Subcellular Localization
min:
: max
Winner_takes_all: nucleus
Predictor Summary:
Predictor Summary:
- nucleus 3
- cytosol 1
- mitochondrion 1
Predictors | GFP | MS/MS | Papers | ||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
TraesCS1D01G143000.1 | Wheat | nucleus | 92.06 | 97.86 |
TraesCS1A01G144000.3 | Wheat | nucleus | 91.56 | 96.93 |
HORVU1Hr1G038370.1 | Barley | nucleus | 86.83 | 92.61 |
Os10t0457700-01 | Rice | nucleus | 66.16 | 79.61 |
KXG38419 | Sorghum | nucleus | 71.08 | 76.06 |
Zm00001d032801_P005 | Maize | nucleus | 71.08 | 76.01 |
GSMUA_Achr4P25080_001 | Banana | nucleus | 41.46 | 58.33 |
KRH34128 | Soybean | nucleus | 39.76 | 55.89 |
VIT_14s0036g01460.t01 | Wine grape | nucleus | 51.8 | 55.65 |
KRG92726 | Soybean | nucleus | 50.16 | 53.6 |
Solyc04g050150.2.1 | Tomato | nucleus | 40.96 | 53.41 |
GSMUA_Achr4P25070_001 | Banana | golgi | 8.44 | 52.96 |
AT1G08600.3 | Thale cress | nucleus | 47.32 | 50.78 |
Solyc04g050160.2.1 | Tomato | nucleus | 9.39 | 47.3 |
CDY22674 | Canola | nucleus | 22.87 | 47.14 |
Bra018612.1-P | Field mustard | nucleus | 47.51 | 29.1 |
TraesCS6B01G146000.1 | Wheat | endoplasmic reticulum, golgi | 5.61 | 26.57 |
TraesCS2B01G222000.1 | Wheat | plastid | 11.66 | 21.34 |
TraesCS6B01G351900.1 | Wheat | nucleus | 13.42 | 21.24 |
TraesCS3B01G097000.1 | Wheat | nucleus | 14.3 | 17.78 |
TraesCS2B01G208700.1 | Wheat | cytosol | 10.02 | 17.36 |
TraesCS2B01G164300.3 | Wheat | nucleus | 10.27 | 17.05 |
TraesCS4B01G280600.1 | Wheat | nucleus | 9.96 | 16.54 |
TraesCS3B01G251000.1 | Wheat | nucleus | 10.4 | 15.55 |
TraesCS2B01G105400.1 | Wheat | nucleus | 10.59 | 13.4 |
TraesCS1B01G256700.1 | Wheat | mitochondrion, nucleus | 11.78 | 12.53 |
TraesCS1B01G476500.1 | Wheat | mitochondrion | 13.55 | 10.39 |
KRH77275 | Soybean | cytosol | 0.19 | 3.26 |
KRH28211 | Soybean | mitochondrion | 0.19 | 3.26 |
Protein Annotations
MapMan:12.4.1.3.2 | Gene3D:3.40.50.10810 | InterPro:ADD | ncoils:Coil | GO:GO:0000166 | GO:GO:0003674 |
GO:GO:0005488 | GO:GO:0005524 | InterPro:Helicase_ATP-bd | InterPro:Helicase_C | InterPro:IPR001650 | InterPro:IPR014001 |
InterPro:IPR025766 | InterPro:IPR038718 | InterPro:P-loop_NTPase | PFAM:PF00176 | PFAM:PF00271 | PFscan:PS51192 |
PFscan:PS51194 | PFscan:PS51533 | PANTHER:PTHR10799 | PANTHER:PTHR10799:SF843 | SMART:SM00487 | SMART:SM00490 |
InterPro:SNF2-like_sf | InterPro:SNF2_N | SUPFAM:SSF52540 | EnsemblPlantsGene:TraesCS1B01G161400 | EnsemblPlants:TraesCS1B01G161400.5 | TIGR:cd00046 |
TIGR:cd00079 | TIGR:cd11726 | SEG:seg | : | : | : |
Description
No Description!
Coordinates
chr1B:+:278460845..278481939
Molecular Weight (calculated)
180017.0 Da
IEP (calculated)
5.834
GRAVY (calculated)
-0.629
Length
1587 amino acids
Sequence
(BLAST)
(BLAST)
0001: MDVNGKLSDG DLKKTEALHS NGQPVDDVII IESEGDENKV VVETNIIEGP FEEHKEHRCG KTDNSVHEEA STSTDDGSDS DLYGFLRESE NEQTSESDVE
0101: ETDIEVALPE EKVEELIAEF HDVESKAAEA QESLEKESLE KIEAEVRLEL SERLQGDALD LAVSIEMEQF KKEWSSELDD LEIRSAVLLE ELDAAGVELP
0201: SLYKSIESQA PNVCETEAWK NRTHWAGSQV PEQANQSIRK ADEYLQSCRP VRRKHGRLLE EGASGFLAGK VPVVDDDSVQ CHEKSWSSFN ELIKSSECAK
0301: TSFGSSNWAS VYLANTPQEA AALGLQFPGV DEVEEIAEVD GAVDDIKCVD EIELSEEQRR KYRKVREEDD AKAIKRLRRY MEKRTDGWCK GNIGLASSSN
0401: GCCKLPLDDG VLDANSGCPE SEKQKMGKDE VSAELLKRTR EDDVELDHKR SKTVVIESDD DMLMDSKLVL HIKDSKRSSA ELEKGVDIID LDLFPSQSPK
0501: FSDMDLPKSF KCTICTKMLN ASDVHRHPVL DVAVCGSCRF LVIEKNRLEG PVSGGYCTWC VQCEQLLSCS SCKMLFCTKC LLKNLGEKCI SEAKVTGWQC
0601: CCCQPSQLEH LISECDKALS GVESSDLEGD NTSGTETNDP VSKHKRKKKI RRIMDDTELG EETKRKIAME KARQEHLKSM HEQSASKLRS SNIGTSSGAL
0701: SEVFLQDAGD GHIVNPAREE DEEPVRIPSS ISAKLKPHQV AGIIFMWENV IQSVRTVKSG DKGFGCILAH NMGLGKTFQV ITFLYVVMRC AQLGLRTALI
0801: VTPVNVLHNW KKEFTKWQPA ELKPLRVYML EDVPRLKRLY LLNKWRAKGG VLLIGYSSFR NLSLGRHVKE KDTADEISNA LQCGPDILVC DEAHMIKNRK
0901: ADTTHALKQV KTQRRIALTG SPLQNNLMEY YCMVDFVREG FLGSSHEFRN RFQNPIENGQ HTNSTSDDVK IMNQRSHILY EQLKGFVQRM DMNVVKNDLP
1001: PKKVFVITVK LSQLQRKLYR RFLDVHGFSS GTSEKPYQHG GFFAKYQKLA LIWNHPGLLQ MAKEQRGSLR REDAVENFLT DESSSDDNHN IEIQLPNGGK
1101: QKSRTDQQSK KIDFWDEESN WWDNLLDDNT FKEADYSGKM VLLLDILATC YELGDKALVF SQNLTTLDLV EFYLSKMQIK GKEGKYWKQG KDWYRLDGST
1201: PSSERQNLVE RFNDPANTKV KCTLISTRAG SLGINLHAAN RVVLLDGSWN PTHDLQAIYR VWRYGQMKPV YAYRLMAHGT MEEKIYKRQV TKEGLAARVV
1301: DRQQVSRTIS KEEMLHLFEF GDEEMLDESG NDTIIDHSKV GTEKLSMPNS TELPVDTLMQ NLLSDHPRWI AGYHEHEVLL QENEEERLTK EEQDMAWSNF
1401: KQSQQLDAVA RKGAHDSERK PIETNPRPPK VTSRSRQAQQ PKSHSNNQKK CTNLNHMLTL RSHGTKAGCT TSCDECGQNI SWETLNRSDG RLRRAVNFAR
1501: EILFEVENGV YYSRKFVQSA ATREGEFCQL EIWTWKSYAR LPILHNSKQA ETLQRFFMEY MRNIGANKYQ RGVVLIQAHL RCPSSGI
0101: ETDIEVALPE EKVEELIAEF HDVESKAAEA QESLEKESLE KIEAEVRLEL SERLQGDALD LAVSIEMEQF KKEWSSELDD LEIRSAVLLE ELDAAGVELP
0201: SLYKSIESQA PNVCETEAWK NRTHWAGSQV PEQANQSIRK ADEYLQSCRP VRRKHGRLLE EGASGFLAGK VPVVDDDSVQ CHEKSWSSFN ELIKSSECAK
0301: TSFGSSNWAS VYLANTPQEA AALGLQFPGV DEVEEIAEVD GAVDDIKCVD EIELSEEQRR KYRKVREEDD AKAIKRLRRY MEKRTDGWCK GNIGLASSSN
0401: GCCKLPLDDG VLDANSGCPE SEKQKMGKDE VSAELLKRTR EDDVELDHKR SKTVVIESDD DMLMDSKLVL HIKDSKRSSA ELEKGVDIID LDLFPSQSPK
0501: FSDMDLPKSF KCTICTKMLN ASDVHRHPVL DVAVCGSCRF LVIEKNRLEG PVSGGYCTWC VQCEQLLSCS SCKMLFCTKC LLKNLGEKCI SEAKVTGWQC
0601: CCCQPSQLEH LISECDKALS GVESSDLEGD NTSGTETNDP VSKHKRKKKI RRIMDDTELG EETKRKIAME KARQEHLKSM HEQSASKLRS SNIGTSSGAL
0701: SEVFLQDAGD GHIVNPAREE DEEPVRIPSS ISAKLKPHQV AGIIFMWENV IQSVRTVKSG DKGFGCILAH NMGLGKTFQV ITFLYVVMRC AQLGLRTALI
0801: VTPVNVLHNW KKEFTKWQPA ELKPLRVYML EDVPRLKRLY LLNKWRAKGG VLLIGYSSFR NLSLGRHVKE KDTADEISNA LQCGPDILVC DEAHMIKNRK
0901: ADTTHALKQV KTQRRIALTG SPLQNNLMEY YCMVDFVREG FLGSSHEFRN RFQNPIENGQ HTNSTSDDVK IMNQRSHILY EQLKGFVQRM DMNVVKNDLP
1001: PKKVFVITVK LSQLQRKLYR RFLDVHGFSS GTSEKPYQHG GFFAKYQKLA LIWNHPGLLQ MAKEQRGSLR REDAVENFLT DESSSDDNHN IEIQLPNGGK
1101: QKSRTDQQSK KIDFWDEESN WWDNLLDDNT FKEADYSGKM VLLLDILATC YELGDKALVF SQNLTTLDLV EFYLSKMQIK GKEGKYWKQG KDWYRLDGST
1201: PSSERQNLVE RFNDPANTKV KCTLISTRAG SLGINLHAAN RVVLLDGSWN PTHDLQAIYR VWRYGQMKPV YAYRLMAHGT MEEKIYKRQV TKEGLAARVV
1301: DRQQVSRTIS KEEMLHLFEF GDEEMLDESG NDTIIDHSKV GTEKLSMPNS TELPVDTLMQ NLLSDHPRWI AGYHEHEVLL QENEEERLTK EEQDMAWSNF
1401: KQSQQLDAVA RKGAHDSERK PIETNPRPPK VTSRSRQAQQ PKSHSNNQKK CTNLNHMLTL RSHGTKAGCT TSCDECGQNI SWETLNRSDG RLRRAVNFAR
1501: EILFEVENGV YYSRKFVQSA ATREGEFCQL EIWTWKSYAR LPILHNSKQA ETLQRFFMEY MRNIGANKYQ RGVVLIQAHL RCPSSGI
0001: MEANEESLKG KIEKLEGKEV IVESKEDEMD IIIEENREAE QEVMEVKARD GRGEQNDVLM EENNNQGEQK DEEMQDASSR SESSDFNSDE DEQILSRRDD
0101: ELDLEKPLSE EEIDELISDL LAVESKAAEA QEALEKESLS KVESEVREEL AQALRGDELD EAVAAEMMTF KDEWEATLDE LETESATLLE QLDGAGIELP
0201: KLYEMIESQA PNGCYTEAWK QRAHWVGTQV TKETVESLAN AERFLHTHRP VRKRHGKLLE EGASGFLEKK LADGAVKESL AGTSELDWSS LNKVFSEKRD
0301: ESVSFGSKQW ASVYLASTPH QAAAMGLEFP GVNEVEEIEE IDASLADPFL ADAIDNEREL ALTEEQKTNY IRVKEEDDIT CDRVLQLRLK RKRRKKRSKQ
0401: VIRCAAENMD DDSVYLDGNN TTPNFAKDQV KSPETSTQVH NSEVNIEENG NFSNSDVDKM TPSTHINVDA KRDDSQNPAN NFRCTACNKV AVEVHSHPLL
0501: EVIVCMDCKR SIEDRVSKVD DSLERHCEWC GHIADLIDCR TCEKLFCASC IKRNIGEEYM SEAQSSGWDC CCCSPIPLQR LTLELEKAMR DKKSIELSSD
0601: SSSDSSSDNN SVDTDADVNV TISSKKKSKK KIRRIIDDAE LGKDTRTKIA IEKARQERLR SLQFSARYKT ISSMGDVKSI PEGAEVEVLG DAHSGYIVNV
0701: VREIGEEAVR VPRSISAKLK VHQVTGIRFM WENIIQSISR VKSGDKGLGC ILAHTMGLGK TFQVIAFLYT AMRCVDLGLK TALIVTPVNV LHNWRSEFEK
0801: WMPSEVKPLR IFMLGDVSRE RRFDLLTKWR KKGGVFLMGY TNFRNLSLGR GVKDLNAARG ICNALRDGPD ILVCDEAHII KNTKADTTQA LKQVKCQRRI
0901: ALTGSPLQNN LMEYYCMVDF VREGFLGSSP EFRNRFQNPI ENGQHMNSTA EDVKIMNQRS HILYEQLKGF VQRMDMNVVK KDLPPKTVFV ISVKLSPLQR
1001: ILYQRFLELY GFSDGRTDER MRKNFFAAYQ VLAQILNHPG IPQLRSEDSK NGRRGSIVDI PDDCSSDENI DYNMVTGEKQ RTMNDLQDKV DGYLQKDWWV
1101: DLLQKNNYKV SDFSGKMILL LDILSMSADV GDKALVFSQS IPTLDLIELY LSRVPRHGKQ GKFWKKGKDW YRIDGKTESS ERQKLVDRFN EPDNKRVKCT
1201: LISTRAGSLG INLYAANRVI IVDGSWNPTY DLQAIFRAWR YGQKKPVFAY RLMARGTIEE KIYKRQVTKE GLAARVVDRQ QVHRTISKEE MLHLFEFDDD
1301: DEKSEAVTEI SKQNEAGHSN LVEQAILWTK KATLSRVGGD KLMENLLQRH GPNWISSFHE HETLLQENEE ERLTKEEKDM AWEVYRRALE WEEVQRVPFS
1401: ESPVVPKPSP STQTEPLPQP KGFNRSRFVN RNCTRIAHQL TLISQGLKVG SSTVCGECGR VIRWEDVIPA SKLSAVIVN
0101: ELDLEKPLSE EEIDELISDL LAVESKAAEA QEALEKESLS KVESEVREEL AQALRGDELD EAVAAEMMTF KDEWEATLDE LETESATLLE QLDGAGIELP
0201: KLYEMIESQA PNGCYTEAWK QRAHWVGTQV TKETVESLAN AERFLHTHRP VRKRHGKLLE EGASGFLEKK LADGAVKESL AGTSELDWSS LNKVFSEKRD
0301: ESVSFGSKQW ASVYLASTPH QAAAMGLEFP GVNEVEEIEE IDASLADPFL ADAIDNEREL ALTEEQKTNY IRVKEEDDIT CDRVLQLRLK RKRRKKRSKQ
0401: VIRCAAENMD DDSVYLDGNN TTPNFAKDQV KSPETSTQVH NSEVNIEENG NFSNSDVDKM TPSTHINVDA KRDDSQNPAN NFRCTACNKV AVEVHSHPLL
0501: EVIVCMDCKR SIEDRVSKVD DSLERHCEWC GHIADLIDCR TCEKLFCASC IKRNIGEEYM SEAQSSGWDC CCCSPIPLQR LTLELEKAMR DKKSIELSSD
0601: SSSDSSSDNN SVDTDADVNV TISSKKKSKK KIRRIIDDAE LGKDTRTKIA IEKARQERLR SLQFSARYKT ISSMGDVKSI PEGAEVEVLG DAHSGYIVNV
0701: VREIGEEAVR VPRSISAKLK VHQVTGIRFM WENIIQSISR VKSGDKGLGC ILAHTMGLGK TFQVIAFLYT AMRCVDLGLK TALIVTPVNV LHNWRSEFEK
0801: WMPSEVKPLR IFMLGDVSRE RRFDLLTKWR KKGGVFLMGY TNFRNLSLGR GVKDLNAARG ICNALRDGPD ILVCDEAHII KNTKADTTQA LKQVKCQRRI
0901: ALTGSPLQNN LMEYYCMVDF VREGFLGSSP EFRNRFQNPI ENGQHMNSTA EDVKIMNQRS HILYEQLKGF VQRMDMNVVK KDLPPKTVFV ISVKLSPLQR
1001: ILYQRFLELY GFSDGRTDER MRKNFFAAYQ VLAQILNHPG IPQLRSEDSK NGRRGSIVDI PDDCSSDENI DYNMVTGEKQ RTMNDLQDKV DGYLQKDWWV
1101: DLLQKNNYKV SDFSGKMILL LDILSMSADV GDKALVFSQS IPTLDLIELY LSRVPRHGKQ GKFWKKGKDW YRIDGKTESS ERQKLVDRFN EPDNKRVKCT
1201: LISTRAGSLG INLYAANRVI IVDGSWNPTY DLQAIFRAWR YGQKKPVFAY RLMARGTIEE KIYKRQVTKE GLAARVVDRQ QVHRTISKEE MLHLFEFDDD
1301: DEKSEAVTEI SKQNEAGHSN LVEQAILWTK KATLSRVGGD KLMENLLQRH GPNWISSFHE HETLLQENEE ERLTKEEKDM AWEVYRRALE WEEVQRVPFS
1401: ESPVVPKPSP STQTEPLPQP KGFNRSRFVN RNCTRIAHQL TLISQGLKVG SSTVCGECGR VIRWEDVIPA SKLSAVIVN
Arabidopsis Description
ATRXCHR20 [Source:UniProtKB/TrEMBL;Acc:A0A178VZQ9]
SUBAcon: [nucleus]
SUBAcon: [nucleus]
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.