Subcellular Localization
min:
: max
Winner_takes_all: cytosol
Predictor Summary:
Predictor Summary:
- nucleus 2
- cytosol 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 |
---|---|---|---|---|
KXG19141 | Sorghum | cytosol | 85.31 | 81.31 |
Os03t0849500-00 | Rice | cytosol | 34.21 | 65.11 |
KXG23480 | Sorghum | cytosol | 37.78 | 63.3 |
Os03t0848700-01 | Rice | plasma membrane | 61.46 | 54.6 |
EES17188 | Sorghum | cytosol | 59.25 | 52.4 |
OQU79153 | Sorghum | cytosol | 57.56 | 51.87 |
KXG32488 | Sorghum | cytosol | 21.9 | 51.19 |
OQU79149 | Sorghum | mitochondrion | 49.49 | 49.87 |
EES02942 | Sorghum | vacuole | 49.07 | 40.03 |
KXG38736 | Sorghum | cytosol | 39.73 | 37.44 |
KXG29103 | Sorghum | cytosol | 39.3 | 36.89 |
KXG24524 | Sorghum | endoplasmic reticulum, golgi, plastid | 40.83 | 36.25 |
OQU80806 | Sorghum | cytosol | 31.83 | 32.44 |
EES14172 | Sorghum | cytosol | 31.66 | 31.32 |
OQU80781 | Sorghum | cytosol, extracellular, nucleus | 30.73 | 30.45 |
KXG32487 | Sorghum | cytosol | 20.71 | 29.87 |
EES14143 | Sorghum | cytosol | 29.46 | 29.68 |
Protein Annotations
Gene3D:3.40.50.300 | Gene3D:3.80.10.10 | MapMan:35.1 | UniProt:A0A1W0VSV9 | GO:GO:0000166 | GO:GO:0003674 |
GO:GO:0005488 | GO:GO:0043531 | InterPro:IPR032675 | InterPro:LRR_dom_sf | InterPro:NB-ARC | EnsemblPlants:OQU76368 |
ProteinID:OQU76368 | ProteinID:OQU76368.1 | InterPro:P-loop_NTPase | PFAM:PF00931 | PRINTS:PR00364 | PANTHER:PTHR23155 |
PANTHER:PTHR23155:SF865 | EnsemblPlantsGene:SORBI_3010G137500 | SUPFAM:SSF52047 | SUPFAM:SSF52058 | SUPFAM:SSF52540 | UniParc:UPI0009DC8E3D |
SEG:seg | : | : | : | : | : |
Description
hypothetical protein
Coordinates
chr10:-:22018972..22041564
Molecular Weight (calculated)
133010.0 Da
IEP (calculated)
6.329
GRAVY (calculated)
-0.220
Length
1178 amino acids
Sequence
(BLAST)
(BLAST)
0001: MVVGPLVSMV KEKASSILLD QYKVMEGMEE QHKLLKRKLP AVLDVISDAE EQAAKNREGA KAWLEELRNM AYKANDVLDE FKYEALRRKA KAEGHYKEFG
0101: MDIIKLFPSH NRFVFRYRMA NKLCMILQEI DDLIAEMNTF RFKFKPQPPM SLKWRKTDPY IPSHSMNIAS ESRAEDKKKI VSALLDQSNN VGLTVLPIVG
0201: MGGMGKTTLA QLVYSDSAIE KHFQVRIWVC VSENFDVDSL FEIIVEEAKK NGCETSDGSA LEKFKSAVSG KKYLLVLDDV WNREANKWDK LRSYLHHGAP
0301: GSSILTTTRD KNIARFMGTI EAHKIKHLKE SYIEDIIKTR AFSSPSEVPT ELQKLVGGVA KRCSGSPLAA TALGSVLRTK NTVQEWEAVL NRSTICDEEN
0401: GILPILKLSY NCLPPHMRQC FAFCAMFPKD YEIDVEMLIR LWMANSFIPE QHGVCPEVTG KQIFNELAQR ITCKIHDLMH DVAQDSMGKE CATLDTELSQ
0501: SEDFLYSARH LFLLVDIPGN IVNASQEKGS LAIQTLICDG KLRIILWWHI CARHLSKYCR SVRALKTKQD SFLEPKYLHH LRYLDLSNSY IEALPKDITI
0601: MYHLQTLNLS YCRSLEKLPK TMKYMTALRH LYTHGCDMLK SMPPDLGHLT SLQTLTCFVA ATGSSCSNMG ELEKLDLGGQ LELRRLENAT GADARAASLW
0701: DKKSLEELTL RWSDGHDKDA DKEVLEGLRP HDGLKAMKMY CCGSSSIPAW MLELQGMVEL ALEDCQNLEK LPALWQLPSL QFLYLSDLQN LYCLFSGGAP
0801: SKFQKLKRMA LNKMPKFETW WDTNEVQGED PLFPEVEYLR IRDCGSLTAL PKASVVVKQS SGEDDTECRS TFPALREMEL YNLKKFHRWE AVEVEGTTLG
0901: EQVTFPQLEK LVIWNDSGLT TFPEAPKLST LDLPDCCSEE ASLQAASRYI TSLSSLKLKA SYNSDNSIEV VVRDHESPSH LGDLELSRCS LFFSHSSAAA
1001: LWTCFGQLSQ LKICFCHGLV YWPESLFQYL VRLTEDEASD EQSAPERSGT FLPRLESLVI EGCYSLVQLP NLSAPLKTLH ISDCSSLKFI AFASSNHCFF
1101: PCLESLQIDR CDRLTQVANL PPSIKTLQIS DCQSLVSLSG EVPSLEKLVV WSCESLESLP NGPANQAYSS LRVLDIRC
0101: MDIIKLFPSH NRFVFRYRMA NKLCMILQEI DDLIAEMNTF RFKFKPQPPM SLKWRKTDPY IPSHSMNIAS ESRAEDKKKI VSALLDQSNN VGLTVLPIVG
0201: MGGMGKTTLA QLVYSDSAIE KHFQVRIWVC VSENFDVDSL FEIIVEEAKK NGCETSDGSA LEKFKSAVSG KKYLLVLDDV WNREANKWDK LRSYLHHGAP
0301: GSSILTTTRD KNIARFMGTI EAHKIKHLKE SYIEDIIKTR AFSSPSEVPT ELQKLVGGVA KRCSGSPLAA TALGSVLRTK NTVQEWEAVL NRSTICDEEN
0401: GILPILKLSY NCLPPHMRQC FAFCAMFPKD YEIDVEMLIR LWMANSFIPE QHGVCPEVTG KQIFNELAQR ITCKIHDLMH DVAQDSMGKE CATLDTELSQ
0501: SEDFLYSARH LFLLVDIPGN IVNASQEKGS LAIQTLICDG KLRIILWWHI CARHLSKYCR SVRALKTKQD SFLEPKYLHH LRYLDLSNSY IEALPKDITI
0601: MYHLQTLNLS YCRSLEKLPK TMKYMTALRH LYTHGCDMLK SMPPDLGHLT SLQTLTCFVA ATGSSCSNMG ELEKLDLGGQ LELRRLENAT GADARAASLW
0701: DKKSLEELTL RWSDGHDKDA DKEVLEGLRP HDGLKAMKMY CCGSSSIPAW MLELQGMVEL ALEDCQNLEK LPALWQLPSL QFLYLSDLQN LYCLFSGGAP
0801: SKFQKLKRMA LNKMPKFETW WDTNEVQGED PLFPEVEYLR IRDCGSLTAL PKASVVVKQS SGEDDTECRS TFPALREMEL YNLKKFHRWE AVEVEGTTLG
0901: EQVTFPQLEK LVIWNDSGLT TFPEAPKLST LDLPDCCSEE ASLQAASRYI TSLSSLKLKA SYNSDNSIEV VVRDHESPSH LGDLELSRCS LFFSHSSAAA
1001: LWTCFGQLSQ LKICFCHGLV YWPESLFQYL VRLTEDEASD EQSAPERSGT FLPRLESLVI EGCYSLVQLP NLSAPLKTLH ISDCSSLKFI AFASSNHCFF
1101: PCLESLQIDR CDRLTQVANL PPSIKTLQIS DCQSLVSLSG EVPSLEKLVV WSCESLESLP NGPANQAYSS LRVLDIRC
0001: MANSYLSSCA NVMVERINTS QELVELCKGK SSSALLKRLK VALVTANPVL ADADQRAEHV REVKHWLTGI KDAFFQAEDI LDELQTEALR RRVVAEAGGL
0101: GGLFQNLMAG REAIQKKIEP KMEKVVRLLE HHVKHIEVIG LKEYSETREP QWRQASRSRP DDLPQGRLVG RVEDKLALVN LLLSDDEISI GKPAVISVVG
0201: MPGVGKTTLT EIVFNDYRVT EHFEVKMWIS AGINFNVFTV TKAVLQDITS SAVNTEDLPS LQIQLKKTLS GKRFLLVLDD FWSESDSEWE SFQVAFTDAE
0301: EGSKIVLTTR SEIVSTVAKA EKIYQMKLMT NEECWELISR FAFGNISVGS INQELEGIGK RIAEQCKGLP LAARAIASHL RSKPNPDDWY AVSKNFSSYT
0401: NSILPVLKLS YDSLPPQLKR CFALCSIFPK GHVFDREELV LLWMAIDLLY QPRSSRRLED IGNDYLGDLV AQSFFQRLDI TMTSFVMHDL MNDLAKAVSG
0501: DFCFRLEDDN IPEIPSTTRH FSFSRSQCDA SVAFRSICGA EFLRTILPFN SPTSLESLQL TEKVLNPLLN ALSGLRILSL SHYQITNLPK SLKGLKLLRY
0601: LDLSSTKIKE LPEFVCTLCN LQTLLLSNCR DLTSLPKSIA ELINLRLLDL VGTPLVEMPP GIKKLRSLQK LSNFVIGRLS GAGLHELKEL SHLRGTLRIS
0701: ELQNVAFASE AKDAGLKRKP FLDGLILKWT VKGSGFVPGS FNALACDQKE VLRMLEPHPH LKTFCIESYQ GGAFPKWLGD SSFFGITSVT LSSCNLCISL
0801: PPVGQLPSLK YLSIEKFNIL QKVGLDFFFG ENNSRGVPFQ SLQILKFYGM PRWDEWICPE LEDGIFPCLQ KLIIQRCPSL RKKFPEGLPS STEVTISDCP
0901: LRAVSGGENS FRRSLTNIPE SPASIPSMSR RELSSPTGNP KSDASTSAQP GFASSSQSND DNEVTSTSSL SSLPKDRQTE DFDQYETQLG SLPQQFEEPA
1001: VISARYSGYI SDIPSTLSPY MSRTSLVPDP KNEGSILPGS SSYQYHQYGI KSSVPSPRSS EAIKPSQYDD DETDMEYLKV TDISHLMELP QNLQSLHIDS
1101: CDGLTSLPEN LTESYPNLHE LLIIACHSLE SFPGSHPPTT LKTLYIRDCK KLNFTESLQP TRSYSQLEYL FIGSSCSNLV NFPLSLFPKL RSLSIRDCES
1201: FKTFSIHAGL GDDRIALESL EIRDCPNLET FPQGGLPTPK LSSMLLSNCK KLQALPEKLF GLTSLLSLFI IKCPEIETIP GGGFPSNLRT LCISLCDKLT
1301: PRIEWGLRDL ENLRNLEIDG GNEDIESFPE EGLLPKSVFS LRISRFENLK TLNRKGFHDT KAIETMEISG CDKLQISIDE DLPPLSCLRI SSCSLLTETF
1401: AEVETEFFKV LNIPYVEIDG EIFS
0101: GGLFQNLMAG REAIQKKIEP KMEKVVRLLE HHVKHIEVIG LKEYSETREP QWRQASRSRP DDLPQGRLVG RVEDKLALVN LLLSDDEISI GKPAVISVVG
0201: MPGVGKTTLT EIVFNDYRVT EHFEVKMWIS AGINFNVFTV TKAVLQDITS SAVNTEDLPS LQIQLKKTLS GKRFLLVLDD FWSESDSEWE SFQVAFTDAE
0301: EGSKIVLTTR SEIVSTVAKA EKIYQMKLMT NEECWELISR FAFGNISVGS INQELEGIGK RIAEQCKGLP LAARAIASHL RSKPNPDDWY AVSKNFSSYT
0401: NSILPVLKLS YDSLPPQLKR CFALCSIFPK GHVFDREELV LLWMAIDLLY QPRSSRRLED IGNDYLGDLV AQSFFQRLDI TMTSFVMHDL MNDLAKAVSG
0501: DFCFRLEDDN IPEIPSTTRH FSFSRSQCDA SVAFRSICGA EFLRTILPFN SPTSLESLQL TEKVLNPLLN ALSGLRILSL SHYQITNLPK SLKGLKLLRY
0601: LDLSSTKIKE LPEFVCTLCN LQTLLLSNCR DLTSLPKSIA ELINLRLLDL VGTPLVEMPP GIKKLRSLQK LSNFVIGRLS GAGLHELKEL SHLRGTLRIS
0701: ELQNVAFASE AKDAGLKRKP FLDGLILKWT VKGSGFVPGS FNALACDQKE VLRMLEPHPH LKTFCIESYQ GGAFPKWLGD SSFFGITSVT LSSCNLCISL
0801: PPVGQLPSLK YLSIEKFNIL QKVGLDFFFG ENNSRGVPFQ SLQILKFYGM PRWDEWICPE LEDGIFPCLQ KLIIQRCPSL RKKFPEGLPS STEVTISDCP
0901: LRAVSGGENS FRRSLTNIPE SPASIPSMSR RELSSPTGNP KSDASTSAQP GFASSSQSND DNEVTSTSSL SSLPKDRQTE DFDQYETQLG SLPQQFEEPA
1001: VISARYSGYI SDIPSTLSPY MSRTSLVPDP KNEGSILPGS SSYQYHQYGI KSSVPSPRSS EAIKPSQYDD DETDMEYLKV TDISHLMELP QNLQSLHIDS
1101: CDGLTSLPEN LTESYPNLHE LLIIACHSLE SFPGSHPPTT LKTLYIRDCK KLNFTESLQP TRSYSQLEYL FIGSSCSNLV NFPLSLFPKL RSLSIRDCES
1201: FKTFSIHAGL GDDRIALESL EIRDCPNLET FPQGGLPTPK LSSMLLSNCK KLQALPEKLF GLTSLLSLFI IKCPEIETIP GGGFPSNLRT LCISLCDKLT
1301: PRIEWGLRDL ENLRNLEIDG GNEDIESFPE EGLLPKSVFS LRISRFENLK TLNRKGFHDT KAIETMEISG CDKLQISIDE DLPPLSCLRI SSCSLLTETF
1401: AEVETEFFKV LNIPYVEIDG EIFS
Arabidopsis Description
Putative disease resistance protein At3g14460 [Source:UniProtKB/Swiss-Prot;Acc:Q9LRR5]
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.