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Field | Value |
---|---|
Gene ID | LotjaGi4g1v0035100 |
Transcript ID | LotjaGi4g1v0035100.1 |
Related isoforms 2 | |
Lotus japonicus genome version | Gifu v1.2 |
Description | Calmodulin-binding transcription activator; TAIR: AT5G64220.1 Calmodulin-binding transcription activator protein with CG-1 and Ankyrin domain; Swiss-Prot: sp|Q6NPP4|CMTA2_ARATH Calmodulin-binding transcription activator 2; TrEMBL-Plants: tr|K7KPP6|K7KPP6_SOYBN Uncharacterized protein; Found in the gene: LotjaGi4g1v0035100 |
Working Lj name | n.a. |
Genomic sequence (LjG1.1_chr4:4258166..4268430) extracted from Lotus japonicus Gifu genome v1.2.
CCCATTCTCATCGTCACGTCACTGTGCAAGAAAAGAAGATGAAGACGAAGCTGACTGGAAAGAGCGAAAAGGGGCTCAAA CAAAATCTCCACTGATATATATATATAAATCGTCGTAGACACTCTCTTTCTCTCTTTCCGCGTCAATCTCTCTCTCTCTG ATTCTTCAGTCTCCGCCATGGCGGAGAATGCTTCTTGCAGATTGAATCCTCAGCTAGGTCAGATCAATTTATTCATTCAT GCATGCATGCATTCCGTTATCTTCTTCTATTGCTTTCAATTTGATTAGGTTTTTTTGCAAGACTTGATGAATGTTTGGAT AATTGGATCATGCTGTTTGATTGTTCTTGAACCGATTTCGTGAAATTGGCATTGGAACAGAGTTAATTTGAGATGCGTGA TGTCTGATTTTTCGTCAAGAATCTCTGGTTTGTTATTAGGGTTTTGGTGATGAGTGTAATTAGGTTTTATTTGGTGAAAA TGGTGAAGGATTGGTGTTAGTTTCTCTGCTGAATGAAGCTATTTTTTGTTGTCTAGAAATGTGATCATGATCATTTTTTA TGCATGTGTCTGTCTGGCCTTAGTTTGATTTTGAAATTTTCTTCAGTCATTGTAGCTGTGCATGTGAAATCCAGTATTTT GGTTTTGAAACAGAGTTAATTTGAGTTGCGCGTGATGTCTGATTTGGTTAAGAATCTGGTTTGAACTTTTGGTTTGTTAT GAGGATATGAATAGGGTTTTGGTGATGAGGGCAATTAGGTTTAATTTGATGAAAATGGAAAGCGTATTCGACGGCATTTA CGTGGCTGTGTCTTGAAGGTGTATATGGTTTAGGCTAAGTATTGGTGTTTAGTTTCTCTGCTTAATGAAGCTATTTCTTG TTGTCTAAAAATGTGATCATGGCCTTAATTTGATTTTTGAAGTTTGCTTCAGTCATTGTAGTTGTGCATGTGATAATACA GTTACCAAGTATTCGATTGAATGCCGTCTTATATTATTTATCGATGTGCAGATTTTCAGAAATTACAATTTGAAGCCCAA CATCGCTGGTTGCGCCCTGCAGAAATATGTGAAATTCTTCGTAATTATCGGTTGTTTCAAATCACATCCGAACCGCCTAA TAGGCCACCAAGTATGGTTTCTGCATATGTTAGCGATTGATTTATTACAACCATGCATTTGAATCTTGTTCATATAATCA CAGACTGAATTGCTCGAGATGAATAAAATCGTTAATACTTCATGAATTGTTCTGTTGCAACTGGACATGTCTGAAGTTGT TTGAAAACCTTCTCAACATGGCTATCATTCTCTCCTTAGAATAGATTCAGCTGAATTTGTGTAATCGTTAATTCCTTGTA ATTTCGCATAAAGATTTCTGATTATATATTGTCTGAACTCAACATGTTCCCACTAAACAGATCTTATGTATTTCACTTAA AAGATAATGAGCATTTCTAGGCAATTGGTACATTATTTTTCATTTATGAAATTTGGAAGCTGAAGGGCACCTTATAGAGT CTTGTTGCATAGTCTGGTTTGTGGTTTGTAGGGTTAGCAGTAGTCTTTCTGTTCATAGTAAAGTCTGTAGTTAACTTCAG TTCATCTTCTAGCTCTCATTATTACTTTGAAGACATTACTTCTTGACATGTACTTGGTCAATGCAGGTGGTTCACTTTTT CTCTTTGATCGGAAGGTTTTGAGGTACTTTAGAAAGGATGGACACAGTTGGAGGAAGAAAAAAGATGGAAAGACTGTGAA GGAAGCTCATGAAAAGTTGAAGGTAAGCATGATTGTGCCTTTGTTTTGAGTATATGGTTTATGAAATCTTTGTAAGGAAA CCCCGTATATTCAAGATACCTGAAATATTTCAGTTAATTTTCTCTAGTTGGACAATATGTCCTTTTATCCTAAAATTATT ATTTGCTGAGATTAGGTGGGAAGTGTTGATGCGCTGCACTGTTACTATGCCCATGGAGAAGAAAGTGAAAATTTTCAGAG GCGAAGCTATTGGATGCTTGAACAGTGAGAACGATGAACTAATTTACTTTTCAATATTTTGTTTGATAATTGATGGATAG TTCATCATGGCAGATTGGCAGTTACTTTCTGACAGCATCTCCAATGCAAGGTTCTTAGTTCTTATTTTTGAGCTAAGAAC TAAGAACTGAGTTCTTAACCATTGTGGAGGGGATGACGTGGAGTTCTTAGTTCTTAAAAATAAGAACTAGGTTCTTATAT AAGAAGTTTTGCTTTTTGAGTTCTTAGCATTAAAAATTATTTTTTTTCTCTCATCCAAATTACTTTATTACTTTATGAGT TTGTTTTATCACTTTATGAAAAAAAAAAATATAAATAATGTGGTTGGTGGGACCAAATGAATAGTGCTAAGAGCTAAGTA GGGGTGTTCATCGGATCGGATTGATCCGATGAAACCGACAAACCGAACCGAACCAAAGCAATTGGATCGGTTTTTTTTGT TATTCGGTTTAAAACCGATCCAAACCGATAAAAACCAATGAAGATCGGTTCGGTTCACTTTGAAAAATTAAAAACCAATG AACCGTTGAACCGAACCGATGACATATTTATTTATAAAATATTTTTAAAAAATAAATATATATGAATACTTATTAAAAAG ATAAAAGAAACATAAACCTAGCTAACCACATCCACTCACACATACTCACTCATATATACATATACTTTTGTTTTCTATTA TTAATTTGTAATGGTACTAATATTAAAACTACTTTAAGCATTTTTGCATTGTTAAGTACTTAAATTGTGGATTATGGATT ATGAATTTGTGGGTTAAACTATTATTGATTTATCATTTTTATGCATTGTTAAGTTGTGAGTCACATGTGGTTACTATATA TTTTAAGTTGTGGAATTGATATTGACAAAAAAAAACCTGTGAAACCGATGAACCGAACCGATCCAAACCGATCATTATCG GTTCGGTTTTAGATTTTTTTTTGCTAATAATTGACTGAAACCGAACCAATGAATTTAGATTGGATCGGTTTCTCGTTTCA CCTAAAACCGGTCCAAACCGAACCGCGAACACCCCTAGAACTAAGAACTAAAAATTCATGGTTGGAGCAAAATTGCTTCA GAGTTGCTTAAGCACATGTGGCAGTATGGGCCCACATGAATAGTGCTAAGAACTAAGAATTAAGAACTAGCATTGGAGAT GCTCTAAGTATTCTATTAGTGCATTTGTAATCATTTTTCAAGTTTTTAATTTCTTAATTGATTTTAACTGTTTTCCTATT TGCAATTTTTTAAGTTCCAAAAAAATTATACTGAAACAATTTTGATCTCTCTTATGATTAAGCAGAACATGATTTTCTTA TTAATTTGTTTTACTGCAGGGATATGATGCATATAGTATTTGTCCACTACTTGGATGTTAAGGTATCGTGCTTGTTTTCC ATCTTCATGCTGTGGTTATCTTTTCTTTTCTCACGTGTCAGTTTGCATTTACAATTCAGAAATTATTATTGTCCCTTAAT AGCTTGTTAATTTATCTTTAACCACAAAATCTTTAATATCTTATGTAGTCTTGCTTGATATATAGATTGAGTCCTGGAAT GTATGGCTAAATAGAAGAATCTGAGTGGTCACACATACCTTACTGGAGCCAAATGTGTATACTAGCTTGGTTTTGTTGTT GGTGTTCTTGTAGCTGGTGAATGTGTGGCATCCATGTAGTGGCTCAAGCCAAGTCTGTTCTGAGTATTTTAAAACCTTAA AAGCGTCCCTTTAAACTGGACGGAGGGAATAAAGTATAAATACTATTTCCCTCCCCTTGAATTATTAAATATAATGCGAG CGAGAATCTATCGTCATCTGATTTCTTTCTCAATTTCTTGACTTTGAGGATTTAAGAATATGCTCATTTTCTTAGTAGTA TACCTTGGTGGCCATGTTTAAACATTATAAAATCAACCAAATGCTAACATCCAATATTTTCTCTTCTGCCGCTAAATTAT GTTATTCTCTTCCATGGGATGGGCTTTGGTTTTTATTCATTAAAAATCCCAATCAATAATACTGAACAAGTTTCACATTC CTTCTGAAAAGATCCTTAAGGTCCATTTCTATAATATTATTCTTGAAATCAGGCAGAAACTTGTGAAGCTAATTTTGACT CACTTCTTGTTGAATGACTTATTAATAGATATTTCATGTGTTCTTCGTATCAGGTTAACAAGACAAATATTGGTGCAAGT ACAGATTCTGATGGCACTAGATCATATTCACATCGGGGAAGGTCTGTATCATCTGGTTTTCCCACAAATTATAGTAGCTT GCCTTCTGGAAGTACAGATTCCATGAGCCCAACTAGCACATTGACATCTTTATGTGAAGATGCTGATTCAGGTTACACAC ACACACACAACTTAATCCATGCGATATGAATTGATATGCCAAGGCTATATCTTGGTTTAGTTTGTTCCAGATCATCTCTA AATGGTTTAACCTAATTTCTTCCTAGAGGATATTCACCAAACAAGCTCAGGATTACACTTTTTTCGCAAGTCACAAAATA TGGAGAATGGTCAGCTGATAGATAAGATTGATGCTCATTCAAATATTTCATATCTTACACATCCCTTTTCAGGTTACTTT GTGCTCTTTTCTTTGAAAGTCTTAGATCATTTCTACTTAACATCTAATATTAAATTACGTCTCAATTTTTTTCTGGGATT TGACATTTGAATTTTGTTGTATATTTTGAAAATATTTTTAGGTGATCATGGACAATTCGGACAAGATTATATCCCACTTG TTAAGGGGGATAAATCTAGACCGAGTGACAATAATTATATCGAGGGGCAGAGAGCACATGGCATGGCATCCTGGGACAAT GTCATGGAGCAATCTGCTGGAATGCATATTGATCCATCTATGGTATCAGTTACTTCCATCCCATCAAGTTCAATGGGAAA CATTGTTGAACAAGAACATGCTGCCCTCACTGGAGAGGCAGAGGCTTCTCAATCATTCCAATCGAATTGGCAGGTACATA CTATTACTTCATGCTAAATCTTCTAGTAGCATACTCTTCCTTTCCTGCATACATTTCAGTTCTCAGGAGTCAGGACACAC ATGACAGTATTTGGTAGGTTCTAGTAGGTGCAATTGTGCTCTCTTGTTGGATAGGACAATTTCTGGAAATTGTTTACATT GCTGACTAAAGTTCTAGGTGCCCACTTGCCATTGTAATGTACTGTTTCATCCTTGAAGTCAACATCACTGTTGACGGACT TGATGCTTGATAAGGTGTGTGGTTCACCTTTTATTTTATCTTGGAGAAATGGGAAATTCGGGAATGCAGGTGTTTATGGG AGTTCTTGCTTGATATTGAAGGAGTATGGAGAGGTTTGAGATGCTAAATTTGTAAAGTGTCATCTATGATCTCTGGAATG TGAGGTCCATCATTTTGGAGTTCAGAAGGCTCTTGTAACTCGTTGGGTTGTTGAAGTGATATGAGAATACATTTTACTCC CTTTCCAGGAAATTAGTCACTTGACCATGTTTGTTATTAACAATTTTCAATACAATAGATTGATGAGTCAGGAAGCAGCA TATTCATTACTTCTGGTCACTGATCCACATATGTGGCACTAAATGCTTTAAATTGTTTCTGAAATTGTGCAAATTCTAGA AATATCTTGTTGGGGGGTGGGGGTGGGCATTGCTGTGCATTAGCTTGGTGTCAATTTTATGTTTGATCTGTAATTCTGAT GTTTTAACTTGTAGTGGTTTATGTGAAAGCTTCAACCTACACCAGTTTGTGAGATTTACCAATAATGTATAACTATTTTC ATTTTGTTATTTAAATTGTTGATTCAGATTCCTTTTGAAGACAATACAGGAGAGTTGCCTAAGTGGAACTTTACCCAATC ATTGAGTGTGGAATTTGAACCTGATACTGGTTTACTGGGAAATGAAACTAATAACGCAAGTCCAAGAAATGTTCCTGATC TGTTCAATTTTGATTGTGATCCAAATGAGCAGTCTGTGCAGCAAAGCTTCTCAAAGCAGCATACATATGCTGGAGTTTTT GGTGAAGGATGTATCAGCTATCCCTTGAGCACGAAGCATGCATTACTGGGTGAAGATGAGAGCCTGAAGAAGGTTGATAG CTTCTCTAGGTGGATTATTAAAGAACTTGCAGCAGTGGATGATATGCAAATGCAGTCAAGGAATGCAGATGAATGTGGGA ACGTGATAAATGATACCTCATTTGATCTGTCCCGATCTAAAGACCAGCTGTTTAGCATACATGATTTTTCACCTAAGTGG GCTTATCCTGAATCTGAAATTGAGGTAATTGTGTGGATAATATTTGATTAAAAAAAGTATAATTTTTATTTTTGGAGTGA GTAATCAGTAGGTCTAATTTTTCAAAAAGAAAAAATGTAAACAAAAATGATGCAGTTTTGGGTATTAAGTACCAAAGGAG TAACCATGAAGTACCCAAGAATTTTCAACTTGATTTTTTTTTCGAGAGGCTGCTGACCTAGGCTGGTTGAGATTGTTTTC TTTAGTTTGTCTCACATCTTAAACTATTCAAAACTGTACAGGTCTTCATTATTGGAACATTTTTAACGACTCAACCAGAG GTTGCAACATGCAACTGGTCCTGTATGTTTGGGGAAGTGGAAGTTCCTGCTGAGGTCTTGGCTAATGGAATTCTGTGCTG TCAAGCTCCACCTCATGAGACTGGACGGGTCCCTTTTTACATAACATGTTCCGATAGGCTTGCTTGTAGTGAAGTTATGG AATTTGAGTTCAAAGAAGGCTTTTCTGAAAATGTAGAGGTAGATTTTTTCAACAAAATGCAGCTTCATTTGCGACTGGAG GAGTTACTTTCTTTGAAGTCAGTAGAACCTTCAAATGAAGCTTTTGAGGATGATTTTCAGAAAAGAAACTTAATTTATAA GCTTATTTCACTGAAAGAGGAAGAGGAATATTCGAGTAAGGAAGAACAAACTGTAGATATGGATATATCAAAACACAAGT TAAAAGCGCATATGACTCAGAGTCTGGTTAAAGAGAAACTGTATTCATGGCTTCTTCGCAAAGTAACCGAAACTGGTAAA GGGCCATCTGTATTAGGTGAGGACGGGCAAGGTGTGTTACATTTAGTAGCTGCTCTTGGTTATCATTGGGCCATAAAACC AATTGTAACTGCTGGGGTTAATATCAACTTCCGCGATGTGAATGGATGGACGGCGCTGCACTGGGCTGCATCCTGTGGCA GGTAAGGACCCAATAATTTTTTCCTTCATTGTTTTGTGTTGATTTTTCCTATGCTTCAATAAATTTTCTGGTTGACACTC AGTTTGATATCCATTTTTCTAGCATTTTGGGAATTTGGATTTAATTACATATGAAAGACTGTTTGGAAATCTTTTCTTTT TTGATTTTTCCTTCATTGTTTTGAGTTGACTTTGCCAATGCTGCAATTACTTTTCTGGTTGAAACCTCGTTTGCTACCCT AATTGTATCCATTTGTCTAGCATTTTGGAAAATTGGATTTAATTACATATGAAAGACTGTTTGGAAATCTTTTCTTTTTT GATATATATTTAAACTGTTCTGATGCCTAGTTCACAGCGTTCTTTCTATGTATGTGAACTATTTTAAAATTAATTACTTT GGCCAGCAAAAGACAGATTAATCTCTCTATATTCTAATGATGCTTTCAACATTAAGAGTATTCCTTTTCAAAACTGTTCT CAGTTATATTGTTCATTCAGTATAACATGAGTTGGTTCCTCACGTTATTTTTTGTCCTGTGATCAGAGAGCAAACAGTTG CCGTCCTTGTCTCCATGGGTGCTGCGGCTGGAGCATTGACAGATCCATCTCCAGCATTTCCTTCCGGAAGAACAGCTGCT GATCTTGCTTCCAGCAACAGCCACAAAGGAATTTCTGGTTTTCTAGCAGAGTCATTATTAACTAGCCACCTCGAATCACT CACAGTGGCTGATCCGAATGAAGATTTTCAGAAAGAAACTCCTGGAATGAAAGCAGTGCAGACAGTTTCCGAGCGAATTG CGACACCTGTGCTTCATGGTGAACTACCCGACACTCTCTGCCTTAAGGATTCTCTTGATGCTGTTCGTAATGCTACACAA GCTGCGGATCGTATACATCAGGTATTCAGAATGCAATCATTCCAGAGGAAACAGTTAGCTCAGTATATTGAAGAGTATGA AGATGATGATGAGCTTGGATTGTCTGAGCAGCAAGCTATTTCCCTTCTAGCTTCCGAAACATGCAAATATGGACAAGGAA AGGGGTTGGCCAATGCTGCTGCGCTACAAATACAGAAGAAGTTTCGTGGTTGGACCAAGAGAAAAGAATTCTTGTTCATT CGTCAAAGGATAGTCAAAATCCAGGTTCATTTTCTTGCTCTTTCTGAACTTGTCTTTTTGTTTCTAATATATGGTTCTTA TTTTCAGTAAACTGGTTAATTACTTGTCTTTTCATCTCAACTGACTTGAGTTCCATGATGTAAAAGGCCCATGTAAGAGG TCACCAAGCAAGAAAGAAGCACAAACCAGACCTCCTTTGGTCCGTGGGAATCTTGGAGAAGGTGGTATTGCGGTGGAGGC GTAAGGGCCATGGTTTGCGTGGATTTCGACCAGATGCCCCCAATGAGCTCCAGGAACAACCAGGTCCTTCGAATTCAGAA GAGGATGATTATGATTTTCTCAAGGAAGGAAGGAAACAGAGTGAAGCAAGATTCCAAAAGGCCCTTTCAAGAGTGAAGTC TATGGTTCAGTATCCAGAGGCTCGGGCTCAATACCGGCGTGTGTTAAATATAGTAGAGGACTTTCGTCGAACCCAGGTAT TGCTATTTTCTAACGTATGTCTGATATCTATACACTCAAGAATATTTGGATTAATTATATTATCTTGTGATATTCAGCAG GAATCTAATCAGAACTCAATAAATTCGGAAGAGGCAGTTGATGGTTTGGAAGATTTGATTGATATTGACATGCTTCTAGA TGATGATAATTTCATACCTTTAGCATTCGATTGATATTTGCTCTCTGTTGTAAATAGATGGCCAGTTGGTTTTATTTGGG GAATTAGATTTCCCACCCCCTGTTTTAGAATTGCCACCCTAGCCTTTTTAAAAAAATGCCGGGACTACCCTCCGGGACTT AAACCTCCATACCAGTCCAGAGGTTGATGTTCTGGACTATTCCGAGAGTTAAAAGTTCGGATTCTTTAGTTACAGTTAAA ATAACATGATCGGTGTCGTGGCCGTCTTGGAGGACTTGCCTAACGAATTGTTGGGTTGAAATGTTTGGTTTGTAATTGTG GTGGTGGTTGAGATTGTAATTGATGAATATGCCTTTTGGTTTGGTCTTAACTTACTGCATTCTGCTGCTTGGTAAGAGTT ATCCAGGACTTTAAGTTTCGAATCTATCCAGGACTTTAAGTTTCGGATCCATCCAGGACTTTAAGTTTCGGATCAATCCA GGACTATAAGTTTCGGACTGCTTCATAATTAAATTTACCACCCCCCTTTTTTAGACGTCCGAGAGTTGAAAAACCGGATT AATATGAAACTTCAAGATTCGGATCTTTCAAACCAGATACTGTCACAAAGACAGAAACGTGAAAATGCAGTGACAATAAT ATGGGACAAACAGACCTCGTTACAATACTGAAGGAAAATATTCTTGCTAATAATATGGTTACAGACATGGTTACAACATT ACAAACATGAATCATATTATCAATCTTCTGTTATGTCTGTTAAATCAAAGTTGGTAATAACACGAGGACCAATCCAAACA GTGTGTTCAGCCATAAATGGGGGGTGGTTGGGTGGTTGAGGAGTTTATGCAGGCCATAATGGTGGTGAGGTAGGTGAAGC TATGGAGTAATGGTGCTGAAAAAGGTGGTAGAATCTGTCAGAGGTGTCCGGAAGTTGAAGTTTCATACTAATCCGAAGGA TGAAGTTTCGTACTGATCCGAAGGTTGAAGTTTCGGACTAAAACACGGAGGGGCAATATTGGTTTTTCCCCACTTTTAAA TGGGGTGGGAAATCTAAAACAGGGGGTGGGAAATCTAATTCCCTTTTATTTGGCATTGGAACCTTAACATCATATGAGTA TACATACTCAGAACTATTTGGATCCTAGGACTTTGTTATGCATCAAAAAACTACTTGGATCCTAGGTATGGGGTTATAAA TAGAATATGAAAGCTAGAATAGAAC
CDS sequence (LotjaGi4g1v0035100.1) extracted from Lotus japonicus Gifu v1.2 CDS.
ATGGCGGAGAATGCTTCTTGCAGATTGAATCCTCAGCTAGATTTTCAGAAATTACAATTTGAAGCCCAACATCGCTGGTT GCGCCCTGCAGAAATATGTGAAATTCTTCGTAATTATCGGTTGTTTCAAATCACATCCGAACCGCCTAATAGGCCACCAA GTGGTTCACTTTTTCTCTTTGATCGGAAGGTTTTGAGGTACTTTAGAAAGGATGGACACAGTTGGAGGAAGAAAAAAGAT GGAAAGACTGTGAAGGAAGCTCATGAAAAGTTGAAGGTGGGAAGTGTTGATGCGCTGCACTGTTACTATGCCCATGGAGA AGAAAGTGAAAATTTTCAGAGGCGAAGCTATTGGATGCTTGAACAGGATATGATGCATATAGTATTTGTCCACTACTTGG ATGTTAAGGTTAACAAGACAAATATTGGTGCAAGTACAGATTCTGATGGCACTAGATCATATTCACATCGGGGAAGGTCT GTATCATCTGGTTTTCCCACAAATTATAGTAGCTTGCCTTCTGGAAGTACAGATTCCATGAGCCCAACTAGCACATTGAC ATCTTTATGTGAAGATGCTGATTCAGAGGATATTCACCAAACAAGCTCAGGATTACACTTTTTTCGCAAGTCACAAAATA TGGAGAATGGTCAGCTGATAGATAAGATTGATGCTCATTCAAATATTTCATATCTTACACATCCCTTTTCAGGTGATCAT GGACAATTCGGACAAGATTATATCCCACTTGTTAAGGGGGATAAATCTAGACCGAGTGACAATAATTATATCGAGGGGCA GAGAGCACATGGCATGGCATCCTGGGACAATGTCATGGAGCAATCTGCTGGAATGCATATTGATCCATCTATGGTATCAG TTACTTCCATCCCATCAAGTTCAATGGGAAACATTGTTGAACAAGAACATGCTGCCCTCACTGGAGAGGCAGAGGCTTCT CAATCATTCCAATCGAATTGGCAGATTCCTTTTGAAGACAATACAGGAGAGTTGCCTAAGTGGAACTTTACCCAATCATT GAGTGTGGAATTTGAACCTGATACTGGTTTACTGGGAAATGAAACTAATAACGCAAGTCCAAGAAATGTTCCTGATCTGT TCAATTTTGATTGTGATCCAAATGAGCAGTCTGTGCAGCAAAGCTTCTCAAAGCAGCATACATATGCTGGAGTTTTTGGT GAAGGATGTATCAGCTATCCCTTGAGCACGAAGCATGCATTACTGGGTGAAGATGAGAGCCTGAAGAAGGTTGATAGCTT CTCTAGGTGGATTATTAAAGAACTTGCAGCAGTGGATGATATGCAAATGCAGTCAAGGAATGCAGATGAATGTGGGAACG TGATAAATGATACCTCATTTGATCTGTCCCGATCTAAAGACCAGCTGTTTAGCATACATGATTTTTCACCTAAGTGGGCT TATCCTGAATCTGAAATTGAGGTCTTCATTATTGGAACATTTTTAACGACTCAACCAGAGGTTGCAACATGCAACTGGTC CTGTATGTTTGGGGAAGTGGAAGTTCCTGCTGAGGTCTTGGCTAATGGAATTCTGTGCTGTCAAGCTCCACCTCATGAGA CTGGACGGGTCCCTTTTTACATAACATGTTCCGATAGGCTTGCTTGTAGTGAAGTTATGGAATTTGAGTTCAAAGAAGGC TTTTCTGAAAATGTAGAGGTAGATTTTTTCAACAAAATGCAGCTTCATTTGCGACTGGAGGAGTTACTTTCTTTGAAGTC AGTAGAACCTTCAAATGAAGCTTTTGAGGATGATTTTCAGAAAAGAAACTTAATTTATAAGCTTATTTCACTGAAAGAGG AAGAGGAATATTCGAGTAAGGAAGAACAAACTGTAGATATGGATATATCAAAACACAAGTTAAAAGCGCATATGACTCAG AGTCTGGTTAAAGAGAAACTGTATTCATGGCTTCTTCGCAAAGTAACCGAAACTGGTAAAGGGCCATCTGTATTAGGTGA GGACGGGCAAGGTGTGTTACATTTAGTAGCTGCTCTTGGTTATCATTGGGCCATAAAACCAATTGTAACTGCTGGGGTTA ATATCAACTTCCGCGATGTGAATGGATGGACGGCGCTGCACTGGGCTGCATCCTGTGGCAGAGAGCAAACAGTTGCCGTC CTTGTCTCCATGGGTGCTGCGGCTGGAGCATTGACAGATCCATCTCCAGCATTTCCTTCCGGAAGAACAGCTGCTGATCT TGCTTCCAGCAACAGCCACAAAGGAATTTCTGGTTTTCTAGCAGAGTCATTATTAACTAGCCACCTCGAATCACTCACAG TGGCTGATCCGAATGAAGATTTTCAGAAAGAAACTCCTGGAATGAAAGCAGTGCAGACAGTTTCCGAGCGAATTGCGACA CCTGTGCTTCATGGTGAACTACCCGACACTCTCTGCCTTAAGGATTCTCTTGATGCTGTTCGTAATGCTACACAAGCTGC GGATCGTATACATCAGGTATTCAGAATGCAATCATTCCAGAGGAAACAGTTAGCTCAGTATATTGAAGAGTATGAAGATG ATGATGAGCTTGGATTGTCTGAGCAGCAAGCTATTTCCCTTCTAGCTTCCGAAACATGCAAATATGGACAAGGAAAGGGG TTGGCCAATGCTGCTGCGCTACAAATACAGAAGAAGTTTCGTGGTTGGACCAAGAGAAAAGAATTCTTGTTCATTCGTCA AAGGATAGTCAAAATCCAGGCCCATGTAAGAGGTCACCAAGCAAGAAAGAAGCACAAACCAGACCTCCTTTGGTCCGTGG GAATCTTGGAGAAGGTGGTATTGCGGTGGAGGCGTAAGGGCCATGGTTTGCGTGGATTTCGACCAGATGCCCCCAATGAG CTCCAGGAACAACCAGGTCCTTCGAATTCAGAAGAGGATGATTATGATTTTCTCAAGGAAGGAAGGAAACAGAGTGAAGC AAGATTCCAAAAGGCCCTTTCAAGAGTGAAGTCTATGGTTCAGTATCCAGAGGCTCGGGCTCAATACCGGCGTGTGTTAA ATATAGTAGAGGACTTTCGTCGAACCCAGGAATCTAATCAGAACTCAATAAATTCGGAAGAGGCAGTTGATGGTTTGGAA GATTTGATTGATATTGACATGCTTCTAGATGATGATAATTTCATACCTTTAGCATTCGATTGA
Protein sequence (LotjaGi4g1v0035100.1) extracted from Lotus japonicus Gifu v1.2 Proteins.
MAENASCRLNPQLDFQKLQFEAQHRWLRPAEICEILRNYRLFQITSEPPNRPPSGSLFLFDRKVLRYFRKDGHSWRKKKD GKTVKEAHEKLKVGSVDALHCYYAHGEESENFQRRSYWMLEQDMMHIVFVHYLDVKVNKTNIGASTDSDGTRSYSHRGRS VSSGFPTNYSSLPSGSTDSMSPTSTLTSLCEDADSEDIHQTSSGLHFFRKSQNMENGQLIDKIDAHSNISYLTHPFSGDH GQFGQDYIPLVKGDKSRPSDNNYIEGQRAHGMASWDNVMEQSAGMHIDPSMVSVTSIPSSSMGNIVEQEHAALTGEAEAS QSFQSNWQIPFEDNTGELPKWNFTQSLSVEFEPDTGLLGNETNNASPRNVPDLFNFDCDPNEQSVQQSFSKQHTYAGVFG EGCISYPLSTKHALLGEDESLKKVDSFSRWIIKELAAVDDMQMQSRNADECGNVINDTSFDLSRSKDQLFSIHDFSPKWA YPESEIEVFIIGTFLTTQPEVATCNWSCMFGEVEVPAEVLANGILCCQAPPHETGRVPFYITCSDRLACSEVMEFEFKEG FSENVEVDFFNKMQLHLRLEELLSLKSVEPSNEAFEDDFQKRNLIYKLISLKEEEEYSSKEEQTVDMDISKHKLKAHMTQ SLVKEKLYSWLLRKVTETGKGPSVLGEDGQGVLHLVAALGYHWAIKPIVTAGVNINFRDVNGWTALHWAASCGREQTVAV LVSMGAAAGALTDPSPAFPSGRTAADLASSNSHKGISGFLAESLLTSHLESLTVADPNEDFQKETPGMKAVQTVSERIAT PVLHGELPDTLCLKDSLDAVRNATQAADRIHQVFRMQSFQRKQLAQYIEEYEDDDELGLSEQQAISLLASETCKYGQGKG LANAAALQIQKKFRGWTKRKEFLFIRQRIVKIQAHVRGHQARKKHKPDLLWSVGILEKVVLRWRRKGHGLRGFRPDAPNE LQEQPGPSNSEEDDYDFLKEGRKQSEARFQKALSRVKSMVQYPEARAQYRRVLNIVEDFRRTQESNQNSINSEEAVDGLE DLIDIDMLLDDDNFIPLAFD
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 |
---|---|---|---|---|---|---|
PANTHER | 1 | 1060 | 1060 | 0.0 | – | |
PANTHER | 1 | 1060 | 1060 | 0.0 | – | |
ProSiteProfiles | 15 | 141 | 127 | 80.61 | ||
SMART | 18 | 136 | 119 | 1.2E-80 | ||
Pfam | 21 | 134 | 114 | 4.4E-51 | ||
MobiDBLite | 144 | 187 | 44 | - | – | |
Gene3D | 465 | 560 | 96 | 2.0E-17 | ||
SUPERFAMILY | 472 | 557 | 86 | 6.69E-16 | ||
Pfam | 472 | 551 | 80 | 3.1E-5 | ||
Gene3D | 636 | 769 | 134 | 4.1E-18 | ||
SUPERFAMILY | 650 | 761 | 112 | 1.31E-16 | ||
ProSiteProfiles | 668 | 762 | 95 | 17.582 | ||
SMART | 668 | 697 | 30 | 1500.0 | ||
Pfam | 673 | 761 | 89 | 1.0E-6 | ||
SMART | 701 | 730 | 30 | 0.022 | ||
ProSiteProfiles | 701 | 733 | 33 | 10.152 | ||
SMART | 881 | 903 | 23 | 6.3 | ||
ProSiteProfiles | 882 | 911 | 30 | 8.059 | ||
Gene3D | 882 | 927 | 46 | 3.0E-11 | – | |
SUPERFAMILY | 883 | 926 | 44 | 9.29E-6 | ||
Pfam | 884 | 902 | 19 | 0.041 | ||
SMART | 904 | 926 | 23 | 0.29 | ||
ProSiteProfiles | 905 | 929 | 25 | 9.066 | ||
Pfam | 907 | 926 | 20 | 3.9E-4 | ||
MobiDBLite | 952 | 975 | 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 | DNA binding | Any molecular function by which a gene product interacts selectively and non-covalently with DNA (deoxyribonucleic acid). | ||
Molecular function | Protein binding | Interacting selectively and non-covalently with any protein or protein complex (a complex of two or more proteins that may include other nonprotein molecules). |
Expression pattern of LotjaGi4g1v0035100.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.
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