Subcellular Localization
min:
: max
Winner_takes_all: plasma membrane
Predictor Summary:
Predictor Summary:
- plastid 1
- extracellular 4
- endoplasmic reticulum 4
- vacuole 4
- plasma membrane 7
- golgi 4
Predictors | GFP | MS/MS | Papers | ||||||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
KXG38367 | Sorghum | plasma membrane | 86.04 | 88.44 |
Zm00001d032745_P001 | Maize | plasma membrane | 84.13 | 86.26 |
TraesCS1A01G149700.1 | Wheat | plasma membrane | 71.53 | 73.58 |
HORVU1Hr1G039370.1 | Barley | plasma membrane | 71.21 | 73.38 |
TraesCS1D01G146900.1 | Wheat | plasma membrane | 70.89 | 72.99 |
Os10t0468500-01 | Rice | plasma membrane | 70.18 | 72.55 |
TraesCS1B01G167700.1 | Wheat | plasma membrane, plastid | 71.93 | 69.71 |
GSMUA_Achr5P20440_001 | Banana | plasma membrane, vacuole | 44.34 | 61.85 |
VIT_07s0005g04060.t01 | Wine grape | cytosol | 27.19 | 60.35 |
GSMUA_Achr9P18790_001 | Banana | plasma membrane | 41.79 | 60.02 |
VIT_07s0005g04020.t01 | Wine grape | plasma membrane | 50.88 | 52.34 |
VIT_07s0005g04100.t01 | Wine grape | plasma membrane | 48.33 | 52.06 |
VIT_07s0005g04050.t01 | Wine grape | plasma membrane | 50.4 | 51.85 |
Solyc09g072810.2.1 | Tomato | plasma membrane | 49.68 | 51.11 |
VIT_07s0005g04040.t01 | Wine grape | plasma membrane | 49.6 | 51.03 |
PGSC0003DMT400009696 | Potato | plasma membrane | 49.12 | 50.53 |
KRG95718 | Soybean | plasma membrane | 48.33 | 49.27 |
KRH67434 | Soybean | cytosol | 32.06 | 49.08 |
KRH67435 | Soybean | plasma membrane | 47.37 | 48.33 |
KRH67440 | Soybean | plasma membrane | 47.05 | 47.97 |
VIT_07s0005g04070.t01 | Wine grape | plasma membrane | 33.25 | 47.17 |
KRG95717 | Soybean | plasma membrane | 46.17 | 46.92 |
Zm00001d032747_P001 | Maize | cytosol, endoplasmic reticulum, plasma membrane, plastid | 21.53 | 44.7 |
Zm00001d000189_P001 | Maize | plasma membrane | 31.82 | 38.59 |
Zm00001d002712_P001 | Maize | plastid | 24.64 | 36.96 |
Protein Annotations
MapMan:18.4.1.12 | Gene3D:3.30.200.20 | Gene3D:3.80.10.10 | UniProt:A0A1D6GPR1 | ProteinID:AQK65158.1 | GO:GO:0000166 |
GO:GO:0003674 | GO:GO:0003824 | GO:GO:0004672 | GO:GO:0005488 | GO:GO:0005515 | GO:GO:0005524 |
GO:GO:0005575 | GO:GO:0006464 | GO:GO:0006468 | GO:GO:0008150 | GO:GO:0008152 | GO:GO:0009987 |
GO:GO:0016020 | GO:GO:0016021 | GO:GO:0016301 | GO:GO:0016310 | GO:GO:0016740 | GO:GO:0019538 |
InterPro:IPR000719 | InterPro:IPR001611 | InterPro:IPR032675 | InterPro:Kinase-like_dom_sf | InterPro:LRR_N_plant-typ | InterPro:LRR_dom_sf |
InterPro:Leu-rich_rpt | InterPro:Leu-rich_rpt_typical-subtyp | PFAM:PF00069 | PFAM:PF00560 | PFAM:PF07714 | PFAM:PF08263 |
PFAM:PF13855 | PRINTS:PR00019 | ScanProsite:PS00107 | ScanProsite:PS00109 | PFscan:PS50011 | PANTHER:PTHR27000 |
PANTHER:PTHR27000:SF227 | InterPro:Prot_kinase_dom | InterPro:Protein_kinase_ATP_BS | SMART:SM00220 | SMART:SM00369 | SUPFAM:SSF52047 |
SUPFAM:SSF52058 | SUPFAM:SSF56112 | InterPro:Ser-Thr/Tyr_kinase_cat_dom | SignalP:SignalP-noTM | TMHMM:TMhelix | InterPro:Tyr_kinase_AS |
UniParc:UPI0008424B8E | EnsemblPlantsGene:Zm00001d014063 | EnsemblPlants:Zm00001d014063_P001 | EnsemblPlants:Zm00001d014063_T001 | SEG:seg | : |
Description
MDIS1-interacting receptor like kinase 2
Coordinates
chr5:-:31173095..31176859
Molecular Weight (calculated)
134510.0 Da
IEP (calculated)
5.953
GRAVY (calculated)
0.016
Length
1254 amino acids
Sequence
(BLAST)
(BLAST)
0001: MPTPPSAPAR FLLASLLFAI LALAAVSANA AAPPSPAEAL LAWKSSLGDP AMLSTWTNAT QVSICTTWRG VACDAAGRVV SLRLRGLGLT GGLDALDPAA
0101: FPSLTSLDLK DNNLAGAIPP SLSQLRTLAT LDLGSNGLNG TIPPQLGDLS GLVELRLFNN NLAGAIPNQL SKLPKIVQMD LGSNYLTSVP FSPMPTVEFL
0201: SLSVNYINGS FPEFVLRSGN VTYLDLSQNG FSGPIPDALP ERLPNLRWLN LSANAFSGRI PASLARLTRL RDLHLGGNNL TGGVPDFLGS MSQLRVLELG
0301: SNPLGGALPP VLGQLKMLQQ LDVKNASLVS TLPPELGGLS NLDFLDLSIN QLYGSLPASF AGMQRMREFG ISSNNLTGEI PGQLFMSWPE LISFQVQTNS
0401: LRGKIPPELG KVTKIRFLYL FSNNLTGEIP SELGRLVNLV ELDLSVNSLI GPIPSTFGNL KQLTRLALFF NELTGKIPSE IGNMTALQTL DLNTNNLEGE
0501: LPPTISLLRN LQYLSVFDNN MTGTVPPDLG AGLALTDVSF ANNSFSGELP QRLCDGFALT NFTAHHNNFS GKLPPCLKNC SGLYRVRLEG NHFTGDISEA
0601: FGVHPIMDYL DISGNKLTGR LSDDWGQCTK LTRLKMDGNS ISGAIPEAFG NITSLQDLSL AANNLTGAIP PELGDLNFLF DLNLSHNSFS GPIPTSLGHS
0701: SKLQKVDLSE NMLNGTIPVS VGNLGSLTYL DLSKNKLSGQ IPSEIGNLFQ LQALLDLSSN SLSGPIPSNL VKLSNLQKLN LSRNELNGSI PASFSRMSSL
0801: ETVDFSYNQL TGEVPSGNVF QNSSAEAYIG NLGLCGDAQG IPSCGRSSSP PGHHERRLIA IVLSVVGTVL LAAIVVVACL ILACRRRPRE RKVLEASTSD
0901: PYESVIWEKG GNITFLDIVN ATDGFSEVFC IGKGGFGSVY KAELPGGQVV AVKRFHVAET GDISEASRKS FENEVRALTE VRHRNIVKLH GFCTSGGYMH
1001: LVYEYLERGS LGKTLYGEDG KRKLGWGTRV KVVQGVAHAL AYLHHDGSQP IVHRDITVSN ILLESEFEPR LSDFGTAKLL GSASTNWTSV AGSYGYMAPG
1101: NLECITPDLN WRNFNFQMFS SALTTEPPLA ELAYTMNVTE KCDVYSFGVV ALEVMMGKHP GDLLSSLPAI SSSSSGEGLL LQDILDQRLE PPTGDLAEQV
1201: VLVVRIALAC TRANPDSRPS MRSVAQEMSA RTQASHLSEP FRQITVSKLT DYQK
0101: FPSLTSLDLK DNNLAGAIPP SLSQLRTLAT LDLGSNGLNG TIPPQLGDLS GLVELRLFNN NLAGAIPNQL SKLPKIVQMD LGSNYLTSVP FSPMPTVEFL
0201: SLSVNYINGS FPEFVLRSGN VTYLDLSQNG FSGPIPDALP ERLPNLRWLN LSANAFSGRI PASLARLTRL RDLHLGGNNL TGGVPDFLGS MSQLRVLELG
0301: SNPLGGALPP VLGQLKMLQQ LDVKNASLVS TLPPELGGLS NLDFLDLSIN QLYGSLPASF AGMQRMREFG ISSNNLTGEI PGQLFMSWPE LISFQVQTNS
0401: LRGKIPPELG KVTKIRFLYL FSNNLTGEIP SELGRLVNLV ELDLSVNSLI GPIPSTFGNL KQLTRLALFF NELTGKIPSE IGNMTALQTL DLNTNNLEGE
0501: LPPTISLLRN LQYLSVFDNN MTGTVPPDLG AGLALTDVSF ANNSFSGELP QRLCDGFALT NFTAHHNNFS GKLPPCLKNC SGLYRVRLEG NHFTGDISEA
0601: FGVHPIMDYL DISGNKLTGR LSDDWGQCTK LTRLKMDGNS ISGAIPEAFG NITSLQDLSL AANNLTGAIP PELGDLNFLF DLNLSHNSFS GPIPTSLGHS
0701: SKLQKVDLSE NMLNGTIPVS VGNLGSLTYL DLSKNKLSGQ IPSEIGNLFQ LQALLDLSSN SLSGPIPSNL VKLSNLQKLN LSRNELNGSI PASFSRMSSL
0801: ETVDFSYNQL TGEVPSGNVF QNSSAEAYIG NLGLCGDAQG IPSCGRSSSP PGHHERRLIA IVLSVVGTVL LAAIVVVACL ILACRRRPRE RKVLEASTSD
0901: PYESVIWEKG GNITFLDIVN ATDGFSEVFC IGKGGFGSVY KAELPGGQVV AVKRFHVAET GDISEASRKS FENEVRALTE VRHRNIVKLH GFCTSGGYMH
1001: LVYEYLERGS LGKTLYGEDG KRKLGWGTRV KVVQGVAHAL AYLHHDGSQP IVHRDITVSN ILLESEFEPR LSDFGTAKLL GSASTNWTSV AGSYGYMAPG
1101: NLECITPDLN WRNFNFQMFS SALTTEPPLA ELAYTMNVTE KCDVYSFGVV ALEVMMGKHP GDLLSSLPAI SSSSSGEGLL LQDILDQRLE PPTGDLAEQV
1201: VLVVRIALAC TRANPDSRPS MRSVAQEMSA RTQASHLSEP FRQITVSKLT DYQK
0001: MGFAEKNLYD FRFLLFISII LSCSISASAT IAEANALLKW KSTFTNSSKL SSWVHDANTN TSFSCTSWYG VSCNSRGSIE ELNLTNTGIE GTFQDFPFIS
0101: LSNLAYVDLS MNLLSGTIPP QFGNLSKLIY FDLSTNHLTG EISPSLGNLK NLTVLYLHQN YLTSVIPSEL GNMESMTDLA LSQNKLTGSI PSSLGNLKNL
0201: MVLYLYENYL TGVIPPELGN MESMTDLALS QNKLTGSIPS TLGNLKNLMV LYLYENYLTG VIPPEIGNME SMTNLALSQN KLTGSIPSSL GNLKNLTLLS
0301: LFQNYLTGGI PPKLGNIESM IDLELSNNKL TGSIPSSLGN LKNLTILYLY ENYLTGVIPP ELGNMESMID LQLNNNKLTG SIPSSFGNLK NLTYLYLYLN
0401: YLTGVIPQEL GNMESMINLD LSQNKLTGSV PDSFGNFTKL ESLYLRVNHL SGAIPPGVAN SSHLTTLILD TNNFTGFFPE TVCKGRKLQN ISLDYNHLEG
0501: PIPKSLRDCK SLIRARFLGN KFTGDIFEAF GIYPDLNFID FSHNKFHGEI SSNWEKSPKL GALIMSNNNI TGAIPTEIWN MTQLVELDLS TNNLFGELPE
0601: AIGNLTNLSR LRLNGNQLSG RVPAGLSFLT NLESLDLSSN NFSSEIPQTF DSFLKLHDMN LSRNKFDGSI PRLSKLTQLT QLDLSHNQLD GEIPSQLSSL
0701: QSLDKLDLSH NNLSGLIPTT FEGMIALTNV DISNNKLEGP LPDTPTFRKA TADALEENIG LCSNIPKQRL KPCRELKKPK KNGNLVVWIL VPILGVLVIL
0801: SICANTFTYC IRKRKLQNGR NTDPETGENM SIFSVDGKFK YQDIIESTNE FDPTHLIGTG GYSKVYRANL QDTIIAVKRL HDTIDEEISK PVVKQEFLNE
0901: VKALTEIRHR NVVKLFGFCS HRRHTFLIYE YMEKGSLNKL LANDEEAKRL TWTKRINVVK GVAHALSYMH HDRITPIVHR DISSGNILLD NDYTAKISDF
1001: GTAKLLKTDS SNWSAVAGTY GYVAPEFAYT MKVTEKCDVY SFGVLILELI IGKHPGDLVS SLSSSPGEAL SLRSISDERV LEPRGQNREK LLKMVEMALL
1101: CLQANPESRP TMLSISTTFS
0101: LSNLAYVDLS MNLLSGTIPP QFGNLSKLIY FDLSTNHLTG EISPSLGNLK NLTVLYLHQN YLTSVIPSEL GNMESMTDLA LSQNKLTGSI PSSLGNLKNL
0201: MVLYLYENYL TGVIPPELGN MESMTDLALS QNKLTGSIPS TLGNLKNLMV LYLYENYLTG VIPPEIGNME SMTNLALSQN KLTGSIPSSL GNLKNLTLLS
0301: LFQNYLTGGI PPKLGNIESM IDLELSNNKL TGSIPSSLGN LKNLTILYLY ENYLTGVIPP ELGNMESMID LQLNNNKLTG SIPSSFGNLK NLTYLYLYLN
0401: YLTGVIPQEL GNMESMINLD LSQNKLTGSV PDSFGNFTKL ESLYLRVNHL SGAIPPGVAN SSHLTTLILD TNNFTGFFPE TVCKGRKLQN ISLDYNHLEG
0501: PIPKSLRDCK SLIRARFLGN KFTGDIFEAF GIYPDLNFID FSHNKFHGEI SSNWEKSPKL GALIMSNNNI TGAIPTEIWN MTQLVELDLS TNNLFGELPE
0601: AIGNLTNLSR LRLNGNQLSG RVPAGLSFLT NLESLDLSSN NFSSEIPQTF DSFLKLHDMN LSRNKFDGSI PRLSKLTQLT QLDLSHNQLD GEIPSQLSSL
0701: QSLDKLDLSH NNLSGLIPTT FEGMIALTNV DISNNKLEGP LPDTPTFRKA TADALEENIG LCSNIPKQRL KPCRELKKPK KNGNLVVWIL VPILGVLVIL
0801: SICANTFTYC IRKRKLQNGR NTDPETGENM SIFSVDGKFK YQDIIESTNE FDPTHLIGTG GYSKVYRANL QDTIIAVKRL HDTIDEEISK PVVKQEFLNE
0901: VKALTEIRHR NVVKLFGFCS HRRHTFLIYE YMEKGSLNKL LANDEEAKRL TWTKRINVVK GVAHALSYMH HDRITPIVHR DISSGNILLD NDYTAKISDF
1001: GTAKLLKTDS SNWSAVAGTY GYVAPEFAYT MKVTEKCDVY SFGVLILELI IGKHPGDLVS SLSSSPGEAL SLRSISDERV LEPRGQNREK LLKMVEMALL
1101: CLQANPESRP TMLSISTTFS
Arabidopsis Description
Probable leucine-rich repeat receptor-like protein kinase At1g35710 [Source:UniProtKB/Swiss-Prot;Acc:Q9LP24]
SUBAcon: [plasma membrane]
SUBAcon: [plasma membrane]
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.