Subcellular Localization
min:
: max
Winner_takes_all: extracellular, vacuole, mitochondrion, plastid, plasma membrane
Predictor Summary:
Predictor Summary:
- plastid 2
- mitochondrion 2
- extracellular 2
- nucleus 1
- endoplasmic reticulum 1
- vacuole 2
- plasma membrane 2
- golgi 1
Predictors | GFP | MS/MS | Papers |
---|---|---|---|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
CDY33299 | Canola | nucleus | 66.63 | 99.5 |
CDY26534 | Canola | extracellular, golgi, mitochondrion, plasma membrane, plastid | 84.37 | 99.22 |
CDY33300 | Canola | plastid | 26.27 | 99.16 |
AT3G51070.1 | Thale cress | extracellular, mitochondrion, plasma membrane, plastid, vacuole | 85.48 | 86.15 |
Bra036837.1-P | Field mustard | golgi, mitochondrion, plasma membrane, plastid, vacuole | 81.82 | 80.74 |
VIT_04s0023g02790.t01 | Wine grape | cytosol | 44.35 | 79.05 |
Bra010830.1-P | Field mustard | golgi | 46.78 | 61.88 |
KRH28732 | Soybean | endoplasmic reticulum | 52.44 | 61.59 |
KRH76730 | Soybean | endoplasmic reticulum, golgi, plastid | 53.1 | 60.18 |
Bra030140.1-P | Field mustard | endoplasmic reticulum, golgi, mitochondrion, plastid | 47.67 | 57.33 |
GSMUA_Achr4P19870_001 | Banana | golgi, mitochondrion | 52.22 | 57.09 |
Bra032319.1-P | Field mustard | cytosol | 47.45 | 56.84 |
Bra005438.1-P | Field mustard | endoplasmic reticulum, mitochondrion, plasma membrane, vacuole | 47.56 | 56.3 |
PGSC0003DMT400009110 | Potato | cytosol | 50.55 | 55.61 |
Solyc02g084670.2.1 | Tomato | unclear | 53.55 | 54.7 |
Os06t0712800-01 | Rice | cytosol | 26.94 | 54.36 |
KRH69842 | Soybean | mitochondrion | 48.89 | 53.39 |
HORVU0Hr1G021970.3 | Barley | cytosol, nucleus | 44.68 | 50.19 |
Bra000181.1-P | Field mustard | endoplasmic reticulum, extracellular, vacuole | 32.37 | 50.0 |
OQU77087 | Sorghum | mitochondrion | 48.56 | 47.45 |
TraesCS7D01G380100.1 | Wheat | mitochondrion | 46.67 | 46.11 |
TraesCS7B01G286500.1 | Wheat | mitochondrion | 46.56 | 45.95 |
Bra024260.1-P | Field mustard | extracellular, mitochondrion, plasma membrane, vacuole | 47.45 | 45.82 |
TraesCS7A01G383700.2 | Wheat | plastid | 43.57 | 42.86 |
Bra014710.1-P | Field mustard | endoplasmic reticulum, golgi, vacuole | 30.82 | 41.12 |
Zm00001d036423_P002 | Maize | mitochondrion | 36.59 | 40.15 |
Bra001909.1-P | Field mustard | endoplasmic reticulum, golgi | 26.72 | 39.77 |
Bra015316.1-P | Field mustard | endoplasmic reticulum, golgi | 26.94 | 39.0 |
Bra014936.1-P | Field mustard | endoplasmic reticulum, golgi, vacuole | 26.39 | 38.83 |
Bra006254.1-P | Field mustard | endoplasmic reticulum, golgi | 26.05 | 38.65 |
Bra030570.1-P | Field mustard | endoplasmic reticulum, golgi | 26.39 | 38.39 |
Bra009489.1-P | Field mustard | plastid | 25.06 | 38.24 |
Bra025737.1-P | Field mustard | mitochondrion | 30.27 | 37.92 |
Bra016293.1-P | Field mustard | endoplasmic reticulum, golgi | 25.61 | 37.81 |
Bra000145.1-P | Field mustard | endoplasmic reticulum | 28.38 | 37.76 |
Bra015681.1-P | Field mustard | cytosol, endoplasmic reticulum, peroxisome | 27.05 | 37.65 |
Bra000296.1-P | Field mustard | plastid | 22.73 | 37.34 |
Bra012437.1-P | Field mustard | endoplasmic reticulum, golgi | 25.39 | 37.3 |
Bra029822.1-P | Field mustard | mitochondrion, plastid | 24.06 | 37.16 |
Bra024678.1-P | Field mustard | endoplasmic reticulum, golgi | 25.17 | 36.97 |
Bra023213.1-P | Field mustard | endoplasmic reticulum, golgi | 24.5 | 36.83 |
Bra000959.1-P | Field mustard | plastid | 24.28 | 36.68 |
Bra020975.1-P | Field mustard | endoplasmic reticulum, golgi | 24.06 | 36.41 |
Bra005018.1-P | Field mustard | mitochondrion | 27.94 | 36.31 |
Bra033172.1-P | Field mustard | cytosol | 24.94 | 36.29 |
Bra012557.1-P | Field mustard | cytosol, golgi, nucleus | 24.17 | 36.27 |
Bra037916.1-P | Field mustard | cytosol | 25.06 | 36.16 |
Bra033872.1-P | Field mustard | endoplasmic reticulum, golgi, mitochondrion, plasma membrane | 24.17 | 36.15 |
Bra013282.1-P | Field mustard | endoplasmic reticulum, golgi, vacuole | 24.61 | 35.81 |
Bra008529.1-P | Field mustard | mitochondrion | 24.28 | 35.27 |
Bra035476.1-P | Field mustard | cytosol | 24.72 | 34.79 |
Bra004933.1-P | Field mustard | cytosol, endoplasmic reticulum, mitochondrion, plastid | 24.28 | 34.65 |
Bra041005.1-P | Field mustard | cytosol | 24.39 | 34.48 |
Bra039319.1-P | Field mustard | golgi | 23.84 | 34.02 |
Bra031938.1-P | Field mustard | extracellular, mitochondrion, nucleus, plastid | 10.53 | 31.88 |
Bra013374.1-P | Field mustard | cytosol, golgi | 24.39 | 31.12 |
Bra037356.1-P | Field mustard | mitochondrion | 23.73 | 30.92 |
Bra017538.1-P | Field mustard | golgi, plasma membrane | 24.17 | 30.15 |
Bra009158.1-P | Field mustard | cytosol | 29.16 | 27.57 |
Protein Annotations
Gene3D:3.40.50.150 | MapMan:35.1 | EnsemblPlantsGene:Bra038881 | EnsemblPlants:Bra038881.1 | EnsemblPlants:Bra038881.1-P | ncoils:Coil |
GO:GO:0003674 | GO:GO:0003824 | GO:GO:0005575 | GO:GO:0008150 | GO:GO:0008152 | GO:GO:0008168 |
GO:GO:0016020 | GO:GO:0016021 | GO:GO:0016740 | GO:GO:0032259 | UniProt:M4FCR2 | PFAM:PF03141 |
PANTHER:PTHR10108 | PANTHER:PTHR10108:SF944 | InterPro:Put_SAM_MeTrfase | InterPro:SAM-dependent_MTases | SUPFAM:SSF53335 | TMHMM:TMhelix |
UniParc:UPI00025453C5 | SEG:seg | : | : | : | : |
Description
AT3G51070 (E=0.0) | dehydration-responsive protein-related
Coordinates
chrA01:-:12795800..12799324
Molecular Weight (calculated)
102920.0 Da
IEP (calculated)
5.263
GRAVY (calculated)
-0.953
Length
902 amino acids
Sequence
(BLAST)
(BLAST)
001: MAFGKGRGNK RSSSTSYAST ITMVVFVALC VIGVWMLSSN SIIPPQISQA NTRTVISETE RADVSASSNG NDEPEPTRQE SDEHPTFEDN PGKLPDDAIK
101: SEYEQQKSAK EKNEKTSSKA RDEVQRETQS QETQQDNEKI PEEKEKNNKI MQESDEGRVK QVVKEFEKEQ KEQRDEDSGA QSGNNKGTQE QEQEQEQGQG
201: KEFPDVEQGK KDQDSNAEVT YTDKTKEEQP METEQGGTSE NSKNEENGQQ QQQQDDQNSG KEENMENNTT SEENEKEQKS TKDENGQQDE HNTTEDESGS
301: KEEQSTTKED NVEQQQEEQK EEKRQESSEA SGFGSGIPKE SAESQKSWKS QATESKDEKQ RQTTESNTIE SIMVGKAWEL CNATAGYDYI PCLDNEAAIK
401: KLTSRRHFEH RERHCPEDPP TCLVSLPDGY KESIKWPESR NKIWYHNVPH TKLAEVKGHQ NWVKVTGEFL TFPGGGTQFI HGALHYIDFL QQALKNIAWG
501: KRTRVVLDVG CGVASFGGFL FERDVIAMSL APKDEHEAQV QFALERKIPA ISAVMGSKRL PFPSRVFDLI HCARCRVPWH NEGGMLLLEL NRMLRPGGYF
601: VWSATPVYQK LEEDVQIWKE MSALTKSMCW ELVTINKDKL NGVGAAIYQK PTTNECYEKR KRNRPPMCKN NDDANAAWYV PLQACMHKVP TNVVERGCKW
701: PVNWPRRLQT PPYWLNSSQM GIYGKPAPRD FTTDYEHWKH VVSKVYMNEI GLSWSNVRNV MDMRAVYGGF AAALKDLQVW VMNVVNINSP DTLPIIYERG
801: LFGIYHDWCE SFSTYPRSYD LLHADHLFSK LRPRCNLVPV MAEVDRIVRP GGKLIVRDEA NVIREIENML KSLHWDVHLT FSKHQEGILS AQKGFWRPDT
901: SP
101: SEYEQQKSAK EKNEKTSSKA RDEVQRETQS QETQQDNEKI PEEKEKNNKI MQESDEGRVK QVVKEFEKEQ KEQRDEDSGA QSGNNKGTQE QEQEQEQGQG
201: KEFPDVEQGK KDQDSNAEVT YTDKTKEEQP METEQGGTSE NSKNEENGQQ QQQQDDQNSG KEENMENNTT SEENEKEQKS TKDENGQQDE HNTTEDESGS
301: KEEQSTTKED NVEQQQEEQK EEKRQESSEA SGFGSGIPKE SAESQKSWKS QATESKDEKQ RQTTESNTIE SIMVGKAWEL CNATAGYDYI PCLDNEAAIK
401: KLTSRRHFEH RERHCPEDPP TCLVSLPDGY KESIKWPESR NKIWYHNVPH TKLAEVKGHQ NWVKVTGEFL TFPGGGTQFI HGALHYIDFL QQALKNIAWG
501: KRTRVVLDVG CGVASFGGFL FERDVIAMSL APKDEHEAQV QFALERKIPA ISAVMGSKRL PFPSRVFDLI HCARCRVPWH NEGGMLLLEL NRMLRPGGYF
601: VWSATPVYQK LEEDVQIWKE MSALTKSMCW ELVTINKDKL NGVGAAIYQK PTTNECYEKR KRNRPPMCKN NDDANAAWYV PLQACMHKVP TNVVERGCKW
701: PVNWPRRLQT PPYWLNSSQM GIYGKPAPRD FTTDYEHWKH VVSKVYMNEI GLSWSNVRNV MDMRAVYGGF AAALKDLQVW VMNVVNINSP DTLPIIYERG
801: LFGIYHDWCE SFSTYPRSYD LLHADHLFSK LRPRCNLVPV MAEVDRIVRP GGKLIVRDEA NVIREIENML KSLHWDVHLT FSKHQEGILS AQKGFWRPDT
901: SP
001: MAFGRGRGNK RTSTSSYAST ITMVIFVALC VFGVWMLSSN SVIPPQITQG STRAAVAETE RSDVSASSNG NDEPEPTKQE SDEQQAFEDN PGKLPDDAVK
101: SEDEQRKSAK EKSETTSSKT QTQETQQNND DKISEEKEKD NGKENQTVQE SEEGQMKKVV KEFEKEQKQQ RDEDAGTQPK GTQGQEQGQG KEQPDVEQGN
201: KQGQEQDSNT DVTFTDATKQ EQPMETGQGE TSETSKNEEN GQPEEQNSGN EETGQQNEEK TTASEENGKG EKSMKDENGQ QEEHTTAEEE SGNKEEESTS
301: KDENMEQQEE RKDEKKHEQG SEASGFGSGI PKESAESQKS WKSQATESKD EKQRQTSESN TVERIMDGNA WVLCNATAGT DYIPCLDNEE AIMKLRSRRH
401: FEHRERHCPE DPPTCLVPLP EGYKEAIKWP ESRDKIWYHN VPHTKLAEVK GHQNWVKVTG EFLTFPGGGT QFIHGALHYI DFLQQSLKNI AWGKRTRVIL
501: DVGCGVASFG GFLFERDVIA MSLAPKDEHE AQVQFALERK IPAISAVMGS KRLPFPSRVF DLIHCARCRV PWHNEGGMLL LELNRMLRPG GYFVWSATPV
601: YQKLEEDVQI WKEMSALTKS LCWELVTINK DKLNGIGAAI YQKPATNECY EKRKHNKPPL CKNNDDANAA WYVPLQACMH KVPTNVVERG SKWPVNWPRR
701: LQTPPYWLNS SQMGIYGKPA PRDFTTDYEH WKHVVSKVYM NEIGISWSNV RNVMDMRAVY GGFAAALKDL QVWVMNVVNI NSPDTLPIIY ERGLFGIYHD
801: WCESFSTYPR SYDLLHADHL FSKLRTRCNL VPVMAEVDRI VRPGGKLIVR DESNVIREVE NMLKSLHWDV HLTFSKHQEG ILSAQKGFWR PETSQ
101: SEDEQRKSAK EKSETTSSKT QTQETQQNND DKISEEKEKD NGKENQTVQE SEEGQMKKVV KEFEKEQKQQ RDEDAGTQPK GTQGQEQGQG KEQPDVEQGN
201: KQGQEQDSNT DVTFTDATKQ EQPMETGQGE TSETSKNEEN GQPEEQNSGN EETGQQNEEK TTASEENGKG EKSMKDENGQ QEEHTTAEEE SGNKEEESTS
301: KDENMEQQEE RKDEKKHEQG SEASGFGSGI PKESAESQKS WKSQATESKD EKQRQTSESN TVERIMDGNA WVLCNATAGT DYIPCLDNEE AIMKLRSRRH
401: FEHRERHCPE DPPTCLVPLP EGYKEAIKWP ESRDKIWYHN VPHTKLAEVK GHQNWVKVTG EFLTFPGGGT QFIHGALHYI DFLQQSLKNI AWGKRTRVIL
501: DVGCGVASFG GFLFERDVIA MSLAPKDEHE AQVQFALERK IPAISAVMGS KRLPFPSRVF DLIHCARCRV PWHNEGGMLL LELNRMLRPG GYFVWSATPV
601: YQKLEEDVQI WKEMSALTKS LCWELVTINK DKLNGIGAAI YQKPATNECY EKRKHNKPPL CKNNDDANAA WYVPLQACMH KVPTNVVERG SKWPVNWPRR
701: LQTPPYWLNS SQMGIYGKPA PRDFTTDYEH WKHVVSKVYM NEIGISWSNV RNVMDMRAVY GGFAAALKDL QVWVMNVVNI NSPDTLPIIY ERGLFGIYHD
801: WCESFSTYPR SYDLLHADHL FSKLRTRCNL VPVMAEVDRI VRPGGKLIVR DESNVIREVE NMLKSLHWDV HLTFSKHQEG ILSAQKGFWR PETSQ
Arabidopsis Description
Probable methyltransferase PMT27 [Source:UniProtKB/Swiss-Prot;Acc:Q9SD39]
SUBAcon: [extracellular,vacuole,mitochondrion,plastid,plasma membrane]
SUBAcon: [extracellular,vacuole,mitochondrion,plastid,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.