Subcellular Localization
min:
: max
Winner_takes_all: plasma membrane
Predictor Summary:
Predictor Summary:
- nucleus 1
- golgi 3
- plasma membrane 5
- extracellular 2
- endoplasmic reticulum 2
- vacuole 2
Predictors | GFP | MS/MS | Papers | ||||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
Os02t0190300-01 | Rice | plasma membrane | 92.36 | 92.21 |
OQU84543 | Sorghum | endoplasmic reticulum, plasma membrane | 85.84 | 86.33 |
Zm00001d053706_P002 | Maize | mitochondrion, plasma membrane | 86.32 | 86.32 |
Os02t0189800-00 | Rice | mitochondrion | 50.76 | 84.36 |
TraesCS4A01G370600.1 | Wheat | plasma membrane | 81.5 | 82.22 |
TraesCS7D01G068400.1 | Wheat | plasma membrane | 80.77 | 81.49 |
VIT_14s0066g02320.t01 | Wine grape | peroxisome | 65.65 | 70.53 |
CDX86445 | Canola | plasma membrane | 67.26 | 67.2 |
Bra025326.1-P | Field mustard | plasma membrane | 67.02 | 66.96 |
AT3G28345.1 | Thale cress | plasma membrane | 66.61 | 66.77 |
CDY04018 | Canola | plasma membrane | 65.25 | 65.35 |
CDX85192 | Canola | plasma membrane | 66.69 | 65.33 |
Os01t0290700-01 | Rice | cytosol, plasma membrane | 7.64 | 64.19 |
VIT_19s0085g00060.t01 | Wine grape | endoplasmic reticulum, plasma membrane, plastid | 62.59 | 63.51 |
AT3G28390.1 | Thale cress | plasma membrane | 62.19 | 63.1 |
Bra025328.1-P | Field mustard | endoplasmic reticulum, golgi | 53.74 | 62.49 |
AT3G28360.1 | Thale cress | plasma membrane | 61.14 | 61.89 |
Bra025331.1-P | Field mustard | plasma membrane | 55.75 | 60.84 |
Os01t0695800-01 | Rice | plasma membrane | 11.99 | 56.87 |
Os04t0481700-01 | Rice | plasma membrane | 26.39 | 48.96 |
Os05t0137200-01 | Rice | plasma membrane | 15.21 | 48.09 |
Os04t0642000-01 | Rice | cytosol, peroxisome, plasma membrane | 22.37 | 45.42 |
Os04t0459000-01 | Rice | plasma membrane | 45.21 | 44.64 |
Os02t0693700-02 | Rice | plasma membrane | 43.77 | 43.04 |
Os05t0548300-01 | Rice | plasma membrane | 19.71 | 42.1 |
Os01t0534700-00 | Rice | plasma membrane | 36.93 | 41.5 |
Os08t0564300-04 | Rice | plasma membrane | 43.68 | 40.4 |
Os05t0548500-00 | Rice | plasma membrane | 40.55 | 40.0 |
Os03t0181750-00 | Rice | plasma membrane | 30.65 | 39.48 |
Os01t0695700-00 | Rice | plasma membrane | 39.18 | 38.44 |
GSMUA_Achr1P18340_001 | Banana | plasma membrane | 64.04 | 38.05 |
Os02t0323000-01 | Rice | cytosol, peroxisome | 12.79 | 37.59 |
Os01t0533900-01 | Rice | endoplasmic reticulum, vacuole | 25.1 | 37.37 |
Os03t0280000-01 | Rice | plasma membrane | 39.26 | 34.59 |
Os01t0975900-02 | Rice | plasma membrane | 5.79 | 28.57 |
Os03t0181675-00 | Rice | cytosol, nucleus, peroxisome, plastid | 8.05 | 17.15 |
Os01t0976000-01 | Rice | nucleus | 1.77 | 3.88 |
Protein Annotations
MapMan:24.1.3.1.1 | Gene3D:3.40.50.300 | EntrezGene:9269254 | InterPro:AAA+_ATPase | InterPro:ABC1_TM_dom | InterPro:ABC1_TM_sf |
InterPro:ABC_transporter-like | InterPro:ABC_transporter_CS | UniProt:B9F3S3 | ProteinID:BAS77391.1 | ProteinID:EEE56475.1 | 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 | EnsemblPlantsGene:Os02g0190000 |
EnsemblPlants:Os02t0190000-00 | InterPro:P-loop_NTPase | PFAM:PF00005 | PFAM:PF00664 | ScanProsite:PS00211 | PFscan:PS50893 |
PFscan:PS50929 | PANTHER:PTHR24221 | PANTHER:PTHR24221:SF381 | SMART:SM00382 | SUPFAM:SSF52540 | SUPFAM:SSF90123 |
TMHMM:TMhelix | UniParc:UPI0001933084 | RefSeq:XP_015625026.1 | SEG:seg | : | : |
Description
Putative uncharacterized protein. (Os02t0190000-00)
Coordinates
chr2:-:4976661..4984327
Molecular Weight (calculated)
135122.0 Da
IEP (calculated)
8.819
GRAVY (calculated)
0.086
Length
1243 amino acids
Sequence
(BLAST)
(BLAST)
0001: MGGDDRSAGK AKPVLGSFMT VFMHADAVDV VLMVLGLLGA VGDGLSMPVL LLITGSVYNN FGGGADNVQE FSSKVNMNAR NLLFLAAGQW VMTFLEGYCW
0101: TRTAERQASR MRARYLQAVL RQDVEYFDLK KGSTAEVITS VANDSLVVQD VLSEKVPNFV MNAAMFVGNY AFGFALMRQL MLVALPSVVL LIIPTFMYGR
0201: VVVDLARRIR EQYTRPGAIA EQAMSSVRTV YSFVAERTTM AQFSAALEES VRLGLKQGLA KGVAIGSNGI TFAILAFNVW YGSRLVMSHG YKGGTVFVVS
0301: YAVIQGGLAL GSVLSNVKYL SEASSAAERI LEVIRRVPKI DSESDTGEEL GNVAGEVEFR NVKFCYPSRP ESPIFVSFNL RVPAGRTVAL VGGSGSGKST
0401: VIALLERFYD PSAGEVMVDG VDIRRLRLKW LRAQMGLVSQ EPALFATSIR ENILFGKEDA TAEEVIAAAK AANAHSFISQ LPQGYDTQVG ERGVQMSGGQ
0501: KQRIAIARAI LKSPKILLLD EATSALDTES ESVVQEALDL ASMGRTTIVI AHRLSTIRNA DIIAVMQSGE VKELGSHDEL IANENGLYSS LVRLQQTRDS
0601: NEIDEIGVIG STSALGQSSS HSMSRRFSAA SRSSSVRSLG DARDADNTEK PKLPVPSFRR LLMLNAPEWK QALIGSFGAV VFGGIQPAFA YAMGSMISVY
0701: FLTDHAEIKD KTRTYALIFV GLAVLSFLIN IGQHYNFGAM GEYLTKRIRE QMLAKILTFE IGWFDRDENS SGAICSQLAK DANVVRSLVG DRMALVIQTI
0801: SAVLIACTMG LVIAWRLALV MIAVQPLIIV CFYARRVLLK SMSKKSIHAQ AESSKLAAEA VSNLRTITAF SSQERILRLF DQSQDGPRKE SIRQSWFAGL
0901: GLGTAMSLMA CSWTIGFWYS GRLMAEHQIT AKEIFQTFII LASTGRVIAE AGSMTTDLAK GADAVASVFA VLDRETEIDP DNPQGYKPEK LKGEVDIRRV
1001: DFAYPSRPDV IIFKGFTLSI QPGKSTALVG QSGSGKSTII GLIERFYDPI RGSVKIDGRD IKAYNPRALR RHIGLVSQEP TLFAGTIREN IVYGTETASE
1101: AEIEDAARSA NAHDFISNLK DGYGTWCGER GVQLSGGQKQ RIAIARAILK NPAILLLDEA TSALDSQSEK VVQEALDRVM IDRTSVVVAH RLSTIQNCDL
1201: ITVLEKGIVV EKGTHASLMA KGPSGTYFSL VSMKQRGNQQ VQQ
0101: TRTAERQASR MRARYLQAVL RQDVEYFDLK KGSTAEVITS VANDSLVVQD VLSEKVPNFV MNAAMFVGNY AFGFALMRQL MLVALPSVVL LIIPTFMYGR
0201: VVVDLARRIR EQYTRPGAIA EQAMSSVRTV YSFVAERTTM AQFSAALEES VRLGLKQGLA KGVAIGSNGI TFAILAFNVW YGSRLVMSHG YKGGTVFVVS
0301: YAVIQGGLAL GSVLSNVKYL SEASSAAERI LEVIRRVPKI DSESDTGEEL GNVAGEVEFR NVKFCYPSRP ESPIFVSFNL RVPAGRTVAL VGGSGSGKST
0401: VIALLERFYD PSAGEVMVDG VDIRRLRLKW LRAQMGLVSQ EPALFATSIR ENILFGKEDA TAEEVIAAAK AANAHSFISQ LPQGYDTQVG ERGVQMSGGQ
0501: KQRIAIARAI LKSPKILLLD EATSALDTES ESVVQEALDL ASMGRTTIVI AHRLSTIRNA DIIAVMQSGE VKELGSHDEL IANENGLYSS LVRLQQTRDS
0601: NEIDEIGVIG STSALGQSSS HSMSRRFSAA SRSSSVRSLG DARDADNTEK PKLPVPSFRR LLMLNAPEWK QALIGSFGAV VFGGIQPAFA YAMGSMISVY
0701: FLTDHAEIKD KTRTYALIFV GLAVLSFLIN IGQHYNFGAM GEYLTKRIRE QMLAKILTFE IGWFDRDENS SGAICSQLAK DANVVRSLVG DRMALVIQTI
0801: SAVLIACTMG LVIAWRLALV MIAVQPLIIV CFYARRVLLK SMSKKSIHAQ AESSKLAAEA VSNLRTITAF SSQERILRLF DQSQDGPRKE SIRQSWFAGL
0901: GLGTAMSLMA CSWTIGFWYS GRLMAEHQIT AKEIFQTFII LASTGRVIAE AGSMTTDLAK GADAVASVFA VLDRETEIDP DNPQGYKPEK LKGEVDIRRV
1001: DFAYPSRPDV IIFKGFTLSI QPGKSTALVG QSGSGKSTII GLIERFYDPI RGSVKIDGRD IKAYNPRALR RHIGLVSQEP TLFAGTIREN IVYGTETASE
1101: AEIEDAARSA NAHDFISNLK DGYGTWCGER GVQLSGGQKQ RIAIARAILK NPAILLLDEA TSALDSQSEK VVQEALDRVM IDRTSVVVAH RLSTIQNCDL
1201: ITVLEKGIVV EKGTHASLMA KGPSGTYFSL VSMKQRGNQQ VQQ
0001: MGKEEEKESG RNKMNCFGSV RSIFMHADGV DWLLMGLGLI GAVGDGFTTP LVLLITSKLM NNIGGSSFNT DTFMQSISKN SVALLYVACG SWVVCFLEGY
0101: CWTRTGERQT ARMREKYLRA VLRQDVGYFD LHVTSTSDVI TSVSSDSFVI QDVLSEKLPN FLMSASTFVG SYIVGFILLW RLAIVGLPFI VLLVIPGLMY
0201: GRALISISRK IREEYNEAGF VAEQAISSVR TVYAFSGERK TISKFSTALQ GSVKLGIKQG LAKGITIGSN GITFAMWGFM SWYGSRMVMY HGAQGGTVFA
0301: VAAAIAIGGV SLGGGLSNLK YFFEAASVGE RIMEVINRVP KIDSDNPDGH KLEKIRGEVE FKNVKFVYPS RLETSIFDDF CLRVPSGKTV ALVGGSGSGK
0401: STVISLLQRF YDPLAGEILI DGVSIDKLQV KWLRSQMGLV SQEPALFATT IKENILFGKE DASMDDVVEA AKASNAHNFI SQLPNGYETQ VGERGVQMSG
0501: GQKQRIAIAR AIIKSPTILL LDEATSALDS ESERVVQEAL ENASIGRTTI LIAHRLSTIR NADVISVVKN GHIVETGSHD ELMENIDGQY STLVHLQQIE
0601: KQDINVSVKI GPISDPSKDI RNSSRVSTLS RSSSANSVTG PSTIKNLSED NKPQLPSFKR LLAMNLPEWK QALYGCISAT LFGAIQPAYA YSLGSMVSVY
0701: FLTSHDEIKE KTRIYALSFV GLAVLSFLIN ISQHYNFAYM GEYLTKRIRE RMLSKVLTFE VGWFDRDENS SGAICSRLAK DANVVRSLVG DRMALVVQTV
0801: SAVTIAFTMG LVIAWRLALV MIAVQPVIIV CFYTRRVLLK SMSKKAIKAQ DESSKLAAEA VSNVRTITAF SSQERIMKML EKAQESPRRE SIRQSWFAGF
0901: GLAMSQSLTS CTWALDFWYG GRLIQDGYIT AKALFETFMI LVSTGRVIAD AGSMTTDLAK GSDAVGSVFA VLDRYTSIDP EDPDGYETER ITGQVEFLDV
1001: DFSYPTRPDV IIFKNFSIKI EEGKSTAIVG PSGSGKSTII GLIERFYDPL KGIVKIDGRD IRSYHLRSLR RHIALVSQEP TLFAGTIREN IIYGGVSDKI
1101: DEAEIIEAAK AANAHDFITS LTEGYDTYCG DRGVQLSGGQ KQRIAIARAV LKNPSVLLLD EATSALDSQS ERVVQDALER VMVGRTSVVI AHRLSTIQNC
1201: DAIAVLDKGK LVERGTHSSL LSKGPTGIYF SLVSLQTTSG
0101: CWTRTGERQT ARMREKYLRA VLRQDVGYFD LHVTSTSDVI TSVSSDSFVI QDVLSEKLPN FLMSASTFVG SYIVGFILLW RLAIVGLPFI VLLVIPGLMY
0201: GRALISISRK IREEYNEAGF VAEQAISSVR TVYAFSGERK TISKFSTALQ GSVKLGIKQG LAKGITIGSN GITFAMWGFM SWYGSRMVMY HGAQGGTVFA
0301: VAAAIAIGGV SLGGGLSNLK YFFEAASVGE RIMEVINRVP KIDSDNPDGH KLEKIRGEVE FKNVKFVYPS RLETSIFDDF CLRVPSGKTV ALVGGSGSGK
0401: STVISLLQRF YDPLAGEILI DGVSIDKLQV KWLRSQMGLV SQEPALFATT IKENILFGKE DASMDDVVEA AKASNAHNFI SQLPNGYETQ VGERGVQMSG
0501: GQKQRIAIAR AIIKSPTILL LDEATSALDS ESERVVQEAL ENASIGRTTI LIAHRLSTIR NADVISVVKN GHIVETGSHD ELMENIDGQY STLVHLQQIE
0601: KQDINVSVKI GPISDPSKDI RNSSRVSTLS RSSSANSVTG PSTIKNLSED NKPQLPSFKR LLAMNLPEWK QALYGCISAT LFGAIQPAYA YSLGSMVSVY
0701: FLTSHDEIKE KTRIYALSFV GLAVLSFLIN ISQHYNFAYM GEYLTKRIRE RMLSKVLTFE VGWFDRDENS SGAICSRLAK DANVVRSLVG DRMALVVQTV
0801: SAVTIAFTMG LVIAWRLALV MIAVQPVIIV CFYTRRVLLK SMSKKAIKAQ DESSKLAAEA VSNVRTITAF SSQERIMKML EKAQESPRRE SIRQSWFAGF
0901: GLAMSQSLTS CTWALDFWYG GRLIQDGYIT AKALFETFMI LVSTGRVIAD AGSMTTDLAK GSDAVGSVFA VLDRYTSIDP EDPDGYETER ITGQVEFLDV
1001: DFSYPTRPDV IIFKNFSIKI EEGKSTAIVG PSGSGKSTII GLIERFYDPL KGIVKIDGRD IRSYHLRSLR RHIALVSQEP TLFAGTIREN IIYGGVSDKI
1101: DEAEIIEAAK AANAHDFITS LTEGYDTYCG DRGVQLSGGQ KQRIAIARAV LKNPSVLLLD EATSALDSQS ERVVQDALER VMVGRTSVVI AHRLSTIQNC
1201: DAIAVLDKGK LVERGTHSSL LSKGPTGIYF SLVSLQTTSG
Arabidopsis Description
ABCB15ABC transporter B family member 15 [Source:UniProtKB/Swiss-Prot;Acc:Q9LHD1]
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.