Subcellular Localization
min:
: max
Winner_takes_all: cytosol
Predictor Summary:
Predictor Summary:
- cytosol 3
- mitochondrion 1
Predictors | GFP | MS/MS | Papers | ||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
Inferred distinct locusB in Crop
Inferred from Arabidopsis experimental PPI
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
TraesCS3D01G212400.3 | Wheat | cytosol | 99.67 | 99.35 |
TraesCS3B01G239700.1 | Wheat | cytosol, golgi | 99.67 | 99.35 |
HORVU3Hr1G050290.1 | Barley | cytosol | 99.02 | 98.69 |
EES03165 | Sorghum | cytosol | 93.7 | 93.39 |
Zm00001d044303_P003 | Maize | plasma membrane | 93.44 | 93.13 |
Os03t0686300-00 | Rice | plasma membrane | 94.09 | 92.7 |
GSMUA_Achr8P26250_001 | Banana | cytosol | 80.12 | 79.75 |
KRH19248 | Soybean | cytosol | 78.48 | 78.17 |
Solyc07g041150.2.1 | Tomato | nucleus | 78.41 | 78.16 |
PGSC0003DMT400053991 | Potato | cytosol | 78.41 | 78.16 |
KRH02661 | Soybean | cytosol | 78.28 | 77.97 |
VIT_11s0016g01710.t01 | Wine grape | cytosol | 77.69 | 77.95 |
GSMUA_Achr5P09720_001 | Banana | cytosol | 79.86 | 77.86 |
AT5G20490.2 | Thale cress | cytosol | 76.64 | 76.29 |
VIT_09s0002g01910.t01 | Wine grape | cytosol, endoplasmic reticulum, nucleus | 77.49 | 75.8 |
Bra006561.1-P | Field mustard | cytosol | 76.31 | 75.67 |
CDX70927 | Canola | cytosol | 76.9 | 75.32 |
CDY66597 | Canola | cytosol | 75.0 | 75.1 |
Bra020105.1-P | Field mustard | cytosol | 75.13 | 74.98 |
CDY45087 | Canola | cytosol | 75.2 | 73.98 |
CDY51846 | Canola | cytosol | 76.38 | 73.62 |
AT1G17580.1 | Thale cress | cytosol | 70.87 | 71.05 |
GSMUA_AchrUn_... | Banana | cytosol | 41.47 | 70.93 |
Bra030993.1-P | Field mustard | cytosol | 69.75 | 70.4 |
CDX81833 | Canola | cytosol | 67.52 | 70.24 |
CDY21744 | Canola | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, vacuole | 69.75 | 70.12 |
TraesCS6A01G390800.2 | Wheat | cytosol | 62.8 | 63.38 |
TraesCS5A01G386500.1 | Wheat | cytosol | 63.98 | 62.66 |
TraesCS1A01G166900.2 | Wheat | cytosol | 58.6 | 59.14 |
TraesCS4A01G313500.1 | Wheat | cytosol | 57.41 | 58.84 |
TraesCS6A01G336500.1 | Wheat | cytosol | 53.61 | 54.58 |
TraesCS1A01G358500.1 | Wheat | cytosol | 59.25 | 43.35 |
TraesCS3A01G248800.7 | Wheat | cytosol | 65.94 | 42.03 |
TraesCS3A01G058100.1 | Wheat | cytosol | 21.59 | 41.54 |
TraesCS1A01G162800.1 | Wheat | mitochondrion | 25.85 | 32.89 |
TraesCS2A01G204700.1 | Wheat | cytosol, plastid | 25.85 | 31.2 |
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 | 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 |
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:SF510 | SMART:SM00015 | SMART:SM00242 | SMART:SM01132 | SUPFAM:SSF52540 | EnsemblPlantsGene:TraesCS3A01G209500 |
EnsemblPlants:TraesCS3A01G209500.1 | TIGR:cd01384 | TIGR:cd15475 | SEG:seg | : | : |
Description
No Description!
Coordinates
chr3A:-:373327385..373350821
Molecular Weight (calculated)
173271.0 Da
IEP (calculated)
8.103
GRAVY (calculated)
-0.395
Length
1524 amino acids
Sequence
(BLAST)
(BLAST)
0001: MGTPANIIVG SHVWVEDPTL AWIDGEVVSI KNNEVHVQTS NGKKVTTDRS KVFPKDMEAP PGGVDDMTRL SYLHEPGVLQ NLATRYELNE IYTYTGSILI
0101: AVNPFQRLPH LYDTHMMEQY KGADFGELSP HVFAIADVAY REMINEGKNN SILVSGESGA GKTETTKMLM RYLAHLGGRS GVEGRTVEQQ VLESNPVLEA
0201: FGNAKTVRNN NSSRFGKFVE IQFDKTGRIS GAAIRTYLLE RSRVCQINTP ERNYHCFYFL CAAPPEDTQR YKLADARSFH YLNQSSCIEV EGINDAEEYL
0301: ATRRAMDIVG INEEEQEAIF RVVAAVLHIG NINFAKGKEV DSSVIQDDNS RFHLNTASEL LECDCNNLEK ALITREIVTP EEIITRTLDP ESALASRDAL
0401: AKTIYSRLFD WIVEKINVSI GQDPNSKQLI GVLDIYGFES FKINSFEQLC INYTNEKLQQ HFNQHVFKME QEEYTREEIN WSYIEFVDNQ DVLDLIEKKG
0501: GLIALLDEAC MFPRSTHETF AQKLYTTFKN NKRFVKPKLS RTDFTVVHYA GDVTYQADHF LDKNKDYVVA EHQDLLNASS CPFVASLFPS LPEESSKSSK
0601: FSSIGSRFKL QLQSLMETLS STEPHYIRCV KPNNLLKPAI FENTNVIQQL RCGGVLEAIR ISCAGYPTRK TFYEFVNRFG VLGPELLEGS NDDKIACQKI
0701: LEKMKLENYQ IGKTKVFLRA GQMADLDARR AEVLGKAARI IQRLMRTYIA RKQFVLVRRS ATHLQSFVRG TLVRNLYECM RREAAAVKIQ KNVRRHKARE
0801: SYLLLQAATV TLQTGLRAMS ARKEFRFRKE TKAAVHIQAR WRCHRDYSHY KNMQRAVLTY QCAWRQRLAR RELRNLKMAA RETGALKEAK DKLEKRVEEL
0901: TWRLGLEKRL RTDLEEAKAQ EIAKLQETLH DLQLQVEEAK TMATKEREAA RKAIEEAPPV IKETPVLVED TEKVNSLTAE VDQLKALLQT ERQATETAKK
1001: EHAEAERRNE ELMKKFEGAE KKIEQLQDTA QRLEEKATNM ESENKVLRQQ AVAISPTAKA LAAYPKSPFQ LRTPEIVNAP NGEDVTPISL NLKELEAEEK
1101: PQKSLNEKQQ ENQDLLIKCV SQDLGFSSGR AIAACVIYRC LLHWRSFEVE RTGVFDRIIQ TIGSAIEVQD NDDKLAYWLS NSSTLLLLLQ RTLKTTGAAG
1201: LTPQRRRSTA ASFGRVFSGI RASPQSAARP FLGSRLIGGL GDLRQVEAKY PALLFKQQLT AFLEKIYGMI RDNLKKEISP LLGLCIQAPR TSRASLIKGS
1301: RSQANALAQQ TLIAHWQSIV KILTNYLNVL KANYVPSFLI SKVFTQIFSF INVQLFNSLL LRRECCSFSN GEYVKAGLAE LEQWCIYATE EYAGSSWEEL
1401: KHIRQAVGFL VIHQKPKKTL KEITNDLCPV LSIQQLYRIS TMYWDDKYGT HTVSSEVISS MRIMMTEDSN NAVSSSFLLD DDSSIPFSVD DISKSMTEIE
1501: VTDVDMPPLI RENSGFTFLH QRKD
0101: AVNPFQRLPH LYDTHMMEQY KGADFGELSP HVFAIADVAY REMINEGKNN SILVSGESGA GKTETTKMLM RYLAHLGGRS GVEGRTVEQQ VLESNPVLEA
0201: FGNAKTVRNN NSSRFGKFVE IQFDKTGRIS GAAIRTYLLE RSRVCQINTP ERNYHCFYFL CAAPPEDTQR YKLADARSFH YLNQSSCIEV EGINDAEEYL
0301: ATRRAMDIVG INEEEQEAIF RVVAAVLHIG NINFAKGKEV DSSVIQDDNS RFHLNTASEL LECDCNNLEK ALITREIVTP EEIITRTLDP ESALASRDAL
0401: AKTIYSRLFD WIVEKINVSI GQDPNSKQLI GVLDIYGFES FKINSFEQLC INYTNEKLQQ HFNQHVFKME QEEYTREEIN WSYIEFVDNQ DVLDLIEKKG
0501: GLIALLDEAC MFPRSTHETF AQKLYTTFKN NKRFVKPKLS RTDFTVVHYA GDVTYQADHF LDKNKDYVVA EHQDLLNASS CPFVASLFPS LPEESSKSSK
0601: FSSIGSRFKL QLQSLMETLS STEPHYIRCV KPNNLLKPAI FENTNVIQQL RCGGVLEAIR ISCAGYPTRK TFYEFVNRFG VLGPELLEGS NDDKIACQKI
0701: LEKMKLENYQ IGKTKVFLRA GQMADLDARR AEVLGKAARI IQRLMRTYIA RKQFVLVRRS ATHLQSFVRG TLVRNLYECM RREAAAVKIQ KNVRRHKARE
0801: SYLLLQAATV TLQTGLRAMS ARKEFRFRKE TKAAVHIQAR WRCHRDYSHY KNMQRAVLTY QCAWRQRLAR RELRNLKMAA RETGALKEAK DKLEKRVEEL
0901: TWRLGLEKRL RTDLEEAKAQ EIAKLQETLH DLQLQVEEAK TMATKEREAA RKAIEEAPPV IKETPVLVED TEKVNSLTAE VDQLKALLQT ERQATETAKK
1001: EHAEAERRNE ELMKKFEGAE KKIEQLQDTA QRLEEKATNM ESENKVLRQQ AVAISPTAKA LAAYPKSPFQ LRTPEIVNAP NGEDVTPISL NLKELEAEEK
1101: PQKSLNEKQQ ENQDLLIKCV SQDLGFSSGR AIAACVIYRC LLHWRSFEVE RTGVFDRIIQ TIGSAIEVQD NDDKLAYWLS NSSTLLLLLQ RTLKTTGAAG
1201: LTPQRRRSTA ASFGRVFSGI RASPQSAARP FLGSRLIGGL GDLRQVEAKY PALLFKQQLT AFLEKIYGMI RDNLKKEISP LLGLCIQAPR TSRASLIKGS
1301: RSQANALAQQ TLIAHWQSIV KILTNYLNVL KANYVPSFLI SKVFTQIFSF INVQLFNSLL LRRECCSFSN GEYVKAGLAE LEQWCIYATE EYAGSSWEEL
1401: KHIRQAVGFL VIHQKPKKTL KEITNDLCPV LSIQQLYRIS TMYWDDKYGT HTVSSEVISS MRIMMTEDSN NAVSSSFLLD DDSSIPFSVD DISKSMTEIE
1501: VTDVDMPPLI RENSGFTFLH QRKD
0001: MVGPVNIIVG SHVWIEDPGA AWIDGEVVKI NGEEVHAHTT NGKTVVANIA NVFPKDTEAP PGGVDDMTKL SYLHEPGVLN NLAMRYELNE IYTYTGNILI
0101: AVNPFQRLPH LYDTHMMEQY KGAGFGELSP HVFAIAEVAY RAMINEGKSN SILVSGESGA GKTETTKMLM RYLAYLGGRS GVEGRTVEQQ VLESNPVLEA
0201: FGNAKTLRNN NSSRFGKFVE LQFDNCGRIS GAAVRTYLLE RSRVCQISDP ERNYHCFYLL CAAPPEEREK FKLGDPKLFH YLNQSKCYKL DGVDDTEEYL
0301: ATRRAMDIVG ISEEEQDAIF RVVAAILHLG NVNFAKGKEI DSSVLKDEKS RYHLDVCAEL LRCDAKKMED ALIKRVMVTP EEVITRTLDP DSATGSRDAL
0401: AKTIYSRLFD WLVDKINNSI GQDPNSKTII GVLDIYGFES FKINSFEQFC INFTNEKLQQ HFNQHVFKME QEDYTKEEIN WSYIEFVDNK DVLELIEKKP
0501: GGVIALLDEA CMFPKSTHET FAQKLYQTFK NYKRFTKPKL SRTSFAISHY AGEVTYQADL FLDKNKDYVV AEHQDLLIAS SDTFVAGLFP RLPEETSSKT
0601: KFSSIGSRFK LQLQSLMETL SSTEPHYIRC VKPNNVLKPA IFENVNVIQQ LRCGGVLEAI RISCAGYPTK RTFYEFLNRF GVLAPEVLEG NYDDKVACKM
0701: LLDKIGLKGY ELGKTKVFLR AGQMAELDAR RAEVLGNAAR RIQRQSRTFI ACKEFRALRG AAIVLQSNCR GKLACNLYEE MRRQAAAVKI QKIFRRHIAR
0801: ESYLRIRHST ITVQTALRGM VARNEFRFRK QMKAATIIQA RLRSHLTHSY YKQLQKAALS TQCGWRSRVA RKELRTLKMA ARDTGALREA KDKLEKRVEE
0901: LTWRLQLEKR QRTELEEAKT QEYAKQQEAL ETMRLQVEEA NAAVIREREA ARKAIEEAPP VIKETPVLVE DTEKINSLTS EVEALKASLQ AERQAAENLR
1001: KAFSEAEARN SELATELENA TRKADQLHES VQRLEEKLSN SESEIQVLRQ QALAISPTSR TMATRSKTML LPRTPENGNY LNGGTKTTPD MTLAVREPES
1101: EEKPQKHLNE KQQENQDLLV KCISQNLGYN GDKPVAACVI YKCLLHWRSF EVERTSVFDR IIQTIATAIE VPDNNEVLAY WLSNSATLLL LLQRTLKATG
1201: AASLTPQRRR TTSASLFGRM SQGLRGSPQS AGLSFLNRQG LTKLDDLRQV EAKYPALLFK QQLTAFLEKI YGMIRDNLKK EISPLLGLCI QAPRTSRASL
1301: VKGRAQANAV AQQALIAHWQ SIRKSLNSYL NLMKANNAPP FLVRKVFTQI FSFINVQLFN SLLLRRECCS FSNGEYVKAG LAELEQWCIE ATDEYAGSAW
1401: DELRHIRQAV GFLVIHQKPK KTLDEITREL CPVLSIQQLY RISTMYWDDK YGTHSVSSDV IANMRVMMTE DSNNAVSSSF LLDDDSSIPF TVEDISKSMQ
1501: QVDVNDIEPP QLIRENSGFG FLLTRKEGST S
0101: AVNPFQRLPH LYDTHMMEQY KGAGFGELSP HVFAIAEVAY RAMINEGKSN SILVSGESGA GKTETTKMLM RYLAYLGGRS GVEGRTVEQQ VLESNPVLEA
0201: FGNAKTLRNN NSSRFGKFVE LQFDNCGRIS GAAVRTYLLE RSRVCQISDP ERNYHCFYLL CAAPPEEREK FKLGDPKLFH YLNQSKCYKL DGVDDTEEYL
0301: ATRRAMDIVG ISEEEQDAIF RVVAAILHLG NVNFAKGKEI DSSVLKDEKS RYHLDVCAEL LRCDAKKMED ALIKRVMVTP EEVITRTLDP DSATGSRDAL
0401: AKTIYSRLFD WLVDKINNSI GQDPNSKTII GVLDIYGFES FKINSFEQFC INFTNEKLQQ HFNQHVFKME QEDYTKEEIN WSYIEFVDNK DVLELIEKKP
0501: GGVIALLDEA CMFPKSTHET FAQKLYQTFK NYKRFTKPKL SRTSFAISHY AGEVTYQADL FLDKNKDYVV AEHQDLLIAS SDTFVAGLFP RLPEETSSKT
0601: KFSSIGSRFK LQLQSLMETL SSTEPHYIRC VKPNNVLKPA IFENVNVIQQ LRCGGVLEAI RISCAGYPTK RTFYEFLNRF GVLAPEVLEG NYDDKVACKM
0701: LLDKIGLKGY ELGKTKVFLR AGQMAELDAR RAEVLGNAAR RIQRQSRTFI ACKEFRALRG AAIVLQSNCR GKLACNLYEE MRRQAAAVKI QKIFRRHIAR
0801: ESYLRIRHST ITVQTALRGM VARNEFRFRK QMKAATIIQA RLRSHLTHSY YKQLQKAALS TQCGWRSRVA RKELRTLKMA ARDTGALREA KDKLEKRVEE
0901: LTWRLQLEKR QRTELEEAKT QEYAKQQEAL ETMRLQVEEA NAAVIREREA ARKAIEEAPP VIKETPVLVE DTEKINSLTS EVEALKASLQ AERQAAENLR
1001: KAFSEAEARN SELATELENA TRKADQLHES VQRLEEKLSN SESEIQVLRQ QALAISPTSR TMATRSKTML LPRTPENGNY LNGGTKTTPD MTLAVREPES
1101: EEKPQKHLNE KQQENQDLLV KCISQNLGYN GDKPVAACVI YKCLLHWRSF EVERTSVFDR IIQTIATAIE VPDNNEVLAY WLSNSATLLL LLQRTLKATG
1201: AASLTPQRRR TTSASLFGRM SQGLRGSPQS AGLSFLNRQG LTKLDDLRQV EAKYPALLFK QQLTAFLEKI YGMIRDNLKK EISPLLGLCI QAPRTSRASL
1301: VKGRAQANAV AQQALIAHWQ SIRKSLNSYL NLMKANNAPP FLVRKVFTQI FSFINVQLFN SLLLRRECCS FSNGEYVKAG LAELEQWCIE ATDEYAGSAW
1401: DELRHIRQAV GFLVIHQKPK KTLDEITREL CPVLSIQQLY RISTMYWDDK YGTHSVSSDV IANMRVMMTE DSNNAVSSSF LLDDDSSIPF TVEDISKSMQ
1501: QVDVNDIEPP QLIRENSGFG FLLTRKEGST S
Arabidopsis Description
XI-KMyosin-17 [Source:UniProtKB/Swiss-Prot;Acc:F4K5J1]
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.