Subcellular Localization
min:
: max
Winner_takes_all: plastid
Predictor Summary:
Predictor Summary:
- plastid 6
- mitochondrion 1
- cytosol 2
Predictors | GFP | MS/MS | Papers |
---|---|---|---|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
Os11t0661400-01 | Rice | cytosol | 18.7 | 95.85 |
Zm00001d007698_P002 | Maize | plastid | 94.98 | 92.65 |
Zm00001d048689_P004 | Maize | plastid | 93.36 | 91.95 |
Zm00001d029385_P001 | Maize | cytosol | 13.52 | 87.43 |
TraesCS4A01G169300.15 | Wheat | plastid | 85.75 | 85.89 |
TraesCS4D01G145100.12 | Wheat | plastid | 83.64 | 84.12 |
TraesCS4B01G126300.7 | Wheat | nucleus | 85.59 | 84.02 |
HORVU4Hr1G033300.1 | Barley | cytosol | 85.1 | 81.16 |
Zm00001d049686_P001 | Maize | plastid | 14.66 | 75.73 |
GSMUA_Achr8P33760_001 | Banana | cytosol | 61.62 | 68.93 |
GSMUA_Achr3P00740_001 | Banana | mitochondrion | 61.3 | 66.0 |
EES16128 | Sorghum | cytosol, plastid | 47.37 | 62.77 |
KRH71559 | Soybean | cytosol | 53.36 | 59.58 |
CDX91317 | Canola | plastid | 50.12 | 58.51 |
CDY32485 | Canola | plastid | 51.42 | 57.62 |
CDX90936 | Canola | plastid | 51.01 | 57.59 |
Solyc09g074950.2.1 | Tomato | plastid | 57.57 | 57.48 |
KRH31895 | Soybean | nucleus | 57.98 | 57.42 |
Solyc06g084530.2.1 | Tomato | extracellular, nucleus | 58.14 | 57.39 |
KRH71560 | Soybean | nucleus | 57.57 | 57.2 |
VIT_07s0005g00200.t01 | Wine grape | plastid | 59.43 | 57.03 |
CDX97266 | Canola | plastid | 52.23 | 57.03 |
CDX89933 | Canola | plastid | 52.96 | 56.57 |
KRH31896 | Soybean | nucleus | 56.03 | 56.44 |
CDY18129 | Canola | cytosol, plastid | 54.66 | 55.6 |
Bra018548.1-P | Field mustard | plastid | 54.01 | 54.72 |
CDY18018 | Canola | plastid | 53.52 | 54.18 |
Bra000878.1-P | Field mustard | plastid | 54.9 | 54.15 |
OQU90457 | Sorghum | cytosol, plastid | 47.69 | 53.84 |
CDY50381 | Canola | plastid | 52.31 | 53.79 |
CDY22053 | Canola | plastid | 53.52 | 53.78 |
AT1G02890.1 | Thale cress | plastid | 54.25 | 53.77 |
AT4G02480.1 | Thale cress | plastid | 54.66 | 53.36 |
Bra032579.1-P | Field mustard | plastid | 49.39 | 53.18 |
OQU79278 | Sorghum | cytosol, plastid | 39.6 | 53.04 |
Bra036265.1-P | Field mustard | plastid | 54.74 | 52.4 |
EER92288 | Sorghum | cytosol | 45.59 | 50.72 |
Bra033356.1-P | Field mustard | cytosol, plastid | 54.9 | 45.47 |
KXG20883 | Sorghum | endoplasmic reticulum | 13.36 | 42.2 |
EES20020 | Sorghum | endoplasmic reticulum | 27.04 | 39.67 |
EES00021 | Sorghum | endoplasmic reticulum | 25.91 | 37.78 |
KXG32842 | Sorghum | cytosol | 22.19 | 35.35 |
KXG32925 | Sorghum | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, plastid, vacuole | 23.48 | 34.94 |
EES01499 | Sorghum | cytosol | 10.53 | 34.12 |
OQU76102 | Sorghum | mitochondrion | 26.32 | 33.57 |
OQU87315 | Sorghum | cytosol | 10.85 | 33.25 |
EES05524 | Sorghum | plastid | 26.4 | 33.03 |
EER87773 | Sorghum | cytosol | 11.9 | 30.0 |
EES00346 | Sorghum | cytosol | 10.45 | 29.59 |
KXG19781 | Sorghum | cytosol | 11.9 | 27.63 |
EES01274 | Sorghum | cytosol | 11.58 | 27.55 |
KXG23422 | Sorghum | nucleus | 14.33 | 25.73 |
CDX89934 | Canola | cytosol | 0.32 | 1.53 |
Protein Annotations
Gene3D:1.10.8.60 | Gene3D:2.60.200.20 | Gene3D:3.40.50.300 | MapMan:35.1 | UniProt:A0A1B6PTS5 | InterPro:AAA+_ATPase |
InterPro:ATPase_AAA_CS | InterPro:ATPase_AAA_core | InterPro:FHA_dom | GO:GO:0000166 | GO:GO:0003674 | GO:GO:0005488 |
GO:GO:0005515 | GO:GO:0005524 | InterPro:IPR000253 | EnsemblPlants:KXG29076 | ProteinID:KXG29076 | ProteinID:KXG29076.1 |
InterPro:P-loop_NTPase | PFAM:PF00004 | PFAM:PF00498 | ScanProsite:PS00674 | PANTHER:PTHR23074 | PANTHER:PTHR23074:SF70 |
SMART:SM00382 | InterPro:SMAD_FHA_dom_sf | EnsemblPlantsGene:SORBI_3005G207500 | SUPFAM:SSF49879 | SUPFAM:SSF52540 | UniParc:UPI00081AC2D5 |
SEG:seg | : | : | : | : | : |
Description
hypothetical protein
Coordinates
chr5:-:69357657..69367462
Molecular Weight (calculated)
134422.0 Da
IEP (calculated)
7.413
GRAVY (calculated)
-0.469
Length
1235 amino acids
Sequence
(BLAST)
(BLAST)
0001: MVETRRSSAA AAAGKRPSPS PSSSSVPPPK RPKAESPGSP TASAPGRAEE DSVAGAAPAR STGSAEDAAA VAQKDQGADK PCSAAAESSK RRKEPEQQQP
0101: AAPWAKLLSQ CSQTPHHPIS VAQFSVGQSK SCNLWLKDQP VSKVLCKVRR LEQGGPCELE VLGKKGMVQV NGRSISPGAK VPLTGGDEVI FSSCGKHAYI
0201: FQHPLNEKVP KTVPSSAVSL LEPPVASVKR IRTDKRTGDT SAVAGTEMLA STSNQTKDVA AVPPAAAGEN SQRVGRPVAS SASDKSKGRA VSPEKEFENG
0301: ENANEVNSNI EDSPMDVAAA PISPDDATND TCQQNGFGPD THLGAEIGKI ATYKIRPVLR MITGSTISEF DLTGDLFKAL EDQRDLIRDL NASTSVPPSR
0401: CQAFKDGMKQ GIINPSDIDV TFENFPYYLS ENTKNVLLSC AFIHLEKKEF IKQFAEISSI NQRILLSGPA GSEIYQETLV KALAKHFGAR LLVVDSLLLP
0501: GAPSKDPESQ KDVGKVDKSG DKTTAEKFAI YQKHRSSLAD TVHFRRPAAP TSSVNADIVG TSTLHSASLP KQESSTATSK SYTFREGDRV RYVGPAQPTT
0601: LPQRGPSYGY RGRVMLAFED NGSSKIGVRF DKQIPDGNDL GGLCEEDHGF FCSAELLRPD FSAGEEVERL AMTELIEVIS EENKSGPLIV LLKDVEKSFT
0701: GVTESLSSLR SKLESLPSGV LVIGSHTQMD SRKEKAHPGG FLFTKFASSS QTLFDLFPDS FGSRLHERSK ESPKAMKHLN KLFPNKISIQ LPQDEALLTD
0801: WKQQLDRDVE TLKAKSNIGS IRTFLSRNGI ECNDLEKLFI KDQSLSNENV DKIVGYAVSY HLKHNKIETS NSKDAKLVLA SESLKHGLNM LQSMQSDNKS
0901: SKKSLKDVVT ENEFEKRLLA DVIPPNDIGV TFDDIGALEN VKDTLKELVM LPLQRPELFC KGQLTKPCKG ILLFGPPGTG KTMLAKAVAT EAGANFINIS
1001: MSSITSKWFG EGEKYVKAVF SLASKIAPSV IFIDEVDSML GRRENPGEHE AMRKMKNEFM VNWDGLRTKD KERVLVLGAT NRPFDLDEAV IRRFPRRLMV
1101: NLPDASNREK ILKVILAKEE LGSDVDLDSL ANMTDGYSGS DLKNLCVTAA HYPIREILEK EKKEKNLAKT EGRPEPALYG SEDIRPLSID DFKSAHEQVC
1201: ASVSSDSANM NELLQWNDLY GEGGSRKKKA LSYFM
0101: AAPWAKLLSQ CSQTPHHPIS VAQFSVGQSK SCNLWLKDQP VSKVLCKVRR LEQGGPCELE VLGKKGMVQV NGRSISPGAK VPLTGGDEVI FSSCGKHAYI
0201: FQHPLNEKVP KTVPSSAVSL LEPPVASVKR IRTDKRTGDT SAVAGTEMLA STSNQTKDVA AVPPAAAGEN SQRVGRPVAS SASDKSKGRA VSPEKEFENG
0301: ENANEVNSNI EDSPMDVAAA PISPDDATND TCQQNGFGPD THLGAEIGKI ATYKIRPVLR MITGSTISEF DLTGDLFKAL EDQRDLIRDL NASTSVPPSR
0401: CQAFKDGMKQ GIINPSDIDV TFENFPYYLS ENTKNVLLSC AFIHLEKKEF IKQFAEISSI NQRILLSGPA GSEIYQETLV KALAKHFGAR LLVVDSLLLP
0501: GAPSKDPESQ KDVGKVDKSG DKTTAEKFAI YQKHRSSLAD TVHFRRPAAP TSSVNADIVG TSTLHSASLP KQESSTATSK SYTFREGDRV RYVGPAQPTT
0601: LPQRGPSYGY RGRVMLAFED NGSSKIGVRF DKQIPDGNDL GGLCEEDHGF FCSAELLRPD FSAGEEVERL AMTELIEVIS EENKSGPLIV LLKDVEKSFT
0701: GVTESLSSLR SKLESLPSGV LVIGSHTQMD SRKEKAHPGG FLFTKFASSS QTLFDLFPDS FGSRLHERSK ESPKAMKHLN KLFPNKISIQ LPQDEALLTD
0801: WKQQLDRDVE TLKAKSNIGS IRTFLSRNGI ECNDLEKLFI KDQSLSNENV DKIVGYAVSY HLKHNKIETS NSKDAKLVLA SESLKHGLNM LQSMQSDNKS
0901: SKKSLKDVVT ENEFEKRLLA DVIPPNDIGV TFDDIGALEN VKDTLKELVM LPLQRPELFC KGQLTKPCKG ILLFGPPGTG KTMLAKAVAT EAGANFINIS
1001: MSSITSKWFG EGEKYVKAVF SLASKIAPSV IFIDEVDSML GRRENPGEHE AMRKMKNEFM VNWDGLRTKD KERVLVLGAT NRPFDLDEAV IRRFPRRLMV
1101: NLPDASNREK ILKVILAKEE LGSDVDLDSL ANMTDGYSGS DLKNLCVTAA HYPIREILEK EKKEKNLAKT EGRPEPALYG SEDIRPLSID DFKSAHEQVC
1201: ASVSSDSANM NELLQWNDLY GEGGSRKKKA LSYFM
0001: MVDTRRSSSA SKRFCAATSS SSRPTKRSKA AAEPASSSSA SEVPIDNQAP VSDPGSISGD PELRTSDPQS NDAERPVTTT DVPAMETDTN PELEGLVTPT
0101: PAGEVVVEAE KSKSSKKRIA KAPWAKLLSQ FPQNPHLVMR GSVFTVGRRA CDLCIRDHSM PNVLCELRQS EHGGPSVASL EIIGNGVLVQ VNGKIYQRST
0201: CVHLRGGDEI IFTTPGKHAY IFQPLKDENL AAPDRTSSLS LFEAQSAPLK GLHVETRARD SSSVDGTASL LASISKLQNV PFLPPTAKSV KRQQNSEVPV
0301: LPSSCDDFIL DVDLNDADSN NDHAAIASME KTVASTSCAA NDDHDADGNG MDPFQEPEAG NIPDPAYEIR PILSLLGDPS EFDLRGSISK ILVDERREVR
0401: EMPKEYERPS ASVLTRRQAH KDSLRGGILN PQDIEVSFEN FPYFLSGTTK DVLMISTYAH IKYGKEYAEY ASDLPTACPR ILLSGPSGSE IYQEMLAKAL
0501: AKQCGAKLMI VDSLLLPGGS TPKEADTTKE SSRRERLSVL AKRAVQAAQA AVLQHKKPIS SVEAGITGGS TLSSQAVRRQ EVSTATSKSY TFKAGDRVRF
0601: LGPSTSSLAS LRAPPRGPAT GFQGKVLLAF EGNGSSKIGV RFDRSIPDGN DLGGLCEEDH GFFCTASSLR LESSSSDDAD KLAINEIFEV AFNESERGSL
0701: ILFLKDIEKS VSGNTDVYIT LKSKLENLPE NIVVIASQTQ LDNRKEKSHP GGFLFTKFGS NQTALLDLAF PDTFGGRLQD RNTEMPKAVK QITRLFPNKV
0801: TIQLPEDEAS LVDWKDKLER DTEILKAQAN ITSIRAVLSK NQLVCPDIEI LCIKDQTLPS DSVEKVVGFA FNHHLMNCSE PTVKDNKLII SAESITYGLQ
0901: LLHEIQNENK STKKSLKDVV TENEFEKKLL SDVIPPSDIG VSFSDIGALE NVKDTLKELV MLPLQRPELF GKGQLTKPTK GILLFGPPGT GKTMLAKAVA
1001: TEAGANFINI SMSSITSKWF GEGEKYVKAV FSLASKIAPS VIFVDEVDSM LGRRENPGEH EAMRKMKNEF MINWDGLRTK DKERVLVLAA TNRPFDLDEA
1101: VIRRLPRRLM VNLPDSANRS KILSVILAKE EMAEDVDLEA IANMTDGYSG SDLKNLCVTA AHLPIREILE KEKKERSVAQ AENRAMPQLY SSTDVRPLNM
1201: NDFKTAHDQV CASVASDSSN MNELQQWNEL YGEGGSRKKT SLSYFM
0101: PAGEVVVEAE KSKSSKKRIA KAPWAKLLSQ FPQNPHLVMR GSVFTVGRRA CDLCIRDHSM PNVLCELRQS EHGGPSVASL EIIGNGVLVQ VNGKIYQRST
0201: CVHLRGGDEI IFTTPGKHAY IFQPLKDENL AAPDRTSSLS LFEAQSAPLK GLHVETRARD SSSVDGTASL LASISKLQNV PFLPPTAKSV KRQQNSEVPV
0301: LPSSCDDFIL DVDLNDADSN NDHAAIASME KTVASTSCAA NDDHDADGNG MDPFQEPEAG NIPDPAYEIR PILSLLGDPS EFDLRGSISK ILVDERREVR
0401: EMPKEYERPS ASVLTRRQAH KDSLRGGILN PQDIEVSFEN FPYFLSGTTK DVLMISTYAH IKYGKEYAEY ASDLPTACPR ILLSGPSGSE IYQEMLAKAL
0501: AKQCGAKLMI VDSLLLPGGS TPKEADTTKE SSRRERLSVL AKRAVQAAQA AVLQHKKPIS SVEAGITGGS TLSSQAVRRQ EVSTATSKSY TFKAGDRVRF
0601: LGPSTSSLAS LRAPPRGPAT GFQGKVLLAF EGNGSSKIGV RFDRSIPDGN DLGGLCEEDH GFFCTASSLR LESSSSDDAD KLAINEIFEV AFNESERGSL
0701: ILFLKDIEKS VSGNTDVYIT LKSKLENLPE NIVVIASQTQ LDNRKEKSHP GGFLFTKFGS NQTALLDLAF PDTFGGRLQD RNTEMPKAVK QITRLFPNKV
0801: TIQLPEDEAS LVDWKDKLER DTEILKAQAN ITSIRAVLSK NQLVCPDIEI LCIKDQTLPS DSVEKVVGFA FNHHLMNCSE PTVKDNKLII SAESITYGLQ
0901: LLHEIQNENK STKKSLKDVV TENEFEKKLL SDVIPPSDIG VSFSDIGALE NVKDTLKELV MLPLQRPELF GKGQLTKPTK GILLFGPPGT GKTMLAKAVA
1001: TEAGANFINI SMSSITSKWF GEGEKYVKAV FSLASKIAPS VIFVDEVDSM LGRRENPGEH EAMRKMKNEF MINWDGLRTK DKERVLVLAA TNRPFDLDEA
1101: VIRRLPRRLM VNLPDSANRS KILSVILAKE EMAEDVDLEA IANMTDGYSG SDLKNLCVTA AHLPIREILE KEKKERSVAQ AENRAMPQLY SSTDVRPLNM
1201: NDFKTAHDQV CASVASDSSN MNELQQWNEL YGEGGSRKKT SLSYFM
Arabidopsis Description
AAA-type ATPase family protein [Source:UniProtKB/TrEMBL;Acc:F4HZ82]
SUBAcon: [plastid]
SUBAcon: [plastid]
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.