Subcellular Localization
min:
: max
Winner_takes_all: cytosol
Predictor Summary:
Predictor Summary:
- nucleus 1
- mitochondrion 2
- cytosol 2
- plastid 1
Predictors | GFP | MS/MS | Papers | ||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
Os11t0104866-00 | Rice | plasma membrane | 68.75 | 87.54 |
Os12t0104766-00 | Rice | plasma membrane | 68.48 | 87.2 |
CDY22157 | Canola | cytosol | 7.88 | 74.36 |
VIT_03s0017g00210.t01 | Wine grape | cytosol, extracellular | 4.76 | 66.04 |
CDY08549 | Canola | cytosol | 99.32 | 47.31 |
CDY36301 | Canola | cytosol | 99.73 | 43.69 |
CDY00724 | Canola | cytosol | 99.18 | 43.45 |
CDX73889 | Canola | cytosol | 98.91 | 43.26 |
CDY00997 | Canola | extracellular | 99.05 | 42.71 |
CDY07954 | Canola | cytosol | 97.01 | 42.63 |
CDX74011 | Canola | cytosol | 97.15 | 42.61 |
CDY27997 | Canola | cytosol | 88.99 | 40.94 |
CDY35984 | Canola | cytosol | 88.18 | 40.41 |
KRG97711 | Soybean | endoplasmic reticulum, nucleus | 92.12 | 39.88 |
KRH31163 | Soybean | endoplasmic reticulum | 91.98 | 39.82 |
KRH14933 | Soybean | nucleus | 91.85 | 39.76 |
KRH73205 | Soybean | nucleus | 91.98 | 39.66 |
EES07849 | Sorghum | plastid | 91.03 | 39.2 |
KXG22761 | Sorghum | plastid | 91.03 | 39.18 |
TraesCS5B01G152300.1 | Wheat | unclear | 89.95 | 38.76 |
TraesCS5D01G158800.1 | Wheat | plastid | 89.81 | 38.7 |
TraesCS5A01G153500.1 | Wheat | golgi, unclear | 89.81 | 38.7 |
TraesCS4A01G182300.1 | Wheat | extracellular, golgi | 89.95 | 38.6 |
TraesCS4D01G130900.1 | Wheat | golgi, unclear | 89.95 | 38.6 |
TraesCS4B01G136100.2 | Wheat | golgi, unclear | 89.81 | 38.16 |
HORVU4Hr1G024710.4 | Barley | plastid | 89.95 | 37.17 |
HORVU5Hr1G048010.1 | Barley | plastid | 89.81 | 36.66 |
CDY06504 | Canola | extracellular, mitochondrion | 3.67 | 28.72 |
CDY22158 | Canola | cytosol | 0.82 | 3.16 |
CDY36317 | Canola | cytosol | 0.54 | 1.58 |
Os12t0104800-01 | Rice | cytosol | 0.0 | 0.0 |
Os11t0104900-00 | Rice | plasma membrane | 0.0 | 0.0 |
Protein Annotations
Gene3D:1.25.40.10 | Gene3D:2.130.10.110 | MapMan:35.1 | GO:A0A078HHP7 | UniProt:A0A078HHP7 | InterPro:ARM-type_fold |
EnsemblPlants:CDY36318 | ProteinID:CDY36318 | ProteinID:CDY36318.1 | InterPro:Clathrin_H-chain/VPS_repeat | InterPro:Clathrin_H-chain_N | InterPro:Clathrin_H-chain_linker_core |
InterPro:Clathrin_H-chain_propeller_rpt | GO:GO:0003674 | GO:GO:0005198 | GO:GO:0005488 | GO:GO:0005515 | GO:GO:0005575 |
GO:GO:0005622 | GO:GO:0005623 | GO:GO:0005737 | GO:GO:0005794 | GO:GO:0005886 | GO:GO:0006810 |
GO:GO:0006886 | GO:GO:0008150 | GO:GO:0016020 | GO:GO:0016192 | GO:GO:0030130 | GO:GO:0030132 |
EnsemblPlantsGene:GSBRNA2T00060295001 | InterPro:IPR000547 | InterPro:IPR011990 | InterPro:IPR016025 | PFAM:PF00637 | PFAM:PF01394 |
PFAM:PF09268 | PFAM:PF13838 | PFscan:PS50236 | PANTHER:PTHR10292 | PANTHER:PTHR10292:SF1 | SMART:SM00299 |
SUPFAM:SSF48371 | SUPFAM:SSF50989 | InterPro:TPR-like_helical_dom_sf | UniParc:UPI0004EEBECD | SEG:seg | : |
Description
BnaA01g31000DBnaA01g31000D protein [Source:UniProtKB/TrEMBL;Acc:A0A078HHP7]
Coordinates
chrLK032372:-:322598..327363
Molecular Weight (calculated)
82453.0 Da
IEP (calculated)
6.844
GRAVY (calculated)
-0.050
Length
736 amino acids
Sequence
(BLAST)
(BLAST)
001: MAAANAPITM KEVLTLPSIG INQQFITFTN VTMESDKYIC VRETAPQNSV VIIDMNMPMQ PLRRPITADS ALMNPNSRIL ALKAQVPGTT QDHLQIFNIE
101: AKAKLKSHQM PEQVAFWKWI TPKMLGLVTQ TSVYHWSIEG DSEPVKMFDR TANLANNQII NYKCSPDEKW LVLIGIAPGS PERPQLVKGN MQLFSVNQQR
201: SQALEAHAAS FAQFKVPGNE NPSILISFAS KSFNAGQITS KLHVIELGAQ PGKPSFSKKQ ADLFFPPDFA DDFPVAMQVS HKFNLIYVIT KLGLLFVYDL
301: ETASAIYRNR ISPDPIFLTS EASSVGGFYA INRRGQVLLA TVNEATIIPF ISGQLNNLEL AVNLAKRGNL PGAENLVVQR FQELFAQTKY KEAAELAAES
401: PQGILRTPDT VAKFQSVPVQ AGQTPPLLQY FGTLLTRGKL NSYESLELSR LVVNQNKKNL LENWLAEDKL ECSEELGDLV KTVDNDLALK IYIKARATPK
501: VVAAFAERRE FDKILIYSKQ VGYTPDYMFL LQTILRTDPQ GAVNFALMMS QMEGGCPVDY NTITDLFLQR NLIREATAFL LDVLKPNLPE HAFLQTKVLE
601: INLVTFPNVA DAILANGMFS HYDRPRVAQL CEKAGLYIQS LKHYSELPDI KRVIVNTHAI EPQALVEFFG TLSSEWAMEC MKDLLLVNLR GNLQIIVQAC
701: KEYCEQLGVD SCIKLFEQFK SYEGLYFFLG SYLSMR
101: AKAKLKSHQM PEQVAFWKWI TPKMLGLVTQ TSVYHWSIEG DSEPVKMFDR TANLANNQII NYKCSPDEKW LVLIGIAPGS PERPQLVKGN MQLFSVNQQR
201: SQALEAHAAS FAQFKVPGNE NPSILISFAS KSFNAGQITS KLHVIELGAQ PGKPSFSKKQ ADLFFPPDFA DDFPVAMQVS HKFNLIYVIT KLGLLFVYDL
301: ETASAIYRNR ISPDPIFLTS EASSVGGFYA INRRGQVLLA TVNEATIIPF ISGQLNNLEL AVNLAKRGNL PGAENLVVQR FQELFAQTKY KEAAELAAES
401: PQGILRTPDT VAKFQSVPVQ AGQTPPLLQY FGTLLTRGKL NSYESLELSR LVVNQNKKNL LENWLAEDKL ECSEELGDLV KTVDNDLALK IYIKARATPK
501: VVAAFAERRE FDKILIYSKQ VGYTPDYMFL LQTILRTDPQ GAVNFALMMS QMEGGCPVDY NTITDLFLQR NLIREATAFL LDVLKPNLPE HAFLQTKVLE
601: INLVTFPNVA DAILANGMFS HYDRPRVAQL CEKAGLYIQS LKHYSELPDI KRVIVNTHAI EPQALVEFFG TLSSEWAMEC MKDLLLVNLR GNLQIIVQAC
701: KEYCEQLGVD SCIKLFEQFK SYEGLYFFLG SYLSMR
0001: MAAANAPITM KEVLTLPSIG INQQFITFTN VTMESDKYIC VRETSPQNSV VIIDMNMPMQ PLRRPITADS ALMNPNSKIL ALKAQVPGTT QDHLQIFNIE
0101: AKAKLKSHQM PEQVVFWKWI TPKMLGLVTQ NSVYHWSIEG DSEPVKMFDR TANLANNQII NYKCSPNEKW LVLIGIAPGS PERQQLVKGN MQLFSVDQQR
0201: SQALEAHAAS FAQFKVPGNE NPSILISFAS KSFNAGQITS KLHVIELGAQ PGKPSFTKKQ ADLFFPPDFA DDFPVAMQVS HKFNLIYVIT KLGLLFVYDL
0301: ETASAIYRNR ISPDPIFLTS EASSVGGFYA INRRGQVLLA TVNEATIIPF ISGQLNNLEL AVNLAKRGNL PGAENLVVQR FQELFAQTKY KEAAELAAES
0401: PQGILRTPDT VAKFQSVPVQ AGQTPPLLQY FGTLLTRGKL NSYESLELSR LVVNQNKKNL LENWLAEDKL ECSEELGDLV KTVDNDLALK IYIKARATPK
0501: VVAAFAERRE FDKILIYSKQ VGYTPDYLFL LQTILRTDPQ GAVNFALMMS QMEGGSPVDY NTITDLFLQR NLIREATSFL LDVLKPNLPE HAFLQTKVLE
0601: INLVTFPNVA DAVLANGMFT HYDRPRIAQL CEKAGLYIQS LKHYSELPDI KRVIVNTHAI EPQALVEFFG TLSSEWAMEC MKDLLLVNLR GNLQIIVQAC
0701: KEYCEQLGVD ACIKLFEQFK SYEGLYFFLG SYLSMSEDPE IHFKYIEAAA KTGQIKEVER VTRESNFYDA EKTKNFLMEA KLPDARPLIN VCDRFSFVPD
0801: LTHYLYTNNM LRYIEGYVQK VNPGNAPLVV GQLLDDECPE DFIKGLILSV RSLLPVEPLV EECEKRNRLR LLTQFLEHLV SEGSQDVHVH NALGKIIIDS
0901: NNNPEHFLTT NPYYDSKVVG KYCEKRDPTL AVVAYRRGQC DEELINVTNK NSLFKLQARY VVERMDGDLW DKVLDENNDY RRQLIDQVVS TALPESKSPE
1001: QVSAAVKAFM TADLPHELIE LLEKIVLQNS AFSGNFNLQN LLILTAIKAD PSRVMDYINR LDNFDGPAVG EVAVEAQLYE EAFAIFKKFN LNVQAVNVLL
1101: DNVRSIERAV EFAFRVEEDS VWSQVAKAQL REGLVSDAIE SFIRADDATH FLEVIRVSED TDVYDDLVKY LLMVRQKVKE PKVDSELIYA YAKIDRLGEI
1201: EEFILMPNVA NLQHVGDRLY DEALYEAAKI IYAFISNWGK LAVTLVKLQQ FQGAVDAARK ANSAKTWKEV CFACVDAEEF RLAQICGLNI IIQVDDLEEV
1301: SEYYQNRGCF NELISLMESG LGLERAHMGI FTELGVLYAR YRYEKLMEHI KLFSTRLNIP KLIRACDEQQ HWQELTYLYI QYDEFDNAAT TVMNHSPEAW
1401: EHMQFKDIVA KVANVELYYK AVHFYLQEHP DIINDLLNVL ALRLDHTRVV DIMRKAGHLR LIKPYMIAVQ SNNVSAVNEA LNEIYVEEED YDRLRESIDL
1501: HDSFDQIGLA QKIEKHELVE MRRVAAYIYK KAGRWKQSIA LSKKDNMYKD CMETASQSGE HELAEQLLVY FIEQGKKECF ATCLFVCYDL IRPDVALELA
1601: WINNMMDFAF PYLLQFIREY SGKVDELIKD KLEAQKEVKA KEQEEKDVIS QQNMYAQMLP LALPAPPMPG MGGGGGYGPP PQMGGMPGMP PMPPYGMPPM
1701: GGY
0101: AKAKLKSHQM PEQVVFWKWI TPKMLGLVTQ NSVYHWSIEG DSEPVKMFDR TANLANNQII NYKCSPNEKW LVLIGIAPGS PERQQLVKGN MQLFSVDQQR
0201: SQALEAHAAS FAQFKVPGNE NPSILISFAS KSFNAGQITS KLHVIELGAQ PGKPSFTKKQ ADLFFPPDFA DDFPVAMQVS HKFNLIYVIT KLGLLFVYDL
0301: ETASAIYRNR ISPDPIFLTS EASSVGGFYA INRRGQVLLA TVNEATIIPF ISGQLNNLEL AVNLAKRGNL PGAENLVVQR FQELFAQTKY KEAAELAAES
0401: PQGILRTPDT VAKFQSVPVQ AGQTPPLLQY FGTLLTRGKL NSYESLELSR LVVNQNKKNL LENWLAEDKL ECSEELGDLV KTVDNDLALK IYIKARATPK
0501: VVAAFAERRE FDKILIYSKQ VGYTPDYLFL LQTILRTDPQ GAVNFALMMS QMEGGSPVDY NTITDLFLQR NLIREATSFL LDVLKPNLPE HAFLQTKVLE
0601: INLVTFPNVA DAVLANGMFT HYDRPRIAQL CEKAGLYIQS LKHYSELPDI KRVIVNTHAI EPQALVEFFG TLSSEWAMEC MKDLLLVNLR GNLQIIVQAC
0701: KEYCEQLGVD ACIKLFEQFK SYEGLYFFLG SYLSMSEDPE IHFKYIEAAA KTGQIKEVER VTRESNFYDA EKTKNFLMEA KLPDARPLIN VCDRFSFVPD
0801: LTHYLYTNNM LRYIEGYVQK VNPGNAPLVV GQLLDDECPE DFIKGLILSV RSLLPVEPLV EECEKRNRLR LLTQFLEHLV SEGSQDVHVH NALGKIIIDS
0901: NNNPEHFLTT NPYYDSKVVG KYCEKRDPTL AVVAYRRGQC DEELINVTNK NSLFKLQARY VVERMDGDLW DKVLDENNDY RRQLIDQVVS TALPESKSPE
1001: QVSAAVKAFM TADLPHELIE LLEKIVLQNS AFSGNFNLQN LLILTAIKAD PSRVMDYINR LDNFDGPAVG EVAVEAQLYE EAFAIFKKFN LNVQAVNVLL
1101: DNVRSIERAV EFAFRVEEDS VWSQVAKAQL REGLVSDAIE SFIRADDATH FLEVIRVSED TDVYDDLVKY LLMVRQKVKE PKVDSELIYA YAKIDRLGEI
1201: EEFILMPNVA NLQHVGDRLY DEALYEAAKI IYAFISNWGK LAVTLVKLQQ FQGAVDAARK ANSAKTWKEV CFACVDAEEF RLAQICGLNI IIQVDDLEEV
1301: SEYYQNRGCF NELISLMESG LGLERAHMGI FTELGVLYAR YRYEKLMEHI KLFSTRLNIP KLIRACDEQQ HWQELTYLYI QYDEFDNAAT TVMNHSPEAW
1401: EHMQFKDIVA KVANVELYYK AVHFYLQEHP DIINDLLNVL ALRLDHTRVV DIMRKAGHLR LIKPYMIAVQ SNNVSAVNEA LNEIYVEEED YDRLRESIDL
1501: HDSFDQIGLA QKIEKHELVE MRRVAAYIYK KAGRWKQSIA LSKKDNMYKD CMETASQSGE HELAEQLLVY FIEQGKKECF ATCLFVCYDL IRPDVALELA
1601: WINNMMDFAF PYLLQFIREY SGKVDELIKD KLEAQKEVKA KEQEEKDVIS QQNMYAQMLP LALPAPPMPG MGGGGGYGPP PQMGGMPGMP PMPPYGMPPM
1701: GGY
Arabidopsis Description
CHC2Clathrin heavy chain 2 [Source:UniProtKB/Swiss-Prot;Acc:Q0WLB5]
SUBAcon: [plasma membrane,plastid,cytosol]
SUBAcon: [plasma membrane,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.