Subcellular Localization
min:
: max
Winner_takes_all: nucleus
Predictor Summary:
Predictor Summary:
- nucleus 3
- cytosol 2
- plastid 1
- 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 |
---|---|---|---|---|
Solyc03g058380.2.1 | Tomato | nucleus | 49.78 | 74.64 |
AT2G27700.2 | Thale cress | cytosol | 29.1 | 69.17 |
GSMUA_Achr5P09710_001 | Banana | cytosol | 51.45 | 65.44 |
CDY49760 | Canola | plastid | 24.54 | 64.22 |
PGSC0003DMT400079119 | Potato | nucleus | 69.5 | 59.31 |
Solyc03g058350.2.1 | Tomato | nucleus | 57.49 | 56.75 |
CDY45947 | Canola | nucleus | 55.92 | 55.62 |
TraesCS7B01G382100.1 | Wheat | cytosol | 24.28 | 53.37 |
CDY33673 | Canola | cytosol | 47.06 | 53.27 |
CDX96600 | Canola | cytosol | 46.36 | 52.85 |
CDY20385 | Canola | nucleus | 56.09 | 52.59 |
Bra016430.1-P | Field mustard | cytosol | 47.15 | 51.98 |
Os05t0592600-01 | Rice | nucleus | 53.99 | 51.04 |
Bra008279.1-P | Field mustard | nucleus | 56.44 | 50.79 |
VIT_18s0076g00310.t01 | Wine grape | nucleus | 59.77 | 50.44 |
AT1G76810.1 | Thale cress | nucleus | 56.35 | 49.69 |
KXG22680 | Sorghum | nucleus | 55.74 | 49.19 |
KRG91641 | Soybean | nucleus | 57.93 | 48.78 |
Zm00001d009749_P001 | Maize | nucleus | 54.78 | 48.34 |
TraesCS1A01G438600.2 | Wheat | nucleus | 54.69 | 48.33 |
AT1G21160.1 | Thale cress | cytosol | 46.19 | 48.26 |
TraesCS1D01G446400.1 | Wheat | golgi | 54.6 | 48.07 |
HORVU1Hr1G094740.1 | Barley | nucleus | 54.08 | 47.87 |
KRG88874 | Soybean | cytosol | 16.21 | 47.8 |
TraesCS1B01G472500.1 | Wheat | nucleus | 54.43 | 47.77 |
KRH35157 | Soybean | nucleus | 56.27 | 47.77 |
AT1G76720.2 | Thale cress | cytosol | 50.74 | 47.3 |
OQU79180 | Sorghum | nucleus | 32.95 | 43.77 |
TraesCS1D01G446900.2 | Wheat | nucleus | 53.64 | 43.59 |
TraesCS7A01G479800.2 | Wheat | mitochondrion, plastid | 31.38 | 43.18 |
CDX81960 | Canola | cytosol | 8.76 | 35.84 |
CDX81961 | Canola | cytosol | 9.11 | 35.25 |
CDY13882 | Canola | cytosol | 8.94 | 34.69 |
Bra031112.1-P | Field mustard | cytosol | 8.94 | 34.69 |
GSMUA_Achr1P05220_001 | Banana | nucleus | 49.52 | 31.13 |
CDY13881 | Canola | cytosol | 10.6 | 26.65 |
Bra031113.1-P | Field mustard | cytosol | 10.43 | 26.21 |
Solyc08g081900.2.1 | Tomato | mitochondrion | 11.92 | 18.48 |
Solyc07g056020.2.1 | Tomato | nucleus, plastid | 14.46 | 16.34 |
Protein Annotations
MapMan:17.4.3.2 | Gene3D:2.40.30.10 | Gene3D:3.40.50.10050 | Gene3D:3.40.50.300 | ncoils:Coil | InterPro:EFTu-like_2 |
GO:GO:0000166 | GO:GO:0003674 | GO:GO:0003824 | GO:GO:0003924 | GO:GO:0005488 | GO:GO:0005525 |
GO:GO:0016787 | InterPro:IPR000795 | InterPro:IPR036925 | UniProt:K4C6C6 | InterPro:P-loop_NTPase | PFAM:PF00009 |
PFAM:PF03144 | PFAM:PF11987 | PRINTS:PR00315 | PFscan:PS51722 | PANTHER:PTHR43381 | PANTHER:PTHR43381:SF4 |
SUPFAM:SSF50447 | SUPFAM:SSF52156 | SUPFAM:SSF52540 | InterPro:Small_GTP-bd_dom | EnsemblPlantsGene:Solyc06g054400.2 | EnsemblPlants:Solyc06g054400.2.1 |
InterPro:TF_GTP-bd_dom | InterPro:TIF_IF2 | InterPro:TIF_IF2_dom3 | InterPro:TIF_IF2_dom3_sf | TIGRFAMs:TIGR00231 | InterPro:Transl_B-barrel_sf |
UniParc:UPI0002765B76 | SEG:seg | : | : | : | : |
Description
No Description!
Coordinates
chr6:+:37180742..37187616
Molecular Weight (calculated)
126865.0 Da
IEP (calculated)
6.609
GRAVY (calculated)
-0.676
Length
1141 amino acids
Sequence
(BLAST)
(BLAST)
0001: MGRKKPVREK ESFESSKQGG GGGGKSKRKN WVIDDGDCSV GTELSEETVV LEDKAELVPE ISEKRGKKSR AVFHAIDDED NESGQVSEKS TVAFTGKKKS
0101: SKKKNRSASM DTAYGNDSTN VADQDHCSLG VNREDADDNI GKKQTADVLE TSKNKTKKKK GGHASNVLAE LGEGSTITAP AQPAHSSLPR EEKSQQQSQL
0201: GDDTGEREVV EEEVVESAAA KKKKKKKEKE KKKKAATAAA AVSEMEEKQE ATKNDTKGKL AEKKQSKQVR EIQERLKKMK EAEESKKKEE EERLRKEEEE
0301: HLRLEELKRL VEEKKHLKKE REKEKLLKKK LEGKLLTGKQ KEEARRLEAM RNQFLASGGA LPHSTEESRK DATKRPIYQS KKSKAQAWVN GKAKEESVGS
0401: TEVQENQQEI VSEVESLETE KDKDINLVSV EEKSEVADAE ENRVEEEEDE EEWDARSWDD ADLKLPGKSV FEDEELDSDP QPIIKKAARS VVSDTGPLAA
0501: KSVIPTQKAV ASVPAVTKND GSNKREPEVM VSGQGTEKSG ASSSKSEDSL RSPICCIMGH VDTGKTKLLD CIRGTNVQEG EAGGITQQIG ATYFPAENIR
0601: ERTKELKADA KLKVPGLLVI DTPGHESFTN LRSRGSGLCD IAILVVDITH GLEPQTIESL NLLKMRNTEF VVALNKIDRL YGWKVCRNAP IVKAMKQQSK
0701: DVQFEFNTRL TQIVTQFKEQ GINTELYYKN KEMGKDTFSI IPTSAISGEG IPDLLLLLVQ WTQKTMVDRL TYSSECTVLE VKAIEGHGTT IDVVLINGIL
0801: HEGDQIIVCG MQDPIVTSIR ALLTPHPMKE LRIKGSYLHH KEIKAAQSIK INAQGLEHAI AGTSLYVVGP DDDVENVKEA AMEDMRSVMS RIDKSGEGVH
0901: VQASTLGSLE ALLEFLKTDE VRIPVSGIGI GPVHKKDVMK AIVMLEKKKE YAIILAFDVK VTQEARELAD EAGVKIFIAD IIYHLFDQFK AYIDNLKEEK
1001: KKEVAEEAVF PCSLKIVPNH VYNKKDPIVV GVDVLEGIAK VGTPICIPQR EFIDIGRIAS IQNNHRPVDS AKKGQRVAIK IVGSNSEEQQ KMFGRHFEIE
1101: DELVSKVSRR SIDILKANFR NDLSIEDWRL VKTLKNLFKI Q
0101: SKKKNRSASM DTAYGNDSTN VADQDHCSLG VNREDADDNI GKKQTADVLE TSKNKTKKKK GGHASNVLAE LGEGSTITAP AQPAHSSLPR EEKSQQQSQL
0201: GDDTGEREVV EEEVVESAAA KKKKKKKEKE KKKKAATAAA AVSEMEEKQE ATKNDTKGKL AEKKQSKQVR EIQERLKKMK EAEESKKKEE EERLRKEEEE
0301: HLRLEELKRL VEEKKHLKKE REKEKLLKKK LEGKLLTGKQ KEEARRLEAM RNQFLASGGA LPHSTEESRK DATKRPIYQS KKSKAQAWVN GKAKEESVGS
0401: TEVQENQQEI VSEVESLETE KDKDINLVSV EEKSEVADAE ENRVEEEEDE EEWDARSWDD ADLKLPGKSV FEDEELDSDP QPIIKKAARS VVSDTGPLAA
0501: KSVIPTQKAV ASVPAVTKND GSNKREPEVM VSGQGTEKSG ASSSKSEDSL RSPICCIMGH VDTGKTKLLD CIRGTNVQEG EAGGITQQIG ATYFPAENIR
0601: ERTKELKADA KLKVPGLLVI DTPGHESFTN LRSRGSGLCD IAILVVDITH GLEPQTIESL NLLKMRNTEF VVALNKIDRL YGWKVCRNAP IVKAMKQQSK
0701: DVQFEFNTRL TQIVTQFKEQ GINTELYYKN KEMGKDTFSI IPTSAISGEG IPDLLLLLVQ WTQKTMVDRL TYSSECTVLE VKAIEGHGTT IDVVLINGIL
0801: HEGDQIIVCG MQDPIVTSIR ALLTPHPMKE LRIKGSYLHH KEIKAAQSIK INAQGLEHAI AGTSLYVVGP DDDVENVKEA AMEDMRSVMS RIDKSGEGVH
0901: VQASTLGSLE ALLEFLKTDE VRIPVSGIGI GPVHKKDVMK AIVMLEKKKE YAIILAFDVK VTQEARELAD EAGVKIFIAD IIYHLFDQFK AYIDNLKEEK
1001: KKEVAEEAVF PCSLKIVPNH VYNKKDPIVV GVDVLEGIAK VGTPICIPQR EFIDIGRIAS IQNNHRPVDS AKKGQRVAIK IVGSNSEEQQ KMFGRHFEIE
1101: DELVSKVSRR SIDILKANFR NDLSIEDWRL VKTLKNLFKI Q
0001: MGRKKPSARG GDAEQQPPAS SLVGATKSKK KGAQIDDDEY SIGTELSEES KVEEEKVVVI TGKKKGKKGN KKGTQQDDDD DFSDKVSAAG VKDDVPEIAF
0101: VGKKKSKGKK GGGSVSFALL DDEDEKEDNE SDGDKDDEPV ISFTGKKHAS KKGKKGGNSF AASAFDALGS DDDDTEEVHE DEEEESPITF SGKKKKSSKS
0201: SKKNTNSFTA DLLDEEEGTD ASNSRDDENT IEDEESPEVT FSGKKKSSKK KGGSVLASVG DDSVADETKT SDTKNVEVVE TGKSKKKKKN NKSGRTVQEE
0301: EDLDKLLAAL GETPAAERPA SSTPVEEKAA QPEPVAPVEN AGEKEGEEET AAAKKKKKKK EKEKEKKAAA AAAATSSVEV KEEKQEESVT EPLQPKKKDA
0401: KGKAAEKKIP KHVREMQEAL ARRQEAEERK KKEEEEKLRK EEEERRRQEE LEAQAEEAKR KRKEKEKEKL LRKKLEGKLL TAKQKTEAQK REAFKNQLLA
0501: AGGGLPVADN DGDATSSKRP IYANKKKSSR QKGIDTSVQG EDEVEPKENQ ADEQDTLGEV GLTDTGKVDL IELVNTDENS GPADVAQENG VEEDDEEDEW
0601: DAKSWGTVDL NLKGDFDDEE EEAQPVVKKE LKDAISKAHD SEPEAEKPTA KPAGTGKPLI AAVKATPEVE DATRTKRATR AKDASKKGKG LAPSESIEGE
0701: ENLRSPICCI MGHVDTGKTK LLDCIRGTNV QEGEAGGITQ QIGATYFPAE NIRERTKELK ADAKLKVPGL LVIDTPGHES FTNLRSRGSS LCDLAILVVD
0801: IMHGLEPQTI ESLNLLRMRN TEFIVALNKV DRLYGWKTCK NAPIVKAMKQ QNKDVINEFN LRLKNIINEF QEQGLNTELY YKNKDMGDTF SIVPTSAISG
0901: EGVPDLLLWL VQWAQKTMVE KLTYVDEVQC TVLEVKVIEG HGTTIDVVLV NGELHEGDQI VVCGLQGPIV TTIRALLTPH PMKELRVKGT YLHYKEIKAA
1001: QGIKITAQGL EHAIAGTALH VVGPDDDIEA IKESAMEDME SVLSRIDKSG EGVYVQASTL GSLEALLEYL KSPAVKIPVS GIGIGPVHKK DVMKAGVMLE
1101: RKKEYATILA FDVKVTTEAR ELADEMGVKI FCADIIYHLF DLFKAYIENI KEEKKKESAD EAVFPCVLQI LPNCVFNKKD PIVLGVDVIE GILKIGTPIC
1201: VPGREFIDIG RIASIENNHK PVDYAKKGNK VAIKIVGSNA EEQKMFGRHF DMEDELVSHI SRRSIDILKS NYRDELSLEE WKLVVKLKNI FKIQ
0101: VGKKKSKGKK GGGSVSFALL DDEDEKEDNE SDGDKDDEPV ISFTGKKHAS KKGKKGGNSF AASAFDALGS DDDDTEEVHE DEEEESPITF SGKKKKSSKS
0201: SKKNTNSFTA DLLDEEEGTD ASNSRDDENT IEDEESPEVT FSGKKKSSKK KGGSVLASVG DDSVADETKT SDTKNVEVVE TGKSKKKKKN NKSGRTVQEE
0301: EDLDKLLAAL GETPAAERPA SSTPVEEKAA QPEPVAPVEN AGEKEGEEET AAAKKKKKKK EKEKEKKAAA AAAATSSVEV KEEKQEESVT EPLQPKKKDA
0401: KGKAAEKKIP KHVREMQEAL ARRQEAEERK KKEEEEKLRK EEEERRRQEE LEAQAEEAKR KRKEKEKEKL LRKKLEGKLL TAKQKTEAQK REAFKNQLLA
0501: AGGGLPVADN DGDATSSKRP IYANKKKSSR QKGIDTSVQG EDEVEPKENQ ADEQDTLGEV GLTDTGKVDL IELVNTDENS GPADVAQENG VEEDDEEDEW
0601: DAKSWGTVDL NLKGDFDDEE EEAQPVVKKE LKDAISKAHD SEPEAEKPTA KPAGTGKPLI AAVKATPEVE DATRTKRATR AKDASKKGKG LAPSESIEGE
0701: ENLRSPICCI MGHVDTGKTK LLDCIRGTNV QEGEAGGITQ QIGATYFPAE NIRERTKELK ADAKLKVPGL LVIDTPGHES FTNLRSRGSS LCDLAILVVD
0801: IMHGLEPQTI ESLNLLRMRN TEFIVALNKV DRLYGWKTCK NAPIVKAMKQ QNKDVINEFN LRLKNIINEF QEQGLNTELY YKNKDMGDTF SIVPTSAISG
0901: EGVPDLLLWL VQWAQKTMVE KLTYVDEVQC TVLEVKVIEG HGTTIDVVLV NGELHEGDQI VVCGLQGPIV TTIRALLTPH PMKELRVKGT YLHYKEIKAA
1001: QGIKITAQGL EHAIAGTALH VVGPDDDIEA IKESAMEDME SVLSRIDKSG EGVYVQASTL GSLEALLEYL KSPAVKIPVS GIGIGPVHKK DVMKAGVMLE
1101: RKKEYATILA FDVKVTTEAR ELADEMGVKI FCADIIYHLF DLFKAYIENI KEEKKKESAD EAVFPCVLQI LPNCVFNKKD PIVLGVDVIE GILKIGTPIC
1201: VPGREFIDIG RIASIENNHK PVDYAKKGNK VAIKIVGSNA EEQKMFGRHF DMEDELVSHI SRRSIDILKS NYRDELSLEE WKLVVKLKNI FKIQ
Arabidopsis Description
Eukaryotic translation initiation factor 2 (eIF-2) family protein [Source:UniProtKB/TrEMBL;Acc:F4I420]
SUBAcon: [nucleus]
SUBAcon: [nucleus]
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.