Protein ID | OphauB2|7372 |
Gene name | |
Location | Contig_79:32149..33693 |
Strand | + |
Gene length (bp) | 1544 |
Transcript length (bp) | 1233 |
Coding sequence length (bp) | 1233 |
Protein length (aa) | 411 |
PFAM Domain ID | Short name | Long name | E-value | Start | End |
---|---|---|---|---|---|
PF00647 | EF1G | Elongation factor 1 gamma, conserved domain | 4.5E-42 | 248 | 354 |
PF00043 | GST_C | Glutathione S-transferase, C-terminal domain | 3.1E-15 | 96 | 196 |
PF13410 | GST_C_2 | Glutathione S-transferase, C-terminal domain | 1.5E-09 | 126 | 190 |
PF02798 | GST_N | Glutathione S-transferase, N-terminal domain | 2.4E-08 | 4 | 74 |
PF14497 | GST_C_3 | Glutathione S-transferase, C-terminal domain | 1.1E-06 | 129 | 196 |
Swissprot ID | Swissprot Description | Start | End | E-value |
---|---|---|---|---|
sp|P29547|EF1G1_YEAST | Elongation factor 1-gamma 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CAM1 PE=1 SV=2 | 1 | 410 | 1.0E-105 |
sp|P36008|EF1G2_YEAST | Elongation factor 1-gamma 2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TEF4 PE=1 SV=1 | 1 | 410 | 2.0E-97 |
sp|P40921|EF1G_SCHPO | Elongation factor 1-gamma OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=tef3 PE=1 SV=1 | 1 | 410 | 5.0E-83 |
sp|P26641|EF1G_HUMAN | Elongation factor 1-gamma OS=Homo sapiens GN=EEF1G PE=1 SV=3 | 1 | 410 | 2.0E-76 |
sp|Q4R7H5|EF1G_MACFA | Elongation factor 1-gamma OS=Macaca fascicularis GN=EEF1G PE=2 SV=1 | 1 | 410 | 7.0E-76 |
Swissprot ID | Swissprot Description | Start | End | E-value |
---|---|---|---|---|
sp|P29547|EF1G1_YEAST | Elongation factor 1-gamma 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CAM1 PE=1 SV=2 | 1 | 410 | 1.0E-105 |
sp|P36008|EF1G2_YEAST | Elongation factor 1-gamma 2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TEF4 PE=1 SV=1 | 1 | 410 | 2.0E-97 |
sp|P40921|EF1G_SCHPO | Elongation factor 1-gamma OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=tef3 PE=1 SV=1 | 1 | 410 | 5.0E-83 |
sp|P26641|EF1G_HUMAN | Elongation factor 1-gamma OS=Homo sapiens GN=EEF1G PE=1 SV=3 | 1 | 410 | 2.0E-76 |
sp|Q4R7H5|EF1G_MACFA | Elongation factor 1-gamma OS=Macaca fascicularis GN=EEF1G PE=2 SV=1 | 1 | 410 | 7.0E-76 |
sp|P29694|EF1G_RABIT | Elongation factor 1-gamma OS=Oryctolagus cuniculus GN=EEF1G PE=2 SV=3 | 1 | 410 | 8.0E-76 |
sp|A2Q127|EF1G_HORSE | Elongation factor 1-gamma OS=Equus caballus GN=EEF1G PE=2 SV=1 | 1 | 410 | 1.0E-75 |
sp|Q9D8N0|EF1G_MOUSE | Elongation factor 1-gamma OS=Mus musculus GN=Eef1g PE=1 SV=3 | 1 | 410 | 6.0E-75 |
sp|Q68FR6|EF1G_RAT | Elongation factor 1-gamma OS=Rattus norvegicus GN=Eef1g PE=2 SV=3 | 1 | 410 | 6.0E-75 |
sp|Q29387|EF1G_PIG | Elongation factor 1-gamma (Fragment) OS=Sus scrofa GN=EEF1G PE=2 SV=2 | 6 | 410 | 3.0E-73 |
sp|P12261|EF1G_ARTSA | Elongation factor 1-gamma OS=Artemia salina PE=1 SV=3 | 1 | 410 | 1.0E-71 |
sp|Q6PE25|EF1G_DANRE | Elongation factor 1-gamma OS=Danio rerio GN=eef1g PE=2 SV=1 | 1 | 410 | 1.0E-71 |
sp|P26642|EF1GA_XENLA | Elongation factor 1-gamma-A OS=Xenopus laevis GN=eef1g-a PE=1 SV=1 | 1 | 410 | 5.0E-70 |
sp|Q90YC0|EF1G_CARAU | Elongation factor 1-gamma OS=Carassius auratus GN=eef1g PE=2 SV=1 | 1 | 410 | 2.0E-69 |
sp|Q3SZV3|EF1G_BOVIN | Elongation factor 1-gamma OS=Bos taurus GN=EEF1G PE=2 SV=1 | 1 | 410 | 3.0E-69 |
sp|Q91375|EF1GB_XENLA | Elongation factor 1-gamma-B OS=Xenopus laevis GN=eef1g-b PE=2 SV=1 | 1 | 410 | 4.0E-67 |
sp|Q5Z627|EF1G3_ORYSJ | Elongation factor 1-gamma 3 OS=Oryza sativa subsp. japonica GN=Os06g0571400 PE=2 SV=1 | 17 | 393 | 1.0E-56 |
sp|Q6YW46|EF1G2_ORYSJ | Elongation factor 1-gamma 2 OS=Oryza sativa subsp. japonica GN=Os02g0220500 PE=2 SV=2 | 6 | 387 | 4.0E-55 |
sp|Q00717|STCT_EMENI | Putative sterigmatocystin biosynthesis protein stcT OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=stcT PE=4 SV=1 | 1 | 202 | 4.0E-52 |
sp|P54412|EF1G_CAEEL | Probable elongation factor 1-gamma OS=Caenorhabditis elegans GN=eef-1G PE=3 SV=1 | 4 | 410 | 2.0E-51 |
sp|Q9NJH0|EF1G_DROME | Elongation factor 1-gamma OS=Drosophila melanogaster GN=Ef1gamma PE=2 SV=2 | 1 | 410 | 2.0E-51 |
sp|O04487|EF1G1_ARATH | Probable elongation factor 1-gamma 1 OS=Arabidopsis thaliana GN=At1g09640 PE=2 SV=1 | 16 | 387 | 3.0E-51 |
sp|Q9FUM1|EF1G_PRUAV | Elongation factor 1-gamma OS=Prunus avium PE=2 SV=1 | 33 | 382 | 7.0E-50 |
sp|Q9ZRI7|EF1G1_ORYSJ | Elongation factor 1-gamma 1 OS=Oryza sativa subsp. japonica GN=Os02g0220600 PE=2 SV=1 | 42 | 387 | 3.0E-48 |
sp|Q9FVT2|EF1G2_ARATH | Probable elongation factor 1-gamma 2 OS=Arabidopsis thaliana GN=At1g57720 PE=2 SV=1 | 17 | 387 | 3.0E-47 |
sp|B5BP46|YP52_SCHPO | Putative glutathione S-transferase C1183.02 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC460.02c PE=3 SV=1 | 1 | 195 | 2.0E-27 |
sp|O74830|YC12_SCHPO | Putative glutathione S-transferase C1183.02 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPCC1183.02 PE=3 SV=1 | 1 | 195 | 1.0E-24 |
sp|P42936|YG4D_YEAST | Putative elongation factor 1 gamma homolog OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=YGR201C PE=4 SV=3 | 1 | 198 | 3.0E-24 |
sp|P34715|EF1G_TRYCR | Elongation factor 1-gamma OS=Trypanosoma cruzi PE=2 SV=1 | 27 | 410 | 2.0E-22 |
sp|P30102|GSTY2_PICKU | Glutathione S-transferase Y-2 OS=Pichia kudriavzevii GN=GSTY2 PE=1 SV=2 | 1 | 197 | 3.0E-16 |
sp|P49696|SYVC_TAKRU | Valine--tRNA ligase OS=Takifugu rubripes GN=vars PE=3 SV=1 | 84 | 210 | 1.0E-12 |
sp|P26640|SYVC_HUMAN | Valine--tRNA ligase OS=Homo sapiens GN=VARS PE=1 SV=4 | 83 | 236 | 3.0E-12 |
sp|Q04462|SYVC_RAT | Valine--tRNA ligase OS=Rattus norvegicus GN=Vars PE=2 SV=2 | 83 | 235 | 4.0E-12 |
sp|Q9Z1Q9|SYVC_MOUSE | Valine--tRNA ligase OS=Mus musculus GN=Vars PE=1 SV=1 | 83 | 236 | 6.0E-12 |
sp|P42761|GSTFA_ARATH | Glutathione S-transferase F10 OS=Arabidopsis thaliana GN=GSTF10 PE=1 SV=3 | 3 | 204 | 3.0E-10 |
sp|O65857|GSTF1_ORYSJ | Probable glutathione S-transferase GSTF1 OS=Oryza sativa subsp. japonica GN=GSTF1 PE=1 SV=2 | 26 | 196 | 2.0E-09 |
sp|O80852|GSTF9_ARATH | Glutathione S-transferase F9 OS=Arabidopsis thaliana GN=GSTF9 PE=1 SV=1 | 2 | 196 | 3.0E-08 |
sp|P46420|GSTF4_MAIZE | Glutathione S-transferase 4 OS=Zea mays GN=GST4 PE=1 SV=2 | 33 | 203 | 4.0E-08 |
sp|Q96324|GSTFB_ARATH | Glutathione S-transferase F11 OS=Arabidopsis thaliana GN=GSTF11 PE=2 SV=1 | 10 | 196 | 4.0E-08 |
sp|Q9LZI9|GSTFD_ARATH | Glutathione S-transferase F13 OS=Arabidopsis thaliana GN=GSTF13 PE=3 SV=1 | 44 | 205 | 3.0E-07 |
sp|Q9VG98|GSTD2_DROME | Glutathione S-transferase D2 OS=Drosophila melanogaster GN=GstD2 PE=1 SV=1 | 18 | 190 | 3.0E-07 |
sp|Q9VG95|GSTD5_DROME | Glutathione S-transferase D5 OS=Drosophila melanogaster GN=GstD5 PE=1 SV=2 | 14 | 189 | 5.0E-07 |
sp|Q9SRY6|GSTF5_ARATH | Glutathione S-transferase F5 OS=Arabidopsis thaliana GN=GSTF5 PE=3 SV=2 | 27 | 196 | 8.0E-07 |
sp|Q9FE46|GSTFC_ARATH | Glutathione S-transferase F12 OS=Arabidopsis thaliana GN=GSTF12 PE=1 SV=1 | 8 | 196 | 3.0E-06 |
GO Term | Description | Terminal node |
---|---|---|
GO:0006414 | translational elongation | Yes |
GO:0003746 | translation elongation factor activity | Yes |
GO:0006749 | glutathione metabolic process | Yes |
GO:0005515 | protein binding | Yes |
GO:0034645 | cellular macromolecule biosynthetic process | No |
GO:0043603 | cellular amide metabolic process | No |
GO:0006807 | nitrogen compound metabolic process | No |
GO:0006575 | cellular modified amino acid metabolic process | No |
GO:1901576 | organic substance biosynthetic process | No |
GO:0034641 | cellular nitrogen compound metabolic process | No |
GO:0003674 | molecular_function | No |
GO:0009059 | macromolecule biosynthetic process | No |
GO:0005488 | binding | No |
GO:0008150 | biological_process | No |
GO:0006790 | sulfur compound metabolic process | No |
GO:0043170 | macromolecule metabolic process | No |
GO:0006518 | peptide metabolic process | No |
GO:0097159 | organic cyclic compound binding | No |
GO:0090079 | translation regulator activity, nucleic acid binding | No |
GO:0044249 | cellular biosynthetic process | No |
GO:1901363 | heterocyclic compound binding | No |
GO:0044260 | cellular macromolecule metabolic process | No |
GO:0071704 | organic substance metabolic process | No |
GO:0044237 | cellular metabolic process | No |
GO:0008135 | translation factor activity, RNA binding | No |
GO:0008152 | metabolic process | No |
GO:0009987 | cellular process | No |
GO:0009058 | biosynthetic process | No |
GO:0003676 | nucleic acid binding | No |
GO:1901564 | organonitrogen compound metabolic process | No |
GO:0045182 | translation regulator activity | No |
SignalP signal predicted | Location (based on Ymax) |
D score (significance: > 0.45) |
---|---|---|
No | 1 - 35 | 0.45 |
Type of sequence | Sequence |
---|---|
Locus | Download genbank file of locus
The gene with 5 kb flanks (if sufficient flanking sequence is available). For use in cloning design programs. NOTE: features (genes or exons) that are only partially contained within the sequence are completely excluded. |
Protein | >OphauB2|7372 MAFGTLFTTADNPRSTAIKAVAKANNLDLKIVEADTTKPSIEHLKGNALGKIPAFIGEDGFTLSECIAIAIYVTS QNEKTTLLGKTKQDYASILKWMSFFNSEVVPPMGNWFLPLLGKFPYNKKSVDDASKAVEKAVGVVEKYLLRHTYL VGERITLADLFCAPLLYRGFQYFFDKQWRQEHPNVTRWYDTVVNQPIYTAVSKKLDYLDKPALTNVPPKKTEQPK AAAAAAPKAAAPAAAAEDEPAPKPKHPCESLEKASFPLDEWKRHFSNNETPDALAWFWKNVPLEKEYSIWRCDYK YNDELTLTFMSNNLIGGFNTRLEASRKYIFGSASVYGENNDSVIQGAFVIRGQDYESVFDVAPDYESYTFSKLDP SKAEDREFLEAMWSWEKPVVVKGKEYPHACGKVFK* |
Coding | >OphauB2|7372 ATGGCTTTCGGCACTCTTTTCACCACTGCGGATAACCCCCGCTCCACGGCCATCAAGGCTGTTGCAAAGGCCAAC AACCTTGACCTCAAGATTGTCGAGGCCGACACCACGAAGCCTAGCATCGAGCACCTCAAGGGCAATGCTCTAGGC AAGATCCCCGCCTTCATTGGCGAAGATGGCTTCACTCTGTCCGAGTGCATTGCCATTGCCATCTATGTCACCTCA CAGAACGAGAAGACTACTCTTCTCGGAAAAACCAAGCAGGATTATGCATCTATTCTCAAGTGGATGTCCTTCTTC AACTCTGAAGTTGTCCCTCCCATGGGCAACTGGTTCTTGCCTCTCCTTGGGAAGTTCCCGTATAATAAGAAGTCT GTCGATGACGCCTCCAAGGCTGTCGAGAAGGCTGTGGGTGTGGTTGAGAAATACCTCTTGCGCCACACTTACTTG GTTGGTGAACGCATCACACTTGCCGACCTGTTTTGTGCCCCTCTCCTCTACCGTGGCTTTCAGTACTTCTTCGAC AAGCAGTGGCGCCAGGAGCACCCCAACGTAACCCGTTGGTATGATACGGTCGTTAACCAGCCCATCTACACTGCT GTTTCCAAGAAACTCGACTACCTTGACAAGCCTGCTCTTACAAACGTTCCCCCTAAGAAAACGGAGCAGCCCAAG GCTGCGGCTGCGGCTGCTCCCAAGGCTGCTGCACCCGCTGCTGCGGCGGAAGATGAGCCTGCTCCCAAGCCCAAG CACCCTTGTGAGTCTCTGGAAAAGGCATCTTTCCCTCTTGATGAGTGGAAGCGCCACTTCTCCAACAACGAGACA CCGGATGCTCTCGCGTGGTTCTGGAAGAATGTTCCTCTTGAGAAGGAGTACTCCATCTGGCGCTGCGACTACAAG TACAATGACGAACTCACTCTAACATTCATGTCAAACAACCTCATTGGCGGCTTCAACACCCGCCTTGAGGCCTCT CGCAAGTATATCTTTGGCAGTGCCTCTGTTTATGGCGAGAATAACGACTCGGTTATCCAGGGAGCCTTTGTGATC CGTGGCCAGGATTACGAGTCCGTGTTTGATGTAGCTCCTGACTACGAGAGTTACACATTTTCTAAGCTGGACCCC AGCAAGGCCGAGGACCGTGAGTTCCTTGAAGCTATGTGGAGCTGGGAGAAGCCCGTTGTTGTCAAGGGCAAGGAG TACCCTCATGCTTGCGGCAAGGTTTTCAAATAA |
Transcript | >OphauB2|7372 ATGGCTTTCGGCACTCTTTTCACCACTGCGGATAACCCCCGCTCCACGGCCATCAAGGCTGTTGCAAAGGCCAAC AACCTTGACCTCAAGATTGTCGAGGCCGACACCACGAAGCCTAGCATCGAGCACCTCAAGGGCAATGCTCTAGGC AAGATCCCCGCCTTCATTGGCGAAGATGGCTTCACTCTGTCCGAGTGCATTGCCATTGCCATCTATGTCACCTCA CAGAACGAGAAGACTACTCTTCTCGGAAAAACCAAGCAGGATTATGCATCTATTCTCAAGTGGATGTCCTTCTTC AACTCTGAAGTTGTCCCTCCCATGGGCAACTGGTTCTTGCCTCTCCTTGGGAAGTTCCCGTATAATAAGAAGTCT GTCGATGACGCCTCCAAGGCTGTCGAGAAGGCTGTGGGTGTGGTTGAGAAATACCTCTTGCGCCACACTTACTTG GTTGGTGAACGCATCACACTTGCCGACCTGTTTTGTGCCCCTCTCCTCTACCGTGGCTTTCAGTACTTCTTCGAC AAGCAGTGGCGCCAGGAGCACCCCAACGTAACCCGTTGGTATGATACGGTCGTTAACCAGCCCATCTACACTGCT GTTTCCAAGAAACTCGACTACCTTGACAAGCCTGCTCTTACAAACGTTCCCCCTAAGAAAACGGAGCAGCCCAAG GCTGCGGCTGCGGCTGCTCCCAAGGCTGCTGCACCCGCTGCTGCGGCGGAAGATGAGCCTGCTCCCAAGCCCAAG CACCCTTGTGAGTCTCTGGAAAAGGCATCTTTCCCTCTTGATGAGTGGAAGCGCCACTTCTCCAACAACGAGACA CCGGATGCTCTCGCGTGGTTCTGGAAGAATGTTCCTCTTGAGAAGGAGTACTCCATCTGGCGCTGCGACTACAAG TACAATGACGAACTCACTCTAACATTCATGTCAAACAACCTCATTGGCGGCTTCAACACCCGCCTTGAGGCCTCT CGCAAGTATATCTTTGGCAGTGCCTCTGTTTATGGCGAGAATAACGACTCGGTTATCCAGGGAGCCTTTGTGATC CGTGGCCAGGATTACGAGTCCGTGTTTGATGTAGCTCCTGACTACGAGAGTTACACATTTTCTAAGCTGGACCCC AGCAAGGCCGAGGACCGTGAGTTCCTTGAAGCTATGTGGAGCTGGGAGAAGCCCGTTGTTGTCAAGGGCAAGGAG TACCCTCATGCTTGCGGCAAGGTTTTCAAATAA |
Gene | >OphauB2|7372 ATGGCTTTCGGCACTCTTTTCACCACTGCGGTAAGCTTCAAGCCTTCTCTGCGGCTCAAGCTGCTGCGCAATACT AGCTTCATCTAGCGGCAGAAAGCTGACTTGGCTGCTGCAGGATAACCCCCGCTCCACGGCCATCAAGGCTGTTGC AAAGGCCAACAACCTTGACCTCAAGATTGTCGAGGCCGACACCACGAAGCCTAGCATCGAGCACCTCAAGGGCAA TGCTCTAGGCAAGATCCCCGCCTTCATTGGCGAAGATGGCTTCACTCTGTCCGAGTGCATTGCCATTGCCATCTA TGGTCTGTCTGCCCCGCAGTAACCATCTACCCCCGTTGCGTGATGATATAGCTTTCAAACTACAGTTATCCCTGT CTGAAAAACTATGTGGATAGTGTCTAACATCTGATTCCGCTCTATACTTGGCATTGATCTGTGTTTTGTCCTCCA TTGCAGACTCTTACTGACACATTTCTAGTCACCTCACAGAACGAGAAGACTACTCTTCTCGGAAAAACCAAGCAG GAGTAAGCACTTGAAACTTCTTATAACAGCTACAGCTGCTAATTTGACGCAGTTATGCATCTATTCTCAAGTGGA TGTCCTTCTTCAACTCTGAAGTTGTCCCTCCCATGGGCAACTGGTTCTTGCCTCTCCTTGGGAAGTTCCCGTATA ATAAGAAGTCTGTCGATGACGCCTCCAAGGCTGTCGAGAAGGCTGTGGGTGTGGTTGAGAAATACCTCTTGCGCC ACACTTACTTGGTTGGTGAACGCATCACACTTGCCGACCTGTTTTGTGCCCCTCTCCTCTACCGTGGCTTTCAGT ACTTCTTCGACAAGCAGTGGCGCCAGGAGCACCCCAACGTAACCCGTTGGTATGATACGGTCGTTAACCAGCCCA TCTACACTGCTGTTTCCAAGAAACTCGACTACCTTGACAAGCCTGCTCTTACAAACGTTCCCCCTAAGAAAACGG AGCAGCCCAAGGCTGCGGCTGCGGCTGCTCCCAAGGCTGCTGCACCCGCTGCTGCGGCGGAAGATGAGCCTGCTC CCAAGCCCAAGCACCCTTGTGAGTCTCTGGAAAAGGCATCTTTCCCTCTTGATGAGTGGAAGCGCCACTTCTCCA ACAACGAGACACCGGATGCTCTCGCGTGGTTCTGGAAGAATGTTCCTCTTGAGAAGGAGTACTCCATCTGGCGCT GCGACTACAAGTACAATGACGAACTCACTCTAACATTCATGTCAAACAACCTCATTGGCGGCTTCAACACCCGCC TTGAGGCCTCTCGCAAGTATATCTTTGGCAGTGCCTCTGTTTATGGCGAGAATAACGACTCGGTTATCCAGGGAG CCTTTGTGATCCGTGGCCAGGATTACGAGTCCGTGTTTGATGTAGCTCCTGACTACGAGAGTTACACATTTTCTA AGCTGGACCCCAGCAAGGCCGAGGACCGTGAGTTCCTTGAAGCTATGTGGAGCTGGGAGAAGCCCGTTGTTGTCA AGGGCAAGGAGTACCCTCATGCTTGCGGCAAGGTTTTCAAATAA |