Subcellular Localization
min:
: max
Winner_takes_all: plasma membrane
Predictor Summary:
Predictor Summary:
- extracellular 5
- golgi 5
- plasma membrane 8
- endoplasmic reticulum 5
- vacuole 5
Predictors | GFP | MS/MS | Papers | ||||||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
KRG99624 | Soybean | plasma membrane | 93.16 | 91.47 |
KRH73882 | Soybean | plasma membrane | 76.66 | 86.69 |
KRH14256 | Soybean | plasma membrane | 85.49 | 83.6 |
KRH73881 | Soybean | plasma membrane | 83.98 | 82.18 |
KRH73880 | Soybean | plasma membrane | 67.21 | 80.03 |
CDX82557 | Canola | plasma membrane | 27.31 | 79.48 |
CDY71198 | Canola | endoplasmic reticulum, mitochondrion, plasma membrane | 27.52 | 79.45 |
CDY51899 | Canola | endoplasmic reticulum, plasma membrane, vacuole | 29.3 | 78.68 |
CDX82552 | Canola | plasma membrane | 62.97 | 74.74 |
KRH46324 | Soybean | plasma membrane | 74.88 | 72.79 |
KRH46325 | Soybean | plasma membrane | 74.2 | 72.46 |
VIT_19s0015g00040.t01 | Wine grape | plasma membrane | 53.46 | 72.45 |
PGSC0003DMT400057099 | Potato | endoplasmic reticulum, plasma membrane | 64.2 | 71.06 |
KXG31741 | Sorghum | plasma membrane | 59.41 | 69.27 |
Bra001490.1-P | Field mustard | plasma membrane | 69.06 | 68.22 |
KRG98556 | Soybean | nucleus | 60.71 | 68.18 |
Bra001488.1-P | Field mustard | plasma membrane, plastid | 68.65 | 67.18 |
AT3G13080.1 | Thale cress | plasma membrane, plastid | 68.93 | 66.51 |
KRH01233 | Soybean | cytosol, endoplasmic reticulum, plasma membrane | 59.41 | 66.46 |
Bra039368.1-P | Field mustard | plasma membrane | 66.39 | 65.67 |
GSMUA_Achr10P... | Banana | plasma membrane | 56.26 | 64.12 |
TraesCS1A01G310100.1 | Wheat | cytosol | 32.92 | 63.79 |
OQU92792 | Sorghum | plasma membrane | 59.62 | 63.53 |
HORVU3Hr1G024210.3 | Barley | vacuole | 61.4 | 62.99 |
Os01t0173900-01 | Rice | plasma membrane | 63.38 | 61.53 |
TraesCS3D01G129900.2 | Wheat | plasma membrane | 62.56 | 61.06 |
TraesCS3A01G129000.1 | Wheat | plastid | 62.49 | 61.03 |
Zm00001d008733_P001 | Maize | plasma membrane | 62.56 | 61.01 |
TraesCS3B01G148100.2 | Wheat | plasma membrane, plastid | 62.63 | 61.0 |
Bra034706.1-P | Field mustard | plasma membrane | 61.26 | 60.76 |
TraesCS4B01G253200.1 | Wheat | plasma membrane | 61.19 | 60.32 |
TraesCS4D01G253300.3 | Wheat | plasma membrane | 61.26 | 60.31 |
TraesCS4A01G051100.1 | Wheat | plasma membrane | 61.33 | 60.22 |
TraesCS1D01G309600.1 | Wheat | peroxisome | 52.84 | 60.12 |
TraesCS1B01G321200.1 | Wheat | peroxisome | 52.77 | 60.05 |
AT3G13100.1 | Thale cress | plasma membrane | 61.26 | 59.95 |
TraesCS2D01G420400.1 | Wheat | plasma membrane | 52.64 | 59.94 |
Os02t0288400-00 | Rice | plasma membrane | 52.7 | 59.88 |
TraesCS3B01G395000.2 | Wheat | plasma membrane | 59.96 | 59.67 |
CDY63884 | Canola | plasma membrane | 50.24 | 59.63 |
TraesCS3D01G356300.2 | Wheat | plasma membrane | 59.96 | 59.55 |
TraesCS2B01G442400.1 | Wheat | plasma membrane | 51.4 | 59.51 |
HORVU3Hr1G085890.7 | Barley | plasma membrane | 59.69 | 59.36 |
CDY43395 | Canola | plasma membrane | 59.0 | 58.84 |
Zm00001d048327_P001 | Maize | cytosol | 1.64 | 58.54 |
Bra039348.1-P | Field mustard | plasma membrane | 58.59 | 58.51 |
KXG40096 | Sorghum | plasma membrane | 60.03 | 58.04 |
Zm00001d020666_P004 | Maize | plasma membrane | 51.95 | 57.63 |
TraesCS3A01G362500.1 | Wheat | plasma membrane | 56.81 | 57.6 |
Zm00001d048329_P003 | Maize | plasma membrane | 59.82 | 57.54 |
CDY44021 | Canola | plastid | 58.38 | 49.22 |
CDY23565 | Canola | plastid | 58.11 | 48.88 |
KRH19633 | Soybean | plasma membrane | 49.69 | 47.86 |
KRH48930 | Soybean | endoplasmic reticulum | 48.8 | 47.44 |
KRH67468 | Soybean | endoplasmic reticulum, plasma membrane, vacuole | 49.28 | 46.78 |
KRG95750 | Soybean | plasma membrane | 49.21 | 46.78 |
KRH66359 | Soybean | plasma membrane | 47.98 | 46.06 |
KRH58734 | Soybean | plasma membrane | 44.42 | 44.7 |
KRH42626 | Soybean | plasma membrane | 44.35 | 44.54 |
KRG91620 | Soybean | plasma membrane | 37.78 | 44.52 |
KRH35194 | Soybean | endoplasmic reticulum, nucleus, plasma membrane | 39.77 | 39.28 |
KRH47149 | Soybean | plasma membrane | 38.95 | 38.87 |
KRH08764 | Soybean | plasma membrane | 38.74 | 38.22 |
KRH31883 | Soybean | plastid | 38.74 | 37.71 |
KRH08755 | Soybean | plasma membrane | 38.74 | 37.66 |
KRG96433 | Soybean | endoplasmic reticulum | 38.67 | 37.57 |
KRH12057 | Soybean | endoplasmic reticulum | 37.99 | 36.98 |
KRH37107 | Soybean | endoplasmic reticulum | 37.71 | 36.59 |
KRH23646 | Soybean | plasma membrane | 27.99 | 27.86 |
KRH21096 | Soybean | endoplasmic reticulum | 30.6 | 27.59 |
KRH11151 | Soybean | plasma membrane | 30.39 | 27.41 |
Protein Annotations
Gene3D:1.20.1560.10 | MapMan:24.1.3.1.2 | Gene3D:3.40.50.300 | UniProt:A0A0R0J0B4 | InterPro:AAA+_ATPase | InterPro:ABC1_TM_dom |
InterPro:ABC1_TM_sf | InterPro:ABC_transporter-like | InterPro:ABC_transporter_CS | EMBL:ACUP02005352 | EnsemblPlantsGene:GLYMA_08G347000 | GO:GO:0000166 |
GO:GO:0000325 | GO:GO:0003674 | GO:GO:0003824 | GO:GO:0005215 | GO:GO:0005488 | GO:GO:0005524 |
GO:GO:0005575 | GO:GO:0005622 | GO:GO:0005623 | GO:GO:0005737 | GO:GO:0005773 | GO:GO:0005774 |
GO:GO:0006810 | GO:GO:0008150 | GO:GO:0016020 | GO:GO:0016021 | GO:GO:0016787 | GO:GO:0016887 |
GO:GO:0042626 | GO:GO:0055085 | InterPro:IPR003439 | InterPro:IPR011527 | InterPro:IPR036640 | EnsemblPlants:KRH46626 |
ProteinID:KRH46626 | ProteinID:KRH46626.1 | InterPro:P-loop_NTPase | PFAM:PF00005 | PFAM:PF00664 | ScanProsite:PS00211 |
PFscan:PS50893 | PFscan:PS50929 | PANTHER:PTHR24223 | PANTHER:PTHR24223:SF181 | SMART:SM00382 | SUPFAM:SSF52540 |
SUPFAM:SSF90123 | SignalP:SignalP-noTM | TMHMM:TMhelix | UniParc:UPI0006ED8621 | SEG:seg | : |
Description
hypothetical protein
Coordinates
chr8:+:46168222..46173955
Molecular Weight (calculated)
163446.0 Da
IEP (calculated)
6.046
GRAVY (calculated)
0.164
Length
1461 amino acids
Sequence
(BLAST)
(BLAST)
0001: MFYVFLHALS ASIHLLFLAA SSLSWLWNKV TLTPTTREEH SKEEKHNSNN NNTIFKTTVF CSLALSVFSF VLCLFNYFYW YTSGWSEQNV STLLDLALKT
0101: LAWGVVSVSL LKGFSFVLFF SEEEKRFRFS FFFRAWCTFY LVFSCYSFVV DIVVLSKRPI QYLVSDAVST CAGLFFCFVA YFVKNKGHVN GIEEPLLNGD
0201: ANVGNEKEAT GGDTVTPFSH AGVFSILTFS WVGPLVAVGN KKTLDLDDVP QLDTRDSVVG AFPSFRDKLE ADSDANAINS ITTLKLVKNL VKSFLALLNT
0301: LASFIGPYLI DAFVQYLDGR RQYENQGYVL VFVFFFAKIV ECLSQRHWFF RLQQIGIRMR ALLVTMIYNK ALTLSCQSKQ GHTSGEIINF MTVDAERVGN
0401: FSWYMHDLWM VALQVVLALL ILYKNLGLAS IAALVATFVV MLANVPLGSL QEKFQNKLME SKDTRMKATS EILRNMRILK LQGWEMKFLS KITELRKTEQ
0501: GWLTKYVYTT AMTTFVFWGA PTFISVVTIG ACMLIGVPLE SGKILSALAT FRILQEPIYN LPDTISMIAQ TKVSLDRISS FLRLDDLRSD VVEKLPRGSS
0601: DTAIEVIDGN FSWDLSSPNP TLQNINLKVF HGMRVAVCGT VGSGKSTLLS CVLGEVPKIS GILKVCGTKA YVAQSPWVQS GKIEDNILFG EHMDRERYEK
0701: VLEACSLKKD LEIFSFGDQT VIGERGINLS GGQKQRIQIA RALYQDADIY LFDDPFSAVD AHTGSHLFKE CLLGLLSSKT VVYVTHQVEF LPAADLILYA
0801: DLLNSGTDFM ELVGAHKEAL STLDSLDGLA TSNEISTLEQ DLNVSSTHGF KEKEASKDEP KGQLVQEEER EKGKVGFWVY WNYITTAYGG ALVPFILLAQ
0901: ILFEALQIGS NYWMAWATPI STDVEPPVGG STLIVIYVGL AVGSSFCVLV RSMLLVTVGY KTTTVLFNKM HLCIFRAPMS FFDSTPSGRV LNRASTDQST
1001: VDTDIPYQIG SFAFSMIQLL GIIAVMSQVA WQVFIVFIPV IAVRIWYQQY YIPSARELSR LVGVCKAPII QHFAETISGT STIRSFDHQS RFQETNMKLT
1101: DGYSRPKFNI VGAMEWLCFR LDMLSSITFA FSLIFLISIP PGIIDPGIAG LAVTYGLNLN MIQAWMIWNL CNLENKIISV ERILQYTIIP NGPPLVVEDN
1201: RPDPSWPSYG EVDIQDLQVC YDPHLPLVLR GLTCKFYGGM KTGIVGRTGS GKSTLIQTLF RIVEPTSGQI MIDNFNISSI GLHDLRSRLS IIPQDPTMFE
1301: GTVRNNLDPL EEYTDEQIWE ALDKCQLGDE VRKKDGKLDS TVSENGENWS MGQRQLVCLG RVLLKKSKIL VLDEATASVD TATDNLIQQT LRQHFSASTV
1401: ITIAHRITSV IDSDMVLLLN QGLIEEYDTP TTLLENKSSF AQLVAEYTMR SKSSFEKSVD H
0101: LAWGVVSVSL LKGFSFVLFF SEEEKRFRFS FFFRAWCTFY LVFSCYSFVV DIVVLSKRPI QYLVSDAVST CAGLFFCFVA YFVKNKGHVN GIEEPLLNGD
0201: ANVGNEKEAT GGDTVTPFSH AGVFSILTFS WVGPLVAVGN KKTLDLDDVP QLDTRDSVVG AFPSFRDKLE ADSDANAINS ITTLKLVKNL VKSFLALLNT
0301: LASFIGPYLI DAFVQYLDGR RQYENQGYVL VFVFFFAKIV ECLSQRHWFF RLQQIGIRMR ALLVTMIYNK ALTLSCQSKQ GHTSGEIINF MTVDAERVGN
0401: FSWYMHDLWM VALQVVLALL ILYKNLGLAS IAALVATFVV MLANVPLGSL QEKFQNKLME SKDTRMKATS EILRNMRILK LQGWEMKFLS KITELRKTEQ
0501: GWLTKYVYTT AMTTFVFWGA PTFISVVTIG ACMLIGVPLE SGKILSALAT FRILQEPIYN LPDTISMIAQ TKVSLDRISS FLRLDDLRSD VVEKLPRGSS
0601: DTAIEVIDGN FSWDLSSPNP TLQNINLKVF HGMRVAVCGT VGSGKSTLLS CVLGEVPKIS GILKVCGTKA YVAQSPWVQS GKIEDNILFG EHMDRERYEK
0701: VLEACSLKKD LEIFSFGDQT VIGERGINLS GGQKQRIQIA RALYQDADIY LFDDPFSAVD AHTGSHLFKE CLLGLLSSKT VVYVTHQVEF LPAADLILYA
0801: DLLNSGTDFM ELVGAHKEAL STLDSLDGLA TSNEISTLEQ DLNVSSTHGF KEKEASKDEP KGQLVQEEER EKGKVGFWVY WNYITTAYGG ALVPFILLAQ
0901: ILFEALQIGS NYWMAWATPI STDVEPPVGG STLIVIYVGL AVGSSFCVLV RSMLLVTVGY KTTTVLFNKM HLCIFRAPMS FFDSTPSGRV LNRASTDQST
1001: VDTDIPYQIG SFAFSMIQLL GIIAVMSQVA WQVFIVFIPV IAVRIWYQQY YIPSARELSR LVGVCKAPII QHFAETISGT STIRSFDHQS RFQETNMKLT
1101: DGYSRPKFNI VGAMEWLCFR LDMLSSITFA FSLIFLISIP PGIIDPGIAG LAVTYGLNLN MIQAWMIWNL CNLENKIISV ERILQYTIIP NGPPLVVEDN
1201: RPDPSWPSYG EVDIQDLQVC YDPHLPLVLR GLTCKFYGGM KTGIVGRTGS GKSTLIQTLF RIVEPTSGQI MIDNFNISSI GLHDLRSRLS IIPQDPTMFE
1301: GTVRNNLDPL EEYTDEQIWE ALDKCQLGDE VRKKDGKLDS TVSENGENWS MGQRQLVCLG RVLLKKSKIL VLDEATASVD TATDNLIQQT LRQHFSASTV
1401: ITIAHRITSV IDSDMVLLLN QGLIEEYDTP TTLLENKSSF AQLVAEYTMR SKSSFEKSVD H
0001: MDFLGSTTGS GTLAMLFSFS ESILPLDSRS FLLKPLFLRW LSGFLHSVLL LVLFFSWVRK KIRGDSGVTE SLKDRRDFGF KSALFCSLAL SLLNLVLMSL
0101: SGFYWYESGW LDNEQLVSSL GFLLGMVSWG VLSICLHRCR DCEHKKAPFL LRLWLVFYLV VSCYSLVVDF VMYERRETVP VHLLVFDIVA FIAAVFLGYV
0201: AVLKKDRSNS NGVLEEPLLN GGDSRVGGDD SVELNKTNGS GEATPYSRAG ILSLLTFSWM SPLIDIGNKK TLDLEDVPQL HDTDSVVGLA PKFRSMLESP
0301: DGGERSGVTT FKLIKALYFT AQWEILVTAF FAFIYTVASY VGPALIDTFV QYLNGRRQYN HEGYVLVITF FAAKIVECLS QRHWFFRLQK VGIRMRSALV
0401: AMIYEKGLTL SCQSKQGRTS GEIINFMTVD AERIGNFSWY MHDPWMVLLQ VGLALWILYR NLGLASIAAL VATIIVMLIN FPFGRMQERF QEKLMEAKDS
0501: RMKSTSEILR NMRILKLQGW EMKFLSKIFD LRKSEEGWLK KYVYNSAVIS FVFWGAPTLV SVSTFGACIL LGIPLESGKI LSALATFRIL QEPIYNLPDT
0601: ISMIVQTKVS LDRLASYLCL DNLQPDIVER LPKGSSDVAV EVINSTLSWD VSSSNPTLKD INFKVFPGMK VAVCGTVGSG KSSLLSSLLG EVPKVSGSLK
0701: VCGTKAYVAQ SPWIQSGKIE DNILFGKPME RERYDKVLEA CSLSKDLEIL SFGDQTVIGE RGINLSGGQK QRIQIARALY QDADIYLFDD PFSAVDAHTG
0801: SHLFKEVLLG LLCSKSVIYV THQVEFLPAA DLILVMKDGR ISQAGKYNDI LNSGTDFMEL IGAHQEALAV VDSVDANSVS EKSALGQENV IVKDAIAVDE
0901: KLESQDLKND KLESVEPQRQ IIQEEEREKG SVALDVYWKY ITLAYGGALV PFILLGQVLF QLLQIGSNYW MAWATPVSED VQAPVKLSTL MIVYVALAFG
1001: SSLCILLRAT LLVTAGYKTA TELFHKMHHC IFRSPMSFFD STPSGRIMSR ASTDQSAVDL ELPYQFGSVA ITVIQLIGII GVMSQVSWLV FLVFIPVVAA
1101: SIWYQRYYIA AARELSRLVG VCKAPLIQHF SETISGATTI RSFSQEFRFR SDNMRLSDGY SRPKFYTAGA MEWLCFRLDM LSSLTFVFSL VFLVSIPTGV
1201: IDPSLAGLAV TYGLSLNTLQ AWLIWTLCNL ENKIISVERI LQYASVPSEP PLVIESNRPE QSWPSRGEVE IRDLQVRYAP HMPLVLRGIT CTFKGGLRTG
1301: IVGRTGSGKS TLIQTLFRIV EPSAGEIRID GVNILTIGLH DLRLRLSIIP QDPTMFEGTM RSNLDPLEEY TDDQIWEALD KCQLGDEVRK KEQKLDSSVS
1401: ENGDNWSMGQ RQLVCLGRVL LKRSKILVLD EATASVDTAT DNLIQKTLRE HFSDCTVITI AHRISSVIDS DMVLLLSNGI IEEYDTPVRL LEDKSSSFSK
1501: LVAEYTSRSS SSFD
0101: SGFYWYESGW LDNEQLVSSL GFLLGMVSWG VLSICLHRCR DCEHKKAPFL LRLWLVFYLV VSCYSLVVDF VMYERRETVP VHLLVFDIVA FIAAVFLGYV
0201: AVLKKDRSNS NGVLEEPLLN GGDSRVGGDD SVELNKTNGS GEATPYSRAG ILSLLTFSWM SPLIDIGNKK TLDLEDVPQL HDTDSVVGLA PKFRSMLESP
0301: DGGERSGVTT FKLIKALYFT AQWEILVTAF FAFIYTVASY VGPALIDTFV QYLNGRRQYN HEGYVLVITF FAAKIVECLS QRHWFFRLQK VGIRMRSALV
0401: AMIYEKGLTL SCQSKQGRTS GEIINFMTVD AERIGNFSWY MHDPWMVLLQ VGLALWILYR NLGLASIAAL VATIIVMLIN FPFGRMQERF QEKLMEAKDS
0501: RMKSTSEILR NMRILKLQGW EMKFLSKIFD LRKSEEGWLK KYVYNSAVIS FVFWGAPTLV SVSTFGACIL LGIPLESGKI LSALATFRIL QEPIYNLPDT
0601: ISMIVQTKVS LDRLASYLCL DNLQPDIVER LPKGSSDVAV EVINSTLSWD VSSSNPTLKD INFKVFPGMK VAVCGTVGSG KSSLLSSLLG EVPKVSGSLK
0701: VCGTKAYVAQ SPWIQSGKIE DNILFGKPME RERYDKVLEA CSLSKDLEIL SFGDQTVIGE RGINLSGGQK QRIQIARALY QDADIYLFDD PFSAVDAHTG
0801: SHLFKEVLLG LLCSKSVIYV THQVEFLPAA DLILVMKDGR ISQAGKYNDI LNSGTDFMEL IGAHQEALAV VDSVDANSVS EKSALGQENV IVKDAIAVDE
0901: KLESQDLKND KLESVEPQRQ IIQEEEREKG SVALDVYWKY ITLAYGGALV PFILLGQVLF QLLQIGSNYW MAWATPVSED VQAPVKLSTL MIVYVALAFG
1001: SSLCILLRAT LLVTAGYKTA TELFHKMHHC IFRSPMSFFD STPSGRIMSR ASTDQSAVDL ELPYQFGSVA ITVIQLIGII GVMSQVSWLV FLVFIPVVAA
1101: SIWYQRYYIA AARELSRLVG VCKAPLIQHF SETISGATTI RSFSQEFRFR SDNMRLSDGY SRPKFYTAGA MEWLCFRLDM LSSLTFVFSL VFLVSIPTGV
1201: IDPSLAGLAV TYGLSLNTLQ AWLIWTLCNL ENKIISVERI LQYASVPSEP PLVIESNRPE QSWPSRGEVE IRDLQVRYAP HMPLVLRGIT CTFKGGLRTG
1301: IVGRTGSGKS TLIQTLFRIV EPSAGEIRID GVNILTIGLH DLRLRLSIIP QDPTMFEGTM RSNLDPLEEY TDDQIWEALD KCQLGDEVRK KEQKLDSSVS
1401: ENGDNWSMGQ RQLVCLGRVL LKRSKILVLD EATASVDTAT DNLIQKTLRE HFSDCTVITI AHRISSVIDS DMVLLLSNGI IEEYDTPVRL LEDKSSSFSK
1501: LVAEYTSRSS SSFD
Arabidopsis Description
ABCC3MRP3 [Source:UniProtKB/TrEMBL;Acc:A0A178VHA7]
SUBAcon: [plasma membrane,plastid]
SUBAcon: [plasma membrane,plastid]
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.