Subcellular Localization
min:
: max
Winner_takes_all: cytosol
Predictor Summary:
Predictor Summary:
- nucleus 1
- cytosol 2
- mitochondrion 1
- plasma membrane 1
Predictors | GFP | MS/MS | Papers | ||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
Bra003788.1-P | Field mustard | cytosol | 99.62 | 99.33 |
CDX85853 | Canola | cytosol | 98.47 | 98.56 |
AT1G74720.1 | Thale cress | cytosol | 94.07 | 90.93 |
VIT_17s0000g05700.t01 | Wine grape | cytosol | 71.58 | 74.13 |
KRH56956 | Soybean | mitochondrion | 72.25 | 73.66 |
Solyc03g113190.1.1 | Tomato | cytosol | 73.11 | 72.97 |
PGSC0003DMT400065217 | Potato | cytosol | 72.82 | 72.68 |
EES03181 | Sorghum | cytosol | 62.87 | 60.78 |
Zm00001d011239_P001 | Maize | cytosol, mitochondrion, plasma membrane | 62.49 | 60.24 |
TraesCS7D01G478500.1 | Wheat | cytosol | 62.39 | 60.09 |
Os01t0587300-00 | Rice | cytosol | 61.82 | 59.81 |
TraesCS7A01G491900.1 | Wheat | cytosol | 61.91 | 59.69 |
TraesCS7B01G397000.1 | Wheat | cytosol | 61.91 | 59.63 |
HORVU7Hr1G110440.4 | Barley | cytosol, plastid | 61.44 | 59.28 |
CDX81020 | Canola | cytosol | 22.2 | 58.15 |
CDX80994 | Canola | cytosol | 5.45 | 55.34 |
CDX98254 | Canola | cytosol | 40.19 | 54.26 |
CDX67712 | Canola | cytosol | 39.9 | 53.88 |
CDY69710 | Canola | cytosol | 40.0 | 53.66 |
CDX70485 | Canola | cytosol | 38.56 | 52.41 |
CDX78498 | Canola | cytosol | 38.56 | 52.41 |
CDY42494 | Canola | cytosol, plasma membrane | 21.05 | 52.38 |
CDY68091 | Canola | cytosol | 38.18 | 51.89 |
CDX97214 | Canola | cytosol | 37.99 | 51.63 |
CDY47660 | Canola | endoplasmic reticulum | 40.29 | 50.85 |
CDY70344 | Canola | cytosol | 24.21 | 50.2 |
CDY38472 | Canola | cytosol | 46.99 | 48.95 |
CDY25472 | Canola | cytosol | 46.79 | 48.85 |
CDY21171 | Canola | cytosol | 46.32 | 47.59 |
CDX98964 | Canola | endoplasmic reticulum, extracellular | 6.41 | 47.52 |
CDY29951 | Canola | cytosol | 46.32 | 47.4 |
CDX71747 | Canola | cytosol | 34.07 | 46.9 |
CDX86328 | Canola | cytosol | 44.21 | 45.34 |
CDY10076 | Canola | cytosol, nucleus, plasma membrane | 41.91 | 44.92 |
CDY32530 | Canola | cytosol | 42.39 | 44.79 |
CDX86768 | Canola | cytosol | 42.78 | 44.26 |
CDX89108 | Canola | cytosol | 38.37 | 43.63 |
CDY01973 | Canola | cytosol | 40.86 | 43.09 |
CDY54062 | Canola | cytosol | 40.86 | 42.91 |
CDY04800 | Canola | cytosol | 41.34 | 42.9 |
CDY21373 | Canola | cytosol | 41.44 | 42.7 |
CDY48929 | Canola | cytosol | 40.29 | 42.7 |
CDX74344 | Canola | cytosol | 39.71 | 42.65 |
CDY13087 | Canola | cytosol | 18.66 | 42.58 |
CDX91899 | Canola | cytosol | 39.52 | 42.23 |
CDY49185 | Canola | cytosol | 13.49 | 41.96 |
CDY57334 | Canola | cytosol | 17.22 | 40.72 |
CDX81021 | Canola | cytosol | 10.14 | 36.93 |
CDY35342 | Canola | cytosol, peroxisome, plasma membrane | 16.65 | 35.8 |
CDX77002 | Canola | cytosol, peroxisome, plasma membrane | 18.85 | 33.28 |
CDY33906 | Canola | nucleus | 7.66 | 33.2 |
CDX71748 | Canola | cytosol | 5.74 | 33.15 |
CDY35343 | Canola | golgi | 8.8 | 32.86 |
CDX71710 | Canola | cytosol | 23.25 | 31.85 |
CDY13273 | Canola | cytosol | 13.97 | 31.6 |
CDY11377 | Canola | cytosol | 23.92 | 31.09 |
CDX80993 | Canola | extracellular | 2.49 | 29.21 |
Protein Annotations
EnsemblPlants:CDX68168 | EnsemblPlantsGene:GSBRNA2T00099423001 | Gene3D:2.60.40.150 | GO:A0A078BZ51 | InterPro:C2_dom | InterPro:C2_domain_sf |
InterPro:IPR000008 | InterPro:IPR035892 | InterPro:PRibTrfase_C | PANTHER:PTHR10024 | PANTHER:PTHR10024:SF271 | PFAM:PF00168 |
PFAM:PF08372 | PFscan:PS50004 | ProteinID:CDX68168 | ProteinID:CDX68168.1 | SEG:seg | SMART:SM00239 |
SUPFAM:SSF49562 | TMHMM:TMhelix | UniParc:UPI0004EEEA66 | MapMan:35.1 | : | : |
Description
BnaA07g22080D
Coordinates
chrLK031787:-:4214131..4217268
Molecular Weight (calculated)
117526.0 Da
IEP (calculated)
8.235
GRAVY (calculated)
-0.386
Length
1045 amino acids
Sequence
(BLAST)
(BLAST)
0001: MNTTPFQSDP PPSRMQRKLV VEVVEARNLL PKDGQGSSSA YVVVDFDAQK KRTSTKFRDL NPIWNEMLDF AVNDPQNMDY DELDIEVYND KRFGNGGGRK
0101: NHFLGRVKIY GSQFSRRGDE GLVYFPLEKK SVLSWIRGEI GLKIYYYDEA ADENIASHHQ QQQPPPQPQE ADEQYIPPPP QQMQNLPPEK PSFESAQSHS
0201: YQEPQQPPVV IVEESPPQEV MQGPSDNHPP RPPSPPHEVH RYPPEVRKMQ VGRPPGGDRI RVAAAKRPNG DFSPRVINSK IGGASEATME KKTTHNPYNL
0301: VEPMQYLFVR IVKARGLPPN ESAYVKVRTS NHFVRSKPAV NRPGEPTDSP EWNQVFALGH NRTDSAASGA TLEISAWDAS SESFLGGVCF DLSEVPVRDP
0401: PDSPLAPQWY RLEGSAADQN SGRVSGDIQL SVWIGTQVDE AFPEAWSSDA PHVAHTRSKV YQSPKLWYLR VTVLEAQDLH IAPNLPPLTA PEVRVKAQLG
0501: FQSARTRRGS MNNHSGSFHW HEDMIFVAGE PLEDCLMLMV EDRTSKEPMV LGHAMIPVSS IEQRIDERFV PSKWHALEGE GGGGGGGGGG GPYCGRISLR
0601: LCLEGGYHVL EEAAHVCSDF RPTAKQLWKP PIGVLELGIL GARGLLPMKA KNGGKGSTDA YCVAKYGKKW VRTRTITDSF DPRWHEQYTW QVYDPCTVLT
0701: VGVFDNWRMF SDVSDDRPDT RIGKIRIRVS TLESNKVYTN SYPLLVLLPS GLKKMGEVEV AVRFACPSLL PDVCAAYGQP LLPRMHYIRP LGVAQQDALR
0801: GAATKMVAAW LARAEPPLGP EVVRYMLDAD SHSWSMRKSK ANWYRIVGVL AWAVGLAKWL DNIRRWRNPV TTVLVHILYL VLVWYPDLVV PTAFLYVVMI
0901: GVWYYRFRPK IPAGMDIRLS QAETVDPDEL DEEFDTIPSS RRPEVIRARY DRLRILAVRV QTILGDFAAQ GERIQALVSW RDPRATKLFI TICLVITIVL
1001: YVVPAKMVAV ALGFYYLRHP MFRDTMPTAS LSFFRRLPSL SDRLI
0101: NHFLGRVKIY GSQFSRRGDE GLVYFPLEKK SVLSWIRGEI GLKIYYYDEA ADENIASHHQ QQQPPPQPQE ADEQYIPPPP QQMQNLPPEK PSFESAQSHS
0201: YQEPQQPPVV IVEESPPQEV MQGPSDNHPP RPPSPPHEVH RYPPEVRKMQ VGRPPGGDRI RVAAAKRPNG DFSPRVINSK IGGASEATME KKTTHNPYNL
0301: VEPMQYLFVR IVKARGLPPN ESAYVKVRTS NHFVRSKPAV NRPGEPTDSP EWNQVFALGH NRTDSAASGA TLEISAWDAS SESFLGGVCF DLSEVPVRDP
0401: PDSPLAPQWY RLEGSAADQN SGRVSGDIQL SVWIGTQVDE AFPEAWSSDA PHVAHTRSKV YQSPKLWYLR VTVLEAQDLH IAPNLPPLTA PEVRVKAQLG
0501: FQSARTRRGS MNNHSGSFHW HEDMIFVAGE PLEDCLMLMV EDRTSKEPMV LGHAMIPVSS IEQRIDERFV PSKWHALEGE GGGGGGGGGG GPYCGRISLR
0601: LCLEGGYHVL EEAAHVCSDF RPTAKQLWKP PIGVLELGIL GARGLLPMKA KNGGKGSTDA YCVAKYGKKW VRTRTITDSF DPRWHEQYTW QVYDPCTVLT
0701: VGVFDNWRMF SDVSDDRPDT RIGKIRIRVS TLESNKVYTN SYPLLVLLPS GLKKMGEVEV AVRFACPSLL PDVCAAYGQP LLPRMHYIRP LGVAQQDALR
0801: GAATKMVAAW LARAEPPLGP EVVRYMLDAD SHSWSMRKSK ANWYRIVGVL AWAVGLAKWL DNIRRWRNPV TTVLVHILYL VLVWYPDLVV PTAFLYVVMI
0901: GVWYYRFRPK IPAGMDIRLS QAETVDPDEL DEEFDTIPSS RRPEVIRARY DRLRILAVRV QTILGDFAAQ GERIQALVSW RDPRATKLFI TICLVITIVL
1001: YVVPAKMVAV ALGFYYLRHP MFRDTMPTAS LSFFRRLPSL SDRLI
0001: MNTTPFHSDP PPSRIQRKLV VEVVEARNIL PKDGQGSSSA YVVVDFDAQK KRTSTKFRDL NPIWNEMLDF AVSDPKNMDY DELDIEVYND KRFGNGGGRK
0101: NHFLGRVKIY GSQFSRRGEE GLVYFPLEKK SVFSWIRGEI GLKIYYYDEA ADEDTAGGGG GQQQQQQQQQ FHPPQQEADE QQHQQQFHPP PQQMMNIPPE
0201: KPNVVVVEEG RVFESAQSQR YTETHQQPPV VIVEESPPQH VMQGPNDNHP HRNDNHPQRP PSPPPPPSAG EVHYYPPEVR KMQVGRPPGG DRIRVTKRPP
0301: NGDYSPRVIN SKTGGGETTM EKKTHHPYNL VEPMQYLFVR IVKARGLPPN ESAYVKVRTS NHFVRSKPAV NRPGESVDSP EWNQVFALGH NRSDSAVTGA
0401: TLEISAWDAS SESFLGGVCF DLSEVPVRDP PDSPLAPQWY RLEGSGADQN SGRISGDIQL SVWIGTQVDE AFPEAWSSDA PHVAHTRSKV YQSPKLWYLR
0501: VTVLEAQDLH IAPNLPPLTA PEIRVKAQLG FQSARTRRGS MNNHSGSFHW HEDMIFVAGE PLEDCLVLMV EDRTTKEATL LGHAMIPVSS IEQRIDERFV
0601: PSKWHTLEGE GGGGGGGGGP GGGGGGGPYC GRISLRLCLE GGYHVLEEAA HVCSDFRPTA KQLWKPPIGI LELGILGARG LLPMKAKNGG KGSTDAYCVA
0701: KYGKKWVRTR TITDSFDPRW HEQYTWQVYD PCTVLTVGVF DNWRMFSDAS DDRPDTRIGK IRIRVSTLES NKVYTNSYPL LVLLPSGMKK MGEIEVAVRF
0801: ACPSLLPDVC AAYGQPLLPR MHYIRPLGVA QQDALRGAAT KMVAAWLARA EPPLGPEVVR YMLDADSHAW SMRKSKANWY RIVGVLAWAV GLAKWLDNIR
0901: RWRNPVTTVL VHILYLVLVW YPDLVVPTAF LYVVMIGVWY YRFRPKIPAG MDIRLSQAET VDPDELDEEF DTIPSSRRPE VIRARYDRLR ILAVRVQTIL
1001: GDFAAQGERI QALVSWRDPR ATKLFIAICL VITIVLYAVP AKMVAVALGF YYLRHPMFRD TMPTASLNFF RRLPSLSDRL I
0101: NHFLGRVKIY GSQFSRRGEE GLVYFPLEKK SVFSWIRGEI GLKIYYYDEA ADEDTAGGGG GQQQQQQQQQ FHPPQQEADE QQHQQQFHPP PQQMMNIPPE
0201: KPNVVVVEEG RVFESAQSQR YTETHQQPPV VIVEESPPQH VMQGPNDNHP HRNDNHPQRP PSPPPPPSAG EVHYYPPEVR KMQVGRPPGG DRIRVTKRPP
0301: NGDYSPRVIN SKTGGGETTM EKKTHHPYNL VEPMQYLFVR IVKARGLPPN ESAYVKVRTS NHFVRSKPAV NRPGESVDSP EWNQVFALGH NRSDSAVTGA
0401: TLEISAWDAS SESFLGGVCF DLSEVPVRDP PDSPLAPQWY RLEGSGADQN SGRISGDIQL SVWIGTQVDE AFPEAWSSDA PHVAHTRSKV YQSPKLWYLR
0501: VTVLEAQDLH IAPNLPPLTA PEIRVKAQLG FQSARTRRGS MNNHSGSFHW HEDMIFVAGE PLEDCLVLMV EDRTTKEATL LGHAMIPVSS IEQRIDERFV
0601: PSKWHTLEGE GGGGGGGGGP GGGGGGGPYC GRISLRLCLE GGYHVLEEAA HVCSDFRPTA KQLWKPPIGI LELGILGARG LLPMKAKNGG KGSTDAYCVA
0701: KYGKKWVRTR TITDSFDPRW HEQYTWQVYD PCTVLTVGVF DNWRMFSDAS DDRPDTRIGK IRIRVSTLES NKVYTNSYPL LVLLPSGMKK MGEIEVAVRF
0801: ACPSLLPDVC AAYGQPLLPR MHYIRPLGVA QQDALRGAAT KMVAAWLARA EPPLGPEVVR YMLDADSHAW SMRKSKANWY RIVGVLAWAV GLAKWLDNIR
0901: RWRNPVTTVL VHILYLVLVW YPDLVVPTAF LYVVMIGVWY YRFRPKIPAG MDIRLSQAET VDPDELDEEF DTIPSSRRPE VIRARYDRLR ILAVRVQTIL
1001: GDFAAQGERI QALVSWRDPR ATKLFIAICL VITIVLYAVP AKMVAVALGF YYLRHPMFRD TMPTASLNFF RRLPSLSDRL I
Arabidopsis Description
QKYProtein QUIRKY [Source:UniProtKB/Swiss-Prot;Acc:B8XCH5]
SUBAcon: [cytosol]
SUBAcon: [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.