Subcellular Localization
min:
: max
Winner_takes_all: nucleus
Predictor Summary:
Predictor Summary:
- cytosol 1
- mitochondrion 1
- nucleus 2
Predictors | GFP | MS/MS | Papers | ||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
Inferred distinct locusB in Crop
locusB | locations |
---|---|
TraesCS3A01G433200.1 | |
TraesCS3B01G469000.1 | |
TraesCS3D01G426600.1 |
Inferred from Arabidopsis experimental PPI
Ath locusA | locusB | Ath locusB | Paper |
---|---|---|---|
AT5G43560.1 | TraesCS3A01G433200.1 | AT1G27320.1 | 18642946 |
AT5G43560.1 | TraesCS3B01G469000.1 | AT1G27320.1 | 18642946 |
AT5G43560.1 | TraesCS3D01G426600.1 | AT1G27320.1 | 18642946 |
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
TraesCS1D01G327700.1 | Wheat | nucleus | 97.62 | 97.48 |
TraesCS1A01G325900.1 | Wheat | nucleus | 97.04 | 96.9 |
HORVU1Hr1G078170.6 | Barley | cytosol | 92.86 | 89.5 |
Os05t0508700-01 | Rice | nucleus | 44.23 | 79.51 |
KXG22306 | Sorghum | nucleus | 64.86 | 69.8 |
Zm00001d038655_P003 | Maize | nucleus | 63.56 | 67.77 |
Zm00001d010716_P002 | Maize | nucleus | 60.25 | 63.45 |
PGSC0003DMT400042094 | Potato | cytosol | 18.54 | 63.15 |
AT5G52330.3 | Thale cress | cytosol | 17.53 | 61.21 |
Solyc06g053740.2.1 | Tomato | cytosol | 16.88 | 56.25 |
TraesCS3B01G343300.2 | Wheat | nucleus | 52.24 | 54.89 |
CDX73257 | Canola | cytosol | 15.22 | 51.97 |
Bra023279.1-P | Field mustard | cytosol | 12.48 | 49.57 |
CDX93823 | Canola | cytosol | 13.56 | 48.58 |
GSMUA_Achr2P12590_001 | Banana | nucleus | 33.98 | 43.77 |
KRH31732 | Soybean | nucleus | 35.5 | 43.2 |
Bra010174.1-P | Field mustard | cytosol | 6.85 | 43.18 |
CDY26906 | Canola | cytosol | 6.85 | 43.18 |
KRH34524 | Soybean | nucleus | 35.21 | 42.77 |
VIT_05s0020g04980.t01 | Wine grape | nucleus | 35.35 | 42.76 |
AT4G16045.1 | Thale cress | cytosol | 11.69 | 42.41 |
CDX86642 | Canola | nucleus | 31.82 | 42.2 |
TraesCS5B01G071600.1 | Wheat | nucleus | 34.05 | 42.07 |
KRG92287 | Soybean | nucleus | 34.49 | 41.93 |
CDY32539 | Canola | nucleus | 30.23 | 41.65 |
CDY10066 | Canola | nucleus | 30.45 | 41.62 |
CDY18218 | Canola | nucleus | 31.31 | 41.02 |
CDX89828 | Canola | nucleus | 31.39 | 41.0 |
Bra015302.1-P | Field mustard | nucleus | 31.24 | 40.85 |
Solyc09g089560.2.1 | Tomato | nucleus | 32.47 | 40.76 |
Bra032518.1-P | Field mustard | nucleus | 29.08 | 40.54 |
AT5G43560.1 | Thale cress | nucleus | 30.74 | 40.38 |
CDY01258 | Canola | cytosol | 5.92 | 40.0 |
KRG90366 | Soybean | endoplasmic reticulum, plasma membrane | 35.43 | 39.98 |
AT1G04300.3 | Thale cress | nucleus | 31.02 | 39.74 |
Solyc06g053750.2.1 | Tomato | nucleus | 32.61 | 39.72 |
CDY01264 | Canola | cytosol | 5.84 | 39.51 |
Solyc03g005430.2.1 | Tomato | nucleus | 32.47 | 39.16 |
GSMUA_Achr5P03190_001 | Banana | nucleus | 35.57 | 34.91 |
CDY22344 | Canola | nucleus | 22.58 | 33.76 |
Bra033684.1-P | Field mustard | nucleus | 22.58 | 33.76 |
CDX94711 | Canola | nucleus | 23.45 | 33.75 |
PGSC0003DMT400042093 | Potato | nucleus | 10.53 | 21.86 |
TraesCS5B01G111000.7 | Wheat | cytosol | 12.05 | 14.82 |
TraesCS3B01G341000.1 | Wheat | cytosol | 11.18 | 14.04 |
TraesCS2B01G263500.4 | Wheat | nucleus | 11.33 | 14.03 |
TraesCS4B01G267000.2 | Wheat | mitochondrion, nucleus | 5.99 | 7.73 |
Bra041162.1-P | Field mustard | cytosol, nucleus, plastid | 1.08 | 7.54 |
TraesCS6B01G251400.1 | Wheat | nucleus, plastid | 8.73 | 7.28 |
Protein Annotations
EnsemblPlants:TraesCS1B01G339200.1 | EnsemblPlantsGene:TraesCS1B01G339200 | Gene3D:2.60.210.10 | GO:GO:0003674 | GO:GO:0005488 | GO:GO:0005515 |
InterPro:IPR002083 | InterPro:IPR008974 | InterPro:MATH/TRAF_dom | InterPro:TRAF-like | ncoils:Coil | PANTHER:PTHR45001 |
PFAM:PF00917 | PFscan:PS50144 | SEG:seg | SMART:SM00061 | SUPFAM:SSF49599 | TIGR:cd00121 |
MapMan:22.5.1.6 | : | : | : | : | : |
Description
No Description!
Coordinates
chr1B:-:566837058..566849047
Molecular Weight (calculated)
151393.0 Da
IEP (calculated)
8.902
GRAVY (calculated)
-0.732
Length
1386 amino acids
Sequence
(BLAST)
(BLAST)
0001: MAGASATDDS SASTAGMRDD DRSLSGESLS EWRSCDQGES GSPSTSPPFW DTDCDDDDPA GPKPSELYGR HTWRIENFSK EKKREMKSEP FEAGGYKWYI
0101: LVYPQGCDVS NHLSLFLCVA NHDKLLPGWS HFAQFTIAVG NMDPKKIKYS DTLHRFWKKE HDWGWKKFME LSKIQDGFLV DDVLEIIAQV QVIREKVDRP
0201: FRCLDRPYRR ELLRVYTTNI EQIYRRFIEE RRNKLTKLIE DKIRWSSFRA FWSAIDPRTR HRMSREKTDT ILKVLVKHFF VEKEVTSTLV MDSLYTGLKA
0301: LEYQSKGKKG RTKIAELDEL PAPMVSVDMD IFVLAGDVIT LLERAALEPL PCQPVSPKDD KCSQSRMKDG SSGEVNKISM EREERRLTEL GRKILETFVL
0401: SHIFSGIEVA YQEAVALKRQ EELIREEEAA GLENEMKGKR GGGANEKDKR AKKKQAKQKK NNRKVKDKER EDKSEARILE RLNDEIAVDD SDGLPSKQAE
0501: EVALKVGLTL EEGASDGPDH LDSSRPMNGK RVSSMEANSS AFSADSTAMN GIHSKINNLP DSRNHLSPNR GKNQRNKGIS IISYAEEDDC LPSSSVTGSS
0601: DRNSSGCGTA PKLDRDTVLL TLKDRLRELG QRLHEKNIEG RKLFKAHFEA MESQTKTNGS SSSSSTEKPP DVLKSPEHSP ELTNDVKANG TANKEVPLAN
0701: GVPEEAVSGM PATTSTEAVP VKAPTRTKVD PVSNKDHGSS LTAQPIGAAP NSSKSTPTDT DKDVPLPSRS PRINRAAPVP PKSPPTDKAT PVRPKSPPAE
0801: KATPVPPKSP PTHKATPVPT KSPPTDKAIP VTPKSPLTDK ATSVPPKSPP AAKAAVVPLK SPATDKANLV PLKSPSAGKS SVVVPITLPS AKDAGTPSRS
0901: LQVDKSIPAP PRLPQVDKAA PLPSASPQTS STTYSEAREE TTPIKVTSTR VSEVAVTTSR PSSAPVFPTP RTTVPATPQV QVSTLLPRSA SEAAGRSGND
1001: PSPSAPAYVP QTYRNAILGK PGLGTSSSIL SYQSTTLGQG TALSQPLSTY ASTASLMMPP AGRNDQLLSA RHGFKSGLGN SDTLDSWQPW KGDSSINNHL
1101: WRDDSPYQRT TNGHAYQQTW KDDAYQQTRG TETENFSRFG GLQPPRQTPV SFVMQQPQAP VAEEYQHLDI INDLLDEGQT NGSKAEPMRH DYHAYGLPFS
1201: LRGNIADSEM ASVSSPGRFS RGSLADLDMA SVSSSRRFSR GNLVDSEMSS VGSPGRFSRG SLADPEMMAS VSSPGRFNST DRYYDDGFSR AYDMSPLQGA
1301: REMQFSSLDT YGTNGGLSDM STSKPWLYGG HSPVNPSSMN LGSLSTNGFP QHHHQMGDYS SNLASGVNGV GSAAAAYRRQ ANNGRW
0101: LVYPQGCDVS NHLSLFLCVA NHDKLLPGWS HFAQFTIAVG NMDPKKIKYS DTLHRFWKKE HDWGWKKFME LSKIQDGFLV DDVLEIIAQV QVIREKVDRP
0201: FRCLDRPYRR ELLRVYTTNI EQIYRRFIEE RRNKLTKLIE DKIRWSSFRA FWSAIDPRTR HRMSREKTDT ILKVLVKHFF VEKEVTSTLV MDSLYTGLKA
0301: LEYQSKGKKG RTKIAELDEL PAPMVSVDMD IFVLAGDVIT LLERAALEPL PCQPVSPKDD KCSQSRMKDG SSGEVNKISM EREERRLTEL GRKILETFVL
0401: SHIFSGIEVA YQEAVALKRQ EELIREEEAA GLENEMKGKR GGGANEKDKR AKKKQAKQKK NNRKVKDKER EDKSEARILE RLNDEIAVDD SDGLPSKQAE
0501: EVALKVGLTL EEGASDGPDH LDSSRPMNGK RVSSMEANSS AFSADSTAMN GIHSKINNLP DSRNHLSPNR GKNQRNKGIS IISYAEEDDC LPSSSVTGSS
0601: DRNSSGCGTA PKLDRDTVLL TLKDRLRELG QRLHEKNIEG RKLFKAHFEA MESQTKTNGS SSSSSTEKPP DVLKSPEHSP ELTNDVKANG TANKEVPLAN
0701: GVPEEAVSGM PATTSTEAVP VKAPTRTKVD PVSNKDHGSS LTAQPIGAAP NSSKSTPTDT DKDVPLPSRS PRINRAAPVP PKSPPTDKAT PVRPKSPPAE
0801: KATPVPPKSP PTHKATPVPT KSPPTDKAIP VTPKSPLTDK ATSVPPKSPP AAKAAVVPLK SPATDKANLV PLKSPSAGKS SVVVPITLPS AKDAGTPSRS
0901: LQVDKSIPAP PRLPQVDKAA PLPSASPQTS STTYSEAREE TTPIKVTSTR VSEVAVTTSR PSSAPVFPTP RTTVPATPQV QVSTLLPRSA SEAAGRSGND
1001: PSPSAPAYVP QTYRNAILGK PGLGTSSSIL SYQSTTLGQG TALSQPLSTY ASTASLMMPP AGRNDQLLSA RHGFKSGLGN SDTLDSWQPW KGDSSINNHL
1101: WRDDSPYQRT TNGHAYQQTW KDDAYQQTRG TETENFSRFG GLQPPRQTPV SFVMQQPQAP VAEEYQHLDI INDLLDEGQT NGSKAEPMRH DYHAYGLPFS
1201: LRGNIADSEM ASVSSPGRFS RGSLADLDMA SVSSSRRFSR GNLVDSEMSS VGSPGRFSRG SLADPEMMAS VSSPGRFNST DRYYDDGFSR AYDMSPLQGA
1301: REMQFSSLDT YGTNGGLSDM STSKPWLYGG HSPVNPSSMN LGSLSTNGFP QHHHQMGDYS SNLASGVNGV GSAAAAYRRQ ANNGRW
0001: MAEAVDEDSG VGRSLEESSN GQHSQAGEAL SEWRSSGQVE NGTPSTSPSY WDIDDDDDYG LKPSELYGQY TWKIPKFSEI TKREHRSNVF EAGGYKWYIL
0101: IYPQGCDVCN HLSLFLCVAN YDKLLPGWSQ FAQFTISVLS QDLKKSKFSD TLHRFWKKEH DWGWKKFMEL PKLKDGFIDE SGCLTIEAKV QVIRERVDRP
0201: FRCLDCGYRR ELVRVYFQNV EQICRRFVEE KRSKLGRLIE DKARWTSFGV FWLGMDQNSR RRMCREKVDV ILKGVVKHFF VEKEVSSTLV MDSLYSGLKA
0301: LEGQTKNMKA RSRLLDAKQL PAPIVSVDKD MFVLVDDVLL LLERAALEPL PPKDEKGRQN RTKDGNDGEE VNKEADERDE RRLTELGRRT VEIFILSHIF
0401: STKIEVAHQE AIALKRQEEL IREEEEAWLA ETEQRAKRGA AEREKKSKKK QAKQKRNKNK GKDKRKEEKV SFATHAKDLE ENQNQNQNDE EEKDSVTEKA
0501: QSSAEKPDTL GDVSDISDSV DGSADILQPD LEDRDSSSVL WDTDALEIHP PSSEGSSRGR GISISTPNGI TEGKSHSTMD DSSSTCSNDS IRSGVTNGSY
0601: QGNSLNFRNQ KSPNKGKNQQ VKAMTDAHSL ASETDDQPST LGTDPKGQNY SSEASNVGES DWVVVSHIQE PEGSRNRIPV GRERKTVQSI VNSVDMDRPK
0701: EKSTAVLSSP RNVAKNPSPL TQTKPEKKSI STADGIPNRK VLATGPPSSS QVVLPSDIQS QTVGLRADMQ KLSAPKQPPA TTISRPSSAP IIPAMRPSPI
0801: TVSSSVQTTT SLPRSVSSAG RLGPDPSLHN QQTYTPQSYK NAIVGNSLGS SSSSFNHHPS SHGVVPTTLP SSSYSQAPTS SYQSSFPYSQ DGLLWTGRSP
0901: SSVNMGMYNN TYSPAVTSNR SLNHMDVQIA QQQAQSMMTD EFPHLDIIND LLEDEQCSNM VYNGSIFNPQ PQVFNGQYSS YHGELLSGGR TRSFGEEGLH
1001: YMARGPYGTD GMMPRQWQMT NMDLSLPAMR SNGMEDGTSS AANYHHSYFG LDASNPSFTS GINGYTEFRP SNGH
0101: IYPQGCDVCN HLSLFLCVAN YDKLLPGWSQ FAQFTISVLS QDLKKSKFSD TLHRFWKKEH DWGWKKFMEL PKLKDGFIDE SGCLTIEAKV QVIRERVDRP
0201: FRCLDCGYRR ELVRVYFQNV EQICRRFVEE KRSKLGRLIE DKARWTSFGV FWLGMDQNSR RRMCREKVDV ILKGVVKHFF VEKEVSSTLV MDSLYSGLKA
0301: LEGQTKNMKA RSRLLDAKQL PAPIVSVDKD MFVLVDDVLL LLERAALEPL PPKDEKGRQN RTKDGNDGEE VNKEADERDE RRLTELGRRT VEIFILSHIF
0401: STKIEVAHQE AIALKRQEEL IREEEEAWLA ETEQRAKRGA AEREKKSKKK QAKQKRNKNK GKDKRKEEKV SFATHAKDLE ENQNQNQNDE EEKDSVTEKA
0501: QSSAEKPDTL GDVSDISDSV DGSADILQPD LEDRDSSSVL WDTDALEIHP PSSEGSSRGR GISISTPNGI TEGKSHSTMD DSSSTCSNDS IRSGVTNGSY
0601: QGNSLNFRNQ KSPNKGKNQQ VKAMTDAHSL ASETDDQPST LGTDPKGQNY SSEASNVGES DWVVVSHIQE PEGSRNRIPV GRERKTVQSI VNSVDMDRPK
0701: EKSTAVLSSP RNVAKNPSPL TQTKPEKKSI STADGIPNRK VLATGPPSSS QVVLPSDIQS QTVGLRADMQ KLSAPKQPPA TTISRPSSAP IIPAMRPSPI
0801: TVSSSVQTTT SLPRSVSSAG RLGPDPSLHN QQTYTPQSYK NAIVGNSLGS SSSSFNHHPS SHGVVPTTLP SSSYSQAPTS SYQSSFPYSQ DGLLWTGRSP
0901: SSVNMGMYNN TYSPAVTSNR SLNHMDVQIA QQQAQSMMTD EFPHLDIIND LLEDEQCSNM VYNGSIFNPQ PQVFNGQYSS YHGELLSGGR TRSFGEEGLH
1001: YMARGPYGTD GMMPRQWQMT NMDLSLPAMR SNGMEDGTSS AANYHHSYFG LDASNPSFTS GINGYTEFRP SNGH
Arabidopsis Description
TRAF1BTNF receptor-associated factor homolog 1b [Source:UniProtKB/Swiss-Prot;Acc:A8MQL1]
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.