Subcellular Localization
min:
: max
Winner_takes_all: cytosol
Predictor Summary:
Predictor Summary:
- nucleus 1
- cytosol 3
- 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 |
---|---|---|---|---|
CDY46128 | Canola | cytosol | 96.15 | 96.4 |
CDX68955 | Canola | cytosol | 31.08 | 90.0 |
AT4G33200.4 | Thale cress | cytosol | 89.91 | 88.9 |
CDY69448 | Canola | extracellular, golgi, mitochondrion | 18.79 | 85.76 |
CDY69853 | Canola | endoplasmic reticulum | 27.49 | 85.71 |
CDX75338 | Canola | cytosol | 89.51 | 81.35 |
Solyc08g061520.2.1 | Tomato | cytosol | 23.9 | 77.59 |
VIT_04s0008g01990.t01 | Wine grape | cytosol | 73.51 | 72.64 |
Os10t0395150-00 | Rice | plasma membrane | 25.83 | 71.38 |
Zm00001d014239_P001 | Maize | cytosol | 23.37 | 70.54 |
KRH52257 | Soybean | cytosol | 70.98 | 70.28 |
KRH15597 | Soybean | cytosol | 70.78 | 70.04 |
KRH61584 | Soybean | cytosol | 70.58 | 69.75 |
Solyc08g061500.1.1 | Tomato | cytosol | 44.75 | 64.68 |
TraesCS6B01G367000.1 | Wheat | cytosol | 64.08 | 64.46 |
TraesCS6A01G336500.1 | Wheat | cytosol | 64.01 | 64.4 |
TraesCS6D01G316500.1 | Wheat | cytosol | 63.81 | 64.2 |
CDX91798 | Canola | cytosol | 21.38 | 63.89 |
EES05882 | Sorghum | cytosol | 64.41 | 63.82 |
Zm00001d052110_P011 | Maize | cytosol | 64.14 | 63.55 |
HORVU6Hr1G081340.4 | Barley | cytosol | 64.08 | 63.49 |
GSMUA_Achr3P07960_001 | Banana | cytosol | 67.0 | 61.67 |
CDY72648 | Canola | cytosol | 10.96 | 60.66 |
OQU91854 | Sorghum | cytosol | 59.83 | 59.79 |
Os10t0395100-01 | Rice | cytosol | 17.33 | 54.26 |
Os02t0777700-00 | Rice | cytosol | 25.5 | 52.67 |
CDX81833 | Canola | cytosol | 51.13 | 52.56 |
CDY66597 | Canola | cytosol | 52.92 | 52.37 |
Os10t0339400-01 | Rice | cytosol | 25.3 | 52.26 |
CDY21744 | Canola | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, vacuole | 52.59 | 52.24 |
CDY32922 | Canola | cytosol | 51.86 | 51.82 |
CDY31130 | Canola | cytosol, mitochondrion | 52.99 | 51.82 |
CDY42350 | Canola | cytosol | 51.66 | 51.76 |
CDX95235 | Canola | cytosol | 52.72 | 51.69 |
CDY45087 | Canola | cytosol | 52.99 | 51.52 |
CDY64313 | Canola | cytosol | 51.99 | 51.48 |
CDX94736 | Canola | cytosol | 51.99 | 51.24 |
CDX70927 | Canola | cytosol | 52.92 | 51.22 |
CDY22325 | Canola | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, vacuole | 51.93 | 50.78 |
CDY32531 | Canola | endoplasmic reticulum | 50.93 | 50.76 |
CDY10075 | Canola | endoplasmic reticulum | 50.93 | 50.63 |
CDY51846 | Canola | cytosol | 52.99 | 50.47 |
CDY03315 | Canola | cytosol | 47.41 | 48.54 |
CDY39766 | Canola | cytosol | 47.21 | 48.37 |
CDX84752 | Canola | cytosol | 49.0 | 47.28 |
CDX79446 | Canola | cytosol | 48.87 | 47.27 |
Zm00001d014241_P001 | Maize | mitochondrion | 15.21 | 46.08 |
CDY31978 | Canola | cytosol | 46.68 | 45.71 |
CDX93542 | Canola | cytosol | 51.79 | 45.06 |
CDY05734 | Canola | cytosol | 46.28 | 44.17 |
CDX88973 | Canola | cytosol | 34.4 | 44.09 |
CDX95038 | Canola | cytosol | 49.47 | 44.03 |
CDY00546 | Canola | cytosol | 34.4 | 43.13 |
CDX79520 | Canola | endoplasmic reticulum | 42.16 | 42.0 |
CDX67724 | Canola | cytosol | 33.8 | 41.55 |
CDX98274 | Canola | nucleus | 33.8 | 40.98 |
CDX84695 | Canola | cytosol | 47.01 | 40.83 |
CDY19473 | Canola | cytosol | 46.95 | 40.38 |
CDY65572 | Canola | plastid | 50.46 | 39.98 |
CDY15512 | Canola | cytosol | 46.55 | 39.94 |
CDY35211 | Canola | plastid | 50.46 | 39.87 |
CDX86626 | Canola | cytosol | 46.28 | 39.87 |
CDY17154 | Canola | cytosol | 47.08 | 38.79 |
CDX92461 | Canola | cytosol | 11.49 | 37.37 |
CDY16536 | Canola | cytosol | 11.02 | 36.97 |
CDY71471 | Canola | cytosol | 11.69 | 36.29 |
CDY65579 | Canola | endoplasmic reticulum | 25.76 | 34.37 |
CDY29324 | Canola | cytosol | 24.97 | 32.75 |
CDY24591 | Canola | cytosol, plastid | 25.17 | 32.7 |
CDY42506 | Canola | cytosol, plastid | 24.83 | 32.55 |
CDY22791 | Canola | cytosol, plastid | 24.7 | 32.15 |
CDY36068 | Canola | cytosol, mitochondrion | 24.1 | 32.04 |
CDX82270 | Canola | cytosol | 25.03 | 31.52 |
CDY53932 | Canola | cytosol, plastid | 24.7 | 31.5 |
CDY28777 | Canola | cytosol | 24.77 | 31.11 |
CDY52239 | Canola | cytosol | 24.44 | 30.74 |
CDY18321 | Canola | cytosol | 24.24 | 30.24 |
CDY14319 | Canola | cytosol, plastid | 23.97 | 29.96 |
CDY25361 | Canola | cytosol | 25.03 | 24.34 |
CDX72394 | Canola | nucleus | 0.66 | 1.01 |
Protein Annotations
Gene3D:1.20.120.720 | Gene3D:1.20.5.190 | Gene3D:1.20.58.530 | Gene3D:2.30.30.360 | MapMan:20.2.4.1 | Gene3D:3.30.70.3240 |
Gene3D:3.40.850.10 | GO:A0A078CBK2 | EnsemblPlants:CDX72393 | ProteinID:CDX72393 | ProteinID:CDX72393.1 | ncoils:Coil |
InterPro:Dilute_dom | GO:GO:0000166 | GO:GO:0003674 | GO:GO:0003774 | GO:GO:0003777 | 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 | GO:GO:0051015 | EnsemblPlantsGene:GSBRNA2T00099886001 | InterPro:IPR000048 |
InterPro:IPR001609 | InterPro:IPR002710 | InterPro:IPR004009 | InterPro:IPR008989 | InterPro:IPR036961 | InterPro:IQ_motif_EF-hand-BS |
InterPro:Kinesin_motor_dom_sf | InterPro:MYSc_Myo11 | InterPro:MyosinXI_CBD | InterPro:Myosin_N | InterPro:Myosin_S1_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:SF534 |
SMART:SM00015 | SMART:SM00242 | SMART:SM01132 | SUPFAM:SSF52540 | UniParc:UPI0004EEDC30 | SEG:seg |
Description
BnaC07g44150D
Coordinates
chrLK031796:-:1008965..1021237
Molecular Weight (calculated)
170619.0 Da
IEP (calculated)
8.717
GRAVY (calculated)
-0.394
Length
1506 amino acids
Sequence
(BLAST)
(BLAST)
0001: MESNLRKGDK VWVEDKDSAW VAGDVLDSPG NKVHVETSAG NQVFVSSEKL FRRDPDEEER NGVDDMTKLT YLHEAGVLYN LQRRYALNDI YTYTGSILIA
0101: VNPFKKLPHL YNGYMMEQYK GAPFGELSPH VFAVSEVAYR AMIDDRRSQS ILVSGESGAG KTETTKLIMQ YLTYVGGRAA GDNRSVEQQV LESNPLLEAF
0201: GNAKTVRNDN SSRFGKFVEI QFDANGRISG AAIRTYLLER SRVVRITDPE RNYHCFYQLC ASGSDAEKYK LSNPHQFHYL NQSKTYDLEG VSNAEEYKNT
0301: RRAMDIVGIS HDEQESIFRT LAAILHLGNV EFSSGKEHDS SVVKDQESRN HLQMAADLFR CDANLLLASL CTRSILTREG TIIKALDCNA AVTSRDALAK
0401: TVYARLFDWL VDKINRSVGQ DPNSHFQIGV LDIYGFECFK SNSFEQFCIN FANEKLQLHF NEHVFKMEQD EYKKEEINWS FIEFIDNQDV VDLIEKKPIG
0501: VIALLDEACM FPRSTHESFS MKLFQNCKSH PRLEKTKFSE TDFTLSHYAG KAMEHCNLLS SSRCPFVAGL FASAPEESAR SSYKFSSVSS RFKQQLQALM
0601: ETLSKTEPHY VRCVKPNTLN RPQKFENLSV LHQLRCGGVL EAVRISLAGY PTRRYYSDFV DRFGLLAPEF MDESNDEQAL TEKILRKLGL GNYQLGRTKV
0701: FLRAGQIGIL DSRRTEVLDA SARLIQRRLR TFVTHQNFIA ARACAISIQA YCRGCLSRNA YAARRNAAAA VLVQKHARRW LSRCAYVKLV SAALVIQSCL
0801: RADSARLNFA HQKEHRAASL IQACWTMHKF HTAFRHRQSS IIAIQCCWRQ KLAKREFRKL KQAANEAGAL RLAKTKLEKR LEDLEWRLQL EKRLRTSGEE
0901: AKSGEISKLQ KTLESFSLKL DAARLATINE CNKNAVLQKQ LDISMKEKAA VERELNGMVE LEKDNTSLKN SMNFLEKKNL ALEKELLSAK TNCNNTLQKL
1001: KEADNRCSEL QTSVQSLEEK LSRLENENRG LRQKTLSISP ERIGQILGES PQQKHSSAVV PAQIDRTSVF ETPTPSKRIM PFSRSLSESR RPKFTAERNV
1101: EIHELLSKCI KENLGFSDDK PLAACVIYKC LLHWHAFESE STATFNIIIE GINEALKGGD ENSVLPYWLS NSSALLCLLQ RNLQTNSFLN ASAQRSGMSA
1201: YGVKFPFKIS GADDGVPHIE ARYPAILFKQ HLTACVEKIY GLIRDNLKKE LAPLLGLCIQ APKALRGTAG KSSRSPSDVP QRSPSSQWEN ILKFLDSLMS
1301: RLRENHVPSF FIRKLVTQVF SFINLSLFNS LLLRRECCTF SNGEYVKSGI TELEKWIAGV KEEFSGTSWH ELSFIRQAVG FLVIHQKRRK SLDEISQDLC
1401: PALTIRQIYR ISTLYWDDKY GTQSVSSEVV SQMRVLVDKD SSQKLTSNSF LLDDDMSIPF SAEDIDKAIP VLDPSETEPP KFVSEYTCAQ SLVKKPSTAS
1501: VSKQIL
0101: VNPFKKLPHL YNGYMMEQYK GAPFGELSPH VFAVSEVAYR AMIDDRRSQS ILVSGESGAG KTETTKLIMQ YLTYVGGRAA GDNRSVEQQV LESNPLLEAF
0201: GNAKTVRNDN SSRFGKFVEI QFDANGRISG AAIRTYLLER SRVVRITDPE RNYHCFYQLC ASGSDAEKYK LSNPHQFHYL NQSKTYDLEG VSNAEEYKNT
0301: RRAMDIVGIS HDEQESIFRT LAAILHLGNV EFSSGKEHDS SVVKDQESRN HLQMAADLFR CDANLLLASL CTRSILTREG TIIKALDCNA AVTSRDALAK
0401: TVYARLFDWL VDKINRSVGQ DPNSHFQIGV LDIYGFECFK SNSFEQFCIN FANEKLQLHF NEHVFKMEQD EYKKEEINWS FIEFIDNQDV VDLIEKKPIG
0501: VIALLDEACM FPRSTHESFS MKLFQNCKSH PRLEKTKFSE TDFTLSHYAG KAMEHCNLLS SSRCPFVAGL FASAPEESAR SSYKFSSVSS RFKQQLQALM
0601: ETLSKTEPHY VRCVKPNTLN RPQKFENLSV LHQLRCGGVL EAVRISLAGY PTRRYYSDFV DRFGLLAPEF MDESNDEQAL TEKILRKLGL GNYQLGRTKV
0701: FLRAGQIGIL DSRRTEVLDA SARLIQRRLR TFVTHQNFIA ARACAISIQA YCRGCLSRNA YAARRNAAAA VLVQKHARRW LSRCAYVKLV SAALVIQSCL
0801: RADSARLNFA HQKEHRAASL IQACWTMHKF HTAFRHRQSS IIAIQCCWRQ KLAKREFRKL KQAANEAGAL RLAKTKLEKR LEDLEWRLQL EKRLRTSGEE
0901: AKSGEISKLQ KTLESFSLKL DAARLATINE CNKNAVLQKQ LDISMKEKAA VERELNGMVE LEKDNTSLKN SMNFLEKKNL ALEKELLSAK TNCNNTLQKL
1001: KEADNRCSEL QTSVQSLEEK LSRLENENRG LRQKTLSISP ERIGQILGES PQQKHSSAVV PAQIDRTSVF ETPTPSKRIM PFSRSLSESR RPKFTAERNV
1101: EIHELLSKCI KENLGFSDDK PLAACVIYKC LLHWHAFESE STATFNIIIE GINEALKGGD ENSVLPYWLS NSSALLCLLQ RNLQTNSFLN ASAQRSGMSA
1201: YGVKFPFKIS GADDGVPHIE ARYPAILFKQ HLTACVEKIY GLIRDNLKKE LAPLLGLCIQ APKALRGTAG KSSRSPSDVP QRSPSSQWEN ILKFLDSLMS
1301: RLRENHVPSF FIRKLVTQVF SFINLSLFNS LLLRRECCTF SNGEYVKSGI TELEKWIAGV KEEFSGTSWH ELSFIRQAVG FLVIHQKRRK SLDEISQDLC
1401: PALTIRQIYR ISTLYWDDKY GTQSVSSEVV SQMRVLVDKD SSQKLTSNSF LLDDDMSIPF SAEDIDKAIP VLDPSETEPP KFVSEYTCAQ SLVKKPSTAS
1501: VSKQIL
0001: MRNCLPMELN LRKGDKVWVE DKDLAWIAAD VLDSFDNKLH VETSTGKKVF VSPEKLFRRD PDDEEHNGVD DMTKLTYLHE AGVLYNLQRR YALNDIYTYT
0101: GSILIAVNPF KKLPHLYNGH MMEQYMGAPF GELSPHVFAV SDVAYRAMID DSRSQSILVS GESGAGKTET TKLIMQYLTF VGGRATDDDR SVEQQVLESN
0201: PLLEAFGNAK TVRNDNSSRF GKFVEIQFDT NGRISGAAIR TYLLERSRVV RITDPERNYH CFYQLCASGN DAEKYKLSNP RQFHYLNQSK TYELEGVSSA
0301: EEYKNTRRAM DIVGISQDEQ EGIFRTLAAI LHLGNVEFSS GREHDSSVVK DPESRHHLQM AADLFKCDAN LLLASLCTRS ILTREGIIIK ALDPNAAVTS
0401: RDTLAKTVYA HLFDWLVDKI NKSVGQDPES RFQIGVLDIY GFECFKNNSF EQFCINFANE KLQQHFNEHV FKMEQDEYRK EEINWSYIEF IDNQDVLDLI
0501: EKKPIGVIAL LDEACMFPRS THESFSMKLF QNFRFHPRLE KPKFSETDFT LSHYAGKVTY QTEAFLDKNR DYTIVEHCNL LSSSKCPFVA GIFPSAPEES
0601: TRSSYKFSSV SSRFKQQLQA LMETLSKTEP HYVRCVKPNS LNRPQKFESL SVLHQLRCGG VLEAVRISLA GYPTRRNYSD FVDRFGLLAP EFMDESNDEQ
0701: ALTEKILSKL GLGNYQLGRT KVFLRAGQIG ILDSRRAEVL DASARLIQRR LRTFVTHQNF ISARASAISI QAYCRGCLSR NAYATRRNAA AAVLVQKHVR
0801: RWLSRCAFVK LVSAAIVLQS CIRADSTRLK FSHQKEHRAA SLIQAHWRIH KFRSAFRHRQ SSIIAIQCRW RQKLAKREFR KLKQVANEAG ALRLAKTKLE
0901: KRLEDLEWRL QLEKRLRTSG EEAKSSEISK LQKTLESFSL KLDAARLATI NECNKNAVLE KQLDISMKEK SAVERELNGM VELKKDNALL KNSMNSLEKK
1001: NRVLEKELLN AKTNCNNTLQ KLKEAEKRCS ELQTSVQSLE EKLSHLENEN QVLMQKTLIT SPERIGQILG EQKHSSAVVP AQNDRRSVFE TPTPSKHIMP
1101: FSHSLSESRR SKLTAERNLE NYELLSRCIK ENLGFNDDKP LAACVIYKCL LHWRAFESES TAIFNIIIEG INEALKGGDE NGVLPYWLSN ASALLCLLQR
1201: NLRSNSFLNA SAQRSGRAAY GVKSPFKLHG PDDGASHIEA RYPALLFKQQ LTACVEKIYG LIRDNLKKEL SPLLGSCIQA PKASRGIAGK SRSPGGVPQQ
1301: SPSSQWESIL KFLDSLMSRL RENHVPSFFI RKLVTQVFSF INLSLFNSLL LRRECCTFSN GEYVKSGISE LEKWIANAKE EFAGTSWHEL NYIRQAVGFL
1401: VIHQKKKKSL DEIRQDLCPV LTIRQIYRIS TMYWDDKYGT QSVSSEVVSQ MRVLVDKDNQ KQTSNSFLLD DDMSIPFSAE DIDKAIPVLD PSEIEPPKFV
1501: SEYTCAQSLV KKPSIASTSK QII
0101: GSILIAVNPF KKLPHLYNGH MMEQYMGAPF GELSPHVFAV SDVAYRAMID DSRSQSILVS GESGAGKTET TKLIMQYLTF VGGRATDDDR SVEQQVLESN
0201: PLLEAFGNAK TVRNDNSSRF GKFVEIQFDT NGRISGAAIR TYLLERSRVV RITDPERNYH CFYQLCASGN DAEKYKLSNP RQFHYLNQSK TYELEGVSSA
0301: EEYKNTRRAM DIVGISQDEQ EGIFRTLAAI LHLGNVEFSS GREHDSSVVK DPESRHHLQM AADLFKCDAN LLLASLCTRS ILTREGIIIK ALDPNAAVTS
0401: RDTLAKTVYA HLFDWLVDKI NKSVGQDPES RFQIGVLDIY GFECFKNNSF EQFCINFANE KLQQHFNEHV FKMEQDEYRK EEINWSYIEF IDNQDVLDLI
0501: EKKPIGVIAL LDEACMFPRS THESFSMKLF QNFRFHPRLE KPKFSETDFT LSHYAGKVTY QTEAFLDKNR DYTIVEHCNL LSSSKCPFVA GIFPSAPEES
0601: TRSSYKFSSV SSRFKQQLQA LMETLSKTEP HYVRCVKPNS LNRPQKFESL SVLHQLRCGG VLEAVRISLA GYPTRRNYSD FVDRFGLLAP EFMDESNDEQ
0701: ALTEKILSKL GLGNYQLGRT KVFLRAGQIG ILDSRRAEVL DASARLIQRR LRTFVTHQNF ISARASAISI QAYCRGCLSR NAYATRRNAA AAVLVQKHVR
0801: RWLSRCAFVK LVSAAIVLQS CIRADSTRLK FSHQKEHRAA SLIQAHWRIH KFRSAFRHRQ SSIIAIQCRW RQKLAKREFR KLKQVANEAG ALRLAKTKLE
0901: KRLEDLEWRL QLEKRLRTSG EEAKSSEISK LQKTLESFSL KLDAARLATI NECNKNAVLE KQLDISMKEK SAVERELNGM VELKKDNALL KNSMNSLEKK
1001: NRVLEKELLN AKTNCNNTLQ KLKEAEKRCS ELQTSVQSLE EKLSHLENEN QVLMQKTLIT SPERIGQILG EQKHSSAVVP AQNDRRSVFE TPTPSKHIMP
1101: FSHSLSESRR SKLTAERNLE NYELLSRCIK ENLGFNDDKP LAACVIYKCL LHWRAFESES TAIFNIIIEG INEALKGGDE NGVLPYWLSN ASALLCLLQR
1201: NLRSNSFLNA SAQRSGRAAY GVKSPFKLHG PDDGASHIEA RYPALLFKQQ LTACVEKIYG LIRDNLKKEL SPLLGSCIQA PKASRGIAGK SRSPGGVPQQ
1301: SPSSQWESIL KFLDSLMSRL RENHVPSFFI RKLVTQVFSF INLSLFNSLL LRRECCTFSN GEYVKSGISE LEKWIANAKE EFAGTSWHEL NYIRQAVGFL
1401: VIHQKKKKSL DEIRQDLCPV LTIRQIYRIS TMYWDDKYGT QSVSSEVVSQ MRVLVDKDNQ KQTSNSFLLD DDMSIPFSAE DIDKAIPVLD PSEIEPPKFV
1501: SEYTCAQSLV KKPSIASTSK QII
Arabidopsis Description
XI-Imyosin, putative [Source:TAIR;Acc:AT4G33200]
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.