Subcellular Localization
min:
: max
Winner_takes_all: cytosol
Predictor Summary:
Predictor Summary:
- cytosol 3
- extracellular 1
- endoplasmic reticulum 1
- vacuole 1
- plasma membrane 1
- golgi 1
- peroxisome 1
Predictors | GFP | MS/MS | Papers | ||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
CDY57476 | Canola | cytosol | 13.25 | 92.11 |
CDY48200 | Canola | peroxisome | 65.18 | 89.69 |
AT2G27150.2 | Thale cress | cytosol, nucleus, peroxisome | 82.66 | 81.98 |
CDY18247 | Canola | cytosol, peroxisome, plastid | 71.23 | 70.33 |
CDX89810 | Canola | cytosol, peroxisome, plastid | 70.86 | 69.85 |
CDY70226 | Canola | peroxisome | 21.2 | 65.27 |
CDY55449 | Canola | mitochondrion | 9.31 | 64.4 |
VIT_18s0041g02390.t01 | Wine grape | peroxisome | 38.3 | 63.81 |
CDX87955 | Canola | cytosol, peroxisome, plastid | 61.62 | 62.52 |
CDY30951 | Canola | cytosol, peroxisome, plastid | 59.88 | 62.14 |
VIT_06s0009g00770.t01 | Wine grape | cytosol, nucleus, peroxisome | 63.21 | 61.17 |
VIT_18s0041g02410.t01 | Wine grape | cytosol | 60.56 | 60.33 |
Solyc01g009230.2.1 | Tomato | cytosol | 62.0 | 60.18 |
VIT_18s0041g02430.t01 | Wine grape | cytosol | 61.7 | 60.01 |
PGSC0003DMT400050626 | Potato | cytosol | 2.57 | 59.65 |
TraesCS7D01G498500.1 | Wheat | peroxisome | 26.34 | 59.49 |
Solyc11g071600.1.1 | Tomato | cytosol, nucleus, peroxisome | 61.39 | 59.46 |
CDY09091 | Canola | cytosol | 60.11 | 58.99 |
KRH73423 | Soybean | cytosol | 60.79 | 58.83 |
Solyc01g088170.2.1 | Tomato | cytosol, nucleus, peroxisome | 60.86 | 58.81 |
Solyc01g088230.2.1 | Tomato | peroxisome | 12.57 | 58.66 |
CDY16582 | Canola | cytosol, peroxisome, plastid | 60.41 | 58.46 |
CDX92421 | Canola | cytosol, nucleus, peroxisome | 60.41 | 58.46 |
Solyc11g071590.1.1 | Tomato | peroxisome, plastid | 5.0 | 58.41 |
KRH73425 | Soybean | cytosol | 60.26 | 58.23 |
CDY12326 | Canola | cytosol, peroxisome, plastid | 60.56 | 58.18 |
Solyc11g071610.1.1 | Tomato | cytosol, nucleus, peroxisome | 57.53 | 57.93 |
VIT_18s0041g02400.t01 | Wine grape | cytosol | 8.93 | 57.84 |
KRH14734 | Soybean | cytosol, endoplasmic reticulum, peroxisome | 59.8 | 57.66 |
Solyc11g071620.1.1 | Tomato | cytosol | 59.05 | 57.31 |
GSMUA_Achr9P10490_001 | Banana | cytosol, peroxisome, plastid | 56.93 | 56.84 |
KRH73424 | Soybean | cytosol, mitochondrion, peroxisome, plastid | 15.59 | 56.44 |
Solyc11g071580.1.1 | Tomato | cytosol | 51.32 | 54.46 |
EER90757 | Sorghum | cytosol, mitochondrion, peroxisome, plastid | 55.49 | 53.9 |
TraesCS5A01G428000.1 | Wheat | peroxisome | 54.58 | 53.69 |
EER90760 | Sorghum | peroxisome | 55.34 | 53.55 |
TraesCS5B01G430100.1 | Wheat | cytosol, endoplasmic reticulum, peroxisome | 55.34 | 53.51 |
Zm00001d034388_P010 | Maize | peroxisome | 55.64 | 53.49 |
TraesCS5D01G436000.1 | Wheat | peroxisome | 54.2 | 53.31 |
TraesCS5A01G428200.1 | Wheat | cytosol | 55.19 | 53.29 |
TraesCS5A01G427800.2 | Wheat | cytosol, peroxisome, plastid | 54.2 | 53.27 |
TraesCS5D01G435800.1 | Wheat | cytosol, peroxisome, plastid | 54.13 | 53.16 |
TraesCS5D01G436200.1 | Wheat | cytosol, endoplasmic reticulum, peroxisome | 55.03 | 53.14 |
TraesCS5B01G429900.1 | Wheat | peroxisome | 53.82 | 53.14 |
TraesCS5B01G429700.1 | Wheat | cytosol | 54.13 | 53.12 |
TraesCS5A01G427700.1 | Wheat | cytosol, peroxisome, plastid | 53.97 | 52.97 |
TraesCS5D01G435900.2 | Wheat | cytosol | 53.82 | 52.94 |
TraesCS5A01G427900.1 | Wheat | cytosol | 53.9 | 52.9 |
GSMUA_Achr9P10470_001 | Banana | peroxisome | 52.61 | 52.89 |
EER90758 | Sorghum | peroxisome | 54.73 | 52.85 |
TraesCS5B01G429800.1 | Wheat | cytosol | 53.75 | 52.83 |
TraesCS5B01G429600.1 | Wheat | cytosol, endoplasmic reticulum, extracellular, golgi, peroxisome, plasma membrane, plastid, vacuole | 53.9 | 52.62 |
OQU88862 | Sorghum | cytosol, endoplasmic reticulum, peroxisome | 53.22 | 52.54 |
TraesCS2B01G270600.1 | Wheat | cytosol, peroxisome, plastid | 55.26 | 52.4 |
TraesCS5A01G427600.1 | Wheat | cytosol, peroxisome, plastid | 53.67 | 52.25 |
TraesCS5D01G435700.1 | Wheat | cytosol, endoplasmic reticulum, extracellular, golgi, peroxisome, plasma membrane, plastid, vacuole | 53.75 | 52.24 |
Zm00001d034385_P001 | Maize | cytosol, peroxisome, plastid | 53.67 | 52.21 |
TraesCS7B01G419000.1 | Wheat | plastid | 53.6 | 52.17 |
TraesCS7D01G498300.1 | Wheat | cytosol, mitochondrion, peroxisome, plastid | 53.6 | 52.17 |
TraesCS7D01G498100.1 | Wheat | nucleus, peroxisome, plastid | 53.44 | 52.03 |
OQU88864 | Sorghum | peroxisome | 51.7 | 52.02 |
TraesCS2D01G248700.2 | Wheat | cytosol, peroxisome, plastid | 54.73 | 52.01 |
TraesCS2A01G246300.3 | Wheat | cytosol, peroxisome, plastid | 54.73 | 51.9 |
TraesCS7A01G509200.1 | Wheat | nucleus | 53.14 | 51.73 |
TraesCS7B01G417900.1 | Wheat | cytosol, mitochondrion, peroxisome, plastid | 52.99 | 51.51 |
Zm00001d034387_P002 | Maize | cytosol, nucleus, peroxisome | 53.52 | 51.46 |
KXG34906 | Sorghum | plastid | 53.07 | 51.43 |
Zm00001d013098_P002 | Maize | peroxisome | 55.11 | 51.09 |
KXG34909 | Sorghum | mitochondrion, plastid | 52.84 | 50.76 |
EER98027 | Sorghum | plastid | 53.97 | 50.6 |
Zm00001d019376_P004 | Maize | peroxisome | 53.22 | 50.54 |
CDY67743 | Canola | plastid | 20.67 | 50.28 |
Solyc01g088200.2.1 | Tomato | cytosol | 18.55 | 48.32 |
Zm00001d018869_P001 | Maize | plastid | 52.84 | 48.17 |
Solyc01g088220.2.1 | Tomato | cytosol | 2.65 | 47.95 |
TraesCS7B01G418900.1 | Wheat | peroxisome | 31.26 | 47.64 |
CDX69096 | Canola | cytosol | 31.34 | 30.6 |
CDY22032 | Canola | cytosol | 31.19 | 30.43 |
CDY65337 | Canola | cytosol | 30.96 | 30.21 |
CDX75472 | Canola | cytosol | 30.96 | 30.14 |
Os03t0798101-00 | Rice | cytosol | 2.5 | 29.46 |
HORVU2Hr1G057990.1 | Barley | plastid | 3.26 | 28.29 |
Protein Annotations
Description
BnaC04g38650D
Coordinates
chrLK031809:+:917203..922805
Molecular Weight (calculated)
144352.0 Da
IEP (calculated)
6.288
GRAVY (calculated)
-0.088
Length
1321 amino acids
Sequence
(BLAST)
(BLAST)
0001: MEGKDLEFAV NGERFKVNSV DPSTTLLDFL RLNTPFKSVK LGCGEGKLSF SLSLLFSFVV AGGCGACLVM LSKYDPESDQ VKEHSINSCL TLLCSVNGCS
0101: ITTSEGLGNT KKGFHPIHSR FAGFHASQCG FCTPGMCISL YSALSNSSGG GLTVSEAEKS IAGNLCRCTG YRPIVDACKS FAADVDIEDL GLNSFWKKGD
0201: SKEAMLKSLP PYNPKEHLVT TFPEFLKNVH NGLGYRWTTP CSVTELRTIM ESANAGDSLK LVVGNTGTGY YKDDEGRFDR YVDISRVPEM LTIKRDENGI
0301: EIGASVTISN VIDALKESNF KKMAAHMEKI GNRSIRNSAS IGGNLVMAQS RKFPSDIATL LLAADASVHV LNGGKIEKAK LHEFLDSPPM VDSRRVLLKV
0401: EIPAWTDDAE LLFETYRAAP RSIGNALPYV SAAFFARVSH QMVDECLLAF GSYGGDRSIR ATEVERFLTG KSLSYRVLHE AMGLLRGIIA PGKDTSHPEY
0501: RKALAVGFLF EFFYPLIDNN GRSNGHVDPT ESLLPFLSSS QQVVESDEFH FQPVGEAVVK VGAALQASGE AVFVDDIPTL PDCLHGAFIY STEPLAKIKS
0601: ISFSGNLTPT GVFAVLTFKD VPIQGQNIGS KTVFGPGPLF ADELTRCAGQ RIALVVADTQ KHADRAAKLA VVEYDTNNLE EPILTVEDAV KRSSFFDVHP
0701: MFYPEPVGDV LEGMQEADRK ILLAEFRLGS QYFFYMEPQT ALALPDEDNC VKVFSSSQAP EYVHSVIATC LGIPEHNVRV ITRRVGGGFG GKAIKSMPVA
0801: TACALAAHKL HRPVKIYLNR KTDMIMAGGR HPMKVTYNVG FGSDGKVTAL ELTMLIDAGT EPDVSPILPR NIMGPLRKYD WGALSFDVKV CKTNLPSRTA
0901: MRAPGEVQGS YIAEAIIENV ASSLQMEADE VRKINLHSYD SLRKFYKHIS GEAEDYTLPL LWDKLEISSE FEKRGEMVKE FNMRNVWRKR GISRVPIVHQ
1001: VMQRPTPGRV SILGDGSVVV EVGGIEIGQG LWTKVKQMVA YGLGLTKCTG SDELIERIRV VQADTLGLIQ GGFTAGSTTS ENSCEAVRLC CVTLVERLKP
1101: TMDQMMEKSG SVTWYMLIQQ AYAQSVNLSA SALFTPEFSS MEYLNYGVGV EVDIITGKTE ILRSDIIYDC GKSLNPAVDL GQVEGAFVQG IGFFMMEEYT
1201: TDEKGLVVQQ GTWDYKIPTV DTIPKQFYVE IVNTGHHKNR VLSSKASGEP PLLLAASVHC ATRSAISEAR KQSLSWNCND GNRDVSGTDF ELPVPATMPV
1301: VKGLCGLYSV EKYLEGKICG K
0101: ITTSEGLGNT KKGFHPIHSR FAGFHASQCG FCTPGMCISL YSALSNSSGG GLTVSEAEKS IAGNLCRCTG YRPIVDACKS FAADVDIEDL GLNSFWKKGD
0201: SKEAMLKSLP PYNPKEHLVT TFPEFLKNVH NGLGYRWTTP CSVTELRTIM ESANAGDSLK LVVGNTGTGY YKDDEGRFDR YVDISRVPEM LTIKRDENGI
0301: EIGASVTISN VIDALKESNF KKMAAHMEKI GNRSIRNSAS IGGNLVMAQS RKFPSDIATL LLAADASVHV LNGGKIEKAK LHEFLDSPPM VDSRRVLLKV
0401: EIPAWTDDAE LLFETYRAAP RSIGNALPYV SAAFFARVSH QMVDECLLAF GSYGGDRSIR ATEVERFLTG KSLSYRVLHE AMGLLRGIIA PGKDTSHPEY
0501: RKALAVGFLF EFFYPLIDNN GRSNGHVDPT ESLLPFLSSS QQVVESDEFH FQPVGEAVVK VGAALQASGE AVFVDDIPTL PDCLHGAFIY STEPLAKIKS
0601: ISFSGNLTPT GVFAVLTFKD VPIQGQNIGS KTVFGPGPLF ADELTRCAGQ RIALVVADTQ KHADRAAKLA VVEYDTNNLE EPILTVEDAV KRSSFFDVHP
0701: MFYPEPVGDV LEGMQEADRK ILLAEFRLGS QYFFYMEPQT ALALPDEDNC VKVFSSSQAP EYVHSVIATC LGIPEHNVRV ITRRVGGGFG GKAIKSMPVA
0801: TACALAAHKL HRPVKIYLNR KTDMIMAGGR HPMKVTYNVG FGSDGKVTAL ELTMLIDAGT EPDVSPILPR NIMGPLRKYD WGALSFDVKV CKTNLPSRTA
0901: MRAPGEVQGS YIAEAIIENV ASSLQMEADE VRKINLHSYD SLRKFYKHIS GEAEDYTLPL LWDKLEISSE FEKRGEMVKE FNMRNVWRKR GISRVPIVHQ
1001: VMQRPTPGRV SILGDGSVVV EVGGIEIGQG LWTKVKQMVA YGLGLTKCTG SDELIERIRV VQADTLGLIQ GGFTAGSTTS ENSCEAVRLC CVTLVERLKP
1101: TMDQMMEKSG SVTWYMLIQQ AYAQSVNLSA SALFTPEFSS MEYLNYGVGV EVDIITGKTE ILRSDIIYDC GKSLNPAVDL GQVEGAFVQG IGFFMMEEYT
1201: TDEKGLVVQQ GTWDYKIPTV DTIPKQFYVE IVNTGHHKNR VLSSKASGEP PLLLAASVHC ATRSAISEAR KQSLSWNCND GNRDVSGTDF ELPVPATMPV
1301: VKGLCGLYSV EKYLEGKICG K
0001: MDLEFAVNGE RFKIDSVDPS TTLLEFLRLN TPFKSVKLGC GEGGCGACLV VLSKYDPELD QVKECCINSC LTLLCSVNGC SITTSEGLGN TKKGFHPIHK
0101: RFAGFHASQC GFCTPGMCIS LYSSLANAEN NSSKDFTVSE AEKSVSGNLC RCTGYRPIVD ACKSFASDVD IEDLGLNSFW KKGESKEVMF KNLPPYNPKD
0201: HLVTFPEFLK KKEKVDNGSD HLKYRWTTPF SVAELHNIME AANSGDSLKL VVGNTGTGYY KDEERFDRYI DISNIPEMSM IKKDEKGIEI GAAVTISNAI
0301: DALEKESKSS YVFKKMATHM EKIGNRSIRN SGSIGGNLVM AQSRKFPSDV TTLLLAVDAS VYMLNGRKTE KVTLQEFLEL SPVLDSKRVL LKVEIPSWTA
0401: PSGDDTEFLF ESYRAAPRSI GNALPYLNAA FLALVSRQEA SRKGVTVEKC FLAFGSYGGD HSIRAIEVET FLTGKLLSYS VLYEAVGLLK GIIVPGKDTL
0501: HSEYRKSLAV GYLFEFFYPL IESGHRICSL DSGNKHNNSH VDTVKSLPFL SSSQQVLESN EFKPIGEAVI KVGAALQASG EAVFVDDIPT LPDCLHGAFI
0601: YSTEPLAKIK SLSFRENVTP TGVFAVLTFK DIPQQGQNIG SKTLFGPGPL FADELTRCAG QRIALVVADT QKHADMAAKL AVVEYDTKNL EQPILTVEDA
0701: VKRSSFFEVH PMFYPEPVGD VIKGMEEAER KIISSELRLG SQYFFYMEPQ TALALPDEDN CVKVFSSSQA PEYVHSVIAT CLGIQEHNVR VITRRVGGGF
0801: GGKAVKSMPV ATACALGAYK LQRPVKMFLN RKTDMIMAGG RHPMKINYNV GFRSDGKLTA LELTMLIDAG LEPDVSPIMP RNIMGPLRKY DWGALSFDVK
0901: VCKTNCLSRT AMRAPGEVQG SYIAESIIEN VASSLQMDVD AVRKINLHTY DSLRKFYNHI AGDPDEYTLP LLWEKLEISS KFKERSEMVK EFNLCNVWRK
1001: RGISRVPIVH QVMQRPTPGK VSILSDGSVV VEVGGIEIGQ GLWTKVQQMV AYGLGMVKCE GNEKLLDRIR VVQSDTLGMI QGGFTAGSTT SESSCEAVRL
1101: CCVILVERLK PIMDQMMMEK SGSVTWNILI QQAYGQYINL SASTLYKPEY SSMEYLNYGV GVSEVEVDLV TGKTEILRSD IIYDCGKSLN PAVDLGQTEG
1201: AFVQGIGFFM MEEYTTDEKG LVVQQGTWDY KIPTVDTIPK HFNVEIVNTG HHKNRVLSSK ASGEPPLLLA ASVHCATRSA IREARKHSLS SNFIDGSDSE
1301: FELPVPATMP VVKSLCGLYS VEKYLQGKIK GQ
0101: RFAGFHASQC GFCTPGMCIS LYSSLANAEN NSSKDFTVSE AEKSVSGNLC RCTGYRPIVD ACKSFASDVD IEDLGLNSFW KKGESKEVMF KNLPPYNPKD
0201: HLVTFPEFLK KKEKVDNGSD HLKYRWTTPF SVAELHNIME AANSGDSLKL VVGNTGTGYY KDEERFDRYI DISNIPEMSM IKKDEKGIEI GAAVTISNAI
0301: DALEKESKSS YVFKKMATHM EKIGNRSIRN SGSIGGNLVM AQSRKFPSDV TTLLLAVDAS VYMLNGRKTE KVTLQEFLEL SPVLDSKRVL LKVEIPSWTA
0401: PSGDDTEFLF ESYRAAPRSI GNALPYLNAA FLALVSRQEA SRKGVTVEKC FLAFGSYGGD HSIRAIEVET FLTGKLLSYS VLYEAVGLLK GIIVPGKDTL
0501: HSEYRKSLAV GYLFEFFYPL IESGHRICSL DSGNKHNNSH VDTVKSLPFL SSSQQVLESN EFKPIGEAVI KVGAALQASG EAVFVDDIPT LPDCLHGAFI
0601: YSTEPLAKIK SLSFRENVTP TGVFAVLTFK DIPQQGQNIG SKTLFGPGPL FADELTRCAG QRIALVVADT QKHADMAAKL AVVEYDTKNL EQPILTVEDA
0701: VKRSSFFEVH PMFYPEPVGD VIKGMEEAER KIISSELRLG SQYFFYMEPQ TALALPDEDN CVKVFSSSQA PEYVHSVIAT CLGIQEHNVR VITRRVGGGF
0801: GGKAVKSMPV ATACALGAYK LQRPVKMFLN RKTDMIMAGG RHPMKINYNV GFRSDGKLTA LELTMLIDAG LEPDVSPIMP RNIMGPLRKY DWGALSFDVK
0901: VCKTNCLSRT AMRAPGEVQG SYIAESIIEN VASSLQMDVD AVRKINLHTY DSLRKFYNHI AGDPDEYTLP LLWEKLEISS KFKERSEMVK EFNLCNVWRK
1001: RGISRVPIVH QVMQRPTPGK VSILSDGSVV VEVGGIEIGQ GLWTKVQQMV AYGLGMVKCE GNEKLLDRIR VVQSDTLGMI QGGFTAGSTT SESSCEAVRL
1101: CCVILVERLK PIMDQMMMEK SGSVTWNILI QQAYGQYINL SASTLYKPEY SSMEYLNYGV GVSEVEVDLV TGKTEILRSD IIYDCGKSLN PAVDLGQTEG
1201: AFVQGIGFFM MEEYTTDEKG LVVQQGTWDY KIPTVDTIPK HFNVEIVNTG HHKNRVLSSK ASGEPPLLLA ASVHCATRSA IREARKHSLS SNFIDGSDSE
1301: FELPVPATMP VVKSLCGLYS VEKYLQGKIK GQ
Arabidopsis Description
AAO3Abscisic-aldehyde oxidase [Source:UniProtKB/Swiss-Prot;Acc:Q7G9P4]
SUBAcon: [peroxisome,nucleus,cytosol]
SUBAcon: [peroxisome,nucleus,cytosol]
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.