Subcellular Localization
min:
: max
Winner_takes_all: plasma membrane
Predictor Summary:
Predictor Summary:
- mitochondrion 2
- cytosol 1
- extracellular 1
- golgi 1
- plasma membrane 2
- endoplasmic reticulum 1
- vacuole 1
- nucleus 1
Predictors | GFP | MS/MS | Papers | ||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
PPI
No PPI Data
Homology
Paralog
locus | Identity | Homology Identity |
---|
Ortholog
locus | Homology Species | Location | Identity | Homology Identity |
---|---|---|---|---|
Zm00001d034411_P001 | Maize | nucleus | 14.1 | 98.26 |
Zm00001d011587_P001 | Maize | nucleus | 14.93 | 97.28 |
Zm00001d037286_P001 | Maize | nucleus | 13.93 | 97.09 |
KXG36842 | Sorghum | plasma membrane | 85.74 | 91.22 |
Zm00001d022378_P003 | Maize | cytosol | 83.65 | 88.45 |
Zm00001d051619_P001 | Maize | peroxisome | 5.67 | 88.31 |
HORVU7Hr1G058340.1 | Barley | cytosol, endoplasmic reticulum, extracellular, golgi, plasma membrane, vacuole | 7.26 | 82.08 |
Os07t0657200-01 | Rice | plastid | 75.4 | 80.21 |
TraesCS2A01G132900.1 | Wheat | cytosol | 71.56 | 75.59 |
TraesCS2D01G135000.1 | Wheat | cytosol | 71.23 | 75.24 |
TraesCS2B01G156400.3 | Wheat | golgi | 70.89 | 74.69 |
HORVU2Hr1G023350.3 | Barley | cytosol, plastid | 66.14 | 72.89 |
Zm00001d015774_P001 | Maize | mitochondrion | 11.84 | 71.72 |
GSMUA_AchrUn_... | Banana | extracellular | 12.76 | 64.56 |
KRH23909 | Soybean | cytosol | 9.67 | 64.09 |
GSMUA_Achr3P08600_001 | Banana | cytosol, endoplasmic reticulum, extracellular, golgi, mitochondrion, plasma membrane, plastid, vacuole | 54.8 | 60.33 |
Zm00001d019612_P001 | Maize | plastid | 23.52 | 59.24 |
GSMUA_AchrUn_... | Banana | cytosol, endoplasmic reticulum, extracellular, golgi, mitochondrion, plasma membrane, plastid, vacuole | 9.84 | 58.71 |
GSMUA_Achr8P22150_001 | Banana | cytosol | 54.55 | 57.93 |
VIT_13s0158g00140.t01 | Wine grape | cytosol | 52.88 | 57.69 |
CDY11476 | Canola | plastid | 31.03 | 56.97 |
KRH15712 | Soybean | mitochondrion, plastid | 8.09 | 55.11 |
Solyc01g088020.2.1 | Tomato | extracellular | 51.54 | 54.98 |
CDX79419 | Canola | cytosol | 50.54 | 54.84 |
KRH23912 | Soybean | cytosol | 41.78 | 54.75 |
KRH39898 | Soybean | nucleus | 52.29 | 54.62 |
AT3G63460.1 | Thale cress | cytosol | 50.21 | 54.53 |
Bra003525.1-P | Field mustard | cytosol | 49.96 | 54.16 |
CDX67919 | Canola | cytosol | 50.04 | 54.15 |
Bra007747.1-P | Field mustard | cytosol | 49.46 | 53.96 |
Bra007745.1-P | Field mustard | cytosol | 49.37 | 53.87 |
CDX76700 | Canola | cytosol | 49.29 | 53.83 |
CDX93907 | Canola | cytosol | 49.29 | 53.39 |
GSMUA_AchrUn_... | Banana | mitochondrion | 35.45 | 52.66 |
AT1G18830.1 | Thale cress | cytosol, endoplasmic reticulum, extracellular, golgi, nucleus, plasma membrane, plastid, vacuole | 42.2 | 52.22 |
Bra016539.1-P | Field mustard | cytosol | 38.95 | 51.21 |
CDX96696 | Canola | cytosol | 39.2 | 50.27 |
CDX83811 | Canola | cytosol | 39.03 | 50.0 |
HORVU7Hr1G058330.1 | Barley | cytosol, plastid | 3.34 | 47.06 |
Protein Annotations
Gene3D:1.20.940.10 | Gene3D:1.25.40.1030 | EntrezGene:100279874 | Gene3D:2.130.10.10 | MapMan:22.4.1.2 | UniProt:A0A1D6F2S1 |
InterPro:ACE1_Sec16_Sec31 | GO:GO:0003674 | GO:GO:0005488 | GO:GO:0005515 | InterPro:IPR001680 | InterPro:IPR015943 |
InterPro:IPR017986 | ProteinID:ONM25746.1 | PFAM:PF00400 | PFAM:PF12931 | ScanProsite:PS00678 | PFscan:PS50082 |
PFscan:PS50294 | PANTHER:PTHR13923 | PANTHER:PTHR13923:SF11 | SMART:SM00320 | SUPFAM:SSF50978 | UniParc:UPI000844A162 |
InterPro:WD40/YVTN_repeat-like_dom_sf | InterPro:WD40_repeat | InterPro:WD40_repeat_CS | InterPro:WD40_repeat_dom | InterPro:WD40_repeat_dom_sf | EnsemblPlantsGene:Zm00001d007075 |
EnsemblPlants:Zm00001d007075_P007 | EnsemblPlants:Zm00001d007075_T007 | SEG:seg | : | : | : |
Description
Protein transport protein SEC31 homolog B
Coordinates
chr2:+:221665730..221685457
Molecular Weight (calculated)
130680.0 Da
IEP (calculated)
6.353
GRAVY (calculated)
-0.209
Length
1199 amino acids
Sequence
(BLAST)
(BLAST)
0001: MACIKSAHRA ALTALAPDAP YLAAGTMTGA VDLSFSASAN IEIFRLDFQS DSTDLPILAS APSPDRFNRL SWSRPGAVEG DSFALGLLAG GLSDGSVAVW
0101: NPLSMISSEG KAEDAMVARL EKHTGPVCGL EFSELTPNRL ASGAEQGELC IWDLKNPVEP IVYPPLKSVG SHAQAEISCL SWNPKFQHIV ASTSSNGMTV
0201: VWDLRNQKPL TSFSDSNRRK CSVLQWNPDM STQLIVASDD DNSPSLRVWD VRKTISPVRE FVGHSKGVIA MSWCPYDSSF LLTCSKDNRT ICWDTVSGEI
0301: ISELPASANW NFDLHWYRKI PGVIAASSFD GKIGIYNLEF SGLYATGDAV GAPVRPRAPA PKWLKCPTGA SFGFGGKLVS FHPVAPTQGA QTSTSEVHVH
0401: NLVIEQSLVS RSTEFEAAIQ NGDKSSLRAL CEKKSQESLS DEERETWGFL RVMFEDGDFA RTKLLAHLGF EPPQAPPASS TDELSQTLAD TLNIDHAAVT
0501: DNADAQFLID NGDDFFNNPR PSEASLAEES VSTNGQQIEQ EVSGDSVPSD PSIDKSIQHA LVVGDYKGAV NQCLASNRMA DALVIAHAGG SALWESTRNH
0601: YLKNSISPYL KVVSAMVGND LMSFVSTWPL SSWKETLALL CTFAQKEEWH ILCDTLASRL LNVGDTLAAT LCYICAGNID KAVEIWSRTL KSEDGGKTYV
0701: DLLQDLMEKT ITLALATGQK RFSASLSKLI ENYAELLASQ GLLKTAMEYL KLLGSDEHSH ELAILRDRIA CSTEGHFKHI SLYFLFQNDN VSSVSESTGT
0801: PSPYVTNQPY TTPDHSQNVY QVSPCTIISY FKICHLIYRV LTTANSRYLN HTMCQAIHIQ KLTHNKVQEP MDTTMHINLS NQPICLFHLA HLPTLRISPH
0901: LKLMNVLCLF PFKGMQNYYS LFLLTFFLQQ QPGPSHVPVP QQTVKTFTPA NPAGLKNPGQ YQQPNTLGSQ LYTGATNQPY SSGPSAPYPS GPPTTFHQPV
1001: APVQYQSAAP PVSSFGPTTP VPGTVPNQMF PHSAATNSTS RFMPSNNQSF APRPGLSPVQ PSSPTQVQAQ PAPPAPPATV QTADTTKVSA ELRPVIGTLT
1101: RLFDETTKAL GGSQATQAKK REIEDNSRKI GALFSKLNSG DISPNVSSKL IQLCSAIDAS DFVTAMHLQV LLTTSDWDEC NFWLAALKRM IKTRQNFRM
0101: NPLSMISSEG KAEDAMVARL EKHTGPVCGL EFSELTPNRL ASGAEQGELC IWDLKNPVEP IVYPPLKSVG SHAQAEISCL SWNPKFQHIV ASTSSNGMTV
0201: VWDLRNQKPL TSFSDSNRRK CSVLQWNPDM STQLIVASDD DNSPSLRVWD VRKTISPVRE FVGHSKGVIA MSWCPYDSSF LLTCSKDNRT ICWDTVSGEI
0301: ISELPASANW NFDLHWYRKI PGVIAASSFD GKIGIYNLEF SGLYATGDAV GAPVRPRAPA PKWLKCPTGA SFGFGGKLVS FHPVAPTQGA QTSTSEVHVH
0401: NLVIEQSLVS RSTEFEAAIQ NGDKSSLRAL CEKKSQESLS DEERETWGFL RVMFEDGDFA RTKLLAHLGF EPPQAPPASS TDELSQTLAD TLNIDHAAVT
0501: DNADAQFLID NGDDFFNNPR PSEASLAEES VSTNGQQIEQ EVSGDSVPSD PSIDKSIQHA LVVGDYKGAV NQCLASNRMA DALVIAHAGG SALWESTRNH
0601: YLKNSISPYL KVVSAMVGND LMSFVSTWPL SSWKETLALL CTFAQKEEWH ILCDTLASRL LNVGDTLAAT LCYICAGNID KAVEIWSRTL KSEDGGKTYV
0701: DLLQDLMEKT ITLALATGQK RFSASLSKLI ENYAELLASQ GLLKTAMEYL KLLGSDEHSH ELAILRDRIA CSTEGHFKHI SLYFLFQNDN VSSVSESTGT
0801: PSPYVTNQPY TTPDHSQNVY QVSPCTIISY FKICHLIYRV LTTANSRYLN HTMCQAIHIQ KLTHNKVQEP MDTTMHINLS NQPICLFHLA HLPTLRISPH
0901: LKLMNVLCLF PFKGMQNYYS LFLLTFFLQQ QPGPSHVPVP QQTVKTFTPA NPAGLKNPGQ YQQPNTLGSQ LYTGATNQPY SSGPSAPYPS GPPTTFHQPV
1001: APVQYQSAAP PVSSFGPTTP VPGTVPNQMF PHSAATNSTS RFMPSNNQSF APRPGLSPVQ PSSPTQVQAQ PAPPAPPATV QTADTTKVSA ELRPVIGTLT
1101: RLFDETTKAL GGSQATQAKK REIEDNSRKI GALFSKLNSG DISPNVSSKL IQLCSAIDAS DFVTAMHLQV LLTTSDWDEC NFWLAALKRM IKTRQNFRM
001: MDCIKSIGRS AFVAIAPESP FIAAGTMAGA VDLSFSSSAN LEIFELDFQS NDRELKLVGQ CQSSERFNRL AWGSYGSGSD GLIAGGLVDG NIGLWNPISS
101: ESGEIAHVRD LSKHKGPVRG LEFNVKSPNQ LASGADDGTV CIWDLANPSK PSHYLKGTGS YMQSEISSLS WNKGFQHVLA STSHNGTTVI WDVNNEKIIT
201: DLKTTVRCSV LQWDPDHFNQ ILVASDEDSS PNVKLLDIRY LQSPVRTFVG HQRGVIAMEW CPSDSLYLLT CGKDNRTICW NTKTGKIVAE LPTGQNWNFD
301: VHWYPKMPGV ISASSVDGKI GIYNLEGCSS YGTEVNNLYS DPLTAPKWWK RPAGASFGFG GKLISFNKNL PEASEVFLHS LATEKSLVNR ISKFEAALEN
401: GEKTSLRGLC EKKTEEAESE EEKETWGLLK IMLEEDGNAK TKLRSHLGFS LPSEENDQTA NEPHATCSST NVEETQKVPE PEGEEEESSD PTFDDAIQRS
501: LIVGDYKEAV AQCFSANKMA DALVIAHVGG TELWESTRDK YIRMSNAPYM KVVSAMMNND LMTYLHTRQP KSWKETLALI CTFAEGDEWI SLCDALASNL
601: MAAGFTLAAT LCYICAGNVD KTVDIWSMSL EKQSAGKSYA ECVQDLMEKT LVLALTTCNK RVSASLRKLF ESYAEILASQ GLIATAMKFL KLLESGDFSP
701: ELSILRDRIS LYAEPEAANT SASTNTQPKI SNPYQEKSFT PAPLSNAQPS RSITFFPLNP PRELKNADQY QQPTMDYHSF NRSAGPAYNA PPGPGSYRSI
801: HSQVGPYINS KIPQTVAPPV RPMTPTHQVA VQPEPVAPPP TVQTADTSNV PAHQKPIVAS LTRLFKETFE PLRGYSRDTP AKKREAEDNC SRKLGALFSK
901: LNNGDISKNA AEKLTQLCQA LDKRDFGAAL KIQGLMTSTE WDECSSWLPT LKKMIVTGRQ NVR
101: ESGEIAHVRD LSKHKGPVRG LEFNVKSPNQ LASGADDGTV CIWDLANPSK PSHYLKGTGS YMQSEISSLS WNKGFQHVLA STSHNGTTVI WDVNNEKIIT
201: DLKTTVRCSV LQWDPDHFNQ ILVASDEDSS PNVKLLDIRY LQSPVRTFVG HQRGVIAMEW CPSDSLYLLT CGKDNRTICW NTKTGKIVAE LPTGQNWNFD
301: VHWYPKMPGV ISASSVDGKI GIYNLEGCSS YGTEVNNLYS DPLTAPKWWK RPAGASFGFG GKLISFNKNL PEASEVFLHS LATEKSLVNR ISKFEAALEN
401: GEKTSLRGLC EKKTEEAESE EEKETWGLLK IMLEEDGNAK TKLRSHLGFS LPSEENDQTA NEPHATCSST NVEETQKVPE PEGEEEESSD PTFDDAIQRS
501: LIVGDYKEAV AQCFSANKMA DALVIAHVGG TELWESTRDK YIRMSNAPYM KVVSAMMNND LMTYLHTRQP KSWKETLALI CTFAEGDEWI SLCDALASNL
601: MAAGFTLAAT LCYICAGNVD KTVDIWSMSL EKQSAGKSYA ECVQDLMEKT LVLALTTCNK RVSASLRKLF ESYAEILASQ GLIATAMKFL KLLESGDFSP
701: ELSILRDRIS LYAEPEAANT SASTNTQPKI SNPYQEKSFT PAPLSNAQPS RSITFFPLNP PRELKNADQY QQPTMDYHSF NRSAGPAYNA PPGPGSYRSI
801: HSQVGPYINS KIPQTVAPPV RPMTPTHQVA VQPEPVAPPP TVQTADTSNV PAHQKPIVAS LTRLFKETFE PLRGYSRDTP AKKREAEDNC SRKLGALFSK
901: LNNGDISKNA AEKLTQLCQA LDKRDFGAAL KIQGLMTSTE WDECSSWLPT LKKMIVTGRQ NVR
Arabidopsis Description
SEC31AProtein transport protein SEC31 homolog A [Source:UniProtKB/Swiss-Prot;Acc:F4ICD9]
SUBAcon: [cytosol]
SUBAcon: [cytosol]
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.