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LotjaGi6g1v0076900.3

Overview

Field Value
Gene ID LotjaGi6g1v0076900
Transcript ID LotjaGi6g1v0076900.3
Related isoforms 2
Lotus japonicus genome version Gifu v1.2
Description Clathrin heavy chain; TAIR: AT3G11130.1 Clathrin, heavy chain; Swiss-Prot: sp|Q0WNJ6|CLAH1_ARATH Clathrin heavy chain 1; TrEMBL-Plants: tr|X4Z1M5|X4Z1M5_LOTJA Clathrin heavy chain; Found in the gene: LotjaGi6g1v0076900
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr6:14573068..14581119) extracted from Lotus japonicus Gifu genome v1.2.

ATAACACTGCTAGGTATTACTTCAAATTTGAATGATAGGAAATTTTGAATGATGTGATCGTAATATACTCTGTTGGGTTT TCAATTTAACAATAAACTTATGAAGCTGCTGTAAGTATATTATATTATTTGAATGGTGTTGTTTGGTGGTTGATTTCGCA AATTCCGGAAGCAGTAATTGAAATTAGTGTGAACATTTGAAGATGGATTGGTGATATTGTGTTACAGAAAAATCATAAAT AACATTGTGATTTAATTGGTCATCTTCCCAGGATTTAACTTCTAATATTTTTTTTGGCAGGGAAGCCATCATTTACAAAG AAACAAGCAGATCTTTTCTTTCCCCCAGATTTTGCTGATGACTTCCCAGTTGCCATGCAGGTATTGAAGTTTCTGGTGTT TGTTTTTCATTTTACAAACTGTGCAGATATTTGATTCGTAGTTTGATTTTTGGCAGATATCCCACAAATACAATTTGATT TATGTGATCACGAAACTTGGTCTCCTATTTGTCTATGATTTGGAGACGGCCACTGCTGTGTATAGGAACAGAATTAGTCC AGATCCTATATTTTTGACGTCAGAAGCTACATCAGTTGGAGGCTTTTATGCCATTAACAGGAGAGGCCAGGTGTTATTGG CTACTGTTAATGAGCAAACAATTGTGAATTTTGTCAGTGGTCAAGTATGTTCCTGATCTTGTTCTCTCTCACTTGATGTA GAGTAGAAAAAGTGACATTTTCACAAATTTCATTTGTTATTATCACAGTTAAATAATTTGGAGCTAGCCGTCAATCTTGC CAAGAGAGGAAACCTTCCAGGTGCTGAGAAGCTGGTATGTCGCTTGTTGTTTAAAACATAAAACATTTCTTTATTGGGGT GTTGTCAGGAAGGTCCCTAGAAATTGGAATTTCACATGATTAATATGGTGGGGGTTTCATATAATGGCTAAATGCAAACT TTGTGTGAAATGTTCAACGTTTTAACTTTTAATTAATACATGATAATATTCTTTAGTATTCATCAGTTGAGGCTAATACA AAATTGTTCAACAGAAATATCCTTTCCTTATTGAAATTTGTTGTATCTGTGTCATGCTGTCAACCTTATGTATTTCATGC TGGTAAAAAATAGATGCTTTGTACAAGGGAGGTTATGTGGGTTACCTGAATGCTGAATTATCACAAATCTGTTTCTTCTC CAGTCATTTGCATTTTTTTGTTTCGTTTCAATGAAATGTACATGCTTCAATTGATTTTTTTTGTTAATTTTCCAAATTTT TGAAATTGATTGTAATTGCCTGATTTGCCTCTTCTAAAATGGCATATTCTTTTGTTAATTGCTTTTTTTGCTCATTTTTT AATTTGTAAATTAACGTTAGTCTTTGTTGACATGTTGTTGAACAGGTTGTTGAACGTTTCCATGAACTGTTTGCCCAAAC AAAGTATAAAGAAGCAGCTGAGCTTGCTGCTGAGTCCCCGCAAGGAATCCTTCGTACACCTGATACAGTTGCCAAATTTC AGGTTTTGTGGCTATGAAAGATTTGTTCATGCTGTTTCAGCAACAAAACTTCTGTAGGCTGTAGGCAGTCATTTTACTTG TTTTTAGGGATAAAGGAAACTGAGCTGTTTTTACTTATTAGCTTTCCTTTATTTTGGTCAGTTAGACTGATGTTTAAAGT GTCGCAATCTGTTTAATGTTGCAGAGTGTTCCTGTGCAAGCTGGACAAACTCCTCCACTCTTGCAGTATTTTGGAACCCT TTTAACTAGAGGAAAGCTGAATGCCTTTGAATCATTAGAATTGTCACGGCTGGTTGTGAATCAGAACAAGAAAAATCTTT TGGAAAATTGGTTGGCAGAGGACAAGCTTGAATGCAGTGAGGAACTAGGAGATCTTGTAAAGGTTGGGTTGCATTTGAAA TTATGAAAAACTTGGATTTTGATCTATCTATTTTATATTTTTTTTGCTTCTGTTTCTTTCTAACTGTTTGCCTTATGACC AGTATACTTTTTCTTGTTCAATTTACTTATTGTGAGATCGTGTAATTTTAATTGGCATGCTCCATTGTAGACTGTGGACA ATGACCTTGCCTTAAAAATATATATCAAAGCCAGAGCTACTCCAAAAGTTGTTGCTGCGTTTGCTGAGCGAAGGGAGTTT GACAAGATTCTCATATATTCTAAGCAGGTAAAGGGCTTTTTTTATCAATGAATATTGTTCTTTGATTCACAAGTTTCTTT GTCCTTCTATTGTTAATTTTTTTAATGTTGTTATGGCCTGTTGAGTATTTTACTTAGCCTGTGTTCTCAAGATTACATAT CTTGCCTTGACATTTTCGTGTGCTTGAACATTTTCATTATTTATTTATTCCTATAGGTTGGGTACACACCTGACTATCTC TTCCTTTTGCAAACAATTCTCCGGACAGATCCTCAGGTATGTGTCTGATGGTTGTAACTGACTGTTTTTCCAACACAGTT AATTTTATAATTTCCGGGCCGAAAATTCTATAAGGTACTTTTTTTCATTGTGGTTTTCAGAAATATAGTTCTATAAATTA ATTCAACAGCTATTTTTCATGATGATTTGCAGGGTGCTGTTAATTTTGCATTAATGATGTCTCAAATGGAGGGAGGTTGT CCTCTTGATTACAACACCATAACTGATCTGTTTCTTCAGGTTGTTATCTACTGTGATTAAGCCATTAATGGAATTTGTAA TATATATATTCCTGCTTCATGTTCATTGACATATCATGAAATGTTTAAGTGGCCCATTTTCATTTAATATAAGAGCACTT GCTTTGTTTCTCCTGTTTGTAGTTTAGCAATATGCATTTCTGGACAGTTGATTTATGAGCTTATGATTGTTTTTTATGTC CTGCACAGAGAAACTTGATCCGTGAGGCTACTGCCTTTCTCCTAGATGTTTTGAAGCCAAATTTACCTGAACATGGTTTC CTTCAAACAAAGGTTCCAGTCATCATTTTTTCATTTGTTATGGGCATTTTACTCCTGCAGTCCTTTCTTTGCACTGATTC AATCTTGTGAATTTTTGTTCAGGTTTTGGAGATAAATCTGGTAACGTTTCCCAATGTTGCTGATGCTATTTTGGCTAATG GCATGTTCAGCCATTATGATCGTCCACGTATTGCCCAACTTTGTGAAAAAGCTGGTCTTTATGTGCGAGCTTTGCAAGTA ATGATCCTTCAAATGTGTTGTTTTTTTGGTTTTATATTAGTTTAGGCTGAATGTCATTTCACTTGTTTATTATAATGTTT TTGGTGCAGCATTACACAGAGTTGCCAGATATAAAACGTGTGATAGTTAATACACATGCAATTGAGCCACAGGTTTATGT GCCCCTTTGCTTTGTAGTTTGTCTATTCTAACATCATGGTAGTTGAAAATACTTAGTGGTTATTTGATTGATGCAGTCAC TTGTTGAGTTTTTTGGTACTCTGTCACGAGAATGGGCCTTAGAGTGCATGAAAGATCTGTTACTGGTCAATCTTAGAGGC AACCTACAGATAATTGTTCAGGTACGGTAGTTTCATTTTCTTCTATAACTAAGAATTAGTAGTAATAAATTTATAACTGA AGCTTACTTATGTCTGTCCAGGTTGCTAAAGAATATTGTGAACAGTTGGGCGTTGATGCTTGCATTAAGATTTTTGAGCA ATTCAGGTCCTATGAAGGACTCTATTTCTTCCTTGGTTCATATTTAAGCTCCAGGTAATTCTTTCATTTCGAAAGATCTG TTTTGGCTGGCGACAAGTTATCCCATTTTTACAGAGGTATTGTTGAATGTTTATCTGCTAATATGTTTCTCTGAATAACA TGCCAGTGAGGATCCCGACATCCACTTCAAGTACATTGAGGCAGCAGCAAAGACTGGACAAATCAAAGAGGTCGAGCGTG TGACTAGAGAATCAACTTTCTATGATCCTGAGAAAACGAAGAACTTTCTAATGGAAGCTAAGCTTCCCGATGCACGACCT CTTATTAATGTTTGCGATCGATTTGGATTTGTTCCTGATCTGACACACTATCTATACACAAATAACATGCTTCGCTACAT TGAAGGATATGTTCAGAAGGTATTGTTGTTGTAATTCTATTGCAGTGGCCCTGCTTGTTTCATGAGTGCTGTCCTCTCTC TCTCTCTGCTTCTTAGTTATGTTGTGCCTTGCTTTATAGGTGAACCCAGGGAATTCTCCTCTAGTTGTTGGGCAGCTGCT AGATGATGAGTGTCCAGAAGATTTTATCAAAGGCTTGATTCTCTCTGTTCGTTCATTGCTGCCGGTGGAGCCACTGGTGG AGGAATGTGAGAAGAGGTGGTATCTATTCTCTAATTCTACATACTGTCTGCTTGTCTAGCACTCATGTTTCTGCCTTTTC CTATGTTGCTCTTTCTGGGATGCAGGAATCGGCTTCGTTTGCTTTCACAGTTTCTGGAACATCTTGTAAGTGAGGGAAGC CAGGATGCACATGTTCATAATGCTCTGGGTAAGATCATCATTGATAGCAACAACAACCCAGAACATTTTCTCACTACAAA CCCATACTATGATTCTCGAGTTGTGGGAAAATATTGTGAAAAACGTGATCCTACCTTGGCCGTTGTGGCTTATAGGCGAG GACAATGTGATGATGAACTTATCAATGTGACAAACAAAAATTCTTTGTTCAAACTACAAGCAAGGTTTGTAGTCTATATG CATTTTCTTTCACTAAATATTTATCCCTGGCTTCAATGCTCATATGCTATTGATTACAGGTATGTTGTTGAGAGGATGGA TGGTGACCTTTGGGAGAAAGTTCTTAACCCTGATAATGCCTACAGAAGACAGCTTATTGATCAAGTTGTATCTACTGCTC TGCCTGAAAGCAAGAGCCCTGAACAAGTCTCTGCAGCTGTTAAGGCTTTCATGACTGCTGATCTACCTCATGAATTGATT GAGCTTCTTGAGAAGATTGTGCTTCAGAATTCTGCTTTCAGTGGGAACTTTAATTTGCAGAATCTGCTTATCTTGACAGC AATAAAGGCTGATACATCCAGAGTCATGGATTATATAAATAGACTGGATAATTTTGATGGTCCTGCAGTTGGAGAAATGG CTGTTGAGGCTCAGTTATATGAAGAAGCATTTGCAATTTTTAAGAAGTTCAACTTAAATGTTCAAGCAGTCAATGTCTTG CTAGATAATATTCATAGCATTGATAGAGCTGAGGAGTTTGCTTTCCGAGTTGAAGAGGATGCTGTATGGAGTCAGGTGGC CAAGGCTCAACTCAGGGAAGGGCTAGTAAGTGAAGCAATTGAGTCATTTATACGAGCAGATGATGCCACACAATTTTTGG ATGTTATCCGTGCTGCTCAAAATACCAATGCTTACAATGACTTGGTGAGATACTTGCTGATGGTAAGGCAAAAGACAAAA GAACCCAAGGTGGACAGTGAGCTCATTTATGCTTATGCAAAGATCGACAGGCTCAGTGACATTGAGGAGTTCATTCTTAT GCCGAATGTGGCCAATCTTCAAAATGTTGGTGACCGATTGTATGATGAAGAGCTATATGAGGCTGCAAAAATTATATTTG CTTTTATATCTAACTGGGCCAAGTTAGCAGTCACACTTGTGAAGTTGAAACAGTTCCAAGGTGCTGTTGATGCAGCAAGG AAAGCTAACAGCTCAAAAACATGGAAGGAAGTTTGCTTCGCGTGTGTTGATGCAGAGGAGTTCCGTTTGGCCCAGATATG TGGGTTGAACATTATTGTTCAGGTAAAATGTTTTTTTCATTTCTTTAACTATATGTTGAGATGAACTATAGATTTTTTCT TTATTCAGGTCAGGTATCCCCTGGTTTCTATTAGAAAGTTTGAATAATTTGGGCTTTCACAGTATGTGATGGGAATATAA TATCGTAGTATGCTGCGAGCTTGTAATTATGGGAAGGTTTTATGTGCATTACTTGGTCTGCAGTTAATATGTCAATTTTT GTTTTGAATTTGTAGGTGGATGACTTGGAAGAGGTCAGTGAATTTTACCAAAATAGAGGTTGCTTCAACGAGCTAATATC CCTCATGGAGAGTGGTTTAGGATTAGAACGGGCACATATGGGCATCTTTACCGAGTTAGGAGTTCTGTACGCTAGATACC GTCCTGAGAAACTTATGGAACATATCAAACTATTTGCAACCCGACTCAATATTCCAAAACTCATAAGAGCTTGTGATGAA CAACAACATTGGAAGGAACTGACCTATTTGTATATCCAATATGATGAGTTTGACAATGCAGCAACAACCATCATGAACCA TTCACCTGAAGCATGGGATCACATGCAATTCAAAGATGTTATTGTCAAAGTTGCTAATGTGGAGTTGTATTACAAGTCTG TTCATTTCTATTTGCAAGAGCATCCAGATCTTCTAAACGATGTTTTGAATGTCCTTGCACTTCGTGTTGACCATGCACGC GTTGTTGATATCATGCGAAAGGTAGCATTAATACTGTCAAATATTTCATTAGATCTTGGTTTATACTTGTTTCTGTCACT CATGTTTTTCCTGTTATGTGCTGTAGGCTGGTCATCTCCGTCTTGTCAAGCCATACATGGTTGCAGTTCAGAGCAATAAC GTGTCTGCTGTTAATGAAGCCCTGAATGAGATATATGTGGAGGAGGAAGACTATGATAGATTGCGCGAGTCAATTGATTT GCACGACAACTTTGACCAAATAGGCCTGGCACAGAAGGTGAGCTGCATTATTCTTCATGTTGACCACTTATTGATTCCAT TCTAGGATCCTGATATATCATCATCATCATCATCTGTTCTGCAGATTGAAAAGCATGAGCTTCTTGAGATGAGACGTGTT GCTGCTTATATTTATAAGAAGGCTGGTAGGTGGAAGCAGTCCATTGCCTTGTCAAAGAAGGATAACCTTTACAAAGATGC CATGGAGACGGCCTCACAATCTGGTGAACGTGAACTTGCTGAGGAGTTACTTGTTTATTTCATTGATCAGGTACTGAATC CAGTTTCATCTGCATGTGATTCTTTTCTTCCCTTCTTGAATATAGGTCTGGCCTCTATGATTTAGGGTTGACTATTATCA ATTAATGCTTGAGGTATCCTTAATAGCATGTGCAGTTCTAAGTCAGGCAGATAAATTAATGGCAATTAGCATTAGTAGTA TTATTTTGTCAAGCCTATAGTGACAAATTATACTGCCCATTTTGTATTTAGAGTTTTACTGTCCAGTTATTGACTGAGGG ATTGTGATTAAATTTTCTTACCTTATGGCCCAAACTTCTGGAATGGTGATTTTCTAATCTTTTTAATATTAATGTGCATA TGTTGGAAAACAGATATTAATGTACATATCCATAAAATTGAGTGAAATCATTATATCCTAATATCTTTTCTAACATGCTT ATGCAGGGAAAAAAGGAATGCTTTGCCTCGTGTCTATTTGTTTGCTATGATTTAATCAGGGCAGACGTTGCTCTTGAACT GGCTTGGATCCACAATATAATTGACTTTGCCTTCCCATACGTGTTACAGGTTCTTTTCTTTGCTGCTTACTTGTATAGCA CAAAATTTACAATACAGTTGATGTGCATGTCTTTTTCTTCATGTTATCTAGTTCTTTCTTTTAATGTCTTCTCTCTGCTG TTGTAGCTTCTCCGCGAGTACACTGGCAAAGTTGATGAACTGGTGAAGGACAAAATTGAAGCACAGAAAGAAGTGAAGGC TAAAGAACAAGAAGAGAAGGAAGTAATTCAACAACAGGTAATTTAGTTTGGCCATTTTATGCTTACCCACTAGTAACGTA GTTGATAATTTCTATCGCCTTCTCATCTGTCACTCTCAACATATTGAAAACTTCTGTTGCAGAATATGTATGCTCAATTG TTGCCTCTTGCTTTGCCTGCACCACCAATGCCCGGAATGGGAGGAGGCTATGCCCCTCCCCCTCCAATGGGTGGGATGGG GATGCCTCCAATGCCTCCTTTTGGCATGCCACCCATGGGCAGCAGCTACTGA 

CDS sequence (LotjaGi6g1v0076900.3) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGCAGATATCCCACAAATACAATTTGATTTATGTGATCACGAAACTTGGTCTCCTATTTGTCTATGATTTGGAGACGGC CACTGCTGTGTATAGGAACAGAATTAGTCCAGATCCTATATTTTTGACGTCAGAAGCTACATCAGTTGGAGGCTTTTATG CCATTAACAGGAGAGGCCAGGTGTTATTGGCTACTGTTAATGAGCAAACAATTGTGAATTTTGTCAGTGGTCAATTAAAT AATTTGGAGCTAGCCGTCAATCTTGCCAAGAGAGGAAACCTTCCAGGTGCTGAGAAGCTGGTTGTTGAACGTTTCCATGA ACTGTTTGCCCAAACAAAGTATAAAGAAGCAGCTGAGCTTGCTGCTGAGTCCCCGCAAGGAATCCTTCGTACACCTGATA CAGTTGCCAAATTTCAGAGTGTTCCTGTGCAAGCTGGACAAACTCCTCCACTCTTGCAGTATTTTGGAACCCTTTTAACT AGAGGAAAGCTGAATGCCTTTGAATCATTAGAATTGTCACGGCTGGTTGTGAATCAGAACAAGAAAAATCTTTTGGAAAA TTGGTTGGCAGAGGACAAGCTTGAATGCAGTGAGGAACTAGGAGATCTTGTAAAGACTGTGGACAATGACCTTGCCTTAA AAATATATATCAAAGCCAGAGCTACTCCAAAAGTTGTTGCTGCGTTTGCTGAGCGAAGGGAGTTTGACAAGATTCTCATA TATTCTAAGCAGGTTGGGTACACACCTGACTATCTCTTCCTTTTGCAAACAATTCTCCGGACAGATCCTCAGGGTGCTGT TAATTTTGCATTAATGATGTCTCAAATGGAGGGAGGTTGTCCTCTTGATTACAACACCATAACTGATCTGTTTCTTCAGA GAAACTTGATCCGTGAGGCTACTGCCTTTCTCCTAGATGTTTTGAAGCCAAATTTACCTGAACATGGTTTCCTTCAAACA AAGGTTTTGGAGATAAATCTGGTAACGTTTCCCAATGTTGCTGATGCTATTTTGGCTAATGGCATGTTCAGCCATTATGA TCGTCCACGTATTGCCCAACTTTGTGAAAAAGCTGGTCTTTATGTGCGAGCTTTGCAACATTACACAGAGTTGCCAGATA TAAAACGTGTGATAGTTAATACACATGCAATTGAGCCACAGTCACTTGTTGAGTTTTTTGGTACTCTGTCACGAGAATGG GCCTTAGAGTGCATGAAAGATCTGTTACTGGTCAATCTTAGAGGCAACCTACAGATAATTGTTCAGGTTGCTAAAGAATA TTGTGAACAGTTGGGCGTTGATGCTTGCATTAAGATTTTTGAGCAATTCAGGTCCTATGAAGGACTCTATTTCTTCCTTG GTTCATATTTAAGCTCCAGTGAGGATCCCGACATCCACTTCAAGTACATTGAGGCAGCAGCAAAGACTGGACAAATCAAA GAGGTCGAGCGTGTGACTAGAGAATCAACTTTCTATGATCCTGAGAAAACGAAGAACTTTCTAATGGAAGCTAAGCTTCC CGATGCACGACCTCTTATTAATGTTTGCGATCGATTTGGATTTGTTCCTGATCTGACACACTATCTATACACAAATAACA TGCTTCGCTACATTGAAGGATATGTTCAGAAGGTGAACCCAGGGAATTCTCCTCTAGTTGTTGGGCAGCTGCTAGATGAT GAGTGTCCAGAAGATTTTATCAAAGGCTTGATTCTCTCTGTTCGTTCATTGCTGCCGGTGGAGCCACTGGTGGAGGAATG TGAGAAGAGGAATCGGCTTCGTTTGCTTTCACAGTTTCTGGAACATCTTGTAAGTGAGGGAAGCCAGGATGCACATGTTC ATAATGCTCTGGGTAAGATCATCATTGATAGCAACAACAACCCAGAACATTTTCTCACTACAAACCCATACTATGATTCT CGAGTTGTGGGAAAATATTGTGAAAAACGTGATCCTACCTTGGCCGTTGTGGCTTATAGGCGAGGACAATGTGATGATGA ACTTATCAATGTGACAAACAAAAATTCTTTGTTCAAACTACAAGCAAGGTATGTTGTTGAGAGGATGGATGGTGACCTTT GGGAGAAAGTTCTTAACCCTGATAATGCCTACAGAAGACAGCTTATTGATCAAGTTGTATCTACTGCTCTGCCTGAAAGC AAGAGCCCTGAACAAGTCTCTGCAGCTGTTAAGGCTTTCATGACTGCTGATCTACCTCATGAATTGATTGAGCTTCTTGA GAAGATTGTGCTTCAGAATTCTGCTTTCAGTGGGAACTTTAATTTGCAGAATCTGCTTATCTTGACAGCAATAAAGGCTG ATACATCCAGAGTCATGGATTATATAAATAGACTGGATAATTTTGATGGTCCTGCAGTTGGAGAAATGGCTGTTGAGGCT CAGTTATATGAAGAAGCATTTGCAATTTTTAAGAAGTTCAACTTAAATGTTCAAGCAGTCAATGTCTTGCTAGATAATAT TCATAGCATTGATAGAGCTGAGGAGTTTGCTTTCCGAGTTGAAGAGGATGCTGTATGGAGTCAGGTGGCCAAGGCTCAAC TCAGGGAAGGGCTAGTAAGTGAAGCAATTGAGTCATTTATACGAGCAGATGATGCCACACAATTTTTGGATGTTATCCGT GCTGCTCAAAATACCAATGCTTACAATGACTTGGTGAGATACTTGCTGATGGTAAGGCAAAAGACAAAAGAACCCAAGGT GGACAGTGAGCTCATTTATGCTTATGCAAAGATCGACAGGCTCAGTGACATTGAGGAGTTCATTCTTATGCCGAATGTGG CCAATCTTCAAAATGTTGGTGACCGATTGTATGATGAAGAGCTATATGAGGCTGCAAAAATTATATTTGCTTTTATATCT AACTGGGCCAAGTTAGCAGTCACACTTGTGAAGTTGAAACAGTTCCAAGGTGCTGTTGATGCAGCAAGGAAAGCTAACAG CTCAAAAACATGGAAGGAAGTTTGCTTCGCGTGTGTTGATGCAGAGGAGTTCCGTTTGGCCCAGATATGTGGGTTGAACA TTATTGTTCAGGTGGATGACTTGGAAGAGGTCAGTGAATTTTACCAAAATAGAGGTTGCTTCAACGAGCTAATATCCCTC ATGGAGAGTGGTTTAGGATTAGAACGGGCACATATGGGCATCTTTACCGAGTTAGGAGTTCTGTACGCTAGATACCGTCC TGAGAAACTTATGGAACATATCAAACTATTTGCAACCCGACTCAATATTCCAAAACTCATAAGAGCTTGTGATGAACAAC AACATTGGAAGGAACTGACCTATTTGTATATCCAATATGATGAGTTTGACAATGCAGCAACAACCATCATGAACCATTCA CCTGAAGCATGGGATCACATGCAATTCAAAGATGTTATTGTCAAAGTTGCTAATGTGGAGTTGTATTACAAGTCTGTTCA TTTCTATTTGCAAGAGCATCCAGATCTTCTAAACGATGTTTTGAATGTCCTTGCACTTCGTGTTGACCATGCACGCGTTG TTGATATCATGCGAAAGGCTGGTCATCTCCGTCTTGTCAAGCCATACATGGTTGCAGTTCAGAGCAATAACGTGTCTGCT GTTAATGAAGCCCTGAATGAGATATATGTGGAGGAGGAAGACTATGATAGATTGCGCGAGTCAATTGATTTGCACGACAA CTTTGACCAAATAGGCCTGGCACAGAAGATTGAAAAGCATGAGCTTCTTGAGATGAGACGTGTTGCTGCTTATATTTATA AGAAGGCTGGTAGGTGGAAGCAGTCCATTGCCTTGTCAAAGAAGGATAACCTTTACAAAGATGCCATGGAGACGGCCTCA CAATCTGGTGAACGTGAACTTGCTGAGGAGTTACTTGTTTATTTCATTGATCAGGGAAAAAAGGAATGCTTTGCCTCGTG TCTATTTGTTTGCTATGATTTAATCAGGGCAGACGTTGCTCTTGAACTGGCTTGGATCCACAATATAATTGACTTTGCCT TCCCATACGTGTTACAGCTTCTCCGCGAGTACACTGGCAAAGTTGATGAACTGGTGAAGGACAAAATTGAAGCACAGAAA GAAGTGAAGGCTAAAGAACAAGAAGAGAAGGAAGTAATTCAACAACAGAATATGTATGCTCAATTGTTGCCTCTTGCTTT GCCTGCACCACCAATGCCCGGAATGGGAGGAGGCTATGCCCCTCCCCCTCCAATGGGTGGGATGGGGATGCCTCCAATGC CTCCTTTTGGCATGCCACCCATGGGCAGCAGCTACTGA 

Protein sequence (LotjaGi6g1v0076900.3) extracted from Lotus japonicus Gifu v1.2 Proteins.

MQISHKYNLIYVITKLGLLFVYDLETATAVYRNRISPDPIFLTSEATSVGGFYAINRRGQVLLATVNEQTIVNFVSGQLN NLELAVNLAKRGNLPGAEKLVVERFHELFAQTKYKEAAELAAESPQGILRTPDTVAKFQSVPVQAGQTPPLLQYFGTLLT RGKLNAFESLELSRLVVNQNKKNLLENWLAEDKLECSEELGDLVKTVDNDLALKIYIKARATPKVVAAFAERREFDKILI YSKQVGYTPDYLFLLQTILRTDPQGAVNFALMMSQMEGGCPLDYNTITDLFLQRNLIREATAFLLDVLKPNLPEHGFLQT KVLEINLVTFPNVADAILANGMFSHYDRPRIAQLCEKAGLYVRALQHYTELPDIKRVIVNTHAIEPQSLVEFFGTLSREW ALECMKDLLLVNLRGNLQIIVQVAKEYCEQLGVDACIKIFEQFRSYEGLYFFLGSYLSSSEDPDIHFKYIEAAAKTGQIK EVERVTRESTFYDPEKTKNFLMEAKLPDARPLINVCDRFGFVPDLTHYLYTNNMLRYIEGYVQKVNPGNSPLVVGQLLDD ECPEDFIKGLILSVRSLLPVEPLVEECEKRNRLRLLSQFLEHLVSEGSQDAHVHNALGKIIIDSNNNPEHFLTTNPYYDS RVVGKYCEKRDPTLAVVAYRRGQCDDELINVTNKNSLFKLQARYVVERMDGDLWEKVLNPDNAYRRQLIDQVVSTALPES KSPEQVSAAVKAFMTADLPHELIELLEKIVLQNSAFSGNFNLQNLLILTAIKADTSRVMDYINRLDNFDGPAVGEMAVEA QLYEEAFAIFKKFNLNVQAVNVLLDNIHSIDRAEEFAFRVEEDAVWSQVAKAQLREGLVSEAIESFIRADDATQFLDVIR AAQNTNAYNDLVRYLLMVRQKTKEPKVDSELIYAYAKIDRLSDIEEFILMPNVANLQNVGDRLYDEELYEAAKIIFAFIS NWAKLAVTLVKLKQFQGAVDAARKANSSKTWKEVCFACVDAEEFRLAQICGLNIIVQVDDLEEVSEFYQNRGCFNELISL MESGLGLERAHMGIFTELGVLYARYRPEKLMEHIKLFATRLNIPKLIRACDEQQHWKELTYLYIQYDEFDNAATTIMNHS PEAWDHMQFKDVIVKVANVELYYKSVHFYLQEHPDLLNDVLNVLALRVDHARVVDIMRKAGHLRLVKPYMVAVQSNNVSA VNEALNEIYVEEEDYDRLRESIDLHDNFDQIGLAQKIEKHELLEMRRVAAYIYKKAGRWKQSIALSKKDNLYKDAMETAS QSGERELAEELLVYFIDQGKKECFASCLFVCYDLIRADVALELAWIHNIIDFAFPYVLQLLREYTGKVDELVKDKIEAQK EVKAKEQEEKEVIQQQNMYAQLLPLALPAPPMPGMGGGYAPPPPMGGMGMPPMPPFGMPPMGSSY 

Domain prediction

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

Merging data from EBeye. Please wait…

Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
PIRSF 1 1410 1410 0.0
SUPERFAMILY 1 67 67 9.15E-20
PANTHER 1 1423 1423 0.0
PANTHER 1 1423 1423 0.0
Pfam 68 91 24 3.2E-8
SUPERFAMILY 69 224 156 4.66E-53
Gene3D 70 231 162 3.4E-68
Pfam 93 158 66 4.2E-29
SUPERFAMILY 181 517 337 1.27E-85
SMART 275 417 143 1.0E-34
ProSiteProfiles 275 421 147 36.78
Pfam 281 414 134 5.3E-22
SMART 424 566 143 2.9E-39
ProSiteProfiles 424 566 143 32.625
Pfam 425 564 140 9.6E-20
ProSiteProfiles 571 710 140 36.747
SMART 571 710 140 2.8E-41
Pfam 574 706 133 6.8E-28
SUPERFAMILY 625 784 160 2.47E-34
SMART 717 862 146 1.5E-41
Pfam 717 855 139 1.8E-30
ProSiteProfiles 717 862 146 41.969
SUPERFAMILY 774 919 146 1.15E-27
Gene3D 775 920 146 6.1E-36
SMART 866 1007 142 2.4E-37
ProSiteProfiles 866 1007 142 34.39
Pfam 871 1005 135 2.0E-27
SUPERFAMILY 920 1255 336 1.27E-107
Gene3D 921 1260 340 8.7E-153
ProSiteProfiles 1012 1158 147 41.402
SMART 1012 1158 147 4.6E-43
Pfam 1013 1156 144 3.4E-28
SMART 1161 1320 160 4.1E-43
ProSiteProfiles 1161 1304 144 39.259
Pfam 1164 1303 140 6.1E-30
Coils 1201 1221 21 -
Gene3D 1266 1363 98 2.2E-38
Coils 1341 1376 36 -

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 Structural molecule activity The action of a molecule that contributes to the structural integrity of a complex or its assembly within or outside a cell.
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).
Biological process Intracellular protein transport The directed movement of proteins in a cell, including the movement of proteins between specific compartments or structures within a cell, such as organelles of a eukaryotic cell.
Biological process Vesicle-mediated transport A cellular transport process in which transported substances are moved in membrane-bounded vesicles; transported substances are enclosed in the vesicle lumen or located in the vesicle membrane. The process begins with a step that directs a substance to the forming vesicle, and includes vesicle budding and coating. Vesicles are then targeted to, and fuse with, an acceptor membrane.
Cellular component Clathrin coat of trans-Golgi network vesicle A clathrin coat found on a vesicle of the trans-Golgi network.
Cellular component Clathrin coat of coated pit The coat found on coated pits and the coated vesicles derived from coated pits; comprises clathrin and the AP-2 adaptor complex.
Molecular function Clathrin light chain binding Interacting selectively and non-covalently with a clathrin light chain.
Cellular component Clathrin complex A protein complex that consists of three clathrin heavy chains and three clathrin light chains, organized into a symmetrical three-legged structure called a triskelion. In clathrin-coated vesicles clathrin is the main component of the coat and forms a polymeric mechanical scaffold on the vesicle surface.

Expression data

Expression pattern

Expression pattern of LotjaGi6g1v0076900.3, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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