Subcellular Localization
min:
: max
Winner_takes_all: plastid
Predictor Summary:
Predictor Summary:
- nucleus 2
- cytosol 2
- mitochondrion 1
- plastid 1
Predictors | GFP | MS/MS | Papers | ||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
plastid:
22908117
plastid: 26371478 |
msms PMID:
22908117
doi
Université de Toulouse, Institut National Polytechnique-Ecole Nationale Supérieure Agronomique de Toulouse, Génomique et Biotechnologie des Fruits, Castanet-Tolosan F-31326, France.
msms PMID:
26371478
doi
Faculty of Agriculture, Shizuoka University, Shizuoka city, Shizuoka, Japan., Faculty of Science, Japan Woman's University, Bunkyo-ku, Tokyo, Japan., Instrumental Research Support Office, Research Institute of Green Science and Technology, Shizuoka University, Shizuoka city, Shizuoka, Japan., The Plant Science Education Unit, Nara Institute of Science and Technology, Ikoma city, Nara, Japan.
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
PGSC0003DMT400056647 | Potato | cytosol | 98.88 | 98.88 |
Solyc06g008090.2.1 | Tomato | cytosol | 84.21 | 85.92 |
VIT_07s0005g04790.t01 | Wine grape | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, vacuole | 82.43 | 82.21 |
KRH19659 | Soybean | cytosol | 81.97 | 81.7 |
KRH32270 | Soybean | cytosol | 81.64 | 81.64 |
KRH67505 | Soybean | cytosol | 80.78 | 80.89 |
KRG95788 | Soybean | cytosol | 80.18 | 80.03 |
Os02t0816900-01 | Rice | cytosol, plasma membrane | 64.6 | 77.07 |
OQU85951 | Sorghum | cytosol | 77.34 | 76.99 |
CDY32922 | Canola | cytosol | 76.22 | 76.58 |
Zm00001d018481_P033 | Maize | cytosol | 77.01 | 76.26 |
CDY64313 | Canola | cytosol | 76.49 | 76.13 |
TraesCS6D01G377100.1 | Wheat | cytosol | 75.89 | 76.09 |
TraesCS6A01G390800.2 | Wheat | cytosol | 75.89 | 76.09 |
TraesCS6B01G431400.1 | Wheat | cytosol | 75.69 | 75.89 |
AT1G04160.1 | Thale cress | cytosol | 75.1 | 75.8 |
Bra032526.1-P | Field mustard | cytosol | 75.23 | 75.73 |
CDX94736 | Canola | cytosol | 76.42 | 75.72 |
HORVU6Hr1G091010.24 | Barley | cytosol | 75.56 | 75.71 |
CDY22325 | Canola | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, vacuole | 76.49 | 75.19 |
CDY32531 | Canola | endoplasmic reticulum | 75.03 | 75.18 |
CDY10075 | Canola | endoplasmic reticulum | 74.97 | 74.92 |
Bra011053.1-P | Field mustard | cytosol | 74.5 | 74.9 |
Bra027512.1-P | Field mustard | cytosol | 60.83 | 74.88 |
AT5G43900.3 | Thale cress | cytosol | 76.75 | 74.25 |
AT4G28710.1 | Thale cress | cytosol | 72.66 | 72.56 |
Os03t0860700-00 | Rice | cytosol, plasma membrane | 42.54 | 72.44 |
GSMUA_AchrUn_... | Banana | cytosol | 72.92 | 71.69 |
GSMUA_Achr3P27420_001 | Banana | cytosol | 78.47 | 71.18 |
Bra033704.1-P | Field mustard | cytosol, plastid | 76.49 | 69.84 |
KXG34975 | Sorghum | cytosol | 65.13 | 68.38 |
Bra036688.1-P | Field mustard | cytosol | 65.13 | 68.24 |
AT2G20290.1 | Thale cress | endoplasmic reticulum | 66.97 | 67.92 |
TraesCS1D01G174000.2 | Wheat | cytosol | 67.37 | 67.59 |
TraesCS1A01G166900.2 | Wheat | cytosol | 67.24 | 67.42 |
CDY39766 | Canola | cytosol | 65.32 | 67.28 |
HORVU1Hr1G044020.1 | Barley | cytosol | 67.04 | 67.26 |
TraesCS1B01G183200.1 | Wheat | cytosol | 66.97 | 67.15 |
Zm00001d019495_P001 | Maize | cytosol | 66.78 | 67.13 |
CDY03315 | Canola | cytosol | 65.13 | 67.03 |
EER90459 | Sorghum | cytosol | 65.52 | 66.85 |
Bra036460.1-P | Field mustard | cytosol | 65.26 | 66.4 |
Zm00001d034927_P001 | Maize | cytosol | 65.39 | 66.27 |
Solyc07g041150.2.1 | Tomato | nucleus | 66.71 | 66.06 |
Solyc08g061520.2.1 | Tomato | cytosol | 20.08 | 65.52 |
Solyc09g091080.2.1 | Tomato | cytosol | 70.21 | 65.38 |
TraesCS5B01G566200.1 | Wheat | cytosol | 63.87 | 65.03 |
TraesCS4A01G313500.1 | Wheat | cytosol | 63.87 | 65.03 |
TraesCS5D01G558600.1 | Wheat | cytosol | 63.8 | 64.92 |
Solyc06g008530.1.1 | Tomato | cytosol | 65.39 | 64.79 |
HORVU5Hr1G125430.15 | Barley | cytosol | 62.81 | 64.61 |
CDY31978 | Canola | cytosol | 65.26 | 64.24 |
Solyc11g006220.1.1 | Tomato | cytosol, extracellular | 64.2 | 63.7 |
CDY05734 | Canola | cytosol | 65.32 | 62.67 |
Solyc01g081540.2.1 | Tomato | nucleus | 64.33 | 62.16 |
Solyc06g083960.1.1 | Tomato | cytosol | 45.57 | 60.58 |
CDY65572 | Canola | plastid | 74.24 | 59.13 |
CDY35211 | Canola | plastid | 74.31 | 59.02 |
GSMUA_Achr1P03340_001 | Banana | cytosol | 69.62 | 56.73 |
Solyc08g061500.1.1 | Tomato | cytosol | 31.57 | 45.87 |
Solyc02g020910.2.1 | Tomato | nucleus | 26.42 | 34.57 |
Solyc07g063590.2.1 | Tomato | cytosol | 25.17 | 32.07 |
Solyc10g006820.2.1 | Tomato | cytosol | 24.64 | 31.01 |
Protein Annotations
Gene3D:1.10.10.820 | Gene3D:1.20.120.720 | Gene3D:1.20.5.190 | Gene3D:1.20.58.530 | MapMan:20.2.4.1 | Gene3D:3.30.70.3240 |
Gene3D:3.40.850.10 | ncoils:Coil | InterPro:Dilute_dom | GO:GO:0000166 | GO:GO:0003674 | GO:GO:0003774 |
GO:GO:0003777 | GO:GO:0003779 | GO:GO:0003824 | GO:GO:0005488 | GO:GO:0005515 | GO:GO:0005524 |
GO:GO:0005575 | GO:GO:0005622 | GO:GO:0005623 | GO:GO:0005856 | GO:GO:0007015 | GO:GO:0007018 |
GO:GO:0008017 | GO:GO:0008150 | GO:GO:0009987 | GO:GO:0016043 | GO:GO:0016459 | GO:GO:0016787 |
InterPro:IPR000048 | InterPro:IPR001609 | InterPro:IPR002710 | InterPro:IPR004009 | InterPro:IPR036961 | InterPro:IQ_motif_EF-hand-BS |
UniProt:K4CU51 | InterPro:Kinesin_motor_dom_sf | InterPro:MYSc_Myo11 | InterPro:MyosinXI_CBD | InterPro:Myosin_N | InterPro:Myosin_head_motor_dom |
InterPro:P-loop_NTPase | PFAM:PF00063 | PFAM:PF00612 | PFAM:PF01843 | PFAM:PF02736 | PRINTS:PR00193 |
PFscan:PS50096 | PFscan:PS51126 | PFscan:PS51456 | PFscan:PS51844 | PANTHER:PTHR13140 | PANTHER:PTHR13140:SF256 |
SMART:SM00015 | SMART:SM00242 | SMART:SM01132 | SUPFAM:SSF52540 | EnsemblPlantsGene:Solyc09g064200.2 | EnsemblPlants:Solyc09g064200.2.1 |
UniParc:UPI000276BF46 | SEG:seg | : | : | : | : |
Description
No Description!
Coordinates
chr9:-:61316972..61337203
Molecular Weight (calculated)
171827.0 Da
IEP (calculated)
8.076
GRAVY (calculated)
-0.374
Length
1514 amino acids
Sequence
(BLAST)
(BLAST)
0001: MAASISLPVG SLVWVEDPDV AWIDGEVLEV NGSDVKVLCT SGKTVVVKSS NVYAKDAEAP PSGVDDMTKL AYLHEPGVLH NLKARYDINE IYTYTGNILI
0101: AVNPFRRLPH LYDTHMMAQY KGAAFGELSP HPYAVADAAY RLMINDGVSQ SILVSGESGA GKTESTKQLM RYLAYMGGRA AAEGSRSVEQ QVLESNPVLE
0201: AFGNAKTVRN NNSSRFGKFV EIQFDQKGRI SGAAVRTYLL ERSRVCQLSD PERNYHCFYM LCAAPPEDIQ RFKLDNPRTF HYLNQTNCYE LDGLDDAKEY
0301: LATRRAMDVV GISSEEQDAI FRVVAAILHL GNIEFAKGKE IDSSVPKDEK SWFHLRTAAE LFMCDVKSLE DSLCKRVIVT RDETITKWLD PEAALTSRDA
0401: LAKIVYSRLF DWLVDKINSS IGQDPNSKSL IGVLDIYGFE SFKTNSFEQF CINLTNEKLQ QHFNQHVFKM EQEEYTKEEI NWSYIEFIDN QDILDLVEKK
0501: PGGIIALLDE ACMFPRSTHE TFAQKLYQTF KNHKRFCKPK LARSDFTICH YAGDVTYQTE LFLEKNKDYV IAEHQALLNA STCSFVSGLF PTSNEESSKQ
0601: SKFSSIGSRF KQQLQSLLET LNATEPHYIR CVKPNNLLKP AIFENHNVLQ QLRCGGVMEA IRISMAGYPT RRPFYEFLDR FGILSPEVLD GSTDEVAACK
0701: RLLEKVGLQG YQIGKTKVFL RAGQMAELDA RRTEVLGRSA SIIQRKVRSY MARRSFTVLR RSTIQIQSLC RGELARRVYE SLRREAASLR IQTNVRMHIA
0801: RKAYKELWSS AVSIQTGMRG MAARNELRFR SQTKAAIIIQ SHCRKFLAYS KFKKLKKAAI TTQCAWRGKI ARKELKKLKM AARETGALQA AKNKLEKQVE
0901: ELTWRLQLEK RMRADVEEAK TQENAKLQSA LQDIQVQFKE TKEMLVKERE NAIRAAEQIP IVQEVPVIDH ELMNKLSIEN ENLKTMVSSL EKKIGETEKK
1001: YEETNKLSEE RLKQAMEAES KIIQLKTSMQ RLEEKIVDME SENKILRQQG LLTPAKRVSD HSPSLASKIV ENGHHLDDEN YTNDALSSST PSRNFETPDS
1101: KMRRPPVDRQ QHEDVDALID CVMKDVGFSQ GKPVAAFTIY KCLLHWKSFE AERTSVFDRL IQMIGSAIEN QESNDHMAYW LSNTSTLLFL IQKSLKPGGS
1201: VGATPTRKPQ PPTSLFGRMT MGFRSSPSAV NLAAAAAALV VRQVEAKYPA LLFKQQLTAY VEKIYGIIRD NLKKELGSLI SLCIQAPRTA KGSLRTGRSF
1301: GKDSSTNHWQ RIIECLNSLL CTLKENFVPP ILVQKIFTQT FSYINVQLFN SLLLRRECCT FSNGEYVKAG LAELELWCCQ AKEEYAGSSW DELKHIRQAV
1401: GFLVIHQKYR ISYDEITNDL CPILSVQQLY RICTLYWDDN YNTRSVSPDV ISSMRVLMTE DSNNAESNSF LLDDNSSIPF SIDEVSESLQ VKDFADVKPA
1501: TELIEHPAFP FLHE
0101: AVNPFRRLPH LYDTHMMAQY KGAAFGELSP HPYAVADAAY RLMINDGVSQ SILVSGESGA GKTESTKQLM RYLAYMGGRA AAEGSRSVEQ QVLESNPVLE
0201: AFGNAKTVRN NNSSRFGKFV EIQFDQKGRI SGAAVRTYLL ERSRVCQLSD PERNYHCFYM LCAAPPEDIQ RFKLDNPRTF HYLNQTNCYE LDGLDDAKEY
0301: LATRRAMDVV GISSEEQDAI FRVVAAILHL GNIEFAKGKE IDSSVPKDEK SWFHLRTAAE LFMCDVKSLE DSLCKRVIVT RDETITKWLD PEAALTSRDA
0401: LAKIVYSRLF DWLVDKINSS IGQDPNSKSL IGVLDIYGFE SFKTNSFEQF CINLTNEKLQ QHFNQHVFKM EQEEYTKEEI NWSYIEFIDN QDILDLVEKK
0501: PGGIIALLDE ACMFPRSTHE TFAQKLYQTF KNHKRFCKPK LARSDFTICH YAGDVTYQTE LFLEKNKDYV IAEHQALLNA STCSFVSGLF PTSNEESSKQ
0601: SKFSSIGSRF KQQLQSLLET LNATEPHYIR CVKPNNLLKP AIFENHNVLQ QLRCGGVMEA IRISMAGYPT RRPFYEFLDR FGILSPEVLD GSTDEVAACK
0701: RLLEKVGLQG YQIGKTKVFL RAGQMAELDA RRTEVLGRSA SIIQRKVRSY MARRSFTVLR RSTIQIQSLC RGELARRVYE SLRREAASLR IQTNVRMHIA
0801: RKAYKELWSS AVSIQTGMRG MAARNELRFR SQTKAAIIIQ SHCRKFLAYS KFKKLKKAAI TTQCAWRGKI ARKELKKLKM AARETGALQA AKNKLEKQVE
0901: ELTWRLQLEK RMRADVEEAK TQENAKLQSA LQDIQVQFKE TKEMLVKERE NAIRAAEQIP IVQEVPVIDH ELMNKLSIEN ENLKTMVSSL EKKIGETEKK
1001: YEETNKLSEE RLKQAMEAES KIIQLKTSMQ RLEEKIVDME SENKILRQQG LLTPAKRVSD HSPSLASKIV ENGHHLDDEN YTNDALSSST PSRNFETPDS
1101: KMRRPPVDRQ QHEDVDALID CVMKDVGFSQ GKPVAAFTIY KCLLHWKSFE AERTSVFDRL IQMIGSAIEN QESNDHMAYW LSNTSTLLFL IQKSLKPGGS
1201: VGATPTRKPQ PPTSLFGRMT MGFRSSPSAV NLAAAAAALV VRQVEAKYPA LLFKQQLTAY VEKIYGIIRD NLKKELGSLI SLCIQAPRTA KGSLRTGRSF
1301: GKDSSTNHWQ RIIECLNSLL CTLKENFVPP ILVQKIFTQT FSYINVQLFN SLLLRRECCT FSNGEYVKAG LAELELWCCQ AKEEYAGSSW DELKHIRQAV
1401: GFLVIHQKYR ISYDEITNDL CPILSVQQLY RICTLYWDDN YNTRSVSPDV ISSMRVLMTE DSNNAESNSF LLDDNSSIPF SIDEVSESLQ VKDFADVKPA
1501: TELIEHPAFP FLHE
0001: MVANFNPSVG SFVWVEDPDE AWIDGEVVQV NGDEIKVLCT SGKHVVTKIS NAYPKDVEAP ASGVDDMTRL AYLHEPGVLQ NLHSRYDINE IYTYTGSILI
0101: AVNPFRRLPH LYSSHMMAQY KGASLGELSP HPFAVADAAY RQMINDGVSQ SILVSGESGA GKTESTKLLM RYLAYMGGRA AAEGRSVEQK VLESNPVLEA
0201: FGNAKTVRNN NSSRFGKFVE IQFDEKGRIS GAAIRTYLLE RSRVCQVSDP ERNYHCFYML CAAPQEDVKK FKLEEPKKYH YLNQSKCLEL DSINDAEEYH
0301: ATRRAMDVVG ISTEEQDAIF SVVAAILHIG NIEFAKGEEI DSSIPKDDKS LFHLKTAAEL LSCDEKALED SLCKRIMVTR DETITKTLDP EAATLSRDAL
0401: AKVMYSRLFD WLVDKINSSI GQDHDSKYLI GVLDIYGFES FKTNSFEQFC INLTNEKLQQ HFNQHVFKME QEEYKKEEIN WSYIEFVDNQ DILDLIEKKP
0501: GGIIALLDEA CMFPRSTHET FAQKLYQTFK THKRFTKPKL ARSDFTICHY AGDVTYQTEL FLDKNKDYVI AEHQALLNSS SCSFVASLFP PMSDDSKQSK
0601: FSSIGTRFKQ QLVSLLEILN TTEPHYIRCI KPNNLLKPGI FENENILQQL RCGGVMEAIR ISCAGYPTRK HFDEFLARFG ILAPEVLVKN SDDPAACKKL
0701: LDKVGLEGYQ IGKTKVFLRA GQMADLDTRR TEVLGRSASI IQRKVRSYLA KKSFIVLRNS AKQIQSVCRG YLARSVYEGM RREAAALKIQ RDLRRFLARK
0801: AYTELYSAAV SVQAGMRGMV ARKELCFRRQ TKAAIIIQTW CRGYLARLHY RKLKKAAITT QCAWRSKVAR GELRKLKMAA RETGALQAAK NKLEKQVEEL
0901: TWRLQLEKRI RTDLEEAKKQ ESAKAQSSLE ELQLKCKETE ALLIKEREAA KKIAETAPII KEIPVVDQEL MDKITNENEK LKSMVSSLEM KIGETEKKLQ
1001: ETTKISQDRL NQALEAESKL VKLKTAMQRL EEKILDMEAE KKIMHQQTIS TPVRTNLGHP PTAPVKNLEN GHQTNLEKEF NEAEFTTPVD GKAGKSAAER
1101: QIMNVDALID CVKDNIGFSN GKPVAAFTIY KCLLHWKCFE SEKTNVFDRL IQMIGSAIEN EDDNSHLAYW LTSTSALLFL LQKSLKTNGS GATQSKKPPA
1201: STSLFGRMAM SFRSSPASGN LAAAAEAAAL AVVRPVEAKY PALLFKQQLA AYVEKMFGMV RDNLKRELST LLSLCIQAPR SSKGGMLRSG RSFGKDSPAV
1301: HWQSIIDGLN SLLVTLKENH VPLVLIQKIY SQTFSYINVQ LFNSLLLRKE CCTFSNGEFV KSGLAELELW CCQAKEYSGP SWEELKHIRQ AVGFLVIHQK
1401: YRISYDEIAN DLCPVLSVQQ LYRICTLYWD DSYNTRSVSQ EVISSMRTLM TEESNDADSD SFLLDDDSSI PFSIDDISSS MEEKDFVGIK PAEELLENPA
1501: FVFLH
0101: AVNPFRRLPH LYSSHMMAQY KGASLGELSP HPFAVADAAY RQMINDGVSQ SILVSGESGA GKTESTKLLM RYLAYMGGRA AAEGRSVEQK VLESNPVLEA
0201: FGNAKTVRNN NSSRFGKFVE IQFDEKGRIS GAAIRTYLLE RSRVCQVSDP ERNYHCFYML CAAPQEDVKK FKLEEPKKYH YLNQSKCLEL DSINDAEEYH
0301: ATRRAMDVVG ISTEEQDAIF SVVAAILHIG NIEFAKGEEI DSSIPKDDKS LFHLKTAAEL LSCDEKALED SLCKRIMVTR DETITKTLDP EAATLSRDAL
0401: AKVMYSRLFD WLVDKINSSI GQDHDSKYLI GVLDIYGFES FKTNSFEQFC INLTNEKLQQ HFNQHVFKME QEEYKKEEIN WSYIEFVDNQ DILDLIEKKP
0501: GGIIALLDEA CMFPRSTHET FAQKLYQTFK THKRFTKPKL ARSDFTICHY AGDVTYQTEL FLDKNKDYVI AEHQALLNSS SCSFVASLFP PMSDDSKQSK
0601: FSSIGTRFKQ QLVSLLEILN TTEPHYIRCI KPNNLLKPGI FENENILQQL RCGGVMEAIR ISCAGYPTRK HFDEFLARFG ILAPEVLVKN SDDPAACKKL
0701: LDKVGLEGYQ IGKTKVFLRA GQMADLDTRR TEVLGRSASI IQRKVRSYLA KKSFIVLRNS AKQIQSVCRG YLARSVYEGM RREAAALKIQ RDLRRFLARK
0801: AYTELYSAAV SVQAGMRGMV ARKELCFRRQ TKAAIIIQTW CRGYLARLHY RKLKKAAITT QCAWRSKVAR GELRKLKMAA RETGALQAAK NKLEKQVEEL
0901: TWRLQLEKRI RTDLEEAKKQ ESAKAQSSLE ELQLKCKETE ALLIKEREAA KKIAETAPII KEIPVVDQEL MDKITNENEK LKSMVSSLEM KIGETEKKLQ
1001: ETTKISQDRL NQALEAESKL VKLKTAMQRL EEKILDMEAE KKIMHQQTIS TPVRTNLGHP PTAPVKNLEN GHQTNLEKEF NEAEFTTPVD GKAGKSAAER
1101: QIMNVDALID CVKDNIGFSN GKPVAAFTIY KCLLHWKCFE SEKTNVFDRL IQMIGSAIEN EDDNSHLAYW LTSTSALLFL LQKSLKTNGS GATQSKKPPA
1201: STSLFGRMAM SFRSSPASGN LAAAAEAAAL AVVRPVEAKY PALLFKQQLA AYVEKMFGMV RDNLKRELST LLSLCIQAPR SSKGGMLRSG RSFGKDSPAV
1301: HWQSIIDGLN SLLVTLKENH VPLVLIQKIY SQTFSYINVQ LFNSLLLRKE CCTFSNGEFV KSGLAELELW CCQAKEYSGP SWEELKHIRQ AVGFLVIHQK
1401: YRISYDEIAN DLCPVLSVQQ LYRICTLYWD DSYNTRSVSQ EVISSMRTLM TEESNDADSD SFLLDDDSSI PFSIDDISSS MEEKDFVGIK PAEELLENPA
1501: FVFLH
Arabidopsis Description
MYA2Myosin 2 [Source:UniProtKB/TrEMBL;Acc:F4K7C5]
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.