Subcellular Localization
min:
: max
Winner_takes_all: plasma membrane
Predictor Summary:
Predictor Summary:
- cytosol 2
- plasma membrane 3
- mitochondrion 1
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
Solyc06g065670.2.1 | Tomato | plasma membrane | 97.87 | 97.8 |
CDY48188 | Canola | cytosol, peroxisome, plasma membrane | 69.23 | 68.59 |
CDX77057 | Canola | cytosol, peroxisome, plasma membrane | 69.08 | 68.45 |
AT2G26910.1 | Thale cress | cytosol, peroxisome, plasma membrane | 69.08 | 68.45 |
Bra034314.1-P | Field mustard | cytosol, peroxisome, plasma membrane | 68.94 | 68.31 |
EES00201 | Sorghum | plasma membrane | 69.23 | 68.3 |
Os01t0177900-01 | Rice | plasma membrane | 68.8 | 67.88 |
TraesCS3B01G141700.2 | Wheat | golgi, unclear | 68.94 | 67.78 |
TraesCS3A01G122500.2 | Wheat | plasma membrane | 68.94 | 67.78 |
HORVU3Hr1G022800.1 | Barley | plasma membrane | 68.87 | 67.71 |
TraesCS3D01G124400.2 | Wheat | plasma membrane | 68.87 | 66.1 |
PGSC0003DMT400005785 | Potato | cytosol, peroxisome, plasma membrane | 28.29 | 63.68 |
Zm00001d039631_P002 | Maize | plasma membrane | 66.38 | 62.52 |
GSMUA_Achr7P08510_001 | Banana | plasma membrane | 68.87 | 61.02 |
PGSC0003DMT400048449 | Potato | cytosol, peroxisome, plasma membrane | 49.82 | 57.6 |
PGSC0003DMT400034130 | Potato | cytosol, mitochondrion, peroxisome, plasma membrane, plastid | 50.96 | 57.59 |
PGSC0003DMT400076208 | Potato | plastid | 57.71 | 56.39 |
PGSC0003DMT400061280 | Potato | cytosol, nucleus, plasma membrane, plastid | 57.28 | 56.17 |
PGSC0003DMT400076209 | Potato | plasma membrane | 56.79 | 55.76 |
PGSC0003DMT400043433 | Potato | endoplasmic reticulum, plasma membrane | 5.83 | 53.95 |
PGSC0003DMT400050166 | Potato | plastid | 53.09 | 53.66 |
PGSC0003DMT400068277 | Potato | cytosol | 50.68 | 53.37 |
PGSC0003DMT400050158 | Potato | cytosol, peroxisome, plasma membrane | 54.8 | 53.32 |
PGSC0003DMT400005783 | Potato | cytosol, peroxisome, plasma membrane | 58.07 | 51.71 |
PGSC0003DMT400006729 | Potato | plastid | 54.73 | 51.33 |
PGSC0003DMT400046986 | Potato | plasma membrane | 32.34 | 51.12 |
PGSC0003DMT400060396 | Potato | plastid | 53.52 | 50.95 |
PGSC0003DMT400060117 | Potato | cytosol | 33.48 | 46.4 |
Protein Annotations
EntrezGene:102604535 | MapMan:21.9.4.3 | MapMan:24.1.3.2.2 | Gene3D:3.40.50.300 | InterPro:AAA+_ATPase | ProteinID:AAN85369 |
ProteinID:AAN85369.1 | InterPro:ABCG_PDR_1 | InterPro:ABCG_PDR_2 | InterPro:ABC_2_trans | InterPro:ABC_trans_N | InterPro:ABC_transporter-like |
EMBL:AY165018 | GO:GO:0000166 | GO:GO:0003674 | GO:GO:0003824 | GO:GO:0005488 | GO:GO:0005524 |
GO:GO:0005575 | GO:GO:0016020 | GO:GO:0016021 | GO:GO:0016787 | GO:GO:0016887 | InterPro:IPR003439 |
UniProt:M1CGW1 | InterPro:P-loop_NTPase | InterPro:PDR_assoc | PFAM:PF00005 | PFAM:PF01061 | PFAM:PF08370 |
PFAM:PF14510 | EnsemblPlantsGene:PGSC0003DMG400026131 | PGSC:PGSC0003DMG400026131 | EnsemblPlants:PGSC0003DMT400067210 | PFscan:PS50893 | PANTHER:PTHR19241 |
PANTHER:PTHR19241:SF280 | SMART:SM00382 | SUPFAM:SSF52540 | TMHMM:TMhelix | UniParc:UPI00029515A1 | RefSeq:XP_006353655.1 |
SEG:seg | : | : | : | : | : |
Description
ABC transporter [Source:PGSC_GENE;Acc:PGSC0003DMG400026131]
Coordinates
chr6:+:46111808..46121113
Molecular Weight (calculated)
160002.0 Da
IEP (calculated)
8.794
GRAVY (calculated)
0.119
Length
1407 amino acids
Sequence
(BLAST)
(BLAST)
0001: MSTRGENGAS KNEEDLVLAA LQRSPTYIRA QTSIFRGIGG EVALVDVGKM KGEEQKQVLD VLINAINEDT ELFFKRVKER FEKVDLEFPK VKVCFQHLKV
0101: DAMVHVGSRA LPTIPNFIFN MTETSLRQLR IFPSRRKKLS ILNNISGFLR PSRLTLLLGP PSSGKTTLLL ALAGRLDKNL MMSGRVTYNG HDLTEFVPQR
0201: TAAYVSQRDS HIAEMTVRET LEFSGRCQGV GFKHDLLMEL LRREKNAGII PDQDLDIFIK AVALGEQTSI VVDYILKILG LDICANTLVG DEMLKGISGG
0301: QKKRLTTGEL LMGAPRVLLM DEISTGLDSS TTFQIIKYLK YTTRAFDGTT LVSLLQPDPE TYSLFDDIIL LSEGQIIYQG PRETALEFFE FMGFKCPSRK
0401: NVADFLQELT SEKDQGQYWF LNSQYSYVSV TKFAEGFQSF HVGNALAQEL TIPFDKRDGH PAALSSSTYG VKKSELLKIS FDWQLLLLKR NSAVLVFKVT
0501: QLFLIILIMM SVFFRSTMHH DTLEDGAVYL GALYFAILMV LFNGFLEVPM LIAKLPVLYK QRDLHFYPCW IYTLPSWLLS VPTSLLESII WVAATYYVVG
0601: FDPQITRCFR QFLLYFSLHQ MSIGLFRVMA SLGRNMIVAN TFGSFAMLVV MALGGFVISR DSIPSWWIWG YWFSPLMYAQ NSASVNEFRG HSWDKRFRDN
0701: ISLGQMLLKV RSLFPENYWY WIGVGALIGY VIVFNVLFTL FLTYLNPLGS QQAVVSKKNT QNKDKEQESE DNMVPFREFL NHSHSFTGRE IKKRRGMVLP
0801: FEPLSMCFKE ISYYVDVPME LKLQGLGDKL QLLVNVTGAF RPGVLTALVG VSGAGKTTLM DVLAGRKTGG HITGNIYISG HPKKQETFAR VSGYCEQNDV
0901: HSPCLTIHES LLFSAWLRLS SQVDVKTQKA FVEEVMELVE LTSLRRALVG LPGVDGLSTE QRKRLTIAVE LVANPSIVFM DEPTSGLDAR SAAIVMRTVR
1001: NIVDTGRTIV CTIHQPSIDI FESFDELLLM KRGGQLIYAG SLGNRSCNLI QYFEAIQGVH RIRSGQNPAA WVLEVTSSAE ENRLGVDFAD IYRKSTLFQQ
1101: NEEMVESLSK PQEGSAELYF SSKYSQSFFG QFLACLWKQN LSYWRNPQYT AVRFFYTVII SLMFGSICWK FGSKRSTQQD ILNAMGSMYA AVLFIGITNA
1201: SSVQPVVFIE RFVSYRERAA GMYSALPFAF AQVTIEFPYV FIQTLIYSTI FYFMASFEWS VWKFVWYIYF MYFTLLYFTL FGMMTTSVSP NHNIAAILAA
1301: PFYMMWNLFS GFMISRMRIP IYWRWYYWAN PVAWSLYGLL TSQYGEVNEH LMLADGVHTV SIKRFIKEQF GYRQEFLGTA GVAVIGFCII FAVTFAFAIK
1401: FFNFQRR
0101: DAMVHVGSRA LPTIPNFIFN MTETSLRQLR IFPSRRKKLS ILNNISGFLR PSRLTLLLGP PSSGKTTLLL ALAGRLDKNL MMSGRVTYNG HDLTEFVPQR
0201: TAAYVSQRDS HIAEMTVRET LEFSGRCQGV GFKHDLLMEL LRREKNAGII PDQDLDIFIK AVALGEQTSI VVDYILKILG LDICANTLVG DEMLKGISGG
0301: QKKRLTTGEL LMGAPRVLLM DEISTGLDSS TTFQIIKYLK YTTRAFDGTT LVSLLQPDPE TYSLFDDIIL LSEGQIIYQG PRETALEFFE FMGFKCPSRK
0401: NVADFLQELT SEKDQGQYWF LNSQYSYVSV TKFAEGFQSF HVGNALAQEL TIPFDKRDGH PAALSSSTYG VKKSELLKIS FDWQLLLLKR NSAVLVFKVT
0501: QLFLIILIMM SVFFRSTMHH DTLEDGAVYL GALYFAILMV LFNGFLEVPM LIAKLPVLYK QRDLHFYPCW IYTLPSWLLS VPTSLLESII WVAATYYVVG
0601: FDPQITRCFR QFLLYFSLHQ MSIGLFRVMA SLGRNMIVAN TFGSFAMLVV MALGGFVISR DSIPSWWIWG YWFSPLMYAQ NSASVNEFRG HSWDKRFRDN
0701: ISLGQMLLKV RSLFPENYWY WIGVGALIGY VIVFNVLFTL FLTYLNPLGS QQAVVSKKNT QNKDKEQESE DNMVPFREFL NHSHSFTGRE IKKRRGMVLP
0801: FEPLSMCFKE ISYYVDVPME LKLQGLGDKL QLLVNVTGAF RPGVLTALVG VSGAGKTTLM DVLAGRKTGG HITGNIYISG HPKKQETFAR VSGYCEQNDV
0901: HSPCLTIHES LLFSAWLRLS SQVDVKTQKA FVEEVMELVE LTSLRRALVG LPGVDGLSTE QRKRLTIAVE LVANPSIVFM DEPTSGLDAR SAAIVMRTVR
1001: NIVDTGRTIV CTIHQPSIDI FESFDELLLM KRGGQLIYAG SLGNRSCNLI QYFEAIQGVH RIRSGQNPAA WVLEVTSSAE ENRLGVDFAD IYRKSTLFQQ
1101: NEEMVESLSK PQEGSAELYF SSKYSQSFFG QFLACLWKQN LSYWRNPQYT AVRFFYTVII SLMFGSICWK FGSKRSTQQD ILNAMGSMYA AVLFIGITNA
1201: SSVQPVVFIE RFVSYRERAA GMYSALPFAF AQVTIEFPYV FIQTLIYSTI FYFMASFEWS VWKFVWYIYF MYFTLLYFTL FGMMTTSVSP NHNIAAILAA
1301: PFYMMWNLFS GFMISRMRIP IYWRWYYWAN PVAWSLYGLL TSQYGEVNEH LMLADGVHTV SIKRFIKEQF GYRQEFLGTA GVAVIGFCII FAVTFAFAIK
1401: FFNFQRR
0001: MWNSAENAFS RSTSFKDEIE DEEELRWAAL QRLPTYSRIR RGIFRDMVGE PKEIQIGNLE ASEQRLLLDR LVNSVENDPE QFFARVRKRF DAVDLKFPKI
0101: EVRFQNLMVE SFVHVGSRAL PTIPNFIINM AEGLLRNIHV IGGKRNKLTI LDGISGVIRP SRLTLLLGPP SSGKTTLLLA LAGRLGTNLQ TSGKITYNGY
0201: DLKEIIAPRT SAYVSQQDWH VAEMTVRQTL EFAGRCQGVG FKYDMLLELA RREKLAGIVP DEDLDIFMKS LALGGMETSL VVEYVMKILG LDTCADTLVG
0301: DEMIKGISGG QKKRLTTGEL LVGPARVLFM DEISNGLDSS TTHQIIMYMR HSTHALEGTT VISLLQPSPE TYELFDDVIL MSEGQIIYQG PRDEVLDFFS
0401: SLGFTCPDRK NVADFLQEVT SKKDQQQYWS VPFRPYRYVP PGKFAEAFRS YPTGKKLAKK LEVPFDKRFN HSAALSTSQY GVKKSELLKI NFAWQKQLMK
0501: QNAFIYVFKF VQLLLVALIT MTVFCRTTMH HNTIDDGNIY LGSLYFSMVI ILFNGFTEVP MLVAKLPVLY KHRDLHFYPS WAYTLPSWLL SIPTSIIESA
0601: TWVAVTYYTI GYDPLFSRFL QQFLLYFSLH QMSLGLFRVM GSLGRHMIVA NTFGSFAMLV VMTLGGFIIS RDSIPSWWIW GYWISPLMYA QNAASVNEFL
0701: GHNWQKTAGN HTSDSLGLAL LKERSLFSGN YWYWIGVAAL LGYTVLFNIL FTLFLAHLNP WGKFQAVVSR EELDEREKKR KGDEFVVELR EYLQHSGSIH
0801: GKYFKNRGMV LPFQPLSLSF SNINYYVDVP LGLKEQGILE DRLQLLVNIT GAFRPGVLTA LVGVSGAGKT TLMDVLAGRK TGGTIEGDVY ISGFPKRQET
0901: FARISGYCEQ NDVHSPCLTV VESLLFSACL RLPADIDSET QRAFVHEVME LVELTSLSGA LVGLPGVDGL STEQRKRLTI AVELVANPSI VFMDEPTSGL
1001: DARAAAIVMR TVRNIVNTGR TIVCTIHQPS IDIFESFDEL LFMKRGGELI YAGPLGQKSC ELIKYFESIE GVQKIKPGHN PAAWMLDVTA STEEHRLGVD
1101: FAEIYRNSNL CQRNKELIEV LSKPSNIAKE IEFPTRYSQS LYSQFVACLW KQNLSYWRNP QYTAVRFFYT VVISLMLGTI CWKFGSKRDT QQQLFNAMGS
1201: MYAAVLFIGI TNATAAQPVV SIERFVSYRE RAAGMYSALP FAFAQVFIEF PYVLAQSTIY STIFYAMAAF EWSAVKFLWY LFFMYFSIMY FTFYGMMTTA
1301: ITPNHNVASI IAAPFYMLWN LFSGFMIPYK RIPLWWRWYY WANPVAWTLY GLLVSQYGDD ERSVKLSDGI HQVMVKQLLE DVMGYKHDFL GVSAIMVVAF
1401: CVFFSLVFAF AIKAFNFQRR
0101: EVRFQNLMVE SFVHVGSRAL PTIPNFIINM AEGLLRNIHV IGGKRNKLTI LDGISGVIRP SRLTLLLGPP SSGKTTLLLA LAGRLGTNLQ TSGKITYNGY
0201: DLKEIIAPRT SAYVSQQDWH VAEMTVRQTL EFAGRCQGVG FKYDMLLELA RREKLAGIVP DEDLDIFMKS LALGGMETSL VVEYVMKILG LDTCADTLVG
0301: DEMIKGISGG QKKRLTTGEL LVGPARVLFM DEISNGLDSS TTHQIIMYMR HSTHALEGTT VISLLQPSPE TYELFDDVIL MSEGQIIYQG PRDEVLDFFS
0401: SLGFTCPDRK NVADFLQEVT SKKDQQQYWS VPFRPYRYVP PGKFAEAFRS YPTGKKLAKK LEVPFDKRFN HSAALSTSQY GVKKSELLKI NFAWQKQLMK
0501: QNAFIYVFKF VQLLLVALIT MTVFCRTTMH HNTIDDGNIY LGSLYFSMVI ILFNGFTEVP MLVAKLPVLY KHRDLHFYPS WAYTLPSWLL SIPTSIIESA
0601: TWVAVTYYTI GYDPLFSRFL QQFLLYFSLH QMSLGLFRVM GSLGRHMIVA NTFGSFAMLV VMTLGGFIIS RDSIPSWWIW GYWISPLMYA QNAASVNEFL
0701: GHNWQKTAGN HTSDSLGLAL LKERSLFSGN YWYWIGVAAL LGYTVLFNIL FTLFLAHLNP WGKFQAVVSR EELDEREKKR KGDEFVVELR EYLQHSGSIH
0801: GKYFKNRGMV LPFQPLSLSF SNINYYVDVP LGLKEQGILE DRLQLLVNIT GAFRPGVLTA LVGVSGAGKT TLMDVLAGRK TGGTIEGDVY ISGFPKRQET
0901: FARISGYCEQ NDVHSPCLTV VESLLFSACL RLPADIDSET QRAFVHEVME LVELTSLSGA LVGLPGVDGL STEQRKRLTI AVELVANPSI VFMDEPTSGL
1001: DARAAAIVMR TVRNIVNTGR TIVCTIHQPS IDIFESFDEL LFMKRGGELI YAGPLGQKSC ELIKYFESIE GVQKIKPGHN PAAWMLDVTA STEEHRLGVD
1101: FAEIYRNSNL CQRNKELIEV LSKPSNIAKE IEFPTRYSQS LYSQFVACLW KQNLSYWRNP QYTAVRFFYT VVISLMLGTI CWKFGSKRDT QQQLFNAMGS
1201: MYAAVLFIGI TNATAAQPVV SIERFVSYRE RAAGMYSALP FAFAQVFIEF PYVLAQSTIY STIFYAMAAF EWSAVKFLWY LFFMYFSIMY FTFYGMMTTA
1301: ITPNHNVASI IAAPFYMLWN LFSGFMIPYK RIPLWWRWYY WANPVAWTLY GLLVSQYGDD ERSVKLSDGI HQVMVKQLLE DVMGYKHDFL GVSAIMVVAF
1401: CVFFSLVFAF AIKAFNFQRR
Arabidopsis Description
ABCG32PEC1 [Source:UniProtKB/TrEMBL;Acc:A0A178VNA5]
SUBAcon: [peroxisome,cytosol,plasma membrane]
SUBAcon: [peroxisome,cytosol,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.