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Field | Value |
---|---|
Gene ID | LotjaGi6g1v0067300 |
Transcript ID | LotjaGi6g1v0067300.1 |
Related isoforms 7 | |
Lotus japonicus genome version | Gifu v1.2 |
Description | Methionine aminopeptidase 2; TAIR: AT3G59990.1 methionine aminopeptidase 2B; Swiss-Prot: sp|Q56Y85|MAP22_ARATH Methionine aminopeptidase 2B; TrEMBL-Plants: tr|A0A151RPI8|A0A151RPI8_CAJCA Methionine aminopeptidase 2; Found in the gene: LotjaGi6g1v0067300 |
Working Lj name | n.a. |
Genomic sequence (LjG1.1_chr6:12772422..12782415) extracted from Lotus japonicus Gifu genome v1.2.
TTTTTAGTGTATATTAACGTGAATATACAGAATATCATATTTTAAGTATACTCAAATTCATTTAAAAAAAAAGTATACTC AAATTTGTGAATAATATATTTTTATTTCAATATGACATTTTAAAATAAATATTCAAAAAATGTGTGCAAAATAATATTGA CAATATTTTTATTTGAAATGAAAGAGAGGATCCAAATACCCTAATTTCCTACATTCTTCATCTCTACGAGCCAGTTTTCC CCAAATCCCTCGCCGCCGCTCCGTCAGAAGATTTCATCACCGCACTTCATTCAGGCATGTTCTTTGAATTATGTGGGTTT ATACTTGTTTGTTATTCATTTTCTACTGGTTCTACAAGACTTGTCAGTTGCGTCGTGTAGTGAAAATGCTTTATTATATA GACCACAGTGTAATTTGATCAAGCATGCATGCAGGTGTTCATTCATGGCGGAGGAAAAATCTCATTCAGAGAATTTACTA GAAGAAAATGGAACTTCAGAGGATCCAACTCATGTAGAACTAGAAGGGGCTGGTGATCTTTCTCTGCCTTCACAAAAAGA GGAAGATGATGGTAAAGGTAATACTACTTTTGTTGTGCATGTTTTATAGCTCAATGAGAATACATTATTATTATTGTTTT TATTATTATTATTATTATTTGGATCTGTTAGATTGTTAGAGCTAAAGCGCTAACTATATCTTTGTGTTGGCAAATTCAAA GTGATTGATTCAACAGAATTTTGACTCTGTTCCGATTACTGAGCTTCTAACTCCTCTCTCTTTTCTCTCCTATAATTTTC TTTCTGGTCTTGCATGCACTAAATTCTTTACAATCCATATGGTTCAACATGTAAACTTATATTTGCTCTGAATTACTAGT GAGTAGTGACATATTTTTGTATATTCTAAAGGAAAGGGACGTGATTATTTTGCCCAATTATTTGAAAAACAATTGCTTTG TTCATGCGCACCTCACAGTTAAAAAAGATGGTTGTTCCACACTAGACTAAAAGAATTTCCTCATGGGCCACCCTAACTGG GATGCTGTCATCATTGAAAAGTAATTCCTTCTTGCTAAGCCTATTATGAAATCTGCACTTTACAAGGTCAACACGATTGC ATTACTTAATACGATAATTCGAATTGCATATTGCCTAAATACGTTCATAGCTATTCTCCTCTCATGTATGGTATATCATA TATGTAATTGTTGAAACAGGTCCCTGTTTATGTGGGCCTTGTTAGGTCACTATATTATCATCATATCATGGAATAAGTTC TTTTTAAGTTCTTCCAAATTACTGGGTGTAGCATTTGGGTGAATCCTTTTATCAAGGAAAATGAGGTTTAATTCTCATCA CAATTTTATCATCGAATAAGTTCTTTTAAGTCATTGCATATTACGGGGTCTGTATCCTTATGCCTTGGAGGCTGGAGCAG TTTCTCATCACACAATCTAGAGGTTTAATTTCATCAAGAAGTAGGTGGCTAGAGTAGCATTTGGTAGACAGGTTAAAGTC TGACAACACTTTTTTTGTGGCATCGTGTTCTTTTTGCTGTTCTTTTGTCTATTGCTTGAAGTTGAATTGCTCGCATCTTT TGTATCTTCTTGCTTCTTAAACTTGTTACGGGCTAGGATTATGTTTCTGGCCTCTCTTTTTTGTTCTGTTGTGGCCTTGT TGAGGATAGTAGCTATATCTTATGTGTAGAGACCAAAGAGATTGAGCATCCTTGCTGCATTCTTAAGTTTTTTCAATGTT CTATGATATTCCTTTAGATAGCAGTGTATGTTGGAGCCTCATATAAAGATCAACAATGTATAAAGATGTGAACATAAGGG TTTTATCAGTTTTAATACCTGGTATGCTTATTTCTAAAAAGAACTTGGTCAGAACATGAAAACACGGATCCCTAGTAATT AACCATATAATCCTGTGTGAGCATTTCTCTACTCTGGTAAGGAACATAAATCTACTTATTAGTGATGCGATTATGAACTT ACGATCATAGTCTGTGAATTTGTGATGTTATTTTGGTGAACTATTTATTCTGGGCATGTAATATTGTGCACTTATTACAT TATTAATGTTAAATTTAAATGCATTTTTCTTTCAACAGAAGTTACAAAGAAGAAAAAAAAGAAGGCTAAAAACAAGTGAG GACTTCTTTTGGCCCTGATGATTATTTTTCCAATTGTGATTTTTTTATAAAGTTCTGATTTTATCTTTGTGGGCAGGAAA AAGAAAGAACTCCTTCAGCAGACTGATCCACCAACAATTCCTGTTATTGATCTTTTCCCATCTGGAGATTTTCCTGAAGG TGAAATTCAGCAGTACAAAGATGAGTAAGTTGATGATGAATAAATTTTAGCAATATCTGACATTTTCCTTCCATATTTGA ATTGAATTTGAGTAAGTGAATTATGTCCCCCTGTTTTTCCCTTTTATTTGATTTTTTAAATAGTCAAGGGAAAAATAAAG ATATATCATAACAGAGGAAGCAGTTTGACCAACCAAAGCTTTTAGTGAAATAAATCTCTCTGAACGGCAATTAGATTAGC TTTACTCACCAAGAGTTTATGTTATGGTTCCAAAGCTTTTGTGTCAATAGGATTTTGAAAAGAACAATGCAAATTTCTTA TAGTGTTAGAATCTTGGGAGCGAATAGAAACTAACACAAAAGATTATCTTCATTTTGTTCACCCATAAATCCTCTTAAAA TCTATTGAGACAGATCAAATCTGAATAAAACCAAATGAAGAAAAGAAGCATACAATGCTAAGATTAGTTTTCATGGTCAA CTTCATAAGGTAGATGTGAGTGGAATTACTTATCAAACAAATGTGAGTGGAATTACTTATCAAACAAAGTTGTGCACAGA TTAAACACATGCTGTGGTGAACAACACTATCAACTATTTGGATCTTATGTTCCCACTTAAGTATATAGATGTGAGTGGAA TTACTTACCAAACAAATTTTGTGCACAGATTAAACACATGCTGTGGTGAACAACACTATCAACTATTTGGATCTCATGTT CCCACTATAGTATATATTTGTTTTTTTTATGCATATCTCATTTTGTTTCGCATATTCTGTGTGAGCTTTCAAATTTCTGC GTATTCATGTTGGAATCTCTGTATTAGTAACCTATGGAGAACTACGTCAGAGGAAAAGAGAGAGCTGGAGCGCCTTCAGA AACCACTATATAATTCGGTTCGTCGAGCAGCAGAAGTTCATCGTCAGGTTAAAATTTGTGCATTAAATTATCTTTGTTTG GATAGTTAGTAGGAAACAAACCATGAAGACTGGATGAAAAATTAATATGGGTCAGACCCCCAACTTTTCATTCTTCTAGA ATTTAGGGATAACAAAGTATTTTAAAAAATATGGCAAGAATTTATCGTTAACATTGTTTCAATGTTAAATTTGCTTTCCT TGTAGAATTTTCTCTCTCTCTCTCTCTCTCTGCATTATCATTCCTCATACTTCCTTAAATTTCAACACGTGGAAAGACTT TCTTATTTTCTCGATTTCTTCATGTCGAATTCTCCTTTTGTCTGACCTCAATTTATTTTAATTCTAATGAAGAGTTATTA TAAAATGCACGTGTACTTCGATAAAACTTGGTGTTTTAGCAGGAACTCAACAAATATTTGTTTCTCTATGTCTGAGCAGG TCCGCAAATATATAAAGGGCATTTTAAAGCCTGGAATGCTGATGACTGACTTGTGTGAAACATTGGAGAATACTGTTCGT AAGCTAATATCAGAGGACGGTCTGCAAGCAGGCATTGCATTCCCCACAGGATGCTCCTTAAATTGGTAGCCTTTTATCCA TCAGTTATCAATTTTTCTATTATGTTTTGTGGGTTTCTTGTTTTATGCTATTGAATGTTGCAAATAAAGGATCAACAAGA GCATAAGATTAGTGGTGCAAAAATGAGAATGTTGGTTGGGCAAACGGTATCTCTCTCAATATAAGATCAGAAATGAATAT ATTATAGAGAAAGTATGAGTGATACCTATTGAAGAAAAGATGGTAGAATTGAGCCTCAAGTGGTTTGGACATGTGAGAAG AAGACCAAAAGATGCACAATTAGAAGAGTTCATCAAATGAAGAATAGGTCGAATAATTAGAGGACTAGGAGACAATTAAT TAAAAAGGTTTTAGATTTAAATGGCCTCTAGTTAGTATTGGTTCTTGCCATAACACAGTGATGACATTTGATCAATGTAC CTGGTCTTGCCTGGTAGAAAAACTCCTTTGGTGTTGTGGATTTGTGGTTTCTTTCTAGATTTTTTGTGATGAAACTACTT CTCCAGGGTTGCTGCTCATTGGACCCCAAATTCGGGAGATAAAACTGTACTTCAGTATGATGATGTGATGAAGTTAGATT TTGGCACCCATGTGGATGGTAGTGTGCATGAATAACTTTTTTATCTATTTTGTATTTTTGGGATAATTCTAGTTATTGGT GCGCAATTTCAATCTAATTTCATTCAATGTTTTGTTTTTACTTCTATTTGTAGGATATATTGTGGACTGTGCTTTTACCG TGGCATTCAACCCAATGTTTGATCCACTGCTTGAAGCCTCTCGTGAAGCCACCAATACAGGAATTAAGGTACTTCCTAGA AAAATGCTTGACGTTATTGCATTGTAGGTTGATCTTCATTCATATCTTGTTATTCAATTATTATTGTCCACTTTCTCAAC CTAGAGAGTATTGATGCGATTGTGTTGTTGACTACCAAATATTCAGAAACTTAGATTATCTAAACGTAATCTTATCCTCA ATTTTGAGATATAATAATGGCAAAAGAAAATTCAAATGCAATAAAGTGGTTAGATGTAAAGATTCATAAATGTAGAGAAG AACAACTATTGTCCCTTGTCCTTGTGACCTCTCTTCCACGAGTGTCTTATTTTAGCTTCTATACTTGGCTATCCTCTTCA GGCCTAGGCTCGTAAAATTAAATAAAGATCCAAATCCACCACCTACACTATATAAATAACAAAAGCAATATCGAAAACTG AAATAATAAAAATGCTTGTTAATATATAATCGAAAGCAATATCGCTAACATCTGTATCTATATTTTCTATCATATTCTTA CCTGATTATTTTTGTATGTGTTTGCTTTGAAGTTTATTGATGTAAAAATAATGAACAAATACCTTTTTGTTTGATATGTG TGATGTGATGTGTTGGGTATGCATCAATTAGATCATTTTGTATTTTGCTTCTTCCTCCAATATGATGTGGCTTAAAATCT ATAGGAAGCTGGAATTGATGTGCGCCTTTGTGACGTTGGTGCCGCAATACAAGAGGTCATGGAATCTTACGAGGTTGAGA TTAATGGGAAGGTGTATCAAGGTATGCTATTTATAAGGATGTTTGTGGTAATTTTTTGGGTTTTTCATGTATTTCTTCAC TTATATTCCATAGAGTAAATGTAAATTTACATATTGTTATCATCACATGAAATGTAAACTTGTCAGTTTCTTCTTTGCTA TTTATTCTTGGATTTTATACATATTATAAAGTTACCTGTCTAACAAATCACGTGTTTTGTACATTTGATGTTGAGTTCAC TTTTTTTCATAACTATATGCCTCAATTTTGTCAATATTTAGGTTTAAAGAAATGATAACGGCTAAATTATTATTTTCCCC ATTAACATATAACTTATGATATTTATCTGCATATCCCAGTGTAACATCTACAAGTATTTTAATAACATTTTGGGTGTGAT ATATATTGTAATGGGACTGTCATCGCAGTTAAGAGTATACGGAACTTGAATGGCCATAGCATAGGCCGCTACCAAATCCA TGCTGGAAAATCTGTTCCTATTGTGAAAGGAGGAGAGCAAACAAAGATGGAAGAAGGTGAATTCTTTGCTATTGAGACCT TTGCGTCAACAGGTAATTGGAGTATCTTCTGTTGGAGATTGTAATATTGTCTTTTAAATATGCATGAAGAGATTGATCAT GAAATGTTATTTTCAGGGAAAGGATACGTACGAGAAGACTTGGAATGTAGCCACTACATGAAAAACTTTGACGTTGGTCA TATCCCGCTTAGATTGCCTAGAGCTAAGCAACTGCTAGCGACTATTAATAAGAACTTCTCTACTTTGGCCTTTTGTAGAC GGTATTTAGATCGCCTTGGAGAAACCAAATACTTGATGGCATTGAAGAACTTGTGTGACGCGGGCATTGTTCAGGTATGT TTTAGGTTTACAAACATCAAGAAATTTGGTGGAAATTAAAAAGTTGAATGCATCTTGTAATGATTGCTAGGAGAAGATGT TAGAATATAATATAAAACCATTCATGTGACCCTTACCTAACAACTTAAGCTTTTGAGATAATATGTTGTTTGACATGGGA TCAGAGCCTTTATGACCAAGTGGTCTAGAGTTCGACCCCTAATGCCCTTAATTCTTCTAATAAAAGAAGTTGAATCTAAG CACATGGTACGTGAGACTAGGCATTATCCACGCTTCAAGCCTAAGTGACTCTTGCGGCCGTGTTAGATATAATATAAAAC CATTCATGTGACCCTTACCTAACAACTTAAGCTTTTGGGATTATTAGTTGTTTGACAATGTTAGATATCTTGTTAATAAG TAGGATATCTTATATTAATCGTAAATAGGTAGCGTAATCATTGTAAATGGGGCAGCAAAGGTATTGTACATTTATTGCAC CTATTATATTTAATAGACTCCTTTGTGTAGTTGAGACACACGAATTCAACCAATGCTTATTGTATTCTTCTCATTTAACA TGGTATCAAGAGCCTAACAAGAGGCAACCCTAATCCTAATCCTAATTCGTGCATTCTCGGTAGACCCACTGTTTATCGGT GCAATTTTTTTTCCGAAAACCGTGTTTCATCTCCGGTTTCCGGCTCCTACCTTTGTCGTGCGACAACCTTTTCCGGCCAA TACCACCGCTGCCCAACTACCGCCGCAGCCACCCCCCGAGAATTGACTCCAACCACCCTCAAAAGGATTGTCCGGCAAAG GTCGGTCCCTCCCCGATGATTTCATCCTGATTGGCTTCCATACGCGTCCTGACGTGCCTCCTCCTCCTCCTCTGCGCGTG ACTTTACGCGCCACTCCTTTCACCTGCGTGTGGCAGCGCGTCCTGACTTCGTTCAGGCCGCTGCTTGGTTTGCCGGACAC GCCTTTCTCTTCCTGTTCCAGATCTTGTGTTACTTCTTCGGTTTTGGCTATGGTGTGTAGATCTGACGTTTTTGTCTCAA TTTTTTTGGTGTTTGTTGCTCCTCTTTGCGAGCCATGGCTTATGGACTCTCCCACATCTCACCTAACGGTGTTGGTGCTC TGCTAATGTCCCATGCTGATTTTTCGATGTGGTTTACAGAGCATTGACCGTCACACTCTCTTAAACCACTTGATGCATAT GCTGATTTCTTAAAATGGTTTGAGCCACGCCATTTTTGTGGTTCTACCCCTTCTGTTGTGCACACTGGTATTTCTGTTGC TTGTCTCTATGGGTCTCCTTATGATCCTTGGATTCTGGACTCTGGTGCCTCTGACCACATCTTTGGTAATAAATCTTTAT TTTCTCACATTTGTACCTTTGGTTATCTACCTTCCGTTACCTTAGCAAATGTGCGCAAGCACAATCCGAGAGATGTGGTA CTAGTACTACTCATCCTTTTCCTTCTCTTTTTGTTAACTCGGTTGTATACGTTCTAGGTACCCCATTTAATTTTCTTTCT ATTAGCTGTTAGACTTGCACCCTTGATTGTGTCATTTCTTTTATTGAAGATTCAGTTTTTCTACAGGACTGGAGTTTAGG ACGGATAATTGGCAAAGAATATGAGTCAAACGGTCTCTATCAACTCTTGCTAGACCCGCATTTGCATTGCTACAAATTCT CTCTTAATACTTTCCAGTTGGGACATCCTAGACTTACCAAGTTACAAAAATTGGTATCCACTTTGTCCAAGTTATCCACA CTATCTTGTGAGTCTTGTCATCTAGGTAAACATACACGTCCTTTCCCAAATAGAGTTGATGGTCGAGCCAAATCTCCATT TGCTTTAATTTATTCTTACGTTTGAGGTCCTAGTTGTACCGAATCTACCCTGGGTTTAGATACTTTGTCACCTTCATTGA TGATTAATGGCCAACATCTAAGACAAATGGGAAGAGATAAATCAACATAGGGAGCCTCTCCAACCTCGATATGCCTCCGA GGTGTTTCTTCTTCTTCCTCTCTCCTCCGCCCTCAAAAGTGTCAAAACCAAGATAAATGACGTAGGACATGTCTCTATGT TCATAATAGATAGAATTCACATTTTTTACCTGCGCATAGTAAGCAGCACGACCATGCTCAATTACACAACCATTGCCCTG CTAACCGTCAGCACGACCCTGATCCAACAGTTCAGAATGAAATTCTAAATTGCTATCTCCAACTATGTCAGAGTCTGACA AAACTTATGAATTTTTGAGGTGGTCACATCCAAATACATGACGCAGCACCAAAATGGTGTTCGCTTTTTGAAGGTTTTCT TTTTGGCCGTGTTTGTTTGAAAGTTTATGTTAGCTATCTTTAATTTAACACATTGCTTTCATGATTTAATTTCACTGTTT ATAATGATGATTGTGAGGCTGAAGACTCATTTTTCCTCCTTCACGCAGCCTTACCCTCCTCTGTGTGACGTGAAAGGAAG CTATGTATCACAGTTTGAGCATACAATTCTACTCCGACCAACATGCAAAGAAGTTATATCAAAGGGTGATGATTACTAAC GCAAATTCGATGTGGTTTATTGTTGATGGATGCATATTGTACCTTCTATATGAATTGTTCTCAGTATACCATCAACACGT CGGTCATATGACTAAAGGTGTGCCTGCAGATTGTTTTTACTCATTTGATAATTAGCATATGTTGTCAATCTGATAGTATC ATAGAAATGTTCCTCCCTATTAAGCTGATTTACTTAATTTACAAAACATGGTATTGAAACCAAACTTAATCGGCTGGTCG ATTCAGAAACCAGCCAAGTATTGGTCCATTTCTCGAAACTGGCTGATTTTAGAGTTAATAATTTGAACAAACCCGTTTGA TGGGAAAAAAAAACTAGCAGCAAAAATCAGTTTAAACCGGTTAAATTTTTTCTCTTATCCAAATAATGTTATGGTTTTTT TATTGTGTAAAATTATATAGCACGATTCTTATTTTAATTTAGTATTTGTTCGTAGTTTCCTTATATTACTTAATTTAATT TTATATTTAGTAATAATTTTAAAATCTGTATTATCTTATGATTTTATCATGGTTGAAATTATGTATAAGTAATTTTATCT GTTTATTGAACAGTTTAACTTTTAAAACATTGTAAGACATTCATTTAATCTAGTAATGTCTTTGTGCAAGCAATTTAGGG ATGGTAAATTATTTAGTTATTATTTTTCGAAGAGGAAGAGGTAGTGACATTCGTTAAAGATAAATAAAAAATCAATAAAC ATTGATTTAAACATCTGATGTGATTAGTAGGTCATTTATTAAATCAATTTCTTTTAAAAATCACTTTGTTACATAATCAA TATAAAATTGGATTGAGAAATCAATTGTGGAACTTATCAATATAAAGTGTATTGATTGTCACGAAGTGAGATATGATTGA TTATCCTCTCCAAATAATAAATTTGAAACTAAGGCGAGCATATCTAGTCAATAATGCACATAGCCTTGGCAGTTAGAAGA ATTCGCCTCAGACATCCCAATCAAGGGAATCCTATCATGACTTTCTCTGATACGGACTACCATGAAGACGAGCTTGAGCA TGATGAACCCATTGTTGTTGAAGCAACCACTGTTTGCGACAATGTGAAAAGAGTATTTATGGATTAAGGCAGCTTGATCG AAATTTTGTTCTTTGAAGTTTGAAAGGCCCTCAACTCAGAAAAATGATCTCATCCCATATAGTAACAATTCAAC
CDS sequence (LotjaGi6g1v0067300.1) extracted from Lotus japonicus Gifu v1.2 CDS.
ATGGCGGAGGAAAAATCTCATTCAGAGAATTTACTAGAAGAAAATGGAACTTCAGAGGATCCAACTCATGTAGAACTAGA AGGGGCTGGTGATCTTTCTCTGCCTTCACAAAAAGAGGAAGATGATGGTAAAGAAGTTACAAAGAAGAAAAAAAAGAAGG CTAAAAACAAGAAAAAGAAAGAACTCCTTCAGCAGACTGATCCACCAACAATTCCTGTTATTGATCTTTTCCCATCTGGA GATTTTCCTGAAGGTGAAATTCAGCAGTACAAAGATGATAACCTATGGAGAACTACGTCAGAGGAAAAGAGAGAGCTGGA GCGCCTTCAGAAACCACTATATAATTCGGTTCGTCGAGCAGCAGAAGTTCATCGTCAGGTCCGCAAATATATAAAGGGCA TTTTAAAGCCTGGAATGCTGATGACTGACTTGTGTGAAACATTGGAGAATACTGTTCGTAAGCTAATATCAGAGGACGGT CTGCAAGCAGGCATTGCATTCCCCACAGGATGCTCCTTAAATTGGGTTGCTGCTCATTGGACCCCAAATTCGGGAGATAA AACTGTACTTCAGTATGATGATGTGATGAAGTTAGATTTTGGCACCCATGTGGATGGATATATTGTGGACTGTGCTTTTA CCGTGGCATTCAACCCAATGTTTGATCCACTGCTTGAAGCCTCTCGTGAAGCCACCAATACAGGAATTAAGGAAGCTGGA ATTGATGTGCGCCTTTGTGACGTTGGTGCCGCAATACAAGAGGTCATGGAATCTTACGAGGTTGAGATTAATGGGAAGGT GTATCAAGTTAAGAGTATACGGAACTTGAATGGCCATAGCATAGGCCGCTACCAAATCCATGCTGGAAAATCTGTTCCTA TTGTGAAAGGAGGAGAGCAAACAAAGATGGAAGAAGGTGAATTCTTTGCTATTGAGACCTTTGCGTCAACAGGGAAAGGA TACGTACGAGAAGACTTGGAATGTAGCCACTACATGAAAAACTTTGACGTTGGTCATATCCCGCTTAGATTGCCTAGAGC TAAGCAACTGCTAGCGACTATTAATAAGAACTTCTCTACTTTGGCCTTTTGTAGACGGTATTTAGATCGCCTTGGAGAAA CCAAATACTTGATGGCATTGAAGAACTTGTGTGACGCGGGCATTGTTCAGCCTTACCCTCCTCTGTGTGACGTGAAAGGA AGCTATGTATCACAGTTTGAGCATACAATTCTACTCCGACCAACATGCAAAGAAGTTATATCAAAGGGTGATGATTACTA A
Protein sequence (LotjaGi6g1v0067300.1) extracted from Lotus japonicus Gifu v1.2 Proteins.
MAEEKSHSENLLEENGTSEDPTHVELEGAGDLSLPSQKEEDDGKEVTKKKKKKAKNKKKKELLQQTDPPTIPVIDLFPSG DFPEGEIQQYKDDNLWRTTSEEKRELERLQKPLYNSVRRAAEVHRQVRKYIKGILKPGMLMTDLCETLENTVRKLISEDG LQAGIAFPTGCSLNWVAAHWTPNSGDKTVLQYDDVMKLDFGTHVDGYIVDCAFTVAFNPMFDPLLEASREATNTGIKEAG IDVRLCDVGAAIQEVMESYEVEINGKVYQVKSIRNLNGHSIGRYQIHAGKSVPIVKGGEQTKMEEGEFFAIETFASTGKG YVREDLECSHYMKNFDVGHIPLRLPRAKQLLATINKNFSTLAFCRRYLDRLGETKYLMALKNLCDAGIVQPYPPLCDVKG SYVSQFEHTILLRPTCKEVISKGDDY
Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.
Prediction algorithm | Identifier | Start | End | Length | E-value | InterPro ID |
---|---|---|---|---|---|---|
MobiDBLite | 1 | 73 | 73 | - | – | |
MobiDBLite | 1 | 26 | 26 | - | – | |
Hamap | 2 | 426 | 425 | 49.257 | ||
MobiDBLite | 34 | 48 | 15 | - | – | |
PANTHER | 36 | 426 | 391 | 1.7E-259 | – | |
PANTHER | 36 | 426 | 391 | 1.7E-259 | – | |
SUPERFAMILY | 65 | 425 | 361 | 3.14E-81 | ||
Gene3D | 113 | 415 | 303 | 3.2E-147 | ||
CDD | 114 | 422 | 309 | 0.0 | ||
Pfam | 116 | 413 | 298 | 2.7E-42 | ||
TIGRFAM | 117 | 422 | 306 | 2.0E-105 | ||
PRINTS | 169 | 182 | 14 | 1.7E-15 | ||
ProSitePatterns | 194 | 210 | 17 | - | ||
PRINTS | 194 | 210 | 17 | 1.7E-15 | ||
PRINTS | 270 | 282 | 13 | 1.7E-15 | ||
PRINTS | 301 | 313 | 13 | 1.7E-15 | ||
Gene3D | 320 | 398 | 79 | 3.2E-147 | ||
SUPERFAMILY | 324 | 396 | 73 | 1.13E-24 |
GO predictions are based solely on the InterPro-to-GO mappings published by EMBL-EBI, which are in turn based on the mapping of predicted domains to the InterPro dataset. The InterPro-to-GO mapping was last updated on , while the GO metadata was last updated on .
GO term | Namespace | Name | Definition | Relationships |
---|---|---|---|---|
Molecular function | Aminopeptidase activity | Catalysis of the hydrolysis of N-terminal amino acid residues from in a polypeptide chain. | ||
Biological process | Proteolysis | The hydrolysis of proteins into smaller polypeptides and/or amino acids by cleavage of their peptide bonds. | ||
Molecular function | Metalloexopeptidase activity | Catalysis of the hydrolysis of a peptide bond not more than three residues from the N- or C-terminus of a polypeptide chain by a mechanism in which water acts as a nucleophile, one or two metal ions hold the water molecule in place, and charged amino acid side chains are ligands for the metal ions. |
Expression pattern of LotjaGi6g1v0067300.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.
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