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Field | Value |
---|---|
Gene ID | LotjaGi2g1v0337700 |
Transcript ID | LotjaGi2g1v0337700.2 |
Related isoforms 1 | |
Lotus japonicus genome version | Gifu v1.2 |
Description | Poly [ADP]-ribose] polymerase; TAIR: AT2G31320.1 poly(ADP-ribose) polymerase 2; Swiss-Prot: sp|Q9ZP54|PARP1_ARATH Poly [ADP]-ribose] polymerase 1; TrEMBL-Plants: tr|A0A072U2F3|A0A072U2F3_MEDTR Poly [ADP]-ribose] polymerase; Found in the gene: LotjaGi2g1v0337700 |
Working Lj name | n.a. |
Genomic sequence (LjG1.1_chr2:81476353..81488341) extracted from Lotus japonicus Gifu genome v1.2.
GTAAAATTGTGTATAAAATAAGCTTTAGGGGAAGATTGAAAGAACTTACAGTTAGAGAGGAGAGCTAGGTGGGAGTTTGA GAGTGAGAGGAATGTCGACACCTCAAAATCGAAAGTCATGGAAAGCAGAGTACGCCAAGTCGGGGCGATCGAGATGCCGG ACCTGCAATACCGCAATTGACAGCGAGAAACTCCGTTTCGGCAAGATGATTCAGTCCTCCAAATACGATGGCTTCATAAC TGTAATTTTCCATGCCTATTGATTTTTCTTCAACTCTTATATGCATTGAGCCATTGACTGTGCATAAAATCCATTTTCAT ATAAGGATGAAATATAGGAGTTGATTCTCCTAGCATTCTTGTGTCTGCCATAAAATTTACAATACAATTTACCAGCTAGG TAGGTAAGGTGTATACTGTATATATAATGAGCGTACGTCTTGGAGCTTTTCTTTTTCTTTTTCTTATTGTTAAATAAATT AATTAATTATACTGCATGTTTGTAATGTTTTAATGTGTATTTTGCTTTTTTATTTTAAATACCAGATGTGGAGTCATGCT GATTGCATATTGAAGAAATCCAACCAGATAAAATCGTATGAAATTTAATTTTATCCTTATTTCATTGCAAATGGAATGCG TTTGTCTCATGATTTGACATCAGCAATTAAGGATTTATATATCGTCCATGCACTATTTTTCTTTTAGGATTGATGACGTT GAAGCCATAGAATCGCTTCGTTGGGAAGATCAGCAAAAGATCAGACAATACATAGAGAGCAGTGATAGCCCACCAAAGTC AACGGTCATCAAGGATACTGAGTGTTGTATTGAAGTTTCACATACTTCTCGTGCTGCTTGCAAGCATTGTGGTAAAAAAA TCATCAAGGGAGAGGTTGGCACCTAACTTCTCTCTCATTCAGTGTTATAATATTGCAAAGGCTTCTAAGTTGTTTCTAAG TTTGTTTTGGGGTTTTTTCGAGGAAAAAGAATTGGAGAGGACATATTTTTATTTTCAAATGGATTTAATTTGTGGTCTGA AAATGAGATCATAAGCAAAAGCATGTTAATTGATGATGGAAAATATGATGATCCTGCACTTCAACTTACCTTGTGTTTCC TTAAAAAAAAAAACTTAATTACCTTGTCTTTATAATAAATAAATTAACTCATGAAAGAAAACATATCATGTACTATTTAG TAATATCCTAATGATGTTGCAGATTTAGGGTGTGTTGATTATTAGTTGAATCCAATATGAATGTGATTTTTCTCCATCCA ACAACTTTTCCCAGTTGAAAAAAAATATTAAAAATGCTAGCAATAAACACTCTCTGTTAAACATTAATTTTTTTTTATAG ACAATAAGAAATATATTGAATAGAAGCACAAGGGGTGCTTCAACCCAATACAAGAGGATAGATGAAGAGGAATACAAAAT AAAAAGAAAGGAAAACCAACAAAGACCCTACAACAGCCGGATCTACCCCACCTAATACCTCCAAGAAAATAGACCTTACA AAAAAAGCCTCATTAAAACTTTACTAGGATAAAATCCCCTTGGGAAAAAACTAGAAAGGAAAAAGAGTACTAATTTTGAA AAGTCAAGAGAGCATTTTCAAGGAGATTTACAAAGACTACAACCCCACCCAAAACCCAGCTTAGAATAACCAACAACAGC ACCACAGTCCCATCCCAACGCATTGCAGCCATAAAAAACTTCCTGCTAATCCAAGGGAAATATCAACAAGGAGAACAACA ACAATCCAAGGGGCAAAAGAACAAGTACCAGCTTTCTCCACCATGATTGTTAACACAGATATCAAATCACTAGAAGAAAA TATGTCATATGACATAACAACAACATTCAACCTCCCTTGAATTACCAACTCAGATCCAGCATTGATAAGTCCAATCCCCG TGAAGAAGTATACAATCAGCTACCAATGCACAAAACCAACCGCACCCCTTGGACCAATCTCCCCGGATCACAAGAGACAG ACCAATCAGCAAATAGAGAGCACAATACAGCAAATAATCAAAGAGTAACATTGTTAATTATCAATACAGATCATAGGTTC ATTAGCCCATTCAAACAGAGAGTATTGAAAACCATTTTTCCTTGCCCGCAACCAGCTCCAAGCTTTGAATTTCACCTTCT CACAAAAGTCTCCCTCATCAAATGTCTCCTCCCTAAAAATCAGTGCATTTCTTCCGTTTCACAGCACGCCAACTTAACCT TTTCACGAATTGACAAGCCACCAACACATTAATATCTCATTAATTAGTTAAAATTCATGTGAGATCCACTAAAAATATGA GTTCATTTCAAATTAAATAAGACTCACATGAATTTCAATCAATCAATCAATCAAAAATGTTAGATTGAATGCTGATAGCA CTCCTCAAATAAAATATGTCAATCATGTCCTTTTAACTAGAAAATAAACACACTTAATTAGTAGTGAAATATTATTGGAT TCTTAGTTTATAAGTCAGAAACTATTGTGCAGACTCTAAATAAGTGTAAGATATTAAAGAAAAGTGGAAGGAATGAAAAA AAATGTAAGATATATACGGATGCTATGTTTAGTTGGGAAAGAAAATGAGATAATAAGATTAAAGAAAGTGGAAGGAATGA GATGAGAGAGCAAGGAAAGAGAGATAAAGAAAAAGGAGAGGATTCTTTACTTGTTTGGTTGAAGAGAAAAGAGAAGAAAA TATGTTAAAACTTTTCTCTTCTCTTATTTGGTTGTGTAGAAAATGAAAGGAAAGAAAGAGATACTTTCATAAAATGACAT ACCCCTAATTAAAGAAATATATTTTCAAAAACTATTTACATAAATGAATTTTTTGTTATATTTTTATCTTATAATTTATA ATATAAAATAAGAAATGAAACAATAGTATAATTTATCCATCTCGAATCTCAATATTATCATATATATTTTTTTATAATAG CAATATTTTTTATTGGTCTGTCAACACTGAGTGTTTTTTATTTTATTTTTAGGTCCGAATATCCACTAAGCCTGAGGATG AAGGTGCTAAGGGTTTGGCTTGGTTCCATGTCAAGTGTCTCATGGAATTATCACCATCGATTGAAGTGGATAAGTTGTAT GGATGGAATAGTCTCTCATCTTCTGTGCAATCAGCAGTTAGTGACTTGGCTAAGAAGGGCCATCCTATGAATATGGAAGG TATAGTAATTGACTCCAAAACTGTTGATCATGTTAATTTTAATTTATTATTTTAGTTACTTTTTTCACTATTTTCCTAGC AGATGGATCTACTTCCAGAGTTGGATCAAAACGGCGAAAGAACGCTAATAATGAGCAGGAGTCAAGAAAAGTTGTTAAGG CCAATGGAGATGCGCATGTGCCTGCAAGAAGATCAACACCAATGAAAAATGTTGATGAGGTGTTAGGGGAAGCATGTGAT CTGGAGACTAAACTGGAGGCCCAGAGTAAGGAACTCTGGGCGCTGAAGGATGATTTTAAGAACCATGTGACAAAAACAGA GTTGCGTGAAATGCTGGAAGCCAATGGTCAAGATTCAACAGGATCGGAACTTGATTTGCGTGACAGCTGGTACTTCCTTT CTCCGTTGCAAAATATTTATATATTATTTTAGTTTTTTCACCTATTTTACAAAAACTTTATTGATTTAGAAATTTAACAC TACTTATGTCATTTTTTACTATTTATACTTTCCCATAGTATTATATCTCTCATATATTATATTATATTTTAACTAATTAT AATTCTCACAAATTATTTAACTAATAATTTTTTTAAAGCAAAATATATATAATATATATGAAATATTGAAAAATAACCCC TCTCAACATGAGTACAATACCTAACCAGCAAAAAGTCTGACAAAACCCAGCCACTATAGCAGAAAAACCAAAACTCAGCC ACTATAGCAGGAAAATCTCGTAAAGGACCTCTAAAAGTCTCTCACACACACAGGAGTGTGCTACAATACCTAGCTAAACC TTAAAGCCTAACCCCTTAAGAAAGATCTCAACTAAAATCGAAAAACGGATTCATGTTCAACCAACAAAAGAACATGTCTA ACCGCTCGATACCTGCAAGCAGAGACCTAACCAATAAAAACTTACCAAAAAGCCCATCAAATAAACCACCACTACTATAG AGCTAGGACAATCAATGACCAACGGCAACATCAACCGACACCGCCAACAACACCCCCAAAGCCACCTCGACGACATCTTT AGGCCCACAACCGTACCAATCAAAGATCTCCAAGGAAAGAAAACCAACCAACACAACCATAAAATCCTCTCTGTTTATAG AGGGTAGGTCGATCGCAATGCTACACAGGAAGAGGAACCCAAGAGCCAAACCAAAACCTGTAAAGGCCACCTTTGAGAAC AAGAATCGATGGCGCGGGCAAAGAGACCGGAGAGGAGGGAAGCAAGGCACGACGTAAGAAACTCGCCAGCACCGGGACAT GATGAGGAAACGCAAGTGGGAAGGAACAATATACCGCCATCTTCACTGACATTAAATTGTTTAAATTACACAAGATTTAC CTTAAATAAATTCAGTATAACTCAGGTGGTCTGATAATATTTTAAAATACGTTTTAAAAAATTCTAGTTCATGACTCATA TTAAAATATTATTAAGCTACCTAAGACTATAATTATAAGTATTCGAGGTAAATTTTTGATGATTTGAACAACCTCTTAAA CATTAAGATTATTTTAGTGAAAAATATCCGCAAAAAGATTATTTTAGTGAAAAATACGGGTTGTTTAAATGATTTATGAG AAAGTTTGGGTTAAATAACTCATCGTCCAATCACATTGAAGATAAGTGAGTTGAATTTTTATATTTTATTTATTAATTTA TTTATAAAAAATCATATTGGTCCAATGGGTTGTATGTTAGTAACCAACATGGTCATTTAAACAACCCCGAAAAATACACA TCAATAAGTTCTTAGTGTGTATAACCTAGGTGGATGGAGTAATTTAACTAGACAAACTCCTACATAGTTATATGCATTTC AAAAATATTACTCCCTCCGTTCCTATATATAAGTCAATTTTACCTAATTCTCTTAGATTAAGAAAAGTAGTTACAAGTAA TAAATTTGTAAAAGAATTTATTCACTTTCCTAGATTACCCTTATTTAATTTCTTATAAGTTTATCTCTCTAAGTTATTAT TTCAAAATCTCATTGTCTCTTTCCTATTAAACATGAGGATAGTTGTGGAAAAAAATAATTAATATTTCATTGATATTGTA AATGGACTTATATTTAGGAACAAGAAAAACACTAAAAATTGGTCTTATAATAAGAAACGGAAGGAGTATCATATATTTCC CCAGCTTTGATCATTTATTACTGTGATTTTAGTGCTGATGGAATGATGTTTGGAGCACTTGGTCATTGTCCACTATGTTC TGGCTCTCTACGTTACTCAGGAGGAACGTACCAGTGCATTGGATTCATTTCTGATTGGAGTAAATGTCCCTACTCTACCA GCGAACCAAAACGGGCTGAAGAGAAGTGGAAAATCCCAGTGAAAACAAATAGTCAATACCTTAAAAAGGTCTGTAAAGAG AAAAACGAAGTCATTGAACAAGACACCCTTATTGTGACTTAATCAAGTTTTTGCTTTGTGTTTACAGTGGTTCAAATCTC AAAAGAGGAAGAAACCAATTAGGGTATTGCATCTTCCATCATCAAGCTGTGAGAGTTTGAAGGATTTGAAAGTTGCTATC GCTGGATTATCTAAAGAGTCTATTGTATAACTTCCTTAACTTTTTTTTCTTCCTTTCACATCCATTATTATGAAGCCCCC TTCCCCCAAAACAGTTTAGACTTTAGAGAAACTGCCATATTTAATTAGTATCATAGTACGTATTCAGTACTCATCTTTTA CAAGTTGATTTTACAGGAGGAGTGGAAACGCAAAATTGTTGACAATGGTGGGATTTGTTGTGAAAAAGTGAAGAAAGGTT ATTTCCCCCCTTTTTTTTATAAGCCAAAAATATATAAAAATGAAGTACTGGGTGTACTTCAAAACCTCAAATGTACAAGA AAAAGGGAAGAAAAAATACAAGAGTAACATTTGCCTATGAAAAAAAAAACTATCAATTTTGAGGAATTTTTTTATTTATA TTTAATTGTTCACTTACAATTTCAAAATAACATTAAATAAATTTTTAATTTCCAATAATAGAATTTTGCAATAAGTTGTG ACTTCCCATAAAAATTACACACCGAATGGAGGATAAAATATGTGAGAGATAATATATAATGAATGAAGTTTAGAATAGTG AAATTAAAAAAAAAAACATATTTTCTTTTTCTGATAATCAATAAAATTAATTATTTTCCTTAATTTATATGTTTATTCTC TTCCCGGACAATTATATACGAAGGAAGTATCAGTAGTTGCAGAATCCAATTTATGAAAATTGGGGAAAAAATTGAGTTTT TGCCTCTTCATGTGTGTATGTATGATTTTTGCAGATACTAGCTGCCTGGTGGTGAGGGAAGCACACAATGATGAAGCTGA GATGCGGAAGGCAAGGTATGCGTGCACTAAATTTGTAGTCTAATAGTAAAAAAGTCTCTCGTTGATTGATTCTAGTATCA TTGATTTGGGAGAGTTTCGTGTATATACAGGAAGATGAAAATACCAATAGTAAGAGAGGACTATCTGGTTGACTGTATAA AAAGAAATAAGAAGCTTTCATTTCAAATGTACAAAGTTAAAATGATTGGTGAGGCTTCTAGCATGGCTACGGTCAGGCAC AGTGCTGTTCACGAGGCTTCTGGCCTACAGGATTCCGGACACATACTCGAGGAAGGAGAAAGCGTATATAATACAACTAT GAGTATGTCTGATTTGTGTACTCGTGCGAACAGGTGGGTTCATTGTATTTTTGCTTTTCTTGTTATCTCCTTTAGCACGA ATTTTGTCTAGATGTTACTCCATATATGGTCATTGAAGAATTATATTCAGTTGAACGTAAAATTATGTTTATGGATGCCA AAATTCCCCATATCCACGAATATCAACGGATAAAAATTTGTGGTGGATGAAATTACGGGCTCCCAAAGATACTCATGAAT TTATGCAATATATAATTTTTCTCGGTTTGGTATTTGTTGCTGGGTTTTTTTCCTGCAGTTTGTGTAGGGTAGCAGGTGTT ATTAGGTGCTGGATTTTGAAAGTTACATCTTTTGAGCACAATTTGATTTTTAGGTTGTTCAATGTAATATTGGAGGGGAT TATGCTCACTTGGTTGAGTTGTGTTTGTACCATCAAGCTTTTCATATAATAAAACTTTTACTTTTAAAAAAAAATATGAA TAAGACATGTATATATGAATATCGGTATATCTGTATCATGCTGAATTCCTAAAAAACAGTTTAAAATCCCTCTTGAATTC TCTTGCATCACTTTCTTTTCTAAGATTCTTGTTATACATGTTGTTATTTCCTCTCATTGATTATCATCCTCCAACTTTCA TTTCCCATTAAAAGCTACTACATTCTCCAAATAATCCAAGAAGATAAGGGGTCAGGTTGCTATTTGTTTCGTAAATGGGG TCGTGTGGGAAATGACAAGATTGGATATATGATGCTGGATGAAATGCCAAAACCAGATGCAATCCGTAAATTCAAACAAT TATTCTTCGAGCACACTGGAAACCATTGGGAACAAAAGACTATTCAGAAGCAACCTGGAAGATACTTTCCATTGGATATT GTACCTTTTTTAATCTTATTTTAATTTTTTTAGTTTGACTCAAATCATCTTCACTCATGATATTCAACTCATGATTGCTT TGAATACTTCACTTTGTAGGATTATGGAGTTAACAGAAATGTCTCCAAAATAAATAAAAACGATGCAGACAGTAAACTAC CCCGCCCATTAACAGAATTGTTGAAGATGCTCTTCAATGTGGAAATATACAGGTATACATTGTGTTTGTTTGGTTTTCAC TTCAAAATAATAGTATATGATATCTCAAAAATCAGGATTACGATATTTAATGCACATTCATTCAACAGAATGTTTAGAAA TCAGGATTATGATTTTGAATGTTTTTTCATATATATTCACTCAAGGGAAATCTAAACAAAATCACTCTCCATTTTATTAG ATATATTTAATACAAGACTGAATTTTGAATTTGTAGAGCTGCCATGATCGAATTTGAGATTGATTTGTCTAAAATGCCAC TTGGGAAACTGAGCAAAAGTAACATCCAAAAAGGTATGTTGGCACATTATTTTTAAGCTTTTGATAAGCTAGGTTAAAGT TGTAAATGTTTGTGATTTTTTGTTGGTCTGCTCCCTCTTCCCAGGGTTTGAAGCATTAACGGATATACAGAATCTGTTAC AAACTAGCAATCCTGATCCATCAGTCAAGGAAAGCTTGCTTATGGATGCCAGCAATCGGTTTTTCACTGTGATCCCTTCT ATTCAACCATATATTATAACGGATGAGGATGATTTAAAGTTAAAGGTGCGTAGTACTCTTTTTATTCATTTTTAAGGTTA GTTTGGTAATGAAACATGAAATTATATGGATGCTTTATTTTCATTAGTTTTCAACTTGCGTCTATACGACTCAATGAAGT TAATATTGTTTAGTCTAAAACATAGATTTCCATTATTATAATACAGTTACTAAGACTCAAAAGTCAAAACTATTGCGTCC ACATATGATTAATTAACTGTTGAACAAATTGGGTTGACATATTAATCAATACATATTTTTTAGAGTTTAATGGATATGCA CTGACAGTGTAAAATAGTTTTACACAGTCATCCAATCAAAGCATGTCACATAGGAGAGATAATTACATTTGACTTTAATT TTAATTAAAATAATAAGATATTTTCTGATTTGACGGAATTCAATTGGATGTCTGTGTAAAACTATTTTACACTGTCAGTG CATATCCATTAAACTCTATTTTTTAAGCAAGTGGTAGAAATTTTACAATTTCGTACGGATTAAACCTCATTCTCCTTATA GAAAAAATAGATATTTTTAGATAAGCTAAAATGAAATATATGGGGAACCGAACCCTATACAAGAAAGAGGAAAAAAAGGG GGGAGAGGAGAACAAACAAAAGGTAAAACATCACTAAATTAAAAAACACCTCCTTCCTAAGTAGACGAAATAACAAAAGC TTTTGAACTTGGCAATTCCAGACAAGCAATTGAGCTAGTTCAAACACCTTCTCAGCATCTTTCACCCCTTCTCTGAAAAC CATCAGATTCCTATGAAGCCAAAGGGACCATACGATTGCCAACCATATTGTTTGGGCCAAAAGGGTTGACCCAATGAGCT AAGCCTATTTTGTCACCCCTAATTTTCATAGTATAATTGTTCCACTACTAAACACTAAGGGTCTCGACTAACATTAACAA CAAGAATCGCTCCCCACCGATAACAACTCTACTCCACTAAACATTAGTTCTTCTGTTCACTGTTATTTTGAATAAAAAAA AAATTGTTCCTATATATTTGTGTACTTAAGGATTTCAAGATAACATTAATTGATATTTTTCCAAGTAATACCTTCGTCGG AACAATAAATTAGGAAGAAAAAATACATTTTAAAAAAGTAAAATAAATAATAAATAATGCTTTATAAAAATTAATAAAAT TAATTGCATTATTAATATTTGTGTTTTTCCTCTGTACATTTGGTTAGGAACAGAGGGGGAGTAATATCAGCACATCACTC AACAATTAGGTTCATTAAGACAATAACCCAAGATGTGAAACTTTTTTATGTTTTTAATGTTTCAAAACTGTTCAAGGAAT GACAGTAATTAATGAAAGATATGTAAATTATGGAATTCTATCAGGACTGCAATTTTTCCCCATGGATTGGCACTTCTTAT AACTTCTGAGTATCCTTTGTTATAATTCGAATAATATGGCTTTGCTCTTTTGGTAGGTGAAAATGTTAGCAGCCCTTCAA GACATTGAAATAGCCTCAAGATTAGTTGGATTTGAGGACTCCATTGATGATAATTACAAGAAGCTCCAATGTGATATATC TCCACTAGCTCATGACAGTGAAGATTTTCGTTTAGCTGAGAAGTTTCTCCACACTACTCAATCCCCCACACATCCGGTAT GTTTATATTTTTCAAAGGGTGTCCATTTTTTATTTATGTTGCTGGAGTGAGCTCTGTTGTTTCCCAAAATGTACAAGGTC CAATAATCTTTACGATCCATCCACACAGGATTGGAGTCTTGAGCTAGAAGAAGTTTTTTCTCTTGAAAGGGAAGGTGAAT TTGATAAGTTTGCTCCTTACAGGGATAAACTTGGTAACAGAATGCTCCTATGGCATGGTAAGTGTGATATATTATCAAGT ATATTCCAGCCAAGGCAAAATGAGTAAAAGAAATCAAAGTATTGGATCATGCATCAGTGCATTTCTTAAGAAGATAAAAA AAATGCCTACTAAACCTTCCAATCTCAGATATTGGATTACTCATGGAATTGTTCTCAGATATTGGATTACTCCATAGGGA TTGTCAAGATAATGCATGTTAGACCAGAGTAGTACTAAAAGCTGAAACTTTTAGCTTAAAAATAATTTATTTCTCTAACA AATTAATTCAGTTTCTGTTTACGGTAATATGGATTATTATTTTGTTGTAATATGCATGATGCAACTGCATGTATATAAAA ATTTAACAAAAAATTGATGTTCTCTATTATAGGTTCTAGGTTGACAAACTTTGTGGGAATTCTCAGAGAAGGACTGAGAA TTGCACCTCCTGAAGCCCCTTCGAATGGATATAATGTTCTCTCTATTACTCCAGTTTTTATCCGATATTTATAATTTCAC GCATGTCTTACCTTCCGAAGCAGCACTTAAATCTGAATATAATGCATTTTGCAGTATGGCAAAGGGGTTTACTTTGCTGA CCTGGTCAACATGAGTGCTCAATATTGCAACACGGATAAGAAAAACCCTATTGGTCTAATGCTTTTGAGTGAAGTTGCCC TTGGAGATATCTATGAAGTCATCAAAGAAAAAGAGGTGAATCTGGTTTGATTCAAGTTATGCTTATTCGTTTATATATAT GGTCGCAGTTTGATTGTTTTCAAGTTCATCGATGAGCAACAATATATGTTGAGTTCAACCTATATATATTAAATGAATTT GAAATAGCTTTAATATTTCATTTTGCTAAATAGTATATGGACATAGCTCCAGAAGGAAAGCACTCTACTAAAGCACTGGG CCAGGAAATGCCTCTGGAATCAGAACATGTAAAGTGGAGGGGTGATGTCACCGTTCCTTGTGGCAAACCAGTGTCATCAA ATGTCGAGGGATCTGAACCCAAGTGCAATGAGTATATTGTCTATGATACTGCTCAAGTAAGTTTCAAGTGATGCTGGTTG TACTTTTTCCTTATCATGCCTCCAATTTTGTGGATATGTCAACAGACTCAGAGCTAAAGCCTTTTTTTTTTGTCGCAGAG CTAAAGCCTCATATGTGTCTTTCTTTCAGTAAATCCATGCATTTGACTGATTGTGGACTTTTTTTGCAGGTCAAGATGCA ATTCTTATTGAAGGTGAGGTTCCATCACAAAAAATGAGGGTTGGAAACTAGAGGTTTCCTGTTTTAGAGCTTGTGATCTG TTTGTGTATATCACTGTTTTAATGTCAAATTAACTTCGTAGTGTCGTGATCCTCCCTCTTTAGAACACGATGCATCATAA TAATAAGTGTTTTTACCTTCTAAAAACACAAATGCGGGAGGTTCTTTATCTTACCCTGCCTTATTAGTTTATCTTATAAT AAGTATGCATAAATATAAGAGAGGAGCTGCTTTCTCCTTTGAGTGAAGGGATGGGTATTGGGTACCTTTCTGGTTTGCAT ATTTGTAACCCATTGATCAATACTGTAGCTGTGAAAATATATGCAAAATAAAATTTGCAGGAAACTTTT
CDS sequence (LotjaGi2g1v0337700.2) extracted from Lotus japonicus Gifu v1.2 CDS.
ATGTCGACACCTCAAAATCGAAAGTCATGGAAAGCAGAGTACGCCAAGTCGGGGCGATCGAGATGCCGGACCTGCAATAC CGCAATTGACAGCGAGAAACTCCGTTTCGGCAAGATGATTCAGTCCTCCAAATACGATGGCTTCATAACTATGTGGAGTC ATGCTGATTGCATATTGAAGAAATCCAACCAGATAAAATCGATTGATGACGTTGAAGCCATAGAATCGCTTCGTTGGGAA GATCAGCAAAAGATCAGACAATACATAGAGAGCAGTGATAGCCCACCAAAGTCAACGGTCATCAAGGATACTGAGTGTTG TATTGAAGTTTCACATACTTCTCGTGCTGCTTGCAAGCATTGTGGTAAAAAAATCATCAAGGGAGAGGTCCGAATATCCA CTAAGCCTGAGGATGAAGGTGCTAAGGGTTTGGCTTGGTTCCATGTCAAGTGTCTCATGGAATTATCACCATCGATTGAA GTGGATAAGTTGTATGGATGGAATAGTCTCTCATCTTCTGTGCAATCAGCAGTTAGTGACTTGGCTAAGAAGGGCCATCC TATGAATATGGAAGATGGATCTACTTCCAGAGTTGGATCAAAACGGCGAAAGAACGCTAATAATGAGCAGGAGTCAAGAA AAGTTGTTAAGGCCAATGGAGATGCGCATGTGCCTGCAAGAAGATCAACACCAATGAAAAATGTTGATGAGGTGTTAGGG GAAGCATGTGATCTGGAGACTAAACTGGAGGCCCAGAGTAAGGAACTCTGGGCGCTGAAGGATGATTTTAAGAACCATGT GACAAAAACAGAGTTGCGTGAAATGCTGGAAGCCAATGGTCAAGATTCAACAGGATCGGAACTTGATTTGCGTGACAGCT GTGCTGATGGAATGATGTTTGGAGCACTTGGTCATTGTCCACTATGTTCTGGCTCTCTACGTTACTCAGGAGGAACGTAC CAGTGCATTGGATTCATTTCTGATTGGAGTAAATGTCCCTACTCTACCAGCGAACCAAAACGGGCTGAAGAGAAGTGGAA AATCCCAGTGAAAACAAATAGTCAATACCTTAAAAAGTGGTTCAAATCTCAAAAGAGGAAGAAACCAATTAGGGTATTGC ATCTTCCATCATCAAGCTGTGAGAGTTTGAAGGATTTGAAAGTTGCTATCGCTGGATTATCTAAAGAGTCTATTGAGGAG TGGAAACGCAAAATTGTTGACAATGGTGGGATTTGTTGTGAAAAAGTGAAGAAAGATACTAGCTGCCTGGTGGTGAGGGA AGCACACAATGATGAAGCTGAGATGCGGAAGGCAAGGAAGATGAAAATACCAATAGTAAGAGAGGACTATCTGGTTGACT GTATAAAAAGAAATAAGAAGCTTTCATTTCAAATGTACAAAGTTAAAATGATTGGTGAGGCTTCTAGCATGGCTACGGTC AGGCACAGTGCTGTTCACGAGGCTTCTGGCCTACAGGATTCCGGACACATACTCGAGGAAGGAGAAAGCGTATATAATAC AACTATGAGTATGTCTGATTTGTGTACTCGTGCGAACAGCTACTACATTCTCCAAATAATCCAAGAAGATAAGGGGTCAG GTTGCTATTTGTTTCGTAAATGGGGTCGTGTGGGAAATGACAAGATTGGATATATGATGCTGGATGAAATGCCAAAACCA GATGCAATCCGTAAATTCAAACAATTATTCTTCGAGCACACTGGAAACCATTGGGAACAAAAGACTATTCAGAAGCAACC TGGAAGATACTTTCCATTGGATATTGATTATGGAGTTAACAGAAATGTCTCCAAAATAAATAAAAACGATGCAGACAGTA AACTACCCCGCCCATTAACAGAATTGTTGAAGATGCTCTTCAATGTGGAAATATACAGAGCTGCCATGATCGAATTTGAG ATTGATTTGTCTAAAATGCCACTTGGGAAACTGAGCAAAAGTAACATCCAAAAAGGGTTTGAAGCATTAACGGATATACA GAATCTGTTACAAACTAGCAATCCTGATCCATCAGTCAAGGAAAGCTTGCTTATGGATGCCAGCAATCGGTTTTTCACTG TGATCCCTTCTATTCAACCATATATTATAACGGATGAGGATGATTTAAAGTTAAAGGTGAAAATGTTAGCAGCCCTTCAA GACATTGAAATAGCCTCAAGATTAGTTGGATTTGAGGACTCCATTGATGATAATTACAAGAAGCTCCAATGTGATATATC TCCACTAGCTCATGACAGTGAAGATTTTCGTTTAGCTGAGAAGTTTCTCCACACTACTCAATCCCCCACACATCCGGTAT GTTTATATTTTTCAAAGGGTGTCCATTTTTTATTTATGTTGCTGGAGTGA
Protein sequence (LotjaGi2g1v0337700.2) extracted from Lotus japonicus Gifu v1.2 Proteins.
MSTPQNRKSWKAEYAKSGRSRCRTCNTAIDSEKLRFGKMIQSSKYDGFITMWSHADCILKKSNQIKSIDDVEAIESLRWE DQQKIRQYIESSDSPPKSTVIKDTECCIEVSHTSRAACKHCGKKIIKGEVRISTKPEDEGAKGLAWFHVKCLMELSPSIE VDKLYGWNSLSSSVQSAVSDLAKKGHPMNMEDGSTSRVGSKRRKNANNEQESRKVVKANGDAHVPARRSTPMKNVDEVLG EACDLETKLEAQSKELWALKDDFKNHVTKTELREMLEANGQDSTGSELDLRDSCADGMMFGALGHCPLCSGSLRYSGGTY QCIGFISDWSKCPYSTSEPKRAEEKWKIPVKTNSQYLKKWFKSQKRKKPIRVLHLPSSSCESLKDLKVAIAGLSKESIEE WKRKIVDNGGICCEKVKKDTSCLVVREAHNDEAEMRKARKMKIPIVREDYLVDCIKRNKKLSFQMYKVKMIGEASSMATV RHSAVHEASGLQDSGHILEEGESVYNTTMSMSDLCTRANSYYILQIIQEDKGSGCYLFRKWGRVGNDKIGYMMLDEMPKP DAIRKFKQLFFEHTGNHWEQKTIQKQPGRYFPLDIDYGVNRNVSKINKNDADSKLPRPLTELLKMLFNVEIYRAAMIEFE IDLSKMPLGKLSKSNIQKGFEALTDIQNLLQTSNPDPSVKESLLMDASNRFFTVIPSIQPYIITDEDDLKLKVKMLAALQ DIEIASRLVGFEDSIDDNYKKLQCDISPLAHDSEDFRLAEKFLHTTQSPTHPVCLYFSKGVHFLFMLLE
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 |
---|---|---|---|---|---|---|
Gene3D | 2 | 101 | 100 | 4.0E-31 | ||
SUPERFAMILY | 8 | 101 | 94 | 3.56E-23 | – | |
ProSiteProfiles | 10 | 93 | 84 | 24.996 | ||
SMART | 13 | 90 | 78 | 1.8E-28 | ||
Pfam | 13 | 89 | 77 | 1.8E-16 | ||
PANTHER | 51 | 771 | 721 | 1.1E-241 | – | |
PANTHER | 51 | 771 | 721 | 1.1E-241 | – | |
Gene3D | 102 | 206 | 105 | 2.9E-17 | ||
SUPERFAMILY | 105 | 190 | 86 | 4.23E-17 | – | |
ProSiteProfiles | 106 | 186 | 81 | 12.837 | ||
Pfam | 109 | 180 | 72 | 1.9E-12 | ||
SMART | 109 | 183 | 75 | 8.7E-18 | ||
MobiDBLite | 182 | 215 | 34 | - | – | |
MobiDBLite | 196 | 215 | 20 | - | – | |
Gene3D | 230 | 301 | 72 | 5.4E-20 | – | |
SMART | 290 | 343 | 54 | 9.2E-26 | ||
Pfam | 292 | 341 | 50 | 3.8E-20 | ||
Gene3D | 302 | 362 | 61 | 1.3E-14 | ||
Gene3D | 376 | 475 | 100 | 3.4E-16 | ||
ProSiteProfiles | 378 | 468 | 91 | 14.564 | ||
SUPERFAMILY | 379 | 467 | 89 | 3.93E-18 | ||
SMART | 380 | 458 | 79 | 5.3E-13 | ||
CDD | 383 | 456 | 74 | 8.88535E-18 | – | |
Pfam | 383 | 455 | 73 | 5.3E-11 | ||
Gene3D | 476 | 614 | 139 | 8.7E-36 | ||
SUPERFAMILY | 481 | 595 | 115 | 5.23E-28 | ||
CDD | 495 | 597 | 103 | 2.23852E-38 | – | |
Pfam | 505 | 582 | 78 | 8.8E-15 | ||
SMART | 505 | 585 | 81 | 1.1E-20 | ||
ProSiteProfiles | 612 | 730 | 119 | 35.008 | ||
Pfam | 613 | 733 | 121 | 3.4E-34 | ||
SUPERFAMILY | 613 | 742 | 130 | 7.19E-32 | ||
Gene3D | 615 | 771 | 157 | 1.1E-38 | – | |
Gene3D | 628 | 731 | 104 | 1.1E-38 | ||
ProSiteProfiles | 733 | 789 | 57 | 8.75 |
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 | NAD+ ADP-ribosyltransferase activity | Catalysis of the reaction: NAD+ + (ADP-D-ribosyl)(n)-acceptor = nicotinamide + (ADP-D-ribosyl)(n+1)-acceptor. | ||
Biological process | Protein ADP-ribosylation | The transfer, from NAD, of ADP-ribose to protein amino acids. | ||
Molecular function | Zinc ion binding | Interacting selectively and non-covalently with zinc (Zn) ions. |
Expression pattern of LotjaGi2g1v0337700.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.
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