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Field | Value |
---|---|
Gene ID | LotjaGi1g1v0367100 |
Transcript ID | LotjaGi1g1v0367100.1 |
Related isoforms 1 | |
Lotus japonicus genome version | Gifu v1.2 |
Description | ATP-dependent zinc metalloprotease FTSH protein; TAIR: AT2G26140.1 FTSH protease 4; Swiss-Prot: sp|O80983|FTSH4_ARATH ATP-dependent zinc metalloprotease FTSH 4, mitochondrial; TrEMBL-Plants: tr|G7J7N5|G7J7N5_MEDTR ATP-dependent zinc metalloprotease FTSH protein; Found in the gene: LotjaGi1g1v0367100 |
Working Lj name | n.a. |
Genomic sequence (LjG1.1_chr1:84492603..84503675) extracted from Lotus japonicus Gifu genome v1.2.
GTGAAGATGAAGAAACAGAACACGCATAACAGAAGAGAAGAAGAACGAGAAGAGAAGCACAACAAGGTGCAACACCGCTA ACACTTCGGTGGCTGAGAACAACACAGAGCCTCGTCGATCCTTCACCGCGTGTTGCGTTTCCGATCTTTCATTTTCACCG AGCGCCGCCGTGTATCGATTCTTCCGGCGAACTTTACCTGACCGATTTTGGTGACATGGCGTGGAGGCACTTGATAACGC AGGTGAGCTATTCATCATCGATCGAACTTGTTTGGTTTTGTTTATTTCGTGAACCCTAAATTAGATTTTCAATTTTTTCG AGGGTTTTGATTTAGGATCAGATATATAGAGAAGATTTTCATTTTAGGGTTTCGAATTTGAACGAGATACTATAATATGG TATAGGAGTATTAGCATCTTCTTCTACAAGCTCAATTTTTCCTCCTGCTCAAATAAGCTTGACCTTAATCTTAGCATAGT TATGATGAAGAAATTAGATTTTTATGAGTGGAGATTTCTGCTGAAAATTTCTGTCTATATGTAATAGCATGTTTCGGATA TCGGGGCATTTCGGTTGGGGATTGTTTGCTTTGAATTGAAAATGGAGGTAAGGTTGTTGGTTTGATGTACGCACTGGTAT AATCGCTGAACTGCTGGTCGTTACTAATTATAGTGCATATTTTCTTGTTTTGCTTCTTGGGGACAATGTATTAGACACTA GGCGGGTAAGAATTTGTTGAGAACGTGGTGTTGGATGTATAATGGCTATTGATTAGCTTTAAGGTAAGACACCAACAATA TCCAAATATTATTATGGGCCTTGCCTTGCAGTGGAGGACATTTTCAAAATTAGTTGCGTGTTTCGTCTGAAACTGACACA CAATTAAACGCTTATATCCCATTTCCATTGTTTATGAAAGGTTTGTGTATATACGGATAAACTTGATGTATGAATTTTTG ATCAAATGTGCTTATTTTTACATGTAGTCAGTTTCCAACTATGATCTGTATCTTGTATTAATTTTATTTGTTATTTAATT TTATGCTTTATTTTTACAGGTTACAAGACATCAATCAGAATTTGGAATGGTCAAAAATTTGTTGGCTAGAAGCTATTTGT CCGCTAATAAGTTTGGAGGCTTTACAAGTATGAAACTCTTGTTCATACAGCACATTTAGTTTGTGTTATGTGTTTCTATG AGCATTTGTTTTTGTTTCTCTTGTTTGGGGTAGAATTATTTTTCTCAACTATTTTGCTTAAGGTTTAACTTATGTTTTTT GTTGTTGTTGTGGAATTCATGATATATATATGTATTTGGTTCCTTATAGGATTAGTTATGTCTGTTTTATTCATTTGTGT TTGAAGGACCTGGAAACGACTAAGTTTTTATCTTACTTGTTCTTGTAGGGAATAGGCTTTGCCGCTCCCAGGAGAGATTC CAATCAAGCTATGTTGGTAATCTGGCCCGTCGAGCACGTGATGCAGATGAAGCCAGTGAAGTTGCTCATCTTAAAGAACT TTACCATCGAAATGATCCTGAAGCTGTGATTAGAGCATTTGAAAGTCAGCCATCTCTACATGCTAATCCTTCAGCGGTTT CTGAATATGTTAAAGCCCTAGTGAGAGCTGGGAGGCTGGATGAAAGTGAATTAGTGAAGACTCTGATAAGAGGTGACTAT TTGGATAAAACTGCTTATTTTCTTTTGGCTGTATTTCCATATGTTGTGCCTTGCTCTATTTGACCTGTACTTCTTGTCAA CATTGGCTTGCTGACTTGTTAACTTTGCTCAAGAAAAAAGGTGCTTTTTCACAAGAAGGAAACTAGAGATATGCTTTGAA GTGATGAATTTTTAAATAGAAAGCTCAGTTAATTACTACTCTGTCTAAAGGAACTAAGGAAGTACTGTACTGTGGTTGGG TCCTGTAAAATCTCAAGGCATGGATTTTTTTGTATTCCATTATGCATCCTAACTTGCTGAATATTGGGATTTGAGGTTAA ATATTCTTCTGAATGTACTTGGTATGGCCTCTTTTTCAATTAGAAATGTATTTAAATAAGAATTCTTTGCCTTCTTCTCC ATTTACTGTGAACTTATCGATGATCTAGGTTTTGAGGAAAATCATTATGCTACATGACCTGCAATATTGTCTGGGATTGA ATGTTGACTATGAGCCAACAAGAAAATAAGCCTAATGACACAAAGATGGGTATGTTTGGATGGACAGGCAGTTACATAAG ACAATATAGTATTAGAAATGCAGTTATTAGAAAGAAAGTGAAGTAGCTCCTGTGATAGGAAGGAAGGGATAGTTTGTTAC GGGTAGTTGTTGATTAGCTGGCAGTTAGAATAACAGAAGCAGTTACTTGCTCAGTTAGTTAGTTAGCAGAGTCAGTCAGT TAGTTAGTAGAGTATATATAGTCTCTGTGATATACTGTAATGGCTATGTTGATGATAATAGAGTTCTTTCTCTCATTCTC TCTCTAATTCTCTCTCTCTCTCTATATATATATCTTCTTCCTATCTTCTTCCTATCCTAACATTGGTATTCAGAGCTTGC GATTCCTGGAGCGCCATGGCTGACGCTACGCGATTGCAGAGTGCGATTCGAGAAGCAGAGGAAAGGTTCGCAGCGACGAT TGAACCCAGCATTGATGAGCGTATGCGTGGATTCGAAGAACGCATAAAACTGAGCATGGAGTCTCGATTCAATAGCTTCC AGGAGACGTTGAGAGGCGTTGGATTGCAGATGGCGGAGCTTTCTACGGCGCGTAGAACTCGTGGAGGTGGCGATGGCGAG CATCGTGTCGCAACGCGATTGACGCGTTTGGATTTTCCAAAATTCAACCGCGAAGATGTGGATTCTTGGCTCGCGAAGTG TGAGCGCTTCTTTGCGCTGGATTCAACACCAGAAGATGATCGAGTTGCTGTTGCTAGCATTGCACTCGATGAAAGTTCAT TTCAATGGTTCCAGAGCTTGGAACAGAGCACGGTGGGAAGGCTTGCATGGAGGGAATTTGCTACAGCTGTCAAGATTCGT TTTGGTTTGGAATTTGAGTCTCCAATGGAGGAACTCAAACGTTTGGTGCAAACTGGAAGTTTGGATGAGTATCAGGAAGC GTTTGACAATCTCACAGGTCGCACTGAGTTAACAGAGGGCCAGAAATTGCAATGTTATTTGGGAGGTCTCAATGCAGAGC TTAGTAATGGAGTCAAGATGTTTGCTCCAAGAACTGTGTTAGAGGCTACAAGGATGGCGAAATTACAGGAGAGAAGCTTC GAATTGCTGCAGAAGCGCATGGTGCCTGTTTCTAGAGGTTATGGAAATTGGTCAGAGAAGAAGAATGTAAGTGTTCTTCC TGAAAAGAAAGCTTTTCAAACTGATAAGAAGGCACAGAATGATACTACACAGAAAAGCATTTTAGGGAAACCTAATTACA CATTTCAAAAGAAGTTAACTCCTAAGGAATTGGATGAGCATCGTGCTCAAAACCTTTGTTTCTTTTGCCATGAGAAGTAT TCTCCTGGTCATGAGTGCACACAGAGGAAGAAGTTGCAAGTGTTTTTGATGGAGGTACATGATGAAGAGCTACCTGAAGG GGAACAAGAAGGGGAAATGGAGGTAATTGACACAGCTTCTGGTGTTCCCAGAGTCTCTCTCAATGCTTTGAATGGGAATG GGGATTCTTCTGATGAACCTATGATGAGATTGACTGGTTGGATAGGGAAGAGGAAAATTTTTGTGCTTATGGACACAGGT AGCACACACAATTTTATTGACCAGAAATTGTGCAAAGCTAGCTTAGTAAAGTTGAAGCCCTTGCAACCTGTCAGCATCAC AGTAGCAGATGGTGGTTTAATCCAAAGTTCTGGTTGGTGTGAAGATGTCCACTGGAAAATGCAAGGTTACAACTTCTCTG CCAACACTATAGCTATTCCTCTTACTAGTTGTGACTTGATTTTGGGAATGCAATGGCTGAAACAGTGGGGTAAGATTTCT TGGGACTTTGCAAACTTAGTTATGGAATTTAATATGGGAGGTATTCCTGTTGTTTTACATGCCATGGAGGAACAAGTACC CCGAGTAGTATCTACTACCAAGTTGAATCATATGATGTTAGAAGATAAAGTTTGCTGTATGTTGCACTTAATTCCTTGCT GTCAGGGGTTAGTTTGTTGCAATGTTACTACTGCTGAGACTGATTTGACACAGCAACAAGAATTGTTACTTCAAGATTTT CAGGATGTGTTTGAGGAGCCTAAATCTTTACCACCATTTAGAGGCATCCATGATCACAAAATCATTTTGAAGGAGGGCTC TAATCCTGTTTCCCTTAGGCCCTATAGATATCCTCCAGCACAGAAGGATGTGATAGACACTATGGTCAAGGACTTATTGA ATTCAGGGGTCATCCAACCTAGTTCCTCTCCTTTTGCATCTCCAGTTGTGCTAGTTAAGAAGAAGGATGGCAGTTGGAGG ATGTGTGTTGATTATAGGAGGTTGAATGAGATGACTATCAAAGCTAAATTTCCAATTCCTTTGGTAGAAGATCTGTTAGA TGAATTGGGGGGGGGGGGGGGCAAAGGTCTTCTCTAAGTTGGATTTGAGGGCTGGATATCACCAATTGAGGATGAAGCCT GAAGATGTAGAGAAGACAGCTTTCCAAACACATTCAGGGCAATTTGAGTATGTGGTGATGCCTTTTGGCTTAACCAATGC TCCTTCTACATTTCAAGGTGCTATGAATTCCATTTTCTCAGCTCAATTAAGGAAGAGTGTCTTAATTTTCTTTGATGATA TTCTTGTCTATAGTGCATCTGTGGAGGCCCATATTCAGCATCTCAGGGAAGTGTTCAGTATTCTCAGGGCTAATTCATTT TTTGTTAAAAGAAGCAAGTGTGCTTTCTTTACTCCTAGGATTGAATATTTGGGACATTTTATCACTGCCAATGGAGTGTC TACTGACCCAGCTAAAGTCCAGGCAGTACAAGACTGGCCCCAGCCCTCTACAGTGAAGCAATTAAGGGGTTTTTGGGGCC TTACTGGTTACTATAGAAGATTTGTGAAGGGCTATAGTATTGTGGCTTCTCCTCTCACTGATCTACTTAAGAAAGACAGC TTTATTTGGACTGAGGAAGCTCAATCTGCATTCCTTCAACTTAAACAAGCTATGATTCAAGCTCCTGTTTTAACTATCCC TGACTTGTCTAAACCTTTCATGGTGGAGACAGATGCTTCCAACACAGGTATTGGGGCTGTTTTGCTTCAAAATGCTCACC CAGTAGCCTTTATCAGCAAGGTTTTGTCTCCCAGAAATAGGTTGCTGTCAGTGTATGATAGAGAATTGTTGGCATTGGTA CATGCAGTGACCAAGTGGCATCAATATCTGTCCATTCAGCCTTTTACTATTCTTACTGACCAACAAAGTTTGAAGTTCTT GTTAGAACAAAGATTGTCTACCCCAGCTCAATACAGATGGGTTACCAAGCTTATGGGTCTGTCCTATGTGATTCAATACA AGAAAGGCAAGGAGAATGTGGTGGCAGATGCTCTTTCTAGGGATACTCATGGGGAACTACTTCAGCTTTCAGTTTCCTCT ATTTCCACAGAGTTATGGGATTGTATCCTCAAGGCTTATGGTGCAGATGTTGCTCTTCAACAATTGAAGAGTCAAGTGGT GGAGGATCCTACTGCTCACCCTCATTACACTGTGGTGGATGACATAGTGTTTAGGAAACACAAATTAGTGATCCCTGCGG ATGTTCATGTTAAGGAGTTGATCCTCCAATGGTTGCACTCTTCTCATCAAGGAGGTCACTCTGGCATTAGGGCTTCTATT CATAGAATTAAGTCACTTTTTCATTGGAAAGGTATGAGTAAGGATGTTGCTCTCTTTATTCAAGCTTGTGAGACTTGCTT GCGATGCAAGTATGAGACTAGGGCTACTCCTGGACTGCTACAACCTTTGCCTATTCCCGGGGGCATTTGGCAAAGTATTG CCATGGATTTTATTGATAAACTTCCTTTGTCTCATGGGAAGGAAACTATTTGGGTAATTGTGGATAGATTGAGCAAATAT GCTCATTTTATTCCTTTGTCCCACCCTTATACAGCTTCCAAGCTTGCTGACATTTTTCTGAAGGAAATCTATAAGTTGCA TGGAGCTCCTGCCAACATTGTTAGTGATAGAGATTCTGTGTTCACTAGCAAATTTTGGTCCACTTTCTTGCAGCAGCTGG GCATTTCACAGAGCCTCACTACTGCCTATCATCCCCAATCTGATGGCCAAAGTGAAGTTCTCAATCGCTGCTTGGAGCAC TATCTTAGATCTATGACGTGGCAAAGGCCAAAGGAATGGGTTAACTGGTTTCCTTTAGCTGAGTGGTGGTATAATACCAC ATATCATTCAGCCACACAAGCAACCCCATTTGAAGTTGTGTATGGTCAAGCACCTGCATTGCACCTGCCCTATTTCCCTC AAAGCACTAATTTGGAGGCCATTGACAGAAGTTTTGTGGCTCGGGAGGAGATGATTAGAAAGCTACAAGGCAACTTGGTT AGAGCTCAAGCTAGGATGAAGAGAATGGCTGATAGGCACAGGTCTGATAGGGAATTTCAGGTTGGAGATTGGGTGTTCTT GAAGCTGCAGCCTTATAGGCAGACTTCAACTCAGTACAGGGCCTCTGAAAAACTTTCTCCTCGATTCTTTGGGCCATATC AGGTGTTGTACAGGGTAGGCAAGGTGGCCTATACTTTGAGTCTACCACCCACATCCAGGGTTCATCCTACTTTTCATGTG TCTCTATTGAAGCCTTGTCCTGATCCTCAAGTTCCTATGCAACCTCTCCCTGAAGATTGGGGCAATCTGGATCAGCCAAG GGCTCCACTCAAGATCCTTCGGAGAAGGATGGTTCAGAAGAAGCATAGGGCTGTGACTGAAGTCCTGGTTCAGTGGCATG GTGAGATGCCAGAAGAAGCTACATGGGAAGTCTTATACATTTTGCAGAAGCAGTTTCCATTGTTTGATACCTCTGTGGAC ATTACTCCAGTTGATTTACCTGTTCTTCCTTGAGGTCAAGGAAGTGGTTATGGGGAGGGATATGTTACGGGTAGTTGTTG ATTAGCTGGCAATAGCTGGCAGTTAGAATAACAGAAGCAGTTACTTGCTCAGTTAGTTAGTTAGCAGAGTCAGTCAGTTA GTTAGTTAGTAGAGTATATATAGTCTCTGTGATATACTGTAATGGCTATGTTGATGATAATAGAGTTCTTTCTCTCATTC TCTCTCTAATTCTCTCTCTCTCTCTCTCTATATCTTCTTCCTATCTTCTTCCTATCCTAACATAGTTTTAGATGGTTTTG GACATATGGGAAGAAGATTTTGTAGAAGCATCAATAAGGAGGGTTGAACCGATGGAATAGGTAAGGTAGAGGTAGAGGGA GATTGGGAAAAGTGGAAAACTATAAGCTGAACAATTAAAAAGAGAATTGGAGGTAAATATTATATCTTTGAACTTAATAT ATAATAGGCCATTGTGGCGCCGTGTGATTTATATAGTCGATCTCACCTAATGGGAAAATACTTAGTCGTGGTGGTTGTTT TGAATAAATTTATGGCATCACTATATTATTGAAATAGTAGAGCTAATTGCAATGTATTTGGGTCTCTGATCTTGGTTTAC CTTAAACCAAGTAAAGTCTTTGAGCTGAGTATTCTTATGGTAAATTGGTAAATTAGTTTGTTTACTTATTTCCAACTTTT CATTTATCTTGTTGCATTCATCATAATCTTTTGTTGGGGATTATGAAGTTCGCTTAATATCTTCCAGTAGTAATCATTAT AAACAAAATAGGATTGCTTTAATCTGTGCTTTATGCTGCAATTCTGCAATCACAATCACGATGCCTCTTTTGACCTTTCA TGTAGTACTAGGACGAGTACGATTTTATAGGGCTTTCTCAAATGAGATAATTTAATGATGGAAGATGCTGAACAAAATCA TATTTAGATCTCTGATTGAGTCTGTGAATTTCAAATTTGGCATTTCATTCTTGCGCTTGTTGAATTGTGTGATTCCTCTT CTTTTTCAATCAGCTATTTTGGACAGTCATTTCTTTAACAAATTTTACAGATTATAACCAAGAGGTGTCTGAAAATTTTC AGGTATTCCGAAATCAGGGAGAGAGGAAGACAGTTTGGGTGCCTTTTCAGCTCTTAGAAATGTGGGAAAATCTACAAAAG ATGGAATTCTTGGAACTCCAGGTTCTCCTATTCATATGGTGGCTGCAGAAGGTGGGAATTTTAAAGAGCAGCTATGGCGT ACAATTAGGTCTGTTGTAGTGGTCTTCCTCTTGATTTCTGGTGTAGGAGCACTCATTGAGGATAAAGGAATTAGTAAAGG TATTGCCATGTTGTTGTAACTTATGAACTGCTCAGACTAATTCATTATTGAATCTGAATTTGATGCGCACATTCTTTGTT ATACTTTTCACCTTTCCTAGGACTTGGTATGAATGAGGAAGTGCAGCCCAGTGTGGAGACAAGTACTAAATTTAGTGACG TAAAAGGTGTTGATGAGGCAAAGGCAGAACTGGAAGAAATTGTTCACTACCTCCGAGATCCTAAGGTAGACTTCTTTGAC ATTATTTCATGCTCTCTCTCTTGCATGCATTTCTAGTACTCAAGCATGGGTCATTTTAAATAACTTGTAAATGAAGATAG AGCAATTTCATCATATTTATTAACATGTGTCTCAAGCATGGGTGATATACTCTCGTGACTGAAGGCCTTTATTATCATGT TGGATGACTTGTTTCCTTTGCAACAGCGCTTTACTCGTCTTGGTGGCAAGCTCCCCAAAGGGGTTTTGCTTGTTGGCCCG CCTGGCACGGGTAAAACAATGTTGGCAAGAGCTATTGCTGGAGAGGCTGGGGTTCCTTTCTTCTCATGCAGTGGAAGTGA ATTTGAAGAGATGTTTGTTGGTGTTGGTGCACGAAGGGTGAGGGATCTTTTTACTGCTGCAAAAAAGCGGTCACCTTGTA TAATCTTCATTGATGAGATCGATGCCATTGGAGCAAGTCGAAATGCAAAGGACCAAATGTACATGAAGATGACTTTAAAT CAATTGCTTGTGGAGCTAGATGGATTCAAGCAAAATGATGGCATAATTGTGATTGCAGCTACTAATTTTCCAGAGTCATT AGATAAGGCTTTGGTAAGACCTGGGCGATTTGATCGCCATGTCGTTGTTCCCAATCCAGATGTAGAAGGAAGGCGTCAGA TTCTAGAATCTCACATGTCAAAGGTATGCTTTTAATCCTTTGAAAAAATTTATCTAATCTTATGGCATGGGTTTCCTTAT GAATTCTATCTTTTGAGGCAAAGTTCAGTGGTTACTCTGTATTGATGCAAAACTTTGCTGTAGCATATTTCTTTAACATA TGATTCGGTATCCTGTGGATACTTCACAGTTCACACGAGCTCACACCCAGATTACTTTTTTCACTGTTTTCTATTTTGAT GCGAGAGTTATGTAAATGTGCCATATATATATATATATATATATATATATATATATATATATATACATACCTGGGTAACT TTAGTATACCTTGCCATAATTGTGCAAGGTTATGGACTTGTTAGAAGGTAACTTTAATATGTTGGCATATTAAAGTATGT GTGTGTGTGTGTGTCTCTGTCTTTGTTCATTCCTGTTTGCCTATCTACTTGTTATGCTCATTTTCTTTTTCCATGAAGGT TCTGAAGGCTGATGATGTTGATCTAATGATCATTGCTCGAGGAACACCTGGGTTCTCTGGTGCTGACCTTGCAAACATGG TTAATATTGCGGCTCTTAAGGCTGCAATGGATGGTGCCAAAGCTGTGAGCATGCATGATTTAGAGTTTGCGAAGGATAAG ATTATGATGGGAAGTGAACGCAAGTCGGCTGTTATATCTGATGAGTCGAGAAAGATGACTGCTTTCCACGAGGGTGGCCA CGCCTTGGTGGCAATTCATACTGATGGAGCGCTTCCTGTTCACAAGGCAACTATAGTTCCCCGGGGTATGGCTCTTGGCA TGGTTACTCAATTGCCTGAAGTTGATCAGACCAGTACGTCCCGCAAACAGATGCTTGCCCGACTAGATGTCTGCATGGGT GGCCGGGTTGCTGAAGAGTTGATTTTTGGAGAAAGTGAAGTAACTTCAGGTGCATCCTCAGATCTTTCTCATGCAACTAA ACTGGCTAGGGCAATGGTTACTCAATATGGTATGAGCAGTGAAGTTGGACTTGCCACTCACAATTACAATGACGATGGGA GAAGCATGAGCTCAGAAACTAGGCTGCTTATTGAGAAAGAGGTGAGGAACTTGCTTGAGAGGGCTTATACCAATGCAAAA ACTATTCTAACCACCCATGATAAGGAGCTTCAGGCACTTGCAAATGCTCTTCTAGAGCATGAGACACTTACAGGAAGTCA GATAAACGCTTTACTTGCTAAAGTTAACTCCCAGCAGCAGCAACAGCCACAAGTAGTTGAAACTCAGGGCAGTTCACGGT CCAATCCTGCTGCTGCTGCTGCTGCAGCGGCGGCCGCAGCTGCAGCTACTGCTGCAGCCAAGGCTCAAGGTGTTGCCCCA GTTGGATCTTAGCAGAAGATTGTGTAACCTGAAATGCTGCTAAATAACTACTACCGGATTAGAATGTGCAGATAGTATTA TTCTGTGTTTTCCAGCTCAATCAGTGGAACTCAACTCTTGTATTCCTGGGTCAAGTTGACTCCATATTGTAGCGAGTTAA AGACCATGTAGGTTGCTCCCATTGATTTGTTTTAATAATTTCCGTATTATTTTTATATAGTTTTTTCATACGGCCAAACA ATTATATATTTAACTTCAATTGTTCTTAATTATTTATTAGCTTCTCATCTCTTGTCTGACATGGATCGGATAAATTTTCC CCTTCAAACCATGAGCACCTCTAGTATGGATCACGGCCTATGTCAGTCATGAATAGGAAATGATCATCTCAATTAGAAAA AAATTGACCACCTCATTTATAATATTTACCGGC
CDS sequence (LotjaGi1g1v0367100.1) extracted from Lotus japonicus Gifu v1.2 CDS.
ATGGCGTGGAGGCACTTGATAACGCAGGTTACAAGACATCAATCAGAATTTGGAATGGTCAAAAATTTGTTGGCTAGAAG CTATTTGTCCGCTAATAAGTTTGGAGGCTTTACAAGGAATAGGCTTTGCCGCTCCCAGGAGAGATTCCAATCAAGCTATG TTGGTAATCTGGCCCGTCGAGCACGTGATGCAGATGAAGCCAGTGAAGTTGCTCATCTTAAAGAACTTTACCATCGAAAT GATCCTGAAGCTGTGATTAGAGCATTTGAAAGTCAGCCATCTCTACATGCTAATCCTTCAGCGGTTTCTGAATATGTTAA AGCCCTAGTGAGAGCTGGGAGGCTGGATGAAAGTGAATTAGTGAAGACTCTGATAAGAGGTATTCCGAAATCAGGGAGAG AGGAAGACAGTTTGGGTGCCTTTTCAGCTCTTAGAAATGTGGGAAAATCTACAAAAGATGGAATTCTTGGAACTCCAGGT TCTCCTATTCATATGGTGGCTGCAGAAGGTGGGAATTTTAAAGAGCAGCTATGGCGTACAATTAGGTCTGTTGTAGTGGT CTTCCTCTTGATTTCTGGTGTAGGAGCACTCATTGAGGATAAAGGAATTAGTAAAGGACTTGGTATGAATGAGGAAGTGC AGCCCAGTGTGGAGACAAGTACTAAATTTAGTGACGTAAAAGGTGTTGATGAGGCAAAGGCAGAACTGGAAGAAATTGTT CACTACCTCCGAGATCCTAAGCGCTTTACTCGTCTTGGTGGCAAGCTCCCCAAAGGGGTTTTGCTTGTTGGCCCGCCTGG CACGGGTAAAACAATGTTGGCAAGAGCTATTGCTGGAGAGGCTGGGGTTCCTTTCTTCTCATGCAGTGGAAGTGAATTTG AAGAGATGTTTGTTGGTGTTGGTGCACGAAGGGTGAGGGATCTTTTTACTGCTGCAAAAAAGCGGTCACCTTGTATAATC TTCATTGATGAGATCGATGCCATTGGAGCAAGTCGAAATGCAAAGGACCAAATGTACATGAAGATGACTTTAAATCAATT GCTTGTGGAGCTAGATGGATTCAAGCAAAATGATGGCATAATTGTGATTGCAGCTACTAATTTTCCAGAGTCATTAGATA AGGCTTTGGTAAGACCTGGGCGATTTGATCGCCATGTCGTTGTTCCCAATCCAGATGTAGAAGGAAGGCGTCAGATTCTA GAATCTCACATGTCAAAGGTTCTGAAGGCTGATGATGTTGATCTAATGATCATTGCTCGAGGAACACCTGGGTTCTCTGG TGCTGACCTTGCAAACATGGTTAATATTGCGGCTCTTAAGGCTGCAATGGATGGTGCCAAAGCTGTGAGCATGCATGATT TAGAGTTTGCGAAGGATAAGATTATGATGGGAAGTGAACGCAAGTCGGCTGTTATATCTGATGAGTCGAGAAAGATGACT GCTTTCCACGAGGGTGGCCACGCCTTGGTGGCAATTCATACTGATGGAGCGCTTCCTGTTCACAAGGCAACTATAGTTCC CCGGGGTATGGCTCTTGGCATGGTTACTCAATTGCCTGAAGTTGATCAGACCAGTACGTCCCGCAAACAGATGCTTGCCC GACTAGATGTCTGCATGGGTGGCCGGGTTGCTGAAGAGTTGATTTTTGGAGAAAGTGAAGTAACTTCAGGTGCATCCTCA GATCTTTCTCATGCAACTAAACTGGCTAGGGCAATGGTTACTCAATATGGTATGAGCAGTGAAGTTGGACTTGCCACTCA CAATTACAATGACGATGGGAGAAGCATGAGCTCAGAAACTAGGCTGCTTATTGAGAAAGAGGTGAGGAACTTGCTTGAGA GGGCTTATACCAATGCAAAAACTATTCTAACCACCCATGATAAGGAGCTTCAGGCACTTGCAAATGCTCTTCTAGAGCAT GAGACACTTACAGGAAGTCAGATAAACGCTTTACTTGCTAAAGTTAACTCCCAGCAGCAGCAACAGCCACAAGTAGTTGA AACTCAGGGCAGTTCACGGTCCAATCCTGCTGCTGCTGCTGCTGCAGCGGCGGCCGCAGCTGCAGCTACTGCTGCAGCCA AGGCTCAAGGTGTTGCCCCAGTTGGATCTTAG
Protein sequence (LotjaGi1g1v0367100.1) extracted from Lotus japonicus Gifu v1.2 Proteins.
MAWRHLITQVTRHQSEFGMVKNLLARSYLSANKFGGFTRNRLCRSQERFQSSYVGNLARRARDADEASEVAHLKELYHRN DPEAVIRAFESQPSLHANPSAVSEYVKALVRAGRLDESELVKTLIRGIPKSGREEDSLGAFSALRNVGKSTKDGILGTPG SPIHMVAAEGGNFKEQLWRTIRSVVVVFLLISGVGALIEDKGISKGLGMNEEVQPSVETSTKFSDVKGVDEAKAELEEIV HYLRDPKRFTRLGGKLPKGVLLVGPPGTGKTMLARAIAGEAGVPFFSCSGSEFEEMFVGVGARRVRDLFTAAKKRSPCII FIDEIDAIGASRNAKDQMYMKMTLNQLLVELDGFKQNDGIIVIAATNFPESLDKALVRPGRFDRHVVVPNPDVEGRRQIL ESHMSKVLKADDVDLMIIARGTPGFSGADLANMVNIAALKAAMDGAKAVSMHDLEFAKDKIMMGSERKSAVISDESRKMT AFHEGGHALVAIHTDGALPVHKATIVPRGMALGMVTQLPEVDQTSTSRKQMLARLDVCMGGRVAEELIFGESEVTSGASS DLSHATKLARAMVTQYGMSSEVGLATHNYNDDGRSMSSETRLLIEKEVRNLLERAYTNAKTILTTHDKELQALANALLEH ETLTGSQINALLAKVNSQQQQQPQVVETQGSSRSNPAAAAAAAAAAAAATAAAKAQGVAPVGS
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 |
---|---|---|---|---|---|---|
Hamap | 4 | 673 | 670 | 31.79 | ||
PANTHER | 6 | 669 | 664 | 0.0 | – | |
PANTHER | 6 | 669 | 664 | 0.0 | – | |
Gene3D | 210 | 391 | 182 | 2.6E-65 | – | |
TIGRFAM | 210 | 652 | 443 | 4.3E-182 | ||
SUPERFAMILY | 221 | 474 | 254 | 3.04E-67 | ||
SMART | 256 | 392 | 137 | 9.4E-26 | ||
CDD | 257 | 389 | 133 | 6.90098E-29 | – | |
Pfam | 260 | 389 | 130 | 2.5E-43 | ||
ProSitePatterns | 360 | 378 | 19 | - | ||
Gene3D | 392 | 465 | 74 | 2.6E-23 | – | |
Pfam | 412 | 455 | 44 | 2.4E-9 | ||
Gene3D | 466 | 663 | 198 | 4.8E-69 | ||
Pfam | 471 | 650 | 180 | 3.6E-65 | ||
SUPERFAMILY | 471 | 656 | 186 | 3.53E-65 |
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 | Metalloendopeptidase activity | Catalysis of the hydrolysis of internal, alpha-peptide bonds in 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. | ||
Molecular function | ATP binding | Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator. | ||
Biological process | Proteolysis | The hydrolysis of proteins into smaller polypeptides and/or amino acids by cleavage of their peptide bonds. | ||
Cellular component | Membrane | A lipid bilayer along with all the proteins and protein complexes embedded in it an attached to it. |
Expression pattern of LotjaGi1g1v0367100.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.
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