Subcellular Localization
min:
: max
Winner_takes_all: cytosol
Predictor Summary:
Predictor Summary:
- plastid 1
- cytosol 2
- plasma membrane 2
- mitochondrion 1
Predictors | GFP | MS/MS | Papers |
---|---|---|---|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
CDY16627 | Canola | cytosol | 25.64 | 69.93 |
CDY44742 | Canola | cytosol | 25.52 | 69.6 |
PGSC0003DMT400076360 | Potato | plasma membrane | 73.51 | 68.35 |
KRH21444 | Soybean | mitochondrion | 59.62 | 67.7 |
VIT_12s0028g03720.t01 | Wine grape | cytosol, mitochondrion, peroxisome, plasma membrane | 57.13 | 67.53 |
Solyc02g078230.1.1 | Tomato | cytosol | 73.33 | 67.45 |
KRH10873 | Soybean | plasma membrane | 73.2 | 66.81 |
AT4G04970.1 | Thale cress | cytosol | 70.52 | 65.5 |
Bra029541.1-P | Field mustard | cytosol, nucleus, plasma membrane | 70.34 | 65.33 |
GSMUA_Achr1P27410_001 | Banana | cytosol | 55.79 | 64.06 |
TraesCS3D01G292500.1 | Wheat | cytosol, nucleus, peroxisome | 67.3 | 61.8 |
Os01t0754200-03 | Rice | cytosol, mitochondrion, peroxisome, plasma membrane | 67.17 | 61.62 |
HORVU3Hr1G072540.2 | Barley | mitochondrion | 67.24 | 61.61 |
TraesCS3B01G327500.1 | Wheat | mitochondrion | 67.24 | 61.61 |
TraesCS3A01G292700.1 | Wheat | cytosol | 67.3 | 61.56 |
CDY16628 | Canola | cytosol, nucleus, plasma membrane | 41.29 | 61.36 |
CDY44741 | Canola | cytosol, nucleus, plasma membrane | 41.23 | 61.27 |
KXG33388 | Sorghum | mitochondrion | 66.75 | 61.23 |
TraesCS3B01G274100.1 | Wheat | cytosol, endoplasmic reticulum, plasma membrane | 56.21 | 61.0 |
TraesCS3D01G246000.1 | Wheat | cytosol, endoplasmic reticulum, plasma membrane | 56.09 | 60.83 |
TraesCS3A01G245500.1 | Wheat | cytosol, endoplasmic reticulum, plasma membrane | 56.03 | 60.65 |
Zm00001d043909_P002 | Maize | cytosol | 65.35 | 60.31 |
Zm00001d043428_P005 | Maize | cytosol, plastid | 66.81 | 60.27 |
KXG33086 | Sorghum | cytosol | 65.1 | 60.09 |
Os01t0672500-01 | Rice | plasma membrane | 17.42 | 60.08 |
HORVU3Hr1G061700.1 | Barley | cytosol, plastid | 65.96 | 57.88 |
TraesCS2B01G521100.1 | Wheat | unclear | 61.51 | 57.06 |
GSMUA_Achr4P01160_001 | Banana | plastid | 34.17 | 55.65 |
TraesCS2A01G493000.1 | Wheat | plasma membrane | 14.56 | 54.44 |
HORVU2Hr1G109970.1 | Barley | cytosol | 54.81 | 53.99 |
Zm00001d041460_P001 | Maize | mitochondrion, plasma membrane | 12.55 | 47.69 |
TraesCS2A01G493100.1 | Wheat | mitochondrion | 11.14 | 45.86 |
VIT_17s0000g10010.t01 | Wine grape | cytosol | 43.67 | 43.69 |
VIT_19s0138g00120.t01 | Wine grape | mitochondrion, plasma membrane | 44.52 | 41.58 |
VIT_12s0028g00400.t01 | Wine grape | plasma membrane | 43.79 | 41.54 |
VIT_04s0044g01280.t01 | Wine grape | plastid | 48.6 | 41.35 |
VIT_06s0004g01270.t01 | Wine grape | cytosol, mitochondrion, nucleus, plasma membrane | 47.56 | 39.77 |
VIT_13s0156g00210.t01 | Wine grape | mitochondrion | 46.35 | 39.11 |
VIT_06s0004g01200.t01 | Wine grape | cytosol | 41.41 | 37.12 |
VIT_15s0024g01490.t01 | Wine grape | cytosol, peroxisome, plastid | 7.43 | 31.61 |
VIT_19s0138g00110.t01 | Wine grape | nucleus | 0.97 | 11.27 |
VIT_17s0000g10020.t01 | Wine grape | cytosol | 0.73 | 4.15 |
Protein Annotations
KEGG:00500+2.4.1.34 | MapMan:21.7.1 | ProteinID:CCB48815 | ProteinID:CCB48815.1 | ncoils:Coil | UniProt:F6H9C2 |
InterPro:FKS1-like_dom1 | EMBL:FN595499 | GO:GO:0000148 | GO:GO:0003674 | GO:GO:0003824 | GO:GO:0003843 |
GO:GO:0005575 | GO:GO:0005623 | GO:GO:0005886 | GO:GO:0005975 | GO:GO:0006075 | GO:GO:0008150 |
GO:GO:0008152 | GO:GO:0009058 | GO:GO:0009987 | GO:GO:0016020 | GO:GO:0016021 | GO:GO:0016740 |
InterPro:Glyco_trans_48 | PFAM:PF02364 | PFAM:PF14288 | PANTHER:PTHR12741 | PANTHER:PTHR12741:SF23 | SMART:SM01205 |
TMHMM:TMhelix | UniParc:UPI000210A6C2 | ArrayExpress:VIT_00s0265g00050 | EnsemblPlantsGene:VIT_00s0265g00050 | EnsemblPlants:VIT_00s0265g00050.t01 | SEG:seg |
Description
No Description!
Coordinates
chrUn:+:19177155..19186175
Molecular Weight (calculated)
190073.0 Da
IEP (calculated)
9.331
GRAVY (calculated)
0.035
Length
1642 amino acids
Sequence
(BLAST)
(BLAST)
0001: MDILDWLGMF FGFQNDNVRN QREHLVLHLA NSQMRLSPPP KTVGSLDPTV LRDFRSKLLK NYTSWCSYLG RKSQLWLSNR RDALRRELLY VSLYLLIWGE
0101: SANLRFCPEC ICYIFHHMAL ELNQILENYI DDNTGRPFEP SYGANGFLIR VVTPIYNIIK FEVDSSQNGT KPHSAWRNYD DINEFFWSRK CFRRLGWPIN
0201: RGPKFFETDK TKKVGKTGFV EQRSFWNVFR SFDRLWVLLI LSLQAFVIVA WQGTEYPWKA LKNRGVQVKL LTVFITWGAL RFLQSVLDAG TQYSLVSRET
0301: RSLGVRMVLK SVVAITWTVV FGVFYGRIWS QKNSDGMWSD AANRRIITFL EAAFVFIIPE LLALTLFMIP WVRICLEETN WKVLYCLTWW FHTRTFVGRG
0401: LREGPVTNMK YSLFWIAVLA SKFSFSYFLQ IKPLIAPTKI LLSRTVLTYT WHEFFGKANR TAIVVLWVPV LLIYLMDLQI WYAIFSSLVG GANGLFSHLG
0501: EIRNIEQLRL RFQFFASAMQ FNLMPEEQTE NTKLSLVKKL RDVIHRFKLR YGLGQVYKKI ESSQVEATRF ALIWNEIILT FREEDLISDA EHELLELHQN
0601: CWNIRVIRWP CVLLCNELLL ALSQAAEVTD KSDSWLWPKI CKNEYRRCAV IEAYDSIRSL LLLVVKSGSE ENSIVANFFQ EIERYIEIGK FTEMYKMTLL
0701: PQIHAKLISL IKLLLGPKKD HSKVVNVLQA LYELCVREFP KVKRSIVQLR QEGLAPLSPA ADAGLLFENA VEFPDAEDAR HLRRLQTILT SRDSMHNVPT
0801: NLEARRRIAF FSNSLFMNMP HAPRVEKMVP FSILTPYYNE EVMYGQGTLR NENEDGISTL FYLQKIYADE WANFMERMHR DGMEDDNEIW STKARDLRLW
0901: ASYRGQTLSR TVRGMMYYYR ALKMLTFLDS ASEMDIRNGS QQLASHGSLS SGLDGPFLGK APPAKKLDRG AGGVNLLFKG HEYGSALMKF TYVVACQIYG
1001: SQKMKGDPRA EEILFLMKNN EALRVAYVDE VPSGREEVEY YSVLVKYDDE LQKEVEIYRI RLPGPLKIGE GKPENQNHAI IFTRGDALQT IDMNQDNYYE
1101: EALKMRNLLE EFKTYYGIRK PTILGVRENV ITGSVSSLAW FMSAQEMSFV TLGQRVLANP LKVRMHYGHP DVFDRFWFLT RGGISKASRV INISEDIFAG
1201: FNCTLRGGNV THHEYIQVGK GRDVGLNQIS MFEAKVASGN GEQVLSRDVY RLGHRLDFFR MLSFFYSTVG FYFNTMVVVL TVYTFLWGRL YLALSGVEGS
1301: TTNSSTNNRA LGAVLNQQFI IQLGLFSALP MVVENTLEHG FLSAVYDFLT MQLQLASIFY TFSMGTRTHF FGRTILHGGA KYRATGRGFV VEHKIPWLRI
1401: LWFTYSWQSQ TVYDFDDFMN WIWCSGGILA KAEQSWETWW YEEHDHLRTT GLWGKLLEMI LDIRFFFFQY GVVYRLKITS GNTSIAVYLL SWIYMIVAVG
1501: ICIIIAYARD KYSATQHIYY RLVQLLVIVV IVLVIVLFLK FTNLIFLDLI TSLLAFIPTG WGLISIAVVL RPFLQSTVVW ETVVSLARLY DLLFGIIILA
1601: PVALLSWMPG FQSMQTRILF NEAFSRGLQI SRILTGKKNI DM
0101: SANLRFCPEC ICYIFHHMAL ELNQILENYI DDNTGRPFEP SYGANGFLIR VVTPIYNIIK FEVDSSQNGT KPHSAWRNYD DINEFFWSRK CFRRLGWPIN
0201: RGPKFFETDK TKKVGKTGFV EQRSFWNVFR SFDRLWVLLI LSLQAFVIVA WQGTEYPWKA LKNRGVQVKL LTVFITWGAL RFLQSVLDAG TQYSLVSRET
0301: RSLGVRMVLK SVVAITWTVV FGVFYGRIWS QKNSDGMWSD AANRRIITFL EAAFVFIIPE LLALTLFMIP WVRICLEETN WKVLYCLTWW FHTRTFVGRG
0401: LREGPVTNMK YSLFWIAVLA SKFSFSYFLQ IKPLIAPTKI LLSRTVLTYT WHEFFGKANR TAIVVLWVPV LLIYLMDLQI WYAIFSSLVG GANGLFSHLG
0501: EIRNIEQLRL RFQFFASAMQ FNLMPEEQTE NTKLSLVKKL RDVIHRFKLR YGLGQVYKKI ESSQVEATRF ALIWNEIILT FREEDLISDA EHELLELHQN
0601: CWNIRVIRWP CVLLCNELLL ALSQAAEVTD KSDSWLWPKI CKNEYRRCAV IEAYDSIRSL LLLVVKSGSE ENSIVANFFQ EIERYIEIGK FTEMYKMTLL
0701: PQIHAKLISL IKLLLGPKKD HSKVVNVLQA LYELCVREFP KVKRSIVQLR QEGLAPLSPA ADAGLLFENA VEFPDAEDAR HLRRLQTILT SRDSMHNVPT
0801: NLEARRRIAF FSNSLFMNMP HAPRVEKMVP FSILTPYYNE EVMYGQGTLR NENEDGISTL FYLQKIYADE WANFMERMHR DGMEDDNEIW STKARDLRLW
0901: ASYRGQTLSR TVRGMMYYYR ALKMLTFLDS ASEMDIRNGS QQLASHGSLS SGLDGPFLGK APPAKKLDRG AGGVNLLFKG HEYGSALMKF TYVVACQIYG
1001: SQKMKGDPRA EEILFLMKNN EALRVAYVDE VPSGREEVEY YSVLVKYDDE LQKEVEIYRI RLPGPLKIGE GKPENQNHAI IFTRGDALQT IDMNQDNYYE
1101: EALKMRNLLE EFKTYYGIRK PTILGVRENV ITGSVSSLAW FMSAQEMSFV TLGQRVLANP LKVRMHYGHP DVFDRFWFLT RGGISKASRV INISEDIFAG
1201: FNCTLRGGNV THHEYIQVGK GRDVGLNQIS MFEAKVASGN GEQVLSRDVY RLGHRLDFFR MLSFFYSTVG FYFNTMVVVL TVYTFLWGRL YLALSGVEGS
1301: TTNSSTNNRA LGAVLNQQFI IQLGLFSALP MVVENTLEHG FLSAVYDFLT MQLQLASIFY TFSMGTRTHF FGRTILHGGA KYRATGRGFV VEHKIPWLRI
1401: LWFTYSWQSQ TVYDFDDFMN WIWCSGGILA KAEQSWETWW YEEHDHLRTT GLWGKLLEMI LDIRFFFFQY GVVYRLKITS GNTSIAVYLL SWIYMIVAVG
1501: ICIIIAYARD KYSATQHIYY RLVQLLVIVV IVLVIVLFLK FTNLIFLDLI TSLLAFIPTG WGLISIAVVL RPFLQSTVVW ETVVSLARLY DLLFGIIILA
1601: PVALLSWMPG FQSMQTRILF NEAFSRGLQI SRILTGKKNI DM
0001: MRRQRPSVAT ARDAPSLEVY NIIPIHDFLT EHPSLRYPEV RAAAAALRIV GDLPKPPFAD FTPRMDLMDW LGLLFGFQID NVRNQRENLV LHLANSQMRL
0101: QPPPRHPDGL DPTVLRRFRK KLLRNYTNWC SFLGVRCHVT SPIQSRHQTN AVLNLRRELL YVALYLLIWG ESANLRFMPE CLCYIFHHMA MELNKVLAGE
0201: FDDMTGMPYW PSFSGDCAFL KSVVMPIYKT VKTEVESSNN GTKPHSAWRN YDDINEYFWS KRALKSLKWP LDYTSNFFDT TPKSSRVGKT GFVEQRSFWN
0301: VYRSFDRLWI LLLLYLQAAI IVATSDVKFP WQDRDVEVAL LTVFISWAGL RLLQSVLDAS TQYSLVSRET YWLFIRLTLK FVVAVAWTVL FSVFYARIWS
0401: QKNKDGVWSR AANERVVTFL KVVFVYVIPE LLALVLFIVP CIRNWVEELN LGVVYFLTWW FYSKTFVGRG MREGLVDNVK YTLFWIIVLA TKFIFSYFLQ
0501: IRPLIAPTRA LLNLKDATYN WHEFFGSTHR IAVGMLWLPV ILVYLMDLQI WYSIYSSLVG ATIGLFSHLG EIRNIDQLRL RFQFFSSAMQ FNLKPEEHLL
0601: SPKATMLKKA RDAIHRLKLR YGIGQPFNKI ESSQVEATWF ALIWNEIILT FREEDLISDR EVELLELPPN CWNIRVIRWP CFLLCNELLL ALSQANELCD
0701: APDHWLWSKI CSSEYRRCAV MEAFDSIKFV ILKIVKNGTE EESILNRLFM EIDENVENEK ITEVYKLTVL LRIHEKLISL LERLMDPEKK VFRIVNILQA
0801: LYELCAWEFP KTRRSTPQLR QLGLAPISLE ADTELLFVNA INLPPLDDVV FYRQIRRVHT ILTSRDPMHN VPKNIEARER LAFFSNSLFM TMPQAPSVEK
0901: MMAFSVLTPY YDEEVMYRQE MLRAENEDGI STLFYLQRIY EDEWVNFLER MRREGAENEN DIWSKKVRDL RLWASYRGQT LSRTVRGMMY YYSALKKLAF
1001: LDSASEMDIR MGTQIAPEAR RSYYTNDGGD NTLQPTPSQE ISRMASGITH LLKGSEYGSA MMKFTYVVAC QVYGQHKARG DHRAEEILFL MKNHDALRIA
1101: YVDEVDLGRG EVEYYSVLVK FDQQLQREVE IYRIRLPGPL KLGEGKPENQ NHALIFTRGD AIQTIDMNQD NHFEEALKMR NLLESFKTYY GIRKPTILGV
1201: REKVFTGSVS SLAWFMSAQE TSFVTLGQRV LANPLKVRMH YGHPDVFDRF WFVPRGGISK ASRVINISED IFAGFNCTLR GGNVTHHEYI QVGKGRDVGL
1301: NQISMFEAKV ASGNGEQALS RDVYRLGHRL DFFRMLSFFY TTVGYYFNTM LIVFTVYAFL WGRLYLALSG VEKIAKDRSS SNEALGAILN QQFIIQLGLF
1401: TALPMILENS LERGFLPAVW DFITMQLQLA SFFYTFSMGT RTHYFGRTIL HGGAKYRATG RGFVVEHKKF AENYRLYART HFIKAIELAI ILLVYAAYSP
1501: LAKSSFVYIL MTISSWFLIT SWIISPFLFN PSGFDWLKTV NDFDDFIAWL WSRGGLFTKA DQSWFTWWNE EQEHLKTTGV WGKLLEIILD LRFFFFQYSI
1601: VYHLRIAENR TSIGVYLISW GCIIGIVAIY ITTIYAQKRY SVKEHIKYRF IQFLVILLTV LVVVMMLQFT KLTVVDLLIS LLAFVPTGWG LISIAQVLKP
1701: FLLSTVVWDT VISVARFYDL FFGLIVMAPV ALLSWLPGFQ NMQTRILFNE AFSRGLQISI ILAGKKST
0101: QPPPRHPDGL DPTVLRRFRK KLLRNYTNWC SFLGVRCHVT SPIQSRHQTN AVLNLRRELL YVALYLLIWG ESANLRFMPE CLCYIFHHMA MELNKVLAGE
0201: FDDMTGMPYW PSFSGDCAFL KSVVMPIYKT VKTEVESSNN GTKPHSAWRN YDDINEYFWS KRALKSLKWP LDYTSNFFDT TPKSSRVGKT GFVEQRSFWN
0301: VYRSFDRLWI LLLLYLQAAI IVATSDVKFP WQDRDVEVAL LTVFISWAGL RLLQSVLDAS TQYSLVSRET YWLFIRLTLK FVVAVAWTVL FSVFYARIWS
0401: QKNKDGVWSR AANERVVTFL KVVFVYVIPE LLALVLFIVP CIRNWVEELN LGVVYFLTWW FYSKTFVGRG MREGLVDNVK YTLFWIIVLA TKFIFSYFLQ
0501: IRPLIAPTRA LLNLKDATYN WHEFFGSTHR IAVGMLWLPV ILVYLMDLQI WYSIYSSLVG ATIGLFSHLG EIRNIDQLRL RFQFFSSAMQ FNLKPEEHLL
0601: SPKATMLKKA RDAIHRLKLR YGIGQPFNKI ESSQVEATWF ALIWNEIILT FREEDLISDR EVELLELPPN CWNIRVIRWP CFLLCNELLL ALSQANELCD
0701: APDHWLWSKI CSSEYRRCAV MEAFDSIKFV ILKIVKNGTE EESILNRLFM EIDENVENEK ITEVYKLTVL LRIHEKLISL LERLMDPEKK VFRIVNILQA
0801: LYELCAWEFP KTRRSTPQLR QLGLAPISLE ADTELLFVNA INLPPLDDVV FYRQIRRVHT ILTSRDPMHN VPKNIEARER LAFFSNSLFM TMPQAPSVEK
0901: MMAFSVLTPY YDEEVMYRQE MLRAENEDGI STLFYLQRIY EDEWVNFLER MRREGAENEN DIWSKKVRDL RLWASYRGQT LSRTVRGMMY YYSALKKLAF
1001: LDSASEMDIR MGTQIAPEAR RSYYTNDGGD NTLQPTPSQE ISRMASGITH LLKGSEYGSA MMKFTYVVAC QVYGQHKARG DHRAEEILFL MKNHDALRIA
1101: YVDEVDLGRG EVEYYSVLVK FDQQLQREVE IYRIRLPGPL KLGEGKPENQ NHALIFTRGD AIQTIDMNQD NHFEEALKMR NLLESFKTYY GIRKPTILGV
1201: REKVFTGSVS SLAWFMSAQE TSFVTLGQRV LANPLKVRMH YGHPDVFDRF WFVPRGGISK ASRVINISED IFAGFNCTLR GGNVTHHEYI QVGKGRDVGL
1301: NQISMFEAKV ASGNGEQALS RDVYRLGHRL DFFRMLSFFY TTVGYYFNTM LIVFTVYAFL WGRLYLALSG VEKIAKDRSS SNEALGAILN QQFIIQLGLF
1401: TALPMILENS LERGFLPAVW DFITMQLQLA SFFYTFSMGT RTHYFGRTIL HGGAKYRATG RGFVVEHKKF AENYRLYART HFIKAIELAI ILLVYAAYSP
1501: LAKSSFVYIL MTISSWFLIT SWIISPFLFN PSGFDWLKTV NDFDDFIAWL WSRGGLFTKA DQSWFTWWNE EQEHLKTTGV WGKLLEIILD LRFFFFQYSI
1601: VYHLRIAENR TSIGVYLISW GCIIGIVAIY ITTIYAQKRY SVKEHIKYRF IQFLVILLTV LVVVMMLQFT KLTVVDLLIS LLAFVPTGWG LISIAQVLKP
1701: FLLSTVVWDT VISVARFYDL FFGLIVMAPV ALLSWLPGFQ NMQTRILFNE AFSRGLQISI ILAGKKST
Arabidopsis Description
CALS11Callose synthase 11 [Source:UniProtKB/Swiss-Prot;Acc:Q9S9U0]
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.