Subcellular Localization
min:
: max
Winner_takes_all: mitochondrion
Predictor Summary:
Predictor Summary:
- mitochondrion 5
- plasma membrane 1
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
TraesCS3B01G524400.1 | Wheat | cytosol, peroxisome, plasma membrane | 95.05 | 70.72 |
TraesCS3D01G474700.1 | Wheat | cytosol, nucleus, plasma membrane | 95.05 | 70.38 |
TraesCS3A01G479800.1 | Wheat | cytosol, nucleus, plasma membrane | 94.95 | 70.31 |
HORVU3Hr1G105140.4 | Barley | cytosol, peroxisome, plasma membrane | 94.02 | 69.57 |
Os09t0333000-00 | Rice | plasma membrane | 52.43 | 69.09 |
TraesCS2B01G149900.1 | Wheat | cytosol, peroxisome, plasma membrane | 79.72 | 68.68 |
GSMUA_Achr1P14530_001 | Banana | mitochondrion, plasma membrane | 71.5 | 67.05 |
Os09t0332300-00 | Rice | plasma membrane | 49.72 | 64.41 |
PGSC0003DMT400005785 | Potato | cytosol, peroxisome, plasma membrane | 36.92 | 63.2 |
TraesCS5B01G183500.1 | Wheat | cytosol, nucleus, plasma membrane | 85.23 | 62.98 |
EER98758 | Sorghum | cytosol, nucleus, plasma membrane | 84.86 | 62.66 |
Solyc12g019640.1.1 | Tomato | plasma membrane | 34.95 | 61.51 |
PGSC0003DMT400048449 | Potato | cytosol, peroxisome, plasma membrane | 63.64 | 55.96 |
KRH47220 | Soybean | plasma membrane | 49.53 | 55.73 |
TraesCS7B01G271500.1 | Wheat | cytosol | 30.75 | 53.58 |
GSMUA_Achr9P02950_001 | Banana | plasma membrane | 68.69 | 52.92 |
TraesCS3B01G248400.1 | Wheat | cytosol, peroxisome, plasma membrane | 71.12 | 52.34 |
GSMUA_Achr6P34530_001 | Banana | plasma membrane | 64.11 | 52.01 |
VIT_09s0002g05370.t01 | Wine grape | mitochondrion, plasma membrane | 68.04 | 51.23 |
KRH47506 | Soybean | endoplasmic reticulum | 68.13 | 51.12 |
TraesCS3B01G248500.1 | Wheat | cytosol, mitochondrion, peroxisome, plasma membrane | 68.5 | 50.59 |
PGSC0003DMT400034130 | Potato | cytosol, mitochondrion, peroxisome, plasma membrane, plastid | 58.78 | 50.52 |
KRH61824 | Soybean | cytosol, mitochondrion, peroxisome, plasma membrane | 68.04 | 50.24 |
TraesCS7B01G292700.1 | Wheat | plasma membrane | 67.1 | 50.21 |
KRH52503 | Soybean | cytosol, peroxisome, plasma membrane | 67.85 | 50.14 |
VIT_04s0008g04790.t01 | Wine grape | cytosol, peroxisome, plasma membrane, plastid | 67.2 | 50.07 |
KRH23522 | Soybean | mitochondrion | 66.26 | 49.72 |
KRH09797 | Soybean | endoplasmic reticulum | 66.26 | 49.68 |
VIT_09s0002g05560.t01 | Wine grape | plasma membrane | 67.38 | 49.59 |
Solyc08g067620.2.1 | Tomato | nucleus | 67.1 | 49.41 |
TraesCS3B01G306400.2 | Wheat | cytosol, mitochondrion, nucleus, plasma membrane | 67.94 | 49.25 |
Solyc05g053590.2.1 | Tomato | cytosol, mitochondrion, peroxisome, plasma membrane | 64.95 | 49.22 |
KRH16029 | Soybean | cytosol | 66.17 | 48.93 |
Solyc12g098210.1.1 | Tomato | plastid | 64.86 | 48.7 |
CDY39660 | Canola | cytosol, nucleus, plasma membrane | 64.02 | 48.41 |
Bra026124.1-P | Field mustard | cytosol, nucleus, plasma membrane, plastid | 63.83 | 48.34 |
CDY36570 | Canola | cytosol, nucleus, plasma membrane, plastid | 63.83 | 48.34 |
KRH05088 | Soybean | endoplasmic reticulum | 65.23 | 48.24 |
PGSC0003DMT400061280 | Potato | cytosol, nucleus, plasma membrane, plastid | 64.67 | 48.22 |
AT1G15520.1 | Thale cress | plastid | 64.11 | 48.21 |
Solyc12g100180.1.1 | Tomato | mitochondrion, nucleus, plasma membrane, plastid | 64.3 | 47.94 |
PGSC0003DMT400076208 | Potato | plastid | 64.49 | 47.92 |
Solyc09g091660.2.1 | Tomato | plastid | 64.49 | 47.92 |
PGSC0003DMT400076209 | Potato | plasma membrane | 64.02 | 47.8 |
KRH67471 | Soybean | endoplasmic reticulum | 64.49 | 47.75 |
KRG95762 | Soybean | mitochondrion | 63.18 | 47.27 |
TraesCS6B01G205900.1 | Wheat | plasma membrane | 63.74 | 47.23 |
TraesCS4B01G331400.3 | Wheat | plasma membrane | 43.36 | 46.45 |
KRH09795 | Soybean | endoplasmic reticulum | 65.33 | 46.23 |
TraesCS5B01G517700.1 | Wheat | plasma membrane | 41.4 | 45.91 |
PGSC0003DMT400005783 | Potato | cytosol, peroxisome, plasma membrane | 66.73 | 45.19 |
TraesCS3B01G141700.2 | Wheat | golgi, unclear | 57.01 | 42.63 |
KRG95752 | Soybean | cytosol, peroxisome, plasma membrane | 62.99 | 41.84 |
TraesCS7B01G088800.1 | Wheat | plastid | 56.26 | 41.49 |
TraesCS2B01G606700.2 | Wheat | plastid | 56.26 | 41.18 |
TraesCS5B01G572600.1 | Wheat | plastid | 55.89 | 41.16 |
TraesCS5B01G449500.1 | Wheat | plastid | 55.89 | 41.16 |
TraesCS7B01G000200.1 | Wheat | plastid | 55.79 | 40.97 |
TraesCS7B01G167100.1 | Wheat | cytosol, nucleus, plasma membrane | 49.91 | 39.56 |
TraesCS4B01G332300.3 | Wheat | cytosol, nucleus, plasma membrane | 48.22 | 38.34 |
VIT_04s0008g04840.t01 | Wine grape | plasma membrane | 39.25 | 37.53 |
TraesCS7B01G005200.1 | Wheat | plasma membrane | 45.89 | 37.17 |
TraesCS7B01G381000.1 | Wheat | cytosol, nucleus, plasma membrane | 47.48 | 36.57 |
TraesCS5B01G155400.3 | Wheat | plasma membrane | 48.32 | 36.15 |
TraesCS4B01G054700.1 | Wheat | cytosol, peroxisome, plasma membrane | 48.41 | 36.07 |
TraesCS7B01G381200.2 | Wheat | plasma membrane | 47.76 | 35.91 |
Solyc12g019620.1.1 | Tomato | cytosol, nucleus, plasma membrane | 28.04 | 35.84 |
PGSC0003DMT400043433 | Potato | endoplasmic reticulum, plasma membrane | 4.86 | 34.21 |
Protein Annotations
MapMan:24.1.3.2.2 | Gene3D:3.40.50.300 | InterPro:AAA+_ATPase | InterPro:ABCG_PDR_2 | InterPro:ABC_2_trans | InterPro:ABC_transporter-like |
ncoils:Coil | GO:GO:0000166 | GO:GO:0003674 | GO:GO:0003824 | GO:GO:0005488 | GO:GO:0005524 |
GO:GO:0005575 | GO:GO:0016020 | GO:GO:0016787 | GO:GO:0016887 | InterPro:IPR003439 | InterPro:P-loop_NTPase |
InterPro:PDR_assoc | PFAM:PF00005 | PFAM:PF01061 | PFAM:PF08370 | PFscan:PS50893 | PANTHER:PTHR19241 |
PANTHER:PTHR19241:SF306 | SMART:SM00382 | SUPFAM:SSF52540 | TMHMM:TMhelix | EnsemblPlantsGene:TraesCS3B01G523700 | EnsemblPlants:TraesCS3B01G523700.1 |
TIGR:cd03232 | : | : | : | : | : |
Description
No Description!
Coordinates
chr3B:-:766127177..766146397
Molecular Weight (calculated)
120742.0 Da
IEP (calculated)
7.680
GRAVY (calculated)
0.097
Length
1070 amino acids
Sequence
(BLAST)
(BLAST)
0001: MLRGISGGQK KRVTTAEMLV TPGRALFMDE ISTGLDSSTT FQIVNSIRQT IHILGGTAVI SLLQPAPETY ELFDDIILLS DGQVVYNGPR EHVLEFFESV
0101: GFKCPERKGV ADFLQEVTSR KDQRQYWIHS DETYRYVAVK NFAEAFQSFH VGQAIRSELS VPFDKSRSHP AALKTSKYGA NMKELLKANI NREMLLMRRN
0201: SFVYIFKATQ LTLMAIITMT VFLRTNMHHD SITNGGIYMG ALFFGIVMIM FNGLAEVGLT VAKLPVFFKQ RDLLFFPAWT YSLPSWIIKT PLSLLNASIW
0301: VFITYYVIGF DPNVERLFRQ FLLLLVMSET ASGLFRFIAG LARNQIVANT IGSFFLLICM LTGGFVLSRE NVKKWWIWGY WISPLMYAQN AISVNEFLGG
0401: SWNKTVPGFR EPLGRLVLES RGMFTEAKWY WIGVGALLGY VLLFNALYTI CLTFLKPFDS SQQTISEETM KIKQANLTGE ILEETSGGHN NTTILDTADE
0501: SNGESTSNNA TVNSCPSNKG MILPFTPLSF TFKEIRYSVH MTEEVKAQGV KEDRLELLKG ISDSFRPGVL TALMGVSGAG KTTLMDVLAG RKTSGYVEGN
0601: ITISGYPKKQ ETFARVSGYC EQNDIHSPNV TVYESLAFSA WLRLPADVDS STRKMFIDEV MELVELSPLK DSLVGLPGVT GLSTEQRKRL TIAVELVANP
0701: SIIFMDEPTS GLDARAAAIV MRTIRNIVDT GRTVVCTIHQ PSIDIFESFD ELFLMKLGGE EIYVGPLGRH SCELIRYFEA IEGVSKIKDS YNPSTWMLQV
0801: TSAVQEQITG INFSQVYKNS ELYGMNKNLI KELSTPPEGS NDLSFPTQYS QTFLTQCSAC LWKQSQSYWR NPPYTAVKYF YTVVMALLFG TMFWGIGKKR
0901: QSQQDLFNAM GSMYASVLYM GVQNSATIQP VVAVERTVFY RERAAHMYSP LPYALGQVAI EVPYIFVQSL IYGVIVYAMI GFEWTAVKLF WYLFFMFFTL
1001: SYYTFYGMMT VGLTPNYNIA SVVSSAFYTM WNLFSGFIIP RTKDVDDWFP SHVICRKTWC MQVMRVCSSM
0101: GFKCPERKGV ADFLQEVTSR KDQRQYWIHS DETYRYVAVK NFAEAFQSFH VGQAIRSELS VPFDKSRSHP AALKTSKYGA NMKELLKANI NREMLLMRRN
0201: SFVYIFKATQ LTLMAIITMT VFLRTNMHHD SITNGGIYMG ALFFGIVMIM FNGLAEVGLT VAKLPVFFKQ RDLLFFPAWT YSLPSWIIKT PLSLLNASIW
0301: VFITYYVIGF DPNVERLFRQ FLLLLVMSET ASGLFRFIAG LARNQIVANT IGSFFLLICM LTGGFVLSRE NVKKWWIWGY WISPLMYAQN AISVNEFLGG
0401: SWNKTVPGFR EPLGRLVLES RGMFTEAKWY WIGVGALLGY VLLFNALYTI CLTFLKPFDS SQQTISEETM KIKQANLTGE ILEETSGGHN NTTILDTADE
0501: SNGESTSNNA TVNSCPSNKG MILPFTPLSF TFKEIRYSVH MTEEVKAQGV KEDRLELLKG ISDSFRPGVL TALMGVSGAG KTTLMDVLAG RKTSGYVEGN
0601: ITISGYPKKQ ETFARVSGYC EQNDIHSPNV TVYESLAFSA WLRLPADVDS STRKMFIDEV MELVELSPLK DSLVGLPGVT GLSTEQRKRL TIAVELVANP
0701: SIIFMDEPTS GLDARAAAIV MRTIRNIVDT GRTVVCTIHQ PSIDIFESFD ELFLMKLGGE EIYVGPLGRH SCELIRYFEA IEGVSKIKDS YNPSTWMLQV
0801: TSAVQEQITG INFSQVYKNS ELYGMNKNLI KELSTPPEGS NDLSFPTQYS QTFLTQCSAC LWKQSQSYWR NPPYTAVKYF YTVVMALLFG TMFWGIGKKR
0901: QSQQDLFNAM GSMYASVLYM GVQNSATIQP VVAVERTVFY RERAAHMYSP LPYALGQVAI EVPYIFVQSL IYGVIVYAMI GFEWTAVKLF WYLFFMFFTL
1001: SYYTFYGMMT VGLTPNYNIA SVVSSAFYTM WNLFSGFIIP RTKDVDDWFP SHVICRKTWC MQVMRVCSSM
0001: MEGTSFHQAS NSMRRNSSVW KKDSGREIFS RSSREEDDEE ALRWAALEKL PTFDRLRKGI LTASHAGGPI NEIDIQKLGF QDTKKLLERL IKVGDDEHEK
0101: LLWKLKKRID RVGIDLPTIE VRFDHLKVEA EVHVGGRALP TFVNFISNFA DKFLNTLHLV PNRKKKFTIL NDVSGIVKPG RMALLLGPPS SGKTTLLLAL
0201: AGKLDQELKQ TGRVTYNGHG MNEFVPQRTA AYIGQNDVHI GEMTVRETFA YAARFQGVGS RYDMLTELAR REKEANIKPD PDIDIFMKAM STAGEKTNVM
0301: TDYILKILGL EVCADTMVGD DMLRGISGGQ KKRVTTGEML VGPSRALFMD EISTGLDSST TYQIVNSLRN YVHIFNGTAL ISLLQPAPET FNLFDDIILI
0401: AEGEIIYEGP RDHVVEFFET MGFKCPPRKG VADFLQEVTS KKDQMQYWAR RDEPYRFIRV REFAEAFQSF HVGRRIGDEL ALPFDKTKSH PAALTTKKYG
0501: VGIKELVKTS FSREYLLMKR NSFVYYFKFG QLLVMAFLTM TLFFRTEMQK KTEVDGSLYT GALFFILMML MFNGMSELSM TIAKLPVFYK QRDLLFYPAW
0601: VYSLPPWLLK IPISFMEAAL TTFITYYVIG FDPNVGRLFK QYILLVLMNQ MASALFKMVA ALGRNMIVAN TFGAFAMLVF FALGGVVLSR DDIKKWWIWG
0701: YWISPIMYGQ NAILANEFFG HSWSRAVENS SETLGVTFLK SRGFLPHAYW YWIGTGALLG FVVLFNFGFT LALTFLNSLG KPQAVIAEEP ASDETELQSA
0801: RSEGVVEAGA NKKRGMVLPF EPHSITFDNV VYSVDMPQEM IEQGTQEDRL VLLKGVNGAF RPGVLTALMG VSGAGKTTLM DVLAGRKTGG YIDGNITISG
0901: YPKNQQTFAR ISGYCEQTDI HSPHVTVYES LVYSAWLRLP KEVDKNKRKI FIEEVMELVE LTPLRQALVG LPGESGLSTE QRKRLTIAVE LVANPSIIFM
1001: DEPTSGLDAR AAAIVMRTVR NTVDTGRTVV CTIHQPSIDI FEAFDELFLL KRGGEEIYVG PLGHESTHLI NYFESIQGIN KITEGYNPAT WMLEVSTTSQ
1101: EAALGVDFAQ VYKNSELYKR NKELIKELSQ PAPGSKDLYF PTQYSQSFLT QCMASLWKQH WSYWRNPPYT AVRFLFTIGI ALMFGTMFWD LGGKTKTRQD
1201: LSNAMGSMYT AVLFLGLQNA ASVQPVVNVE RTVFYREQAA GMYSAMPYAF AQVFIEIPYV LVQAIVYGLI VYAMIGFEWT AVKFFWYLFF MYGSFLTFTF
1301: YGMMAVAMTP NHHIASVVSS AFYGIWNLFS GFLIPRPSMP VWWEWYYWLC PVAWTLYGLI ASQFGDITEP MADSNMSVKQ FIREFYGYRE GFLGVVAAMN
1401: VIFPLLFAVI FAIGIKSFNF QKR
0101: LLWKLKKRID RVGIDLPTIE VRFDHLKVEA EVHVGGRALP TFVNFISNFA DKFLNTLHLV PNRKKKFTIL NDVSGIVKPG RMALLLGPPS SGKTTLLLAL
0201: AGKLDQELKQ TGRVTYNGHG MNEFVPQRTA AYIGQNDVHI GEMTVRETFA YAARFQGVGS RYDMLTELAR REKEANIKPD PDIDIFMKAM STAGEKTNVM
0301: TDYILKILGL EVCADTMVGD DMLRGISGGQ KKRVTTGEML VGPSRALFMD EISTGLDSST TYQIVNSLRN YVHIFNGTAL ISLLQPAPET FNLFDDIILI
0401: AEGEIIYEGP RDHVVEFFET MGFKCPPRKG VADFLQEVTS KKDQMQYWAR RDEPYRFIRV REFAEAFQSF HVGRRIGDEL ALPFDKTKSH PAALTTKKYG
0501: VGIKELVKTS FSREYLLMKR NSFVYYFKFG QLLVMAFLTM TLFFRTEMQK KTEVDGSLYT GALFFILMML MFNGMSELSM TIAKLPVFYK QRDLLFYPAW
0601: VYSLPPWLLK IPISFMEAAL TTFITYYVIG FDPNVGRLFK QYILLVLMNQ MASALFKMVA ALGRNMIVAN TFGAFAMLVF FALGGVVLSR DDIKKWWIWG
0701: YWISPIMYGQ NAILANEFFG HSWSRAVENS SETLGVTFLK SRGFLPHAYW YWIGTGALLG FVVLFNFGFT LALTFLNSLG KPQAVIAEEP ASDETELQSA
0801: RSEGVVEAGA NKKRGMVLPF EPHSITFDNV VYSVDMPQEM IEQGTQEDRL VLLKGVNGAF RPGVLTALMG VSGAGKTTLM DVLAGRKTGG YIDGNITISG
0901: YPKNQQTFAR ISGYCEQTDI HSPHVTVYES LVYSAWLRLP KEVDKNKRKI FIEEVMELVE LTPLRQALVG LPGESGLSTE QRKRLTIAVE LVANPSIIFM
1001: DEPTSGLDAR AAAIVMRTVR NTVDTGRTVV CTIHQPSIDI FEAFDELFLL KRGGEEIYVG PLGHESTHLI NYFESIQGIN KITEGYNPAT WMLEVSTTSQ
1101: EAALGVDFAQ VYKNSELYKR NKELIKELSQ PAPGSKDLYF PTQYSQSFLT QCMASLWKQH WSYWRNPPYT AVRFLFTIGI ALMFGTMFWD LGGKTKTRQD
1201: LSNAMGSMYT AVLFLGLQNA ASVQPVVNVE RTVFYREQAA GMYSAMPYAF AQVFIEIPYV LVQAIVYGLI VYAMIGFEWT AVKFFWYLFF MYGSFLTFTF
1301: YGMMAVAMTP NHHIASVVSS AFYGIWNLFS GFLIPRPSMP VWWEWYYWLC PVAWTLYGLI ASQFGDITEP MADSNMSVKQ FIREFYGYRE GFLGVVAAMN
1401: VIFPLLFAVI FAIGIKSFNF QKR
Arabidopsis Description
ABCG40ABC transporter G family member 40 [Source:UniProtKB/Swiss-Prot;Acc:Q9M9E1]
SUBAcon: [plastid]
SUBAcon: [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.