Subcellular Localization
min:
: max
Winner_takes_all: plastid
Predictor Summary:
Predictor Summary:
- nucleus 1
- mitochondrion 1
- plastid 1
- peroxisome 1
Predictors | GFP | MS/MS | Papers | ||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
plastid:
22160430
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
TraesCS7D01G498300.1 | Wheat | cytosol, mitochondrion, peroxisome, plastid | 97.57 | 97.57 |
TraesCS7B01G417900.1 | Wheat | cytosol, mitochondrion, peroxisome, plastid | 95.5 | 95.36 |
TraesCS7B01G418900.1 | Wheat | peroxisome | 57.11 | 89.39 |
Os07t0282401-00 | Rice | peroxisome | 18.64 | 79.31 |
Os07t0281800-01 | Rice | peroxisome | 22.25 | 79.06 |
OQU88862 | Sorghum | cytosol, endoplasmic reticulum, peroxisome | 77.89 | 79.0 |
OQU88864 | Sorghum | peroxisome | 76.2 | 78.75 |
KXG34906 | Sorghum | plastid | 78.56 | 78.21 |
HORVU7Hr1G114020.3 | Barley | endoplasmic reticulum, extracellular, golgi, peroxisome, plasma membrane, vacuole | 37.51 | 78.07 |
KXG34909 | Sorghum | mitochondrion, plastid | 78.56 | 77.53 |
Os07t0282300-01 | Rice | extracellular | 47.9 | 77.01 |
Zm00001d019376_P004 | Maize | peroxisome | 77.82 | 75.92 |
TraesCS5B01G429900.1 | Wheat | peroxisome | 62.12 | 63.0 |
TraesCS5B01G429700.1 | Wheat | cytosol | 62.49 | 63.0 |
TraesCS5B01G430100.1 | Wheat | cytosol, endoplasmic reticulum, peroxisome | 62.79 | 62.37 |
TraesCS5B01G429800.1 | Wheat | cytosol | 61.68 | 62.28 |
TraesCS5B01G429600.1 | Wheat | cytosol, endoplasmic reticulum, extracellular, golgi, peroxisome, plasma membrane, plastid, vacuole | 62.05 | 62.23 |
CDY57476 | Canola | cytosol | 8.47 | 60.53 |
VIT_18s0041g02390.t01 | Wine grape | peroxisome | 35.15 | 60.15 |
PGSC0003DMT400048157 | Potato | peroxisome | 33.75 | 59.95 |
PGSC0003DMT400017595 | Potato | mitochondrion, peroxisome, plastid | 21.3 | 58.27 |
PGSC0003DMT400017593 | Potato | peroxisome | 14.15 | 58.18 |
PGSC0003DMT400050626 | Potato | cytosol | 2.43 | 57.89 |
CDY55449 | Canola | mitochondrion | 8.11 | 57.59 |
TraesCS2B01G270600.1 | Wheat | cytosol, peroxisome, plastid | 58.81 | 57.29 |
VIT_18s0041g02400.t01 | Wine grape | cytosol | 8.55 | 56.86 |
VIT_06s0009g00770.t01 | Wine grape | cytosol, nucleus, peroxisome | 56.82 | 56.48 |
VIT_18s0041g02430.t01 | Wine grape | cytosol | 56.37 | 56.33 |
VIT_18s0041g02410.t01 | Wine grape | cytosol | 54.97 | 56.26 |
Solyc11g071590.1.1 | Tomato | peroxisome, plastid | 4.64 | 55.75 |
CDY70226 | Canola | peroxisome | 17.61 | 55.71 |
Solyc11g071600.1.1 | Tomato | cytosol, nucleus, peroxisome | 55.93 | 55.65 |
PGSC0003DMT400048153 | Potato | cytosol | 55.93 | 55.65 |
Bra034975.1-P | Field mustard | cytosol | 50.77 | 55.39 |
CDX87955 | Canola | cytosol, peroxisome, plastid | 53.06 | 55.3 |
PGSC0003DMT400022472 | Potato | cytosol, nucleus, peroxisome | 55.42 | 55.25 |
Bra019448.1-P | Field mustard | cytosol, peroxisome, plastid | 52.69 | 55.04 |
Solyc11g071610.1.1 | Tomato | cytosol, nucleus, peroxisome | 53.21 | 55.03 |
Solyc01g088170.2.1 | Tomato | cytosol, nucleus, peroxisome | 55.42 | 55.01 |
CDY30951 | Canola | cytosol, peroxisome, plastid | 51.58 | 54.99 |
Solyc01g009230.2.1 | Tomato | cytosol | 55.12 | 54.96 |
KRH14734 | Soybean | cytosol, endoplasmic reticulum, peroxisome | 54.97 | 54.45 |
AT3G43600.1 | Thale cress | cytosol, nucleus, peroxisome | 52.91 | 54.35 |
Solyc11g071620.1.1 | Tomato | cytosol | 54.46 | 54.3 |
KRH73423 | Soybean | cytosol | 54.61 | 54.29 |
AT2G27150.2 | Thale cress | cytosol, nucleus, peroxisome | 53.21 | 54.2 |
KRH73425 | Soybean | cytosol | 54.53 | 54.13 |
Solyc01g088230.2.1 | Tomato | peroxisome | 11.2 | 53.71 |
KRH73424 | Soybean | cytosol, mitochondrion, peroxisome, plastid | 14.44 | 53.7 |
CDX77070 | Canola | cytosol | 52.17 | 53.6 |
CDX89810 | Canola | cytosol, peroxisome, plastid | 52.47 | 53.13 |
AT5G20960.1 | Thale cress | cytosol, peroxisome, plastid | 53.43 | 53.0 |
Bra015330.1-P | Field mustard | cytosol, peroxisome, plastid | 52.25 | 52.95 |
PGSC0003DMT400017592 | Potato | cytosol, nucleus, peroxisome | 34.56 | 52.76 |
AT1G04580.1 | Thale cress | cytosol, nucleus, peroxisome | 51.81 | 52.58 |
CDY18247 | Canola | cytosol, peroxisome, plastid | 51.81 | 52.54 |
CDY48200 | Canola | peroxisome | 37.14 | 52.5 |
CDY09091 | Canola | cytosol | 52.03 | 52.45 |
Bra020140.1-P | Field mustard | cytosol | 51.88 | 52.26 |
CDY16582 | Canola | cytosol, peroxisome, plastid | 52.32 | 52.01 |
CDX92421 | Canola | cytosol, nucleus, peroxisome | 52.25 | 51.94 |
Bra034325.1-P | Field mustard | cytosol | 35.08 | 51.85 |
Bra002347.1-P | Field mustard | cytosol | 51.95 | 51.69 |
CDY12326 | Canola | cytosol, peroxisome, plastid | 52.32 | 51.64 |
Solyc11g071580.1.1 | Tomato | cytosol | 47.24 | 51.49 |
AT1G02590.1 | Thale cress | cytosol, peroxisome, plastid | 3.32 | 50.56 |
Solyc01g088200.2.1 | Tomato | cytosol | 17.76 | 47.53 |
CDY67743 | Canola | plastid | 18.87 | 47.15 |
Bra034974.1-P | Field mustard | cytosol | 8.4 | 40.71 |
Solyc01g088220.2.1 | Tomato | cytosol | 2.06 | 38.36 |
TraesCS6B01G118400.1 | Wheat | mitochondrion | 8.77 | 34.29 |
TraesCS1B01G205300.1 | Wheat | cytosol | 29.85 | 29.58 |
TraesCS6B01G118300.1 | Wheat | peroxisome | 16.29 | 26.56 |
Protein Annotations
Description
No Description!
Coordinates
chr7B:+:687581556..687595992
Molecular Weight (calculated)
147309.0 Da
IEP (calculated)
7.147
GRAVY (calculated)
-0.082
Length
1357 amino acids
Sequence
(BLAST)
(BLAST)
0001: MGSTRLEKVV FALNGRRYEV AGADVHPGTT LLEFIRTRTP FTGTKLGCGE GGCGACVVLI ATYNPTKAEV TEFSASSCLT LLYNINLCSV ITTEGLGNTK
0101: DGFHSIQKRM SGFHASQCGF CTPGMCMSIF TSLANADKSN KPEPQKGFSK LTVSEAERAF SGNMCRCTGY RPIVDACKSF ASDVDLEDLG LNVFWKKGDK
0201: HADVSKLPAY TLGGGVCTFP DFLKSEIKSS LHHLNDDSVV TVSSEGWYHP KSIEQYYDLL NSGLFSDCTV KVVVANTSSG VKGYKDQDLY NKYIDISDIP
0301: ELSAIWKKDS GIEIGAATPI SKTIEILEQE AGSKSCANGS VVFRKLTEHM SKVATPFVRN TASIGGNIIL AQKYPFPSDI ATILLGVAST VRLQVYSKTL
0401: EVTLEEFLEL PPSDPSTLLL SIFIPHWASD SQKESKVIFE TYRAAPRPLG NAVSYINSAM LGHVSQKSCG DLVLSNLHMA FGAYGTEHAI RATKVEQHLN
0501: GKVLTPSVVL EAVRLLRETI VPMKGTSHPE YRVSVAVGFL FSFLSPFAKG IKGPGNTLSI GSASSSNTDD PCNLPLSSRR ETISSDDHKP VGEPIKKYAV
0601: ELQTSGEAVY VDDIPAPKNC LYGEFIYSTQ PLAYVKNIKF KPSLASEKVL TVVSAKDIPS GGQNIGSSFL FGDEPLFGSP VAEYAGQALG VVIAETQRYA
0701: NLAGKQVVVE YDTKDLKPPI LTVEQAVQNN SYFEVPPERY PKQVGDFSKG MAEADHKILA TEVKLASQYY FYMETQTALA IPDEDNTLVV YSSSQYPELA
0801: QSVIARCLGI PFSNVRVITR RVGGGFGGKT FRSYTVATAA ALCAFKLRRP VRMYLNRSTD MIMIGGRHPI KAYYTVGFKS NGRITALHLD ILINAGISPD
0901: ASPLIPDYMM SGLKKYNWGA LSFDIKVCKT NNTSKSTMRA PGDTQGSFIA EAIIEHVASV LSLDANNVRQ KNFHTYDSLV LFYPESAGEA STYTLHSIFN
1001: RLLATSSYLH RAESIKHFNN RNKWRKRGIS CVPLIFKVAP RPAPGRVSVL NDGSIVVEVG GIEVGQGLWT KVQQMTVFAL GQLWPDGSEC LLDRVRLLQA
1101: DTLNLIQGGL TAGSTSSESS CAATLEACNM LVDRLKPVMK KLKQQSGGAV SWDALIAQAI KDNVNLSSSA YWVPGQESST YLNYGAGISE VEIDVLTGAI
1201: TLLRSDLVYD CGKSLNPAVD LGQIEGSFIQ GIGFFINEEH ETNADGLVVS DSTWVYKIPS VDTIPKQFNA EVLNSGYHKN RVLSSKASGE PALVLAASVH
1301: CAVREAIRAA RKEFGSSELT FQLDVPAPMT HVKEMCGLDV VDKYLESLSE HQSRAAA
0101: DGFHSIQKRM SGFHASQCGF CTPGMCMSIF TSLANADKSN KPEPQKGFSK LTVSEAERAF SGNMCRCTGY RPIVDACKSF ASDVDLEDLG LNVFWKKGDK
0201: HADVSKLPAY TLGGGVCTFP DFLKSEIKSS LHHLNDDSVV TVSSEGWYHP KSIEQYYDLL NSGLFSDCTV KVVVANTSSG VKGYKDQDLY NKYIDISDIP
0301: ELSAIWKKDS GIEIGAATPI SKTIEILEQE AGSKSCANGS VVFRKLTEHM SKVATPFVRN TASIGGNIIL AQKYPFPSDI ATILLGVAST VRLQVYSKTL
0401: EVTLEEFLEL PPSDPSTLLL SIFIPHWASD SQKESKVIFE TYRAAPRPLG NAVSYINSAM LGHVSQKSCG DLVLSNLHMA FGAYGTEHAI RATKVEQHLN
0501: GKVLTPSVVL EAVRLLRETI VPMKGTSHPE YRVSVAVGFL FSFLSPFAKG IKGPGNTLSI GSASSSNTDD PCNLPLSSRR ETISSDDHKP VGEPIKKYAV
0601: ELQTSGEAVY VDDIPAPKNC LYGEFIYSTQ PLAYVKNIKF KPSLASEKVL TVVSAKDIPS GGQNIGSSFL FGDEPLFGSP VAEYAGQALG VVIAETQRYA
0701: NLAGKQVVVE YDTKDLKPPI LTVEQAVQNN SYFEVPPERY PKQVGDFSKG MAEADHKILA TEVKLASQYY FYMETQTALA IPDEDNTLVV YSSSQYPELA
0801: QSVIARCLGI PFSNVRVITR RVGGGFGGKT FRSYTVATAA ALCAFKLRRP VRMYLNRSTD MIMIGGRHPI KAYYTVGFKS NGRITALHLD ILINAGISPD
0901: ASPLIPDYMM SGLKKYNWGA LSFDIKVCKT NNTSKSTMRA PGDTQGSFIA EAIIEHVASV LSLDANNVRQ KNFHTYDSLV LFYPESAGEA STYTLHSIFN
1001: RLLATSSYLH RAESIKHFNN RNKWRKRGIS CVPLIFKVAP RPAPGRVSVL NDGSIVVEVG GIEVGQGLWT KVQQMTVFAL GQLWPDGSEC LLDRVRLLQA
1101: DTLNLIQGGL TAGSTSSESS CAATLEACNM LVDRLKPVMK KLKQQSGGAV SWDALIAQAI KDNVNLSSSA YWVPGQESST YLNYGAGISE VEIDVLTGAI
1201: TLLRSDLVYD CGKSLNPAVD LGQIEGSFIQ GIGFFINEEH ETNADGLVVS DSTWVYKIPS VDTIPKQFNA EVLNSGYHKN RVLSSKASGE PALVLAASVH
1301: CAVREAIRAA RKEFGSSELT FQLDVPAPMT HVKEMCGLDV VDKYLESLSE HQSRAAA
0001: MGEKAIDEDK VEAMKSSKTS LVFAINGQRF ELELSSIDPS TTLVDFLRNK TPFKSVKLGC GEGGCGACVV LLSKYDPLLE KVDEFTISSC LTLLCSIDGC
0101: SITTSDGLGN SRVGFHAVHE RIAGFHATQC GFCTPGMSVS MFSALLNADK SHPPPRSGFS NLTAVEAEKA VSGNLCRCTG YRPLVDACKS FAADVDIEDL
0201: GFNAFCKKGE NRDEVLRRLP CYDHTSSHVC TFPEFLKKEI KNDMSLHSRK YRWSSPVSVS ELQGLLEVEN GLSVKLVAGN TSTGYYKEEK ERKYERFIDI
0301: RKIPEFTMVR SDEKGVELGA CVTISKAIEV LREEKNVSVL AKIATHMEKI ANRFVRNTGT IGGNIMMAQR KQFPSDLATI LVAAQATVKI MTSSSSQEQF
0401: TLEEFLQQPP LDAKSLLLSL EIPSWHSAKK NGSSEDSILL FETYRAAPRP LGNALAFLNA AFSAEVTEAL DGIVVNDCQL VFGAYGTKHA HRAKKVEEFL
0501: TGKVISDEVL MEAISLLKDE IVPDKGTSNP GYRSSLAVTF LFEFFGSLTK KNAKTTNGWL NGGCKEIGFD QNVESLKPEA MLSSAQQIVE NQEHSPVGKG
0601: ITKAGACLQA SGEAVYVDDI PAPENCLYGA FIYSTMPLAR IKGIRFKQNR VPEGVLGIIT YKDIPKGGQN IGTNGFFTSD LLFAEEVTHC AGQIIAFLVA
0701: DSQKHADIAA NLVVIDYDTK DLKPPILSLE EAVENFSLFE VPPPLRGYPV GDITKGMDEA EHKILGSKIS FGSQYFFYME TQTALAVPDE DNCMVVYSST
0801: QTPEFVHQTI AGCLGVPENN VRVITRRVGG GFGGKAVKSM PVAAACALAA SKMQRPVRTY VNRKTDMITT GGRHPMKVTY SVGFKSNGKI TALDVEVLLD
0901: AGLTEDISPL MPKGIQGALM KYDWGALSFN VKVCKTNTVS RTALRAPGDV QGSYIGEAII EKVASYLSVD VDEIRKVNLH TYESLRLFHS AKAGEFSEYT
1001: LPLLWDRIDE FSGFNKRRKV VEEFNASNKW RKRGISRVPA VYAVNMRSTP GRVSVLGDGS IVVEVQGIEI GQGLWTKVKQ MAAYSLGLIQ CGTTSDELLK
1101: KIRVIQSDTL SMVQGSMTAG STTSEASSEA VRICCDGLVE RLLPVKTALV EQTGGPVTWD SLISQAYQQS INMSVSSKYM PDSTGEYLNY GIAASEVEVN
1201: VLTGETTILR TDIIYDCGKS LNPAVDLGQI EGAFVQGLGF FMLEEFLMNS DGLVVTDSTW TYKIPTVDTI PRQFNVEILN SGQHKNRVLS SKASGEPPLL
1301: LAASVHCAVR AAVKEARKQI LSWNSNKQGT DMYFELPVPA TMPIVKEFCG LDVVEKYLEW KIQQRKNV
0101: SITTSDGLGN SRVGFHAVHE RIAGFHATQC GFCTPGMSVS MFSALLNADK SHPPPRSGFS NLTAVEAEKA VSGNLCRCTG YRPLVDACKS FAADVDIEDL
0201: GFNAFCKKGE NRDEVLRRLP CYDHTSSHVC TFPEFLKKEI KNDMSLHSRK YRWSSPVSVS ELQGLLEVEN GLSVKLVAGN TSTGYYKEEK ERKYERFIDI
0301: RKIPEFTMVR SDEKGVELGA CVTISKAIEV LREEKNVSVL AKIATHMEKI ANRFVRNTGT IGGNIMMAQR KQFPSDLATI LVAAQATVKI MTSSSSQEQF
0401: TLEEFLQQPP LDAKSLLLSL EIPSWHSAKK NGSSEDSILL FETYRAAPRP LGNALAFLNA AFSAEVTEAL DGIVVNDCQL VFGAYGTKHA HRAKKVEEFL
0501: TGKVISDEVL MEAISLLKDE IVPDKGTSNP GYRSSLAVTF LFEFFGSLTK KNAKTTNGWL NGGCKEIGFD QNVESLKPEA MLSSAQQIVE NQEHSPVGKG
0601: ITKAGACLQA SGEAVYVDDI PAPENCLYGA FIYSTMPLAR IKGIRFKQNR VPEGVLGIIT YKDIPKGGQN IGTNGFFTSD LLFAEEVTHC AGQIIAFLVA
0701: DSQKHADIAA NLVVIDYDTK DLKPPILSLE EAVENFSLFE VPPPLRGYPV GDITKGMDEA EHKILGSKIS FGSQYFFYME TQTALAVPDE DNCMVVYSST
0801: QTPEFVHQTI AGCLGVPENN VRVITRRVGG GFGGKAVKSM PVAAACALAA SKMQRPVRTY VNRKTDMITT GGRHPMKVTY SVGFKSNGKI TALDVEVLLD
0901: AGLTEDISPL MPKGIQGALM KYDWGALSFN VKVCKTNTVS RTALRAPGDV QGSYIGEAII EKVASYLSVD VDEIRKVNLH TYESLRLFHS AKAGEFSEYT
1001: LPLLWDRIDE FSGFNKRRKV VEEFNASNKW RKRGISRVPA VYAVNMRSTP GRVSVLGDGS IVVEVQGIEI GQGLWTKVKQ MAAYSLGLIQ CGTTSDELLK
1101: KIRVIQSDTL SMVQGSMTAG STTSEASSEA VRICCDGLVE RLLPVKTALV EQTGGPVTWD SLISQAYQQS INMSVSSKYM PDSTGEYLNY GIAASEVEVN
1201: VLTGETTILR TDIIYDCGKS LNPAVDLGQI EGAFVQGLGF FMLEEFLMNS DGLVVTDSTW TYKIPTVDTI PRQFNVEILN SGQHKNRVLS SKASGEPPLL
1301: LAASVHCAVR AAVKEARKQI LSWNSNKQGT DMYFELPVPA TMPIVKEFCG LDVVEKYLEW KIQQRKNV
Arabidopsis Description
AAO1Indole-3-acetaldehyde oxidase [Source:UniProtKB/Swiss-Prot;Acc:Q7G193]
SUBAcon: [peroxisome,plastid,cytosol]
SUBAcon: [peroxisome,plastid,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.