Subcellular Localization
min:
: max
Winner_takes_all: mitochondrion
Predictor Summary:
Predictor Summary:
- plastid 1
- mitochondrion 3
- plasma membrane 2
- cytosol 1
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
PGSC0003DMT400012383 | Potato | cytosol | 98.76 | 98.76 |
Solyc12g044920.1.1 | Tomato | mitochondrion | 81.95 | 82.35 |
Solyc03g121810.2.1 | Tomato | mitochondrion | 79.72 | 79.92 |
VIT_09s0002g01730.t01 | Wine grape | mitochondrion | 79.14 | 78.11 |
GSMUA_Achr7P09160_001 | Banana | mitochondrion | 66.03 | 76.58 |
KRH23275 | Soybean | mitochondrion | 76.67 | 75.98 |
KRH44107 | Soybean | mitochondrion | 76.83 | 75.71 |
KRH10041 | Soybean | mitochondrion | 76.17 | 75.49 |
Os06t0565900-01 | Rice | plasma membrane | 40.23 | 74.85 |
KRH47082 | Soybean | mitochondrion | 75.93 | 74.82 |
GSMUA_Achr10P... | Banana | mitochondrion, plasma membrane | 67.11 | 74.34 |
GSMUA_Achr7P13550_001 | Banana | mitochondrion, plasma membrane | 65.13 | 73.9 |
Bra030991.1-P | Field mustard | mitochondrion | 73.87 | 73.56 |
CDY21747 | Canola | mitochondrion, plasma membrane | 73.78 | 73.48 |
CDX81828 | Canola | mitochondrion, plasma membrane | 73.62 | 73.32 |
AT1G17500.1 | Thale cress | mitochondrion, plasma membrane | 73.12 | 72.94 |
Zm00001d036968_P010 | Maize | mitochondrion, plasma membrane | 72.88 | 72.58 |
TraesCS7D01G362300.1 | Wheat | mitochondrion | 72.79 | 72.56 |
Bra016040.1-P | Field mustard | mitochondrion | 73.21 | 72.43 |
TraesCS7A01G360700.2 | Wheat | mitochondrion | 72.63 | 72.39 |
CDX96429 | Canola | mitochondrion | 73.12 | 72.35 |
Zm00001d046194_P003 | Maize | mitochondrion, plasma membrane | 73.29 | 72.34 |
OQU76591 | Sorghum | mitochondrion, plasma membrane | 72.79 | 72.32 |
CDX72937 | Canola | mitochondrion, plasma membrane | 72.79 | 71.91 |
AT1G72700.2 | Thale cress | mitochondrion, plasma membrane | 72.71 | 71.82 |
CDY08221 | Canola | mitochondrion | 72.63 | 71.74 |
CDY49858 | Canola | mitochondrion, plasma membrane | 69.66 | 71.73 |
HORVU7Hr1G087590.10 | Barley | mitochondrion | 72.63 | 71.68 |
AT3G13900.1 | Thale cress | mitochondrion, plasma membrane | 73.45 | 71.68 |
AT1G54280.3 | Thale cress | mitochondrion | 73.21 | 71.61 |
CDY26129 | Canola | mitochondrion | 72.47 | 71.58 |
CDY55204 | Canola | mitochondrion | 72.79 | 71.5 |
GSMUA_Achr2P19460_001 | Banana | mitochondrion, plasma membrane | 58.86 | 71.47 |
GSMUA_Achr6P00940_001 | Banana | mitochondrion, plasma membrane | 63.15 | 71.19 |
CDY53865 | Canola | mitochondrion, plasma membrane | 69.58 | 71.1 |
CDY02467 | Canola | mitochondrion | 72.79 | 71.09 |
Bra008042.1-P | Field mustard | mitochondrion, plasma membrane | 69.58 | 71.04 |
CDY10603 | Canola | mitochondrion | 72.71 | 71.01 |
Bra014364.1-P | Field mustard | mitochondrion | 72.38 | 70.92 |
TraesCS7B01G267000.2 | Wheat | mitochondrion | 72.71 | 70.28 |
VIT_13s0074g00480.t01 | Wine grape | plasma membrane | 31.99 | 64.13 |
Solyc02g069430.2.1 | Tomato | plasma membrane | 24.24 | 59.76 |
Solyc04g006940.2.1 | Tomato | nucleus | 57.05 | 58.05 |
Solyc02g086800.2.1 | Tomato | plasma membrane | 54.0 | 55.74 |
Solyc02g069420.2.1 | Tomato | cytosol, mitochondrion, plasma membrane, plastid | 34.79 | 52.55 |
Solyc12g062510.1.1 | Tomato | cytosol | 5.85 | 49.65 |
Solyc01g011100.2.1 | Tomato | plasma membrane | 34.54 | 41.69 |
Solyc05g006640.2.1 | Tomato | plasma membrane, plastid | 41.96 | 41.69 |
Solyc01g011090.2.1 | Tomato | plastid | 8.33 | 40.56 |
Solyc11g017170.1.1 | Tomato | plasma membrane | 22.59 | 33.7 |
Solyc01g096930.2.1 | Tomato | plastid | 31.49 | 32.59 |
Solyc10g074940.1.1 | Tomato | cytosol, nucleus, peroxisome, plastid | 33.22 | 30.44 |
Solyc11g017190.1.1 | Tomato | golgi, peroxisome, plasma membrane | 6.35 | 22.19 |
Protein Annotations
Description
Phospholipid-transporting ATPase [Source:UniProtKB/TrEMBL;Acc:K4C709]
Coordinates
chr6:+:39605246..39611196
Molecular Weight (calculated)
138069.0 Da
IEP (calculated)
7.907
GRAVY (calculated)
-0.080
Length
1213 amino acids
Sequence
(BLAST)
(BLAST)
0001: MARGSSKRAK IQWSNLYTFG CYRPRTDEEE GPHRLGAGFS RVVHCNQSHL HEKKPFKYRT NYISTTKYNF ITFLPKATFE QFRRVANLYF LLAAILSATT
0101: NLSPFSSVSM IAPLVFVVGL SMAKEALEDS RRFIQDMKVN LRKARLRKEG GVFGLRPWMK IRVGDIVKVE KDQFFPADLL LLSSSYQDGI CYVETMNLDG
0201: ETNLKVKRAL EVTLPLDDNE AFKEFRATIR CEDPNPNLYT FVGNLEYDRQ IYPIDPTQIL LRDSKLRNTA YIYGVVIFTG HDSKVMQNST ESPSKRSRIE
0301: LQMDKIIYVL FTLLVVISFI SSIGFAVKTR LNMPSWWYMQ PLDKNNNTTD PNRPELSAIF HLITALILYG YLIPISLYVS IEVVKVLQAL FINQDINMYD
0401: DETGTPAQAR TSNLNEELGQ VDTILSDKTG TLTCNQMDFL KCSIAGSAYG TRASDVELAA AKQMAEDLGG QDPDISRRRS SEIELERVVT SKDEIRPAIK
0501: GFSFEDSRLM KGNWMKEPNA DVILLFFRIL SLCHTAIPEL NEETGSYNFE AESPDEAAFL VAAREFGFEF CKRTQSRVYI REKYPSFQEP TEREFKVLNL
0601: LDFTSKRKRM SVIIRDERGQ ILLLCKGADS IVYERLAKNG RRFEEATTKH LNEYGEAGLR TLVLAYKKLD EAEYSAWNEE FAKAKASISG DRDAMLERLS
0701: DMMEKELILV GATAVEDKLQ KGVPQCIDKL AQAGLKIWVL TGDKMETAIN IGYACSLLRH GMRQICITAM NADSVERNSE QAIRENILMQ ITNASQMIKL
0801: EKDPHAAFAL IIDGKTLTYA LAYDMKHHFL NLAVSCASVI CCRVSPKQKA LVTRLVKEGT GKTTLAIGDG ANDVGMIQEA DIGVGISGAE GMQAVMASDF
0901: AIAQFRFLER LLVVHGHWCY KRIAQMICYF FYKNIAFGLT LFYFEAFAGF SGQSVYDDSY MILFNVILTS LPVIALGVFE QDVPSEVCLQ FPALYQQGPK
1001: NLFFDWYRIF GWLGNGVYTS LIVFFLNIII FYDQAFRAEG QTADLTAMGT TMFTCIVWAV NCQIALTMSH FTWIQHIFIW GSIASWYLFL LIYGMIAPDY
1101: SKYAFRILVE ALAPAPVYWS TTLLVIVVCT LPYLAHISYQ RSFNPMDHHI IQEIIYYKKD VKDHHMWKRE RSKARQSTNI GFTARVDAKI RQLRGRLHKK
1201: YTSMGSQIEL TQP
0101: NLSPFSSVSM IAPLVFVVGL SMAKEALEDS RRFIQDMKVN LRKARLRKEG GVFGLRPWMK IRVGDIVKVE KDQFFPADLL LLSSSYQDGI CYVETMNLDG
0201: ETNLKVKRAL EVTLPLDDNE AFKEFRATIR CEDPNPNLYT FVGNLEYDRQ IYPIDPTQIL LRDSKLRNTA YIYGVVIFTG HDSKVMQNST ESPSKRSRIE
0301: LQMDKIIYVL FTLLVVISFI SSIGFAVKTR LNMPSWWYMQ PLDKNNNTTD PNRPELSAIF HLITALILYG YLIPISLYVS IEVVKVLQAL FINQDINMYD
0401: DETGTPAQAR TSNLNEELGQ VDTILSDKTG TLTCNQMDFL KCSIAGSAYG TRASDVELAA AKQMAEDLGG QDPDISRRRS SEIELERVVT SKDEIRPAIK
0501: GFSFEDSRLM KGNWMKEPNA DVILLFFRIL SLCHTAIPEL NEETGSYNFE AESPDEAAFL VAAREFGFEF CKRTQSRVYI REKYPSFQEP TEREFKVLNL
0601: LDFTSKRKRM SVIIRDERGQ ILLLCKGADS IVYERLAKNG RRFEEATTKH LNEYGEAGLR TLVLAYKKLD EAEYSAWNEE FAKAKASISG DRDAMLERLS
0701: DMMEKELILV GATAVEDKLQ KGVPQCIDKL AQAGLKIWVL TGDKMETAIN IGYACSLLRH GMRQICITAM NADSVERNSE QAIRENILMQ ITNASQMIKL
0801: EKDPHAAFAL IIDGKTLTYA LAYDMKHHFL NLAVSCASVI CCRVSPKQKA LVTRLVKEGT GKTTLAIGDG ANDVGMIQEA DIGVGISGAE GMQAVMASDF
0901: AIAQFRFLER LLVVHGHWCY KRIAQMICYF FYKNIAFGLT LFYFEAFAGF SGQSVYDDSY MILFNVILTS LPVIALGVFE QDVPSEVCLQ FPALYQQGPK
1001: NLFFDWYRIF GWLGNGVYTS LIVFFLNIII FYDQAFRAEG QTADLTAMGT TMFTCIVWAV NCQIALTMSH FTWIQHIFIW GSIASWYLFL LIYGMIAPDY
1101: SKYAFRILVE ALAPAPVYWS TTLLVIVVCT LPYLAHISYQ RSFNPMDHHI IQEIIYYKKD VKDHHMWKRE RSKARQSTNI GFTARVDAKI RQLRGRLHKK
1201: YTSMGSQIEL TQP
0001: MARRRIRSRI RKSHFYTFRC LRPKTLDDQG PHVINGPGYT RIVHCNQPHL HLATKLIRYR SNYVSTTRYN LLTFLPKCLY EQFHRVANFY FLVAAILSVF
0101: PLSPFNKWSM IAPLVFVVGL SMGKEALEDW RRFMQDVEVN SRKASVHKGS GDFGRRTWKR IRVGDIVRVE KDEFFPADLL LLSSSYEDGI CYVETMNLDG
0201: ETNLKVKRCL DATLALEKDE SFQNFSGTIK CEDPNPNLYT FVGNLECDGQ VYPLDPNQIL LRDSKLRNTA YVYGVVVFTG HDTKVMQNST KSPSKRSRIE
0301: KRMDYIIYTL FALLLTVSFI SSLGFAVMTK LLMAEWWYLR PDKPESLTNP TNPLYAWVVH LITALLLYGY LIPISLYVSI EVVKVLQAHF INQDLQLYDS
0401: ESGTPAQART SNLNEELGQV DTILSDKTGT LTCNQMDFLK CSIAGTSYGV RASEVELAAA KQMAMDLEEK GEEVANLSMN KGRTQRYAKL ASKTSSDFEL
0501: ETVVTASDEK DQKQNTGVKG FSFEDNRLMN ENWLNEPNSD DILMFFRILA VCHTAIPEVD EDTGMCTYEA ESPDEVAFLV ASREFGFEFT KRTQSSVFIA
0601: ERFSSSGQPV DREYKILNLL DFTSKRKRMS AIVRDEEGQI LLLCKGADSI IFERLSKSGK EYLGATSKHL NVYGEAGLRT LALGYRKLDE TEYAAWNSEF
0701: HKAKTSVGAD RDEMLEKVSD MMEKELILVG ATAVEDKLQK GVPQCIDNLA QAGLKIWVLT GDKMETAINI GYACSLLRQG MKQISISLTN VEESSQNSEA
0801: AAKESILMQI TNASQMIKIE KDPHAAFALI IDGKTLTYAL KDDVKYQFLA LAVDCASVIC CRVSPKQKAL VTRLAKEGTG KTTLAIGDGA NDVGMIQEAD
0901: IGVGISGVEG MQAVMASDFS IAQFRFLERL LVVHGHWCYK RIAQMICYFF YKNITFGLTL FYFECFTGFS GQSIYNDSYL LLFNVVLTSL PVISLGVFEQ
1001: DVPSDVCLQF PALYQQGPKN LFFDWYRILG WMGNGVYASI VIFTLNLGIF HVQSFRSDGQ TADMNAMGTA MFTCIIWAVN VQIALTMSHF TWIQHVMIWG
1101: SIGAWYVFLA LYGMLPVKLS GNIFHMLVEI LAPAPIFWLT SLLVIAATTL PYLFHISYQR SVNPLDHHII QEIKHFRIDV EDERMWKREK SKAREKTKIG
1201: FTARVDAKIR QLRGRLQRKH SVLSVMSGTS SNDTPSSNSQ
0101: PLSPFNKWSM IAPLVFVVGL SMGKEALEDW RRFMQDVEVN SRKASVHKGS GDFGRRTWKR IRVGDIVRVE KDEFFPADLL LLSSSYEDGI CYVETMNLDG
0201: ETNLKVKRCL DATLALEKDE SFQNFSGTIK CEDPNPNLYT FVGNLECDGQ VYPLDPNQIL LRDSKLRNTA YVYGVVVFTG HDTKVMQNST KSPSKRSRIE
0301: KRMDYIIYTL FALLLTVSFI SSLGFAVMTK LLMAEWWYLR PDKPESLTNP TNPLYAWVVH LITALLLYGY LIPISLYVSI EVVKVLQAHF INQDLQLYDS
0401: ESGTPAQART SNLNEELGQV DTILSDKTGT LTCNQMDFLK CSIAGTSYGV RASEVELAAA KQMAMDLEEK GEEVANLSMN KGRTQRYAKL ASKTSSDFEL
0501: ETVVTASDEK DQKQNTGVKG FSFEDNRLMN ENWLNEPNSD DILMFFRILA VCHTAIPEVD EDTGMCTYEA ESPDEVAFLV ASREFGFEFT KRTQSSVFIA
0601: ERFSSSGQPV DREYKILNLL DFTSKRKRMS AIVRDEEGQI LLLCKGADSI IFERLSKSGK EYLGATSKHL NVYGEAGLRT LALGYRKLDE TEYAAWNSEF
0701: HKAKTSVGAD RDEMLEKVSD MMEKELILVG ATAVEDKLQK GVPQCIDNLA QAGLKIWVLT GDKMETAINI GYACSLLRQG MKQISISLTN VEESSQNSEA
0801: AAKESILMQI TNASQMIKIE KDPHAAFALI IDGKTLTYAL KDDVKYQFLA LAVDCASVIC CRVSPKQKAL VTRLAKEGTG KTTLAIGDGA NDVGMIQEAD
0901: IGVGISGVEG MQAVMASDFS IAQFRFLERL LVVHGHWCYK RIAQMICYFF YKNITFGLTL FYFECFTGFS GQSIYNDSYL LLFNVVLTSL PVISLGVFEQ
1001: DVPSDVCLQF PALYQQGPKN LFFDWYRILG WMGNGVYASI VIFTLNLGIF HVQSFRSDGQ TADMNAMGTA MFTCIIWAVN VQIALTMSHF TWIQHVMIWG
1101: SIGAWYVFLA LYGMLPVKLS GNIFHMLVEI LAPAPIFWLT SLLVIAATTL PYLFHISYQR SVNPLDHHII QEIKHFRIDV EDERMWKREK SKAREKTKIG
1201: FTARVDAKIR QLRGRLQRKH SVLSVMSGTS SNDTPSSNSQ
Arabidopsis Description
ALA6Phospholipid-transporting ATPase 6 [Source:UniProtKB/Swiss-Prot;Acc:Q9SLK6]
SUBAcon: [mitochondrion]
SUBAcon: [mitochondrion]
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.