Subcellular Localization
min:
: max
Winner_takes_all: cytosol
Predictor Summary:
Predictor Summary:
- nucleus 2
- cytosol 3
- extracellular 2
- endoplasmic reticulum 2
- vacuole 2
- plasma membrane 2
- golgi 2
Predictors | GFP | MS/MS | Papers | ||||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
VIT_13s0067g03570.t01 | Wine grape | cytosol | 72.89 | 76.82 |
VIT_07s0141g00700.t01 | Wine grape | cytosol | 41.75 | 62.53 |
VIT_07s0141g01030.t01 | Wine grape | cytosol | 61.35 | 58.67 |
VIT_00s0276g00050.t01 | Wine grape | cytosol | 43.61 | 55.58 |
VIT_13s0139g00070.t01 | Wine grape | cytosol | 34.7 | 51.26 |
VIT_13s0084g00420.t01 | Wine grape | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, vacuole | 48.64 | 50.69 |
VIT_13s0084g00510.t01 | Wine grape | cytosol | 43.53 | 48.53 |
VIT_13s0084g00360.t01 | Wine grape | plasma membrane | 49.57 | 48.23 |
VIT_13s0047g01010.t01 | Wine grape | cytosol | 31.91 | 44.3 |
VIT_13s0047g00740.t01 | Wine grape | nucleus | 22.7 | 44.26 |
VIT_12s0034g01660.t01 | Wine grape | extracellular | 30.75 | 43.06 |
VIT_13s0074g00130.t01 | Wine grape | cytosol, nucleus, peroxisome | 36.02 | 42.78 |
VIT_13s0101g00300.t01 | Wine grape | extracellular | 47.02 | 42.24 |
VIT_13s0139g00210.t01 | Wine grape | cytosol, mitochondrion | 45.62 | 42.01 |
VIT_18s0041g00270.t01 | Wine grape | cytosol | 34.55 | 41.53 |
VIT_13s0158g00010.t01 | Wine grape | mitochondrion | 36.72 | 41.51 |
VIT_13s0139g00220.t01 | Wine grape | plasma membrane | 45.7 | 41.37 |
VIT_13s0047g00950.t01 | Wine grape | cytosol | 46.01 | 41.36 |
VIT_13s0047g00730.t01 | Wine grape | cytosol | 35.01 | 39.55 |
VIT_13s0067g01100.t01 | Wine grape | extracellular | 28.35 | 39.02 |
VIT_13s0019g01950.t01 | Wine grape | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, vacuole | 37.88 | 38.14 |
VIT_13s0158g00260.t01 | Wine grape | endoplasmic reticulum | 34.31 | 37.86 |
VIT_13s0019g01140.t01 | Wine grape | cytosol | 38.5 | 37.59 |
VIT_12s0121g00060.t01 | Wine grape | cytosol | 33.0 | 36.5 |
VIT_00s0467g00010.t01 | Wine grape | extracellular | 35.79 | 35.98 |
VIT_00s0467g00030.t01 | Wine grape | cytosol | 36.02 | 35.94 |
VIT_13s0158g00210.t01 | Wine grape | endoplasmic reticulum | 37.41 | 35.83 |
VIT_12s0121g00050.t01 | Wine grape | cytosol | 35.71 | 35.82 |
VIT_12s0034g01070.t01 | Wine grape | cytosol | 24.79 | 35.24 |
VIT_13s0064g01850.t01 | Wine grape | cytosol, extracellular, nucleus, plastid | 31.53 | 35.18 |
VIT_13s0158g00290.t01 | Wine grape | plasma membrane, plastid | 37.18 | 34.51 |
VIT_19s0085g00440.t01 | Wine grape | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, vacuole | 38.34 | 34.26 |
VIT_12s0034g02310.t01 | Wine grape | extracellular, plasma membrane | 35.71 | 33.92 |
VIT_12s0034g02500.t01 | Wine grape | extracellular | 35.32 | 33.19 |
KRH13246 | Soybean | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, vacuole | 35.4 | 32.21 |
GSMUA_Achr9P11390_001 | Banana | extracellular | 24.09 | 32.19 |
GSMUA_Achr6P32070_001 | Banana | cytosol | 27.27 | 32.06 |
GSMUA_Achr10P... | Banana | cytosol, golgi | 18.28 | 31.64 |
Os04t0512900-01 | Rice | nucleus | 18.28 | 31.42 |
VIT_13s0106g00020.t01 | Wine grape | cytosol | 30.75 | 31.02 |
KXG34889 | Sorghum | cytosol | 23.16 | 30.76 |
Os07t0273900-01 | Rice | cytosol | 17.2 | 30.75 |
Zm00001d019356_P001 | Maize | cytosol | 22.7 | 30.55 |
OQU91451 | Sorghum | cytosol, mitochondrion | 25.79 | 30.33 |
GSMUA_Achr8P21580_001 | Banana | cytosol, plastid | 22.77 | 30.15 |
OQU91449 | Sorghum | mitochondrion | 18.05 | 30.03 |
Os09t0314200-00 | Rice | cytosol, endoplasmic reticulum, extracellular, golgi, nucleus, peroxisome, plasma membrane, plastid, vacuole | 23.7 | 29.74 |
VIT_13s0067g02430.t01 | Wine grape | extracellular | 33.31 | 29.43 |
GSMUA_Achr6P32040_001 | Banana | cytosol, extracellular, nucleus, plastid | 27.96 | 29.35 |
EES11060 | Sorghum | nucleus | 21.84 | 29.34 |
VIT_15s0024g00400.t01 | Wine grape | cytosol, plasma membrane | 26.18 | 29.29 |
GSMUA_Achr10P... | Banana | nucleus | 25.72 | 29.25 |
VIT_13s0067g02580.t01 | Wine grape | extracellular | 33.08 | 29.03 |
Os01t0308300-00 | Rice | plastid | 24.24 | 28.98 |
GSMUA_Achr10P... | Banana | cytosol, golgi, mitochondrion | 17.51 | 28.9 |
Os07t0273600-01 | Rice | mitochondrion | 9.45 | 27.98 |
VIT_15s0024g00440.t01 | Wine grape | cytosol | 19.91 | 27.6 |
VIT_13s0019g00380.t01 | Wine grape | cytosol | 45.55 | 25.59 |
VIT_15s0024g00450.t01 | Wine grape | cytosol | 14.1 | 23.82 |
Os03t0579200-00 | Rice | cytosol | 22.77 | 23.6 |
Os03t0579900-01 | Rice | cytosol | 4.18 | 23.28 |
VIT_13s0139g00130.t01 | Wine grape | cytosol | 47.1 | 23.06 |
VIT_13s0064g00060.t01 | Wine grape | plasma membrane | 44.0 | 22.42 |
Protein Annotations
EntrezGene:100265157 | wikigene:100265157 | Gene3D:3.40.50.300 | Gene3D:3.80.10.10 | MapMan:35.1 | ProteinID:CCB62291 |
ProteinID:CCB62291.1 | ncoils:Coil | UniProt:F6I5S3 | EMBL:FN596752 | GO:GO:0000166 | GO:GO:0003674 |
GO:GO:0005488 | GO:GO:0005575 | GO:GO:0005623 | GO:GO:0005886 | GO:GO:0006950 | GO:GO:0006952 |
GO:GO:0007154 | GO:GO:0007165 | GO:GO:0008150 | GO:GO:0009987 | GO:GO:0016020 | GO:GO:0043531 |
InterPro:IPR032675 | EntrezGene:LOC100265157 | wikigene:LOC100265157 | InterPro:LRR_dom_sf | InterPro:NB-ARC | InterPro:P-loop_NTPase |
PFAM:PF00931 | PRINTS:PR00364 | PANTHER:PTHR23155 | PANTHER:PTHR23155:SF868 | InterPro:RX-like_CC | SUPFAM:SSF52058 |
SUPFAM:SSF52540 | UniParc:UPI0002109BE5 | ArrayExpress:VIT_13s0067g03590 | EnsemblPlantsGene:VIT_13s0067g03590 | EnsemblPlants:VIT_13s0067g03590.t01 | RefSeq:XP_002266554 |
RefSeq:XP_002266554.2 | SEG:seg | : | : | : | : |
Description
No Description!
Coordinates
chr13_random:+:2005220..2009189
Molecular Weight (calculated)
147870.0 Da
IEP (calculated)
7.939
GRAVY (calculated)
-0.220
Length
1291 amino acids
Sequence
(BLAST)
(BLAST)
0001: MEVVGQAILS SALELLFDKL GSSELLKFAR QKNVIGELDN WRDELLIIDE VLDDAEEKQI TRKSVKKWLN DLRDLACDME DVLDEFTTEL LRRRLMAERL
0101: QAANTSKVRS LIPTCFTGFN PRGDARFSVE MGSKIKEISR RLDNISTRQA KLGLKMDLGV GHGWERFASG RRASTWERPP TTSLINEAVQ GRDKERKDIV
0201: DLLLKDEAGE SNFGVLPIVG LGGTGKTTLA QLVCKDEGIM KHFDPIAWVC ISEESDVVKI SEAILRALSH NQSTDLNDFN KVQQTLGDML TRKKFLLVLD
0301: DVWNINHDEQ WNTLQTPFKY GEKGSKIIIT TRDANVARTM RAYDSRYTLQ PLSDDDCWSL FVKHACETEN IHVRQNLVLR EKVTKWCGGL PLAAKVLGGL
0401: LRSKLHDHSW EDLLKNEIWR LPSEKRDILR VLRLSYHHLP SHLKRCFSYC ALFPKDYEFE KKELVLLWMA EGFIHQSKGD ELQMEDLGAN YFDEMLSRSF
0501: FQQSSNNKSN FVMHDLIHDL AKDIAQEICF NLNNDKTKND KLQIIFERTR HASFIRSEKD VLKRFEIFNR MKHLRTLVAL SVNINDQKFY LTTKIFHDLL
0601: QKLRHLRVLS LSGYEITELP YWIGDLKLLR YLNLSHTAVK CLPESVSCLY NLQVLMLCNC INLIKLPMNI GNLINLRHLN INGSIQLKEM PSRVGDLINL
0701: QTLSKFIVGK RKRSGINELK NLLNLRGELF ISGLHNIVNI RDVKEVNLKG RHNIEELTME WSSDFEDSRN ERNELEVFKL LQPHESLKKL VVACYGGLTF
0801: PNWLGDHSFT KMEHLSLKSC KKLARLPPLG RLPLLKELHI EGMNEITCIG DEFYGEIVNP FPSLESLEFD NMPKWKDWME KEALFPCLRE LTVKKCPELI
0901: DLPSQLLSFV KKLHVDECQK LKVYEYNRGW LESCVVNVPS LTWLYIGGIS RLSCLWEAFS QPLPALKALD INRCDELACL ELESLGSLRN LAIKSCDGVE
1001: SLEGQRLPRY LQCLNVEGCS SLKKLPNALG SLIFLTVLRI ANCSKLVSFP DASFPPMVRA LRVTNCEDLK SLPHRMMNDS CTLEYLEIKG CPSLIGFPKG
1101: KLPFTLKQLR IQECEKLESL PEGIMQQPSI GSSNTGGLKV LFIWGCSSLK SIPRGEFPST LETLSFWKCE RLESIPGKML QNLTSLRLLN ICNCPELVSS
1201: TEAFLNSNLK FLAISECQNM KRPLSEWGLY TLTSLTHFMI CGPFPDPPWD SKASSLWKLL CWRAARSLGL LYQTKDCHLP LQGFKSRIVL F
0101: QAANTSKVRS LIPTCFTGFN PRGDARFSVE MGSKIKEISR RLDNISTRQA KLGLKMDLGV GHGWERFASG RRASTWERPP TTSLINEAVQ GRDKERKDIV
0201: DLLLKDEAGE SNFGVLPIVG LGGTGKTTLA QLVCKDEGIM KHFDPIAWVC ISEESDVVKI SEAILRALSH NQSTDLNDFN KVQQTLGDML TRKKFLLVLD
0301: DVWNINHDEQ WNTLQTPFKY GEKGSKIIIT TRDANVARTM RAYDSRYTLQ PLSDDDCWSL FVKHACETEN IHVRQNLVLR EKVTKWCGGL PLAAKVLGGL
0401: LRSKLHDHSW EDLLKNEIWR LPSEKRDILR VLRLSYHHLP SHLKRCFSYC ALFPKDYEFE KKELVLLWMA EGFIHQSKGD ELQMEDLGAN YFDEMLSRSF
0501: FQQSSNNKSN FVMHDLIHDL AKDIAQEICF NLNNDKTKND KLQIIFERTR HASFIRSEKD VLKRFEIFNR MKHLRTLVAL SVNINDQKFY LTTKIFHDLL
0601: QKLRHLRVLS LSGYEITELP YWIGDLKLLR YLNLSHTAVK CLPESVSCLY NLQVLMLCNC INLIKLPMNI GNLINLRHLN INGSIQLKEM PSRVGDLINL
0701: QTLSKFIVGK RKRSGINELK NLLNLRGELF ISGLHNIVNI RDVKEVNLKG RHNIEELTME WSSDFEDSRN ERNELEVFKL LQPHESLKKL VVACYGGLTF
0801: PNWLGDHSFT KMEHLSLKSC KKLARLPPLG RLPLLKELHI EGMNEITCIG DEFYGEIVNP FPSLESLEFD NMPKWKDWME KEALFPCLRE LTVKKCPELI
0901: DLPSQLLSFV KKLHVDECQK LKVYEYNRGW LESCVVNVPS LTWLYIGGIS RLSCLWEAFS QPLPALKALD INRCDELACL ELESLGSLRN LAIKSCDGVE
1001: SLEGQRLPRY LQCLNVEGCS SLKKLPNALG SLIFLTVLRI ANCSKLVSFP DASFPPMVRA LRVTNCEDLK SLPHRMMNDS CTLEYLEIKG CPSLIGFPKG
1101: KLPFTLKQLR IQECEKLESL PEGIMQQPSI GSSNTGGLKV LFIWGCSSLK SIPRGEFPST LETLSFWKCE RLESIPGKML QNLTSLRLLN ICNCPELVSS
1201: TEAFLNSNLK FLAISECQNM KRPLSEWGLY TLTSLTHFMI CGPFPDPPWD SKASSLWKLL CWRAARSLGL LYQTKDCHLP LQGFKSRIVL F
001: MAEAVVSFGV EKLWELLSRE SARLNGIDEQ VDGLKRQLGR LQSLLKDADA KKNETERVRN FLEDVKDIVY DADDIIESFL LNELRGKEKG IKKQVRTLAC
101: FLVDRRKFAS DIEGITKRIS EVIVGMQSLG IQHIADGGGR SLSLQERQRE IRQTFSRNSE SDLVGLDQSV EELVDHLVEN DSVQVVSVSG MGGIGKTTLA
201: RQVFHHDIVR RHFDGFSWVC VSQQFTRKDV WQRILQDLRP YDEGIIQMDE YTLQGELFEL LESGRYLLVL DDVWKEEDWD RIKAVFPHKR GWKMLLTSRN
301: EGLGLHADPT CFAFRPRILT PEQSWKLFER IVSSRRDKTE FKVDEAMGKE MVTYCGGLPL AVKVLGGLLA KKHTVLEWKR VHSNIVTHIV GKSGLSDDNS
401: NSVYRVLSLS YEDLPMQLKH CFFYLAHFPE DYKIDVKILF NYWVAEGIIT PFHDGSTIQD TGESYLEELV RRNMVVVEES YLTSRIEYCQ MHDMMREVCL
501: SKAKEENFIR VVKVPTTTST TINAQSPCRS RRLVLHSGNA LHMLGHKDNK KARSVLIFGV EEKFWKPRGF QCLPLLRVLD LSYVQFEGGK LPSSIGDLIH
601: LRFLSLYEAG VSHLPSSLGN LKLLLCLNLG VADRLLVHVP NVLKEMQELR YLRLPRSMPA KTKLELGDLV NLESLTNFST KHGSVTDLLR MTKLSVLNVI
701: FSGECTFETL LLSLRELRNL ETLSFHDFQK VSVANHGGEL LVLDFIHLKD LTLSMHLPRF PDQYRFPPHL AHIWLIGCRM EEDPMPILEK LLHLKSVYLS
801: SGAFLGRRMV CSKGGFPQLL ALKMSYKKEL VEWRVEEGSM PCLRTLTIDN CKKLKQLPDG LKYVTCLKEL KIERMKREWT ERLVIGGEDY YKVQHIPSVQ
901: FINCDH
101: FLVDRRKFAS DIEGITKRIS EVIVGMQSLG IQHIADGGGR SLSLQERQRE IRQTFSRNSE SDLVGLDQSV EELVDHLVEN DSVQVVSVSG MGGIGKTTLA
201: RQVFHHDIVR RHFDGFSWVC VSQQFTRKDV WQRILQDLRP YDEGIIQMDE YTLQGELFEL LESGRYLLVL DDVWKEEDWD RIKAVFPHKR GWKMLLTSRN
301: EGLGLHADPT CFAFRPRILT PEQSWKLFER IVSSRRDKTE FKVDEAMGKE MVTYCGGLPL AVKVLGGLLA KKHTVLEWKR VHSNIVTHIV GKSGLSDDNS
401: NSVYRVLSLS YEDLPMQLKH CFFYLAHFPE DYKIDVKILF NYWVAEGIIT PFHDGSTIQD TGESYLEELV RRNMVVVEES YLTSRIEYCQ MHDMMREVCL
501: SKAKEENFIR VVKVPTTTST TINAQSPCRS RRLVLHSGNA LHMLGHKDNK KARSVLIFGV EEKFWKPRGF QCLPLLRVLD LSYVQFEGGK LPSSIGDLIH
601: LRFLSLYEAG VSHLPSSLGN LKLLLCLNLG VADRLLVHVP NVLKEMQELR YLRLPRSMPA KTKLELGDLV NLESLTNFST KHGSVTDLLR MTKLSVLNVI
701: FSGECTFETL LLSLRELRNL ETLSFHDFQK VSVANHGGEL LVLDFIHLKD LTLSMHLPRF PDQYRFPPHL AHIWLIGCRM EEDPMPILEK LLHLKSVYLS
801: SGAFLGRRMV CSKGGFPQLL ALKMSYKKEL VEWRVEEGSM PCLRTLTIDN CKKLKQLPDG LKYVTCLKEL KIERMKREWT ERLVIGGEDY YKVQHIPSVQ
901: FINCDH
Arabidopsis Description
RPP8L2Probable disease resistance RPP8-like protein 2 [Source:UniProtKB/Swiss-Prot;Acc:P0C8S1]
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.