQYWARSDRR YQYVPVKEFA RAFQAFHVGQ SLSAELSRPF DRSQCHPASL
0501: TTKKYGASKT ELLRACVERE WLLMKRNMFV YRFRAFQLLM MTTIVMTLFL RTNMHHGAVN DGIVFMGALF FALVAHMFNG FSELAMATIK LPVFFKQRDY
0601: LFFPAWAYAI PTWILKIPIS CVEVSITVFL GYYVIGFDPD VGRLFKQYLL LLLVNQMAAA MFRFIAALGR TMVVANTLAS FALFVMLVLS GFVLSHHDVK
0701: KWWIWGYWMS PLQYAMSAIA VNEFLGQKWQ RVLQGSNSIL GIDVLKSRGM FTEAKWYWIG VGALLGYVVL FNILFTFALS YLKPLGKSQQ TLSEDALKEK
0801: HASITGETPA GSISAAAGNI NNSRSRRNSA APGDSGRKGM VLPFAPLAVA FNNMRYSVDM PAEMKAQGVD EDRLLLLKGV SGSFKPGVLT ALMGVSGAGK
0901: TTLMDVLAGR KTGGYIEGDI SISGYPKKQE TFARISGYCE QNDIHSPNVT VYESLVYSAW LRLPSDVESE TRKMFIEQVM ELVELNTLRD ALVGLPGVNG
1001: LSTEQRKRLT IAVELVANPS IIFMDEPTSG LDARAAAIVM RTVRNTVDTG RTVVCTIHQP SIDIFEAFDE LFLMKRGGEE IYVGPLGHQS RDLIQYFEGV
1101: ERVSKIKPGY NPATWMLEVT SQAQEDILGV SFTEVYKNSE LYQRNQSVIR DISRAPAGSK DLYFPTQYSQ SSITQCTACL WKQHLSYWRN PQYTVVRFFF
1201: SLVVALMFGT IFWQLGGKTS RTQDLFNAMG SMYAAVLFMG ISYASSVQPV VAVERTVFYR ERAAGMYSAL PYAFGQVVVE LPYVLVQSLA YGVIVYAMIG
1301: FQWDAKKFCW YLYFMYFTLL YFTYYGMLAV GLTPSYNIAS IVSSFFYGVW NLFSGFVISQ PTMPVWWRWY SWVCPVSWTL YGLVASQFGD LTEPLQDTGE
1401: PINAFLKSFF GFRHDFLGVV AVVTAGFAIF FAVAFGLSIK MLNFQRR
0101: EEDHERFLLR LKQRIDRVGI DFPTIQVRYE HLNIEALAHV GNRGLPTFIN TTLNCLESLA NLLHIIPNKK IPINILHDVN GIIKPKRMTL LLGPPGSGKT
0201: TLLLALAGKL DSDLKVSGKV TYNGHGMNEF VAQRSAAYIS QHDLHIAEMT VRETLAFSAR CQGIGSRYDM LTELSRREKA ANIKPDPDLD VYMKAISVGG
0301: QDTNIITDYI LKILGLDICA DTMVGDDMLR GISGGQRKRV TTGEMMVGAE RALFMDEIST GLDSSTTYQI VKSLGLITNI LGGTTVISLL QPAPETYNLF
0401: DDIILLSDGH IVYQGPREHV LEFFELMGFK CPDRKGVADF LQEVTSRKDQ PQYWARSDRR YQYVPVKEFA RAFQAFHVGQ SLSAELSRPF DRSQCHPASL
0501: TTKKYGASKT ELLRACVERE WLLMKRNMFV YRFRAFQLLM MTTIVMTLFL RTNMHHGAVN DGIVFMGALF FALVAHMFNG FSELAMATIK LPVFFKQRDY
0601: LFFPAWAYAI PTWILKIPIS CVEVSITVFL GYYVIGFDPD VGRLFKQYLL LLLVNQMAAA MFRFIAALGR TMVVANTLAS FALFVMLVLS GFVLSHHDVK
0701: KWWIWGYWMS PLQYAMSAIA VNEFLGQKWQ RVLQGSNSIL GIDVLKSRGM FTEAKWYWIG VGALLGYVVL FNILFTFALS YLKPLGKSQQ TLSEDALKEK
0801: HASITGETPA GSISAAAGNI NNSRSRRNSA APGDSGRKGM VLPFAPLAVA FNNMRYSVDM PAEMKAQGVD EDRLLLLKGV SGSFKPGVLT ALMGVSGAGK
0901: TTLMDVLAGR KTGGYIEGDI SISGYPKKQE TFARISGYCE QNDIHSPNVT VYESLVYSAW LRLPSDVESE TRKMFIEQVM ELVELNTLRD ALVGLPGVNG
1001: LSTEQRKRLT IAVELVANPS IIFMDEPTSG LDARAAAIVM RTVRNTVDTG RTVVCTIHQP SIDIFEAFDE LFLMKRGGEE IYVGPLGHQS RDLIQYFEGV
1101: ERVSKIKPGY NPATWMLEVT SQAQEDILGV SFTEVYKNSE LYQRNQSVIR DISRAPAGSK DLYFPTQYSQ SSITQCTACL WKQHLSYWRN PQYTVVRFFF
1201: SLVVALMFGT IFWQLGGKTS RTQDLFNAMG SMYAAVLFMG ISYASSVQPV VAVERTVFYR ERAAGMYSAL PYAFGQVVVE LPYVLVQSLA YGVIVYAMIG
1301: FQWDAKKFCW YLYFMYFTLL YFTYYGMLAV GLTPSYNIAS IVSSFFYGVW NLFSGFVISQ PTMPVWWRWY SWVCPVSWTL YGLVASQFGD LTEPLQDTGE
1401: PINAFLKSFF GFRHDFLGVV AVVTAGFAIF FAVAFGLSIK MLNFQRR
0001: MDYDPAHAMS RGGSMRQTIS RSVSKASRNM EDIFNTSSRR TKSVNEDEEA LKWASIEKLP TYNRLRTSLM PELGEDDVYG NQILNKAVDV TKLDGEERQK
0101: FIDMVFKVAE QDNERILTKL RNRIDRVGIQ LPTVEVRYDH LTVKADCYTG DRSLPSLLNA VRNMGEAALG MIGIRLAKKA QLTILKDVSG IVKPSRMTLL
0201: LGPPSSGKTT LLLALAGKLD KSLDVSGEVT YNGYRLNEFV PIKTSAYISQ NDLHVGIMTV KETLDFSARC QGVGTRYDLL NELARREKDA GIFPEADVDL
0301: FMKASAAQGV KSSLITDYTL KILGLDICKD TIVGDDMMRG ISGGQKKRVT TGEMIVGPTK TLFMDEISTG LDSSTTFQIV KCLQQIVHLT EATVLISLLQ
0401: PAPETFDLFD DIILLSEGQI VYQGPRDHIL EFFESFGFKC PERKGTADFL QEVTSKKDQE QYWVDPNRPY RYIPVSEFAS SFKKFHVGSK LSNELSVPYD
0501: KSKSHKAALM FDKYSIKKTE LLKSCWDKEW MLMKRNSFFY VFKTVQIIII AAITSTLYLR TEMHTRNEID ANIYVGSLLF AMIVNMFNGL AEMAMTIQRL
0601: PVFYKQRDLL FHPPWTYTLP TFLLGIPISI FESTAWMVVT YYSIGYAPDA ERFFKQFLII FLIQQMAAGI FRFIASTCRT MTIANTGGVL VLLVVFLTGG
0701: FLLPRSEIPV WWRWAYWISP LSYAFNAITV NELFAPRWMN KMSGNSTTRL GTSVLNIWDV FDDKNWYWIG VGGLLGFTVI FNGFFTLALT YLDPLGKAQA
0801: ILPKEEDEEA KGKAGSNKET EMESVSAKKG MVLPFTPLAM SFDDVKYFVD MPAEMREQGV QETRLQLLKG VTSAFRPGVL TALMGVSGAG KTTLMDVLAG
0901: RKTGGYIEGD VRVSGFPKKQ ETFARISGYC EQTDIHSPQV TVRESLIFSA FLRLAKEVSK EDKLMFVDQV MELVELVDLR DAIVGLPGVT GLSTEQRKRL
1001: TIAVELVANP SIIFMDEPTS GLDARAAAIV MRAVRNTVDT GRTVVCTIHQ PSIDIFEAFD ELLLMKRGGH VIYSGPLGRN SHKVVEYFES FPGVPKIPEK
1101: YNPATWMLEA SSLAAELKLG VDFAELYKAS ALCQRNKALV QELSVPPQGA TDLYFATQFS QNTWGQFKSC LWKQWWTYWR SPDYNLVRFI FTLATSLMIG
1201: SVFWQIGGKR SNVQDLTMVI GAIYAAVVFV GINNCSTVQP MVAVERTVFY REKAAGMYSA IPYAISQVTC ELPYVLIQTT YYSLIIYSMV GFEWKASKFL
1301: WFIFINYFSF LYWTYYGMMT VSLTPNQQVA SIFASAFYGI FNLFSGFFIP RPKIPKWWVW YYWICPVAWT IYGLITSQYG DVETPIALLG GAPGLTVKQY
1401: IKDQYGFESD YMGPVAGVLV GFTVFFAFIF AFCIKTLNFQ SR
0101: FIDMVFKVAE QDNERILTKL RNRIDRVGIQ LPTVEVRYDH LTVKADCYTG DRSLPSLLNA VRNMGEAALG MIGIRLAKKA QLTILKDVSG IVKPSRMTLL
0201: LGPPSSGKTT LLLALAGKLD KSLDVSGEVT YNGYRLNEFV PIKTSAYISQ NDLHVGIMTV KETLDFSARC QGVGTRYDLL NELARREKDA GIFPEADVDL
0301: FMKASAAQGV KSSLITDYTL KILGLDICKD TIVGDDMMRG ISGGQKKRVT TGEMIVGPTK TLFMDEISTG LDSSTTFQIV KCLQQIVHLT EATVLISLLQ
0401: PAPETFDLFD DIILLSEGQI VYQGPRDHIL EFFESFGFKC PERKGTADFL QEVTSKKDQE QYWVDPNRPY RYIPVSEFAS SFKKFHVGSK LSNELSVPYD
0501: KSKSHKAALM FDKYSIKKTE LLKSCWDKEW MLMKRNSFFY VFKTVQIIII AAITSTLYLR TEMHTRNEID ANIYVGSLLF AMIVNMFNGL AEMAMTIQRL
0601: PVFYKQRDLL FHPPWTYTLP TFLLGIPISI FESTAWMVVT YYSIGYAPDA ERFFKQFLII FLIQQMAAGI FRFIASTCRT MTIANTGGVL VLLVVFLTGG
0701: FLLPRSEIPV WWRWAYWISP LSYAFNAITV NELFAPRWMN KMSGNSTTRL GTSVLNIWDV FDDKNWYWIG VGGLLGFTVI FNGFFTLALT YLDPLGKAQA
0801: ILPKEEDEEA KGKAGSNKET EMESVSAKKG MVLPFTPLAM SFDDVKYFVD MPAEMREQGV QETRLQLLKG VTSAFRPGVL TALMGVSGAG KTTLMDVLAG
0901: RKTGGYIEGD VRVSGFPKKQ ETFARISGYC EQTDIHSPQV TVRESLIFSA FLRLAKEVSK EDKLMFVDQV MELVELVDLR DAIVGLPGVT GLSTEQRKRL
1001: TIAVELVANP SIIFMDEPTS GLDARAAAIV MRAVRNTVDT GRTVVCTIHQ PSIDIFEAFD ELLLMKRGGH VIYSGPLGRN SHKVVEYFES FPGVPKIPEK
1101: YNPATWMLEA SSLAAELKLG VDFAELYKAS ALCQRNKALV QELSVPPQGA TDLYFATQFS QNTWGQFKSC LWKQWWTYWR SPDYNLVRFI FTLATSLMIG
1201: SVFWQIGGKR SNVQDLTMVI GAIYAAVVFV GINNCSTVQP MVAVERTVFY REKAAGMYSA IPYAISQVTC ELPYVLIQTT YYSLIIYSMV GFEWKASKFL
1301: WFIFINYFSF LYWTYYGMMT VSLTPNQQVA SIFASAFYGI FNLFSGFFIP RPKIPKWWVW YYWICPVAWT IYGLITSQYG DVETPIALLG GAPGLTVKQY
1401: IKDQYGFESD YMGPVAGVLV GFTVFFAFIF AFCIKTLNFQ SR
Arabidopsis Description
ABCG35PDR7 [Source:UniProtKB/TrEMBL;Acc:A0A178WAD4]
SUBAcon: [plastid]
SUBAcon: [plastid]
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.