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LotjaGi1g1v0367100.1

Overview

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.

Sequence information

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 

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

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Domains

Sorting

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

Gene function (GO predictions)

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 data

Expression pattern

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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