Your browser is unable to support new features implemented in HTML5 and CSS3 to render this site as intended. Your experience may suffer from functionality degradation but the site should remain usable. We strongly recommend the latest version of Google Chrome, OS X Safari or Mozilla Firefox. As Safari is bundled with OS X, if you are unable to upgrade to a newer version of OS X, we recommend using an open source browser. Dismiss message

LotjaGi1g1v0478100.2

Overview

Field Value
Gene ID LotjaGi1g1v0478100
Transcript ID LotjaGi1g1v0478100.2
Related isoforms 1
Lotus japonicus genome version Gifu v1.2
Description ATP-dependent helicase family protein; TAIR: AT2G46020.2 transcription regulatory protein SNF2; Swiss-Prot: sp|Q6EVK6|BRM_ARATH ATP-dependent helicase BRM; TrEMBL-Plants: tr|I1N3S1|I1N3S1_SOYBN Uncharacterized protein; Found in the gene: LotjaGi1g1v0478100
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:98986976..98999231) extracted from Lotus japonicus Gifu genome v1.2.

ATGCAATCTGGGGGTGGTGCCGGCGGGGTTCCCGGCCGGAATCCGGTGGGGCGGGCTGCGTCGACGTCTTCAGCAGCTGT ATCATCGCCGCCTTCTTCATCTTCAGCCTCCCACTTGGGATTGGACTCTTTGCAGCAGCAGCAACAACAGCAACAGCAGC AACAACAGCAACAGCAGCTGCTAGGTTCTTCTAGGCAGGTATGGATTTTGATTGGTATTGCTGAATTTCAGTGATAGGTT GGAACATTTGGGTTGTGGGATCTGCAATTAATGCACTTGGTGTTGGGTTTACTTGCTCACTCTGTTTCAAAATATTCTAA TTTCTAACACATATATATTGTATTAAGAAATGCAATTAATATCGTTAGCTTTTTAAAACATATCATTTGTTTTCCTATTT TACCCTACAAAGTGTATACTTTTATATCTCCTCATTTATTTTTCTCATAGAGCATTATATGGAAAAAACATCAATTAATG CTCCATTAAACTTCTAAGTTGACAGTTATTATGAAACAATTTTTTTCTCTCTAAGTGGATTATTATTTGAAACGGAGGTA GTAGTTACCAGAGAATGTCTTTAGTTACTTAGTATATGTTTTGAACCAATTGGTTTCCAGGCTTTCAAGGAGTCAAACTA GGCATGTGAAAAATTGAATAGGATATGGAAACTGATGGAGTCATTGAACCTGAAAATGATTGGGTTGAATTTTGTAGGCT AATGTTGTCAGTTCCAGTCTAGCTTCCTTTTAATCATGCAGCAGCGAACACTCTTCTGTTGACTTCTAATTTTTTTACTT CTTGGACTCTGCATTTATTTTCTGTTCATATCTGATGTACTAGTTAAGTACTTACTATTCTGTATACGGTATTTCTTTTC TCACATTTCTGGGGAATTTCCTTATAGAAGTTGATGATAATTATGAAACATCAGAGTTATAAAACTTGGGCTTTGTGTTT GGGTTATATGAACACACTCTTTCCTCATTCTTTTTCTCTTCAGGTGCTATTTTTAAAATTGATTAACTTCGGATTCTGAA TCCCCCCTCCTTTTGCCCTTTCTTTATACCTTAAGTGAACTGTATAAATTTAAAACTTCTACTAATTGTGAATTGTAACC ATACAAGCTAAAGTTATGTGCTAAAAAGTGTTTTTTCGTCAACATCTGTAAATTGTCAGTTTGTCTTAACTATTCCAGCT CCCCATTCATTTGCTCTGATATTATCAGTAAAAGATGTCTGATTTCAATAATTGTGATCGTCTTTTTCTTGTTGACTTAT AGTTTCTTTCAAATGAAGTTTTAATGGGGAATGTCATAATTATGTCGATTTCTTTCTCAAAATGGTGTTATCATTAATAT GACTGATTTTCTTTATGCTAAATGGCATTGTTACTTAAAAATATGTTGGGATTATGGCTTTGTATGATCCATGTCCTGAT CTCAGTTAGTGGGAAAATTTTGGTTGTTGTTGTTGTTGGTATTTAAGAATCTGTGACAACTTACAAATGGTCTCTATTCT GCTTTCGTGGTTTTGTTACTTCAATAGTGGACATAGATTGGTTCTTTTGTCTGTACTTTTTTTTAATATTAGCCTGCATA ACTCTTCATAATATTTCTGTCATACCTTTTAAGATACAAACCAATAGTTCATCTTATACTTTAGAAGGTATTTATGTACT TCTCTTTGTGTTGATATCTACGAAATTTTCATTGTGATCATATAATGTTTTTCTGTAACCTTTAACCGTATCATTTGTGT TGTGGAATGATGACTTGTACTCAACTACATATCTATGCAGTCATTTCAACAGCAGCTGCTTAGAAAACCTGAAGGGAGTG AAACATTTTTGGCATATCAAGCTGGGCTTCAAGGGGGGGTATTTGGAAGAAACAATTTCTCATCTCCTAGTGCAATGCAA CTTCCTCAGCAATCTCGAAAATTTATTGAATTAGCTCAGCATGGGTCCAACCAGGGTCAAGGTGTTGAGCAGCAAATGCC AAATCCTGTCCAGCAAGCACACTTTCAATATGCTCTCCAGACGGCTCAGTCAAAATCTGCATTGGCAGTGCAGTCACAGC AGCCTAAACTCGGAATGTTAGGCCCTTCTTCTGTGAAGGATCAGGAAATGCGAATGGGAAATTTGAAAATGCAGGACCTT ATGTCTATGCAGGCAGTGAGTCAAGCCCAAGGATCCTCTTCTAGGAATTCATCTGAACGTTTTGCTCATGGGGAAAAGCG TATAGAGCAAGGACAGCAGCTAGCACCTGATCAGAAGAATGAGGGAAAACCTTCAAGTCAGGGCCCCACTGGTCACTTAA TGCCTGGAAATATTATAAGACCTGGACAAGCACAGGCAAATCAGCAGAGCAACCCAAATACTATGAATAACCAGATTGCG GTATCTGCTCACTTGAGGGCGATGCAGGCATGGGCACATGAACAAAATATTGATCTATCACATCCTGCGAATGCTAACTA TATGGCTCAGCTACTGATGCAATCAAGGATGAGTCAACAACCAAAGGCCAATGATGCCAATGTTGGTGCTCAGTCATCAT CTGTCCCTGTTTCAAACCAGCAGGTTACTTCTCCAGCAGTTGCAAGTGAGGGCTCAGCACATGCTAATTCATCTAGTGAT GTGTCTGCACAGTCAGGTTGTTCAAAAGCCAAGCAGGTTGCTCCACCCAGCCATTTAAGCTCACCAATTAATGCTGTTGC AGCCAGTAACTCCAGTGGCATGGCAGTGCAGCAATTCAGTCTTCATGGAAGAGATGCTCAAGGATGTTTGAGGCAATCAG TTGTAGTTGTAAACGGAATGCCTCCTGTGCATCCACAGCAATCTTCAGAAAACATAAACTTAGTTGCAGATCATCCTTTG AATGCAAAAACTTCATTATCTGGGCCAGAACCTGCAAAAATGCAGCACACCAGGCAATTAAGCCAATATGCTTCTCAGGA TGGAGGTCTGACAAATGAAGGGCCCTCAGGAAATCACCCCAAACCTCAAAGGGAGCCATCTCAGATGCCTCAACAACGAA CTGGTTTTACCAAACAACAGCTTCATGTTCTTAAAGCACAGATACTAGCATTTAGGCGCCTGAAGGTTTTATCTCTACTT TCCTTTTCGTTCTTTCTGTGTCTGCCTCATGTGTTTATGTGCTATTTATATAGGGTCTAATGAAGATTTACTATATAATA TCTGAAGAAGATTGTTCTAACTGATATTCTTGTTCTGTTGGTTGTTAGAAAGGAGAAGGTACACTCCCCCAAGAACTTCT TCGGTCCATTGTTCCGCCACCTCTTGATTCTAAAGTTCAGCAGCCAATTCATTCTGCTGGTGGACAAAATCAAGACAAAT CTGTTGGAAATATTGTGGCAGAGCAACCAAGCCAAAATAGTGCCAAGGATTCACAACCTATCACATCTATTAATGGAAAG AGTTCTTCAAAGCAGGAAGCCTTTGTCAGAGATGAGAAATCCACTGTAACAGCAGCTCATATGCAAGCTATGCCTCCTGT TGAAAAGGACTCTGTTGGCAAGGAACAACAGCAGTCTGTTGGATTTTCTGCTAAGTCAGACCAGGAAACTGAACATGGAG TGAGCAGAGTTCCTGTTAGAAATGAGCTGCCGTTAGATAAGGGAAAGGCTATTGCACCCCAAGCTTCTATAACTGACACA ATGCAAATTACTAAACCTGCACAAGCAAGCGCTGTTGCCCAGCAAAAGGATGCAGGACCCACCAGAAAATATCATGGGCC CCTATTTGATTTTCCTTCCTTCACTAGGAGACATGACTCTTTTGGGTCTTCAATGATGGTAAACAACAACAATAATTTGT CACTGGCATATGATGTGAAAGAGCTGCTTTTTGATGAAGGCAAGGAAGTCTTTAATAAAAGAAGGACAGAAAATTTGAAG AAGATTGAAGGATTACTTGCAGTGAACTTGGAGAGGAAAAGAATTAAGCCAGATCTTGTGTTGAAGTTGCAAATTGAAGA GAAGAAGCTTCGCCTGTTAGATCGGCAGGCACGTTTAAGGAATGAGATTGATCAACAGCAACAAGAAATAATGGCAATGC CAGATAGGCCATACAGGAAGTTTGTTAGGTTATGTGAGCGTCAGCGTATCGAACTTGCTAGACAAGTTCAGGCATCTCAG AGAGCTTTAAGGGAGAAGCAACTGAAATCTATATTTCAATGGCGCAAAAAGCTTCTTGAAGCACACTGGGCTATTCGTGA TGCCCGTACTTCTCGCAACAGAGGGGTAGCCAAATATCATGAGAGGATGTTGAAGGAGTTCTCAAAACGTAAGGATGATG ACAGGAACAAAAGGATGGAAGCCTTAAAAAACAATGATGTTGACAGATATAGGGAAATGTTACTGGAGCAGCAGACTAGC ATGCCAGGTGATGCTGCAGAGAGATATGCTGTTCTTTCAACTTTCTTATCCCAGACTGAAGACTATCTCCAAAAATTAGG AAATAAGATAACTGCTGCTAAAAATCAACAGGAAGTGGAAGAGGCAGCAAAAGCTGCAGCAGCTGCTGCGCGATTGCAGG TATGCTTCATTAATCCCCCCTGGGAGAAAAACTAAATGTTTCTGTGCCTTCTTTTTCATTTCTAGTACAGTTCATTTCTT ATGTTTCTGTTTTTGGTGTTTTCTAATGCACTGTTTTGACTTATTTTTTTTATATTTTGTATTTATCATTAATCCATCAT TTGTTTTATGGCAAAGGGTCTCTCTGAAGAAGAAGTCAGAGTGGCAGCAGCATGTGCTGGAGATGAAGTGATGATTAGAA ATCATTTCATGGAGATGAATGCTCCTAGAGACAGTTCTTCTGTCAGCAAGTGAGTTTTGTTCTTCTTTTAATGTGTATCT TGAGTTTCAGGCTGTTGGTTCGAAAGTGCTTGTCAAGTGCATTTTAGTGCTAGCTGCTGGCTTGAAATGTGCAAATACCT TTTTTTAATTGTAATTTTAATGCTAAAATATTGTTATTTTAAACCTTGATTTGTGAACAATTTATTGGTTATATAATAAT ACATCTTGTGCCTGATGGTTACCATTATTGGCCAAATACCAGGTATTACAACCTTGCTCATGCTGTGAATGAAAGGGTTG TAAGGCAACCATCAATATTACGGGCTGGAATACTGAGAGACTATCAGCTTGTAGGTTTCGATGGTTGATTGAATTGTCAG TAATTCTTGTGATCTTTTTTGAGCATATTGTTAAGGATGTGAAATATAATTTTTGAAGGTTGGTTTGCAATGGATGCTTT CTTTGTATAACAACAAATTGAATGGAATTTTGGCTGACGAGATGGGTCTTGGCAAAACTGTACAGGTTAGTATCACGTTT TGCTTTGTCCCTCCCTTAAAACGGGAAGAACATATTGTGTTTTTTCCAGCTGAGTGATTTGATTTGAACTCCATATTTAA GCACATCATGCATGAGAAATGTAAGAAATTTAGTCATTTTTTGTGTTATTTCAAGTGTACTGCATAATTCCTATGATTGT TAACTGTAAGTTTAAGTATTTCTTCAATGTCCAGGTTATGGCATTAATTGCCTACTTGATGGAATTTAAAGGAAACTATG GCCCACATCTTATAATAGTCCCAAATGCTGTTATGGTTAACTGGAAGGTGAGCTTTCAACTCTTTCTCTTTATTGATGTT CCTTTTCTTTGTGATTATGTGCGCCTTTAACCCGAAAATGTGTTGACTCTGCAGAGTGAGTTGCACACTTGGTTACCATC TGTTTCATGCATTTTTTATGTTGGAAGCAAGGATTATCGCTCAAAATTATTTTCTCAAGTAAGTGTGCCACAGCTTATTG ACTTATACTGCTAGGAGTAATATAATGTTCACTGCTGAGTTCCTTTTGGGTGATACCTGTAGGAGGTTCTGGCTATGAAA TTTAATGTCCTTGTGACTACTTATGAGTTCATCATGTATGACCGGTCCAAGCTTTCAAAAATTGATTGGAAGTACATCAT AATTGATGAAGCTCAGAGAATGAAGGATAGAGATTCAGTTCTAGCTCGTGATCTTGATAGATATCGTTGTCATAGACGCC TGCTTCTGACAGGAACACCTTTACAGGTCTGTGTTACTTTGATAGAATATGCATTGTTGCTGCAATTTCAAATGTACTCA TTAAGTATCATGCCCTATTTGAACCAAACTTTACCGTATCTTGAAGTTGGCAATTTTTTTATTTTGTTGTGTATCTTGTT CTTCCCTTGGTAACTATGTGAGATATTATAATCATCATTCATGTGTCTTCTCTTAATTGCACAATTGGAGAATTGGTCCT TGGCACACGGTATCAAATTCTCACCACATGGTCACAAGTTTGATGTTCGTTACCTCCATTCTTCTAAATAAAGTTTACTT TCATCACAAAGTAGGGTGGACCTGTGCATTATCCATGTTTGAAGTCCTAAGGGCTCTTTTGCAAAGGGGCATTCTAAAGA TATTAAAACCATTCATATGCTTTCACCTTGTAGATTAAGCTTTTACACAGAATGTTTGACATTACCAGAATTTTCCTTGT CCTTTTGATTTTCTAAATATTTGCAAAGACATTGATAAGAGGGTGTTGTGTGTGAACTAATACTGCTAAGCCATTTAATT TGTTGTGCTATAAAACTAATAATTACTGTACCTGTTAGGTTTTAAATTATAGTCAGTGGGCCGGAGTTTGATTTTATATG TTTGTTTTGTTATTTGCTTTGGGATTGAGTTGCTTTTGTTATTTGAGTTGGGCCTATGTTTGACCAGAGTCATTTGCTTA GTAGTGTTAGTTTATGATAAGTAAGAGTACTCGCCTTAGGTTAGAGTATGATTTGAGTATTAGATTTGTAAAAGGGTTTC ACCATTGGAAGGGGATTATCTCTTGAAAGAAGGTTCTCCTTCTTGTGAATCCATTATGATTGTTTTTTGTATCATAAATA ATGTCTTTTGTTTTCTAACCAAATCCTTTATCTTTTCTCTCTTCTTATTTTTTTCCAGTTTTAAATATATCAAATGATGT CTTTTGTTTTCTAACCATAACCTTCAGTCTAGCATGCATCATACTATGCTAGTTGTGGTTGTTTAGTTTTTAATGGATAT AGTCAAAGTTCTCCACTAGTAATTCATAACTTAAACGTGTCTTTGTAAAACATGTATTTTCTTGTTTAAAATATCGACTT TTGATCAACAGTTAATTTCATGTAGATGTCATGTTGTCAATTAATAAATCATAGGTTCATGGTGCAGTATGTATCTTGTT GATGAAATTATTAATGGTATAATTTTCTCTTCAGAATGATTTGAAGGAGCTATGGTCCCTTTTAAATTTACTTCTTCCTG ACGTTTTTGACAATAAGAAAGCCTTTAACGATTGGTTCTCGAAACCATTTCAAAAAGAAGGTCCCAGTCAAAATGCAGAG GATGATTGGCTTGAGACAGAGAAGAAAGTTATCATTATCCATAGACTTCATCAGATTCTTGAGCCTTTCATGCTCAGGCG CCGTGTTGAAGATGTTGAAGGCTCGCTTCCACCGAAGGTTTGATTGTGACTCATTGTTTTACCTTTTACTTTCTATCTAT CTAGTAGCCCTGTCCTAATATCAGCGCTGTGTTGCAGGTATCTATAGTCTTACGATGTAAAATGTCAGCTATCCAGAGTG CCATTTATGACTGGGTGAAATCAACCGGTTCCCTTCGTCTTGATCCAGAGGATGAGAAACGTAAGATTCAAAAAAATCCA AATTACCAGGAAAAGTCATATAAAACTTTAAGTAACAGATGCATGGAGCTGCGTAAGACTTGCAATCATCCGTTGCTTAA TTACCCATTTTTTAGTGACTTATCTAAAGAGTTCATTGTAAAATCCTGTGGGAAATTGTGGATCCTCGATAGGATCCTTA TTAAGCTTCAAAGAACTGGACATCGAGTTCTGCTGTTTAGTACCATGACAAAGCTCCTAGACATATTAGAAGAGTACCTG CAATGGCGGAGACTTGTGTACCGAAGAATTGATGGGACAACAAGTTTGGAAGACCGTGAATCAGCTATAGTGGACTTTAA TAGCCCTGATTCAGACTGTTTCATCTTCTTGCTTAGTATACGAGCTGCTGGGAGAGGCCTTAACCTTCAGTCTGCTGATA CAGTTGTCATTTATGATCCTGATCCTAACCCTAAAAATGAGGAGCAGGCTGTGGCCAGAGCTCACCGCATTGGACAGAAA AGAGAGGTCAAAGTTATCTACATGGAAGCTGTTGTGGACAAGATCTCTAGCCATGAGAAAGAGGATGAACTGAGAAGTGG AAGCACAGTTGATATGGAGGATGAACTTGTGGGTAAGGATCGCTATATAGGATCCATTGAGAGCCTTATAAGGAACAATA TTCAACAATATAAGATAGATATGGCTGATGAGGTTATTAATGCTGGACGTTTTGATCAAAGGACTACACATGAAGAGAGA CGTTTGACTTTGGAGACATTATTGCATGATGAAGAAAGGTATCAAGAAACTCTCCATAATGTTCCTTCGCTGCAGGAGGT GAATCGCATGATTGCTAGGAATGAAGAGGAAGTTGAATTGTTTGATCAAATGGATGAAGAAGAAGATTGGGTTGAGGAGA TGACGCAGTATGATCAGGTGCCTAGGTGGCTTCGAGCCACTACAAAAGAATTTAATGCTGCCATTGCTGCTTTATCAAAA AGACCATCAAAGAAAACTGTTTTGGGTGGTGGTACTGGCTTGGAATCCAGTGAAATTTCTGAAAAAAGAAGGGGACGGCC AAAGGGAAAAAATCATCCTAGTTATAAAGAGTTGGAAGATGAAAATGAATACTCTGAAGCAAGCTCTGAAGACAGAAATG GATATTCTGCACATGAAGGGGAGATTGCAGAGTCTGAAGATGATGGGTTTATTGGGGCTGATGGATCTCAGCCCATGGAT AAAGCTCAATTGGAAGAAAATGGTGCACCTTTTGATGCTGTCTATGAATTTCCTCGGTCTTCAGAAGGTGCTAGAAATAA TCACGTGATTGAAGAAGCTGGTTCCTCAGGATCATCCTTGAACAGTCAGAGGTTGACACAAATAGTGTCACCATCAGTTT CTGCTCAGAAATTTGGTTCCCTCTCGGCTTTAGATTCCAGGCCAAGTTCCACTTCAAAAAGGATGGTACATTGCTTTACT TTATGTTTTTAATTTTTTATTCTCTTGTTCGTTGGCTGTCTTTGTTCTATTTCATTCTAATTAATATCTTCTGATAACTT TTGCCAGGGAGATGACTTAGAGGAGGGTGAAATTGCAGTATCAGGTGATTCTCACATGGATCATCAACAATCAGGAAGTT GGATTCATGATCGTGATGAAGGTGAGGATGAACAAGTTTTGCAGCAACCCAAGATTAAACGTAAGCGTAGTCTTCGTGTT CGGCCCCGTCATACCATGGAAAGGCCTGAGGACAAGTCTGGCAGTGAGATCGTGTCTCTTCAACGTGGAGAATCATCTAT TTTATCAGACTATAAATATCAACTGCAAACAAGGACTGACCCAGAATCAAAACCATTAGGAAACCCCAATGCCAGCAAGC ATGATAAGAATGAATCATCATTAAAAAATAAGCGAAATTTACCTTTAAGGAAAGTAGCTAATACATCCAAATTACATGGC TCTCCTAAATCTAGTCGTTTGAACTGCATGTCTATTCCTTCAGAAGATGGCAGTAAAGACACTAGAGAAAATCGGGAGGG GAAGCCTATCAATTTAAGTGGATCTTCAACACGAACCACTAAAATGACTGAAATCATCCAAAGAGGGGTATGTGTCTTTA ATTGATCAATGTTCTATCTTCCTTTTTACCTGTGTCTTATGTTTTTCCAGAATGGAGTGGATCTTAATAAAATACGGATA TATTGCAACAATAAGTTTTTCTGATCACAGGTTTCTTTACCAGCTGTGATCCTGAAAATCTCAATTCATATGTTCTGTTT CTCATGAAAACTTTCTGTTTGTTAATTGAATTTAATCCGACCTTCTTTCCATGTCACAATCTATGTTGGAGAAGTGGTCC TGTATTTGTGTTGCCTGCCTTCTTTAAGGAAAGTAGCTAATACATTGTAAATATTTGGACTTATATAACTATTGCATTTG CAGTGCAAGAATGTAATTAGCAAGCTCCAGAGGAGAATAGACAAGGATGGCCAGCAAGTTGTACCTTTGCTGACAGCTTT TTTGAAGAGGATTGAGAATTCTGGGTACACTGCTGGATCTGGGAAAACTCTGTTGGATTTACGAAAGATTGATCAGCGGA TTGATAGATTGGAGTATAATGGAGTAATGGAGCTTGTTTCTGATGTGCAGTTCATGTTGAGGAGTGCAATGCATTCTTAT GGCTACTCAGAAGAGGTGAGATTTCTTATCCATATCATTGTACAAAATAACGACAACTTAGTTCTTTTCGGTACATAGCA TGTTCGAATCTCTGTTCTAACTTCTAAGGACTTGAAATATATGATCTGGAGTTGTGAAATACATGTGTTTCGATCCTTTA AAAGAAAACCCCATACATGTTTTGTTAAAACCATGCCATTTTTTGAAGCCTTATTTTTGTTTTCACGTATAAATGTATTT TATGGTGGCTACCCTTTTTTGTTTGTTAAACCAAAGTTTAAAGATAAATTCCAAAAATTATTTGAAATGATGTTCTAAGA TTCATTAATTATTCCTGTACATCACATTCTAACTTGCACCTTTCTTGGTGTGTATAATGTTTTGGCTAGCTTAAGTTTTA TTTTTAAATTTATCAGAGGTGGGAATATGTCCGAGACTTGAAACTTGATTTTTCTGATTGTTAATTCGACTTCCGGGCAT GCAAAACATCATGAACCTTTCCTTTTTTGTGTGTTTTTGATCAAAATATTTTAAGATGGATCAGCGCATTTTTTGATGTT ATAAACCAATCATGTATGCTCATGCTTGAATTGTTGTGCATTTGCATATGGTTGCATGCATTTTGTAAAATGTACGCATA TCTACTGTTCATATAATCTAATTGGTGGTATGAAACAAAAGTTGTAGTATTGATCTGGATCTGATCTTGGAGTGTGTTAC CAGGCCTTGTCAAATAATTGTTGTCAAAGTGAAACAATATTATCTGATAGATGATATTTATGATGGATTTACATGTTTTA GCTAATTGAATTAGGAGTTAATAGTTGATAATGTTCATCTTTTGAGGGAAATTTTCAACATTCAATCTGAAGAGATCTGT CTGCATAATGTGCTATTACTGATTAGCTAGATTTTACATGTTTCATATTATTTAAGCAAAAGATGAATAGCGTGATATTA TCGAGCAAGGGTTGACATGTTGCTCTTTGTAGCCCCAAATTAAATAGACTTGCTCTTTGTATTCTTCCAGTACATCAAAA GTGATTCTTCCTCAAATTTTTTGCCAAAGACAGAATGGGCTGTCTCTATCTTCCACTGCTTCCATGATTGAGATCGCTGT TGAATGCACTGATAAATTGATTATGCTGCTAGGATTGTTTCTATGTGATCTCTATTTGTTTCTAAGTGATCATCATTGAC AGGTAAACAATGAAGCAGACCGGGTTCATAATCTCTTTTTTGATATCTTGAAAATTGCATTTCCCAACGTGGACTTCAGA GAAGCAAGAAATGGACTTTCTTCCCCTCCCCAAGTTTCTGCCAGTGCTGTGGCATCCCCAAGGCAGGTGACTGTTGGCCC AAGCAAGAGGAACAGGGTGATGAATGATGTTGAAACTGACCCAACCCTTCCACAAAAGCCACTACAACGCGGATCTGCTT CCGCTGGTGATAGTTCGAGGATCAAAGTCCAGCTGCCACAGAAAGAATCAAGAACTGGAGGTGGTTCCGGCAGTGCCAGG GAGCAACATCAGCAGGATAATCCTTCACTGCCCACTCATCCAGGTGAACTGGTGGTATGCAAGAAGAAAAGAAATGACAG GGAAAAATCATTGGTGAAGACAAGGACCGGATCAGCTGGTCCTGTCTCACCACCAAGCATGGGTCCTGCTATAAAAAGTC CAAGGTCAGGTTCAAACCCCAGAGATTCTCGGCCGGTTCAACAGGCTGCGCAAGCAGCGGGACGGGTTGGCCAGCCATCT CAGCAACCAAATGGGTCTGGCGGGTCACTCGGCTGGGCCAACCCGGTGAAGCGCCTTAGATCAGATTCTGGTAAGAGGAG ACCAAGCCATATGTAG 

CDS sequence (LotjaGi1g1v0478100.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGCAACTTCCTCAGCAATCTCGAAAATTTATTGAATTAGCTCAGCATGGGTCCAACCAGGGTCAAGGTGTTGAGCAGCA AATGCCAAATCCTGTCCAGCAAGCACACTTTCAATATGCTCTCCAGACGGCTCAGTCAAAATCTGCATTGGCAGTGCAGT CACAGCAGCCTAAACTCGGAATGTTAGGCCCTTCTTCTGTGAAGGATCAGGAAATGCGAATGGGAAATTTGAAAATGCAG GACCTTATGTCTATGCAGGCAGTGAGTCAAGCCCAAGGATCCTCTTCTAGGAATTCATCTGAACGTTTTGCTCATGGGGA AAAGCGTATAGAGCAAGGACAGCAGCTAGCACCTGATCAGAAGAATGAGGGAAAACCTTCAAGTCAGGGCCCCACTGGTC ACTTAATGCCTGGAAATATTATAAGACCTGGACAAGCACAGGCAAATCAGCAGAGCAACCCAAATACTATGAATAACCAG ATTGCGGTATCTGCTCACTTGAGGGCGATGCAGGCATGGGCACATGAACAAAATATTGATCTATCACATCCTGCGAATGC TAACTATATGGCTCAGCTACTGATGCAATCAAGGATGAGTCAACAACCAAAGGCCAATGATGCCAATGTTGGTGCTCAGT CATCATCTGTCCCTGTTTCAAACCAGCAGGTTACTTCTCCAGCAGTTGCAAGTGAGGGCTCAGCACATGCTAATTCATCT AGTGATGTGTCTGCACAGTCAGGTTGTTCAAAAGCCAAGCAGGTTGCTCCACCCAGCCATTTAAGCTCACCAATTAATGC TGTTGCAGCCAGTAACTCCAGTGGCATGGCAGTGCAGCAATTCAGTCTTCATGGAAGAGATGCTCAAGGATGTTTGAGGC AATCAGTTGTAGTTGTAAACGGAATGCCTCCTGTGCATCCACAGCAATCTTCAGAAAACATAAACTTAGTTGCAGATCAT CCTTTGAATGCAAAAACTTCATTATCTGGGCCAGAACCTGCAAAAATGCAGCACACCAGGCAATTAAGCCAATATGCTTC TCAGGATGGAGGTCTGACAAATGAAGGGCCCTCAGGAAATCACCCCAAACCTCAAAGGGAGCCATCTCAGATGCCTCAAC AACGAACTGGTTTTACCAAACAACAGCTTCATGTTCTTAAAGCACAGATACTAGCATTTAGGCGCCTGAAGAAAGGAGAA GGTACACTCCCCCAAGAACTTCTTCGGTCCATTGTTCCGCCACCTCTTGATTCTAAAGTTCAGCAGCCAATTCATTCTGC TGGTGGACAAAATCAAGACAAATCTGTTGGAAATATTGTGGCAGAGCAACCAAGCCAAAATAGTGCCAAGGATTCACAAC CTATCACATCTATTAATGGAAAGAGTTCTTCAAAGCAGGAAGCCTTTGTCAGAGATGAGAAATCCACTGTAACAGCAGCT CATATGCAAGCTATGCCTCCTGTTGAAAAGGACTCTGTTGGCAAGGAACAACAGCAGTCTGTTGGATTTTCTGCTAAGTC AGACCAGGAAACTGAACATGGAGTGAGCAGAGTTCCTGTTAGAAATGAGCTGCCGTTAGATAAGGGAAAGGCTATTGCAC CCCAAGCTTCTATAACTGACACAATGCAAATTACTAAACCTGCACAAGCAAGCGCTGTTGCCCAGCAAAAGGATGCAGGA CCCACCAGAAAATATCATGGGCCCCTATTTGATTTTCCTTCCTTCACTAGGAGACATGACTCTTTTGGGTCTTCAATGAT GGTAAACAACAACAATAATTTGTCACTGGCATATGATGTGAAAGAGCTGCTTTTTGATGAAGGCAAGGAAGTCTTTAATA AAAGAAGGACAGAAAATTTGAAGAAGATTGAAGGATTACTTGCAGTGAACTTGGAGAGGAAAAGAATTAAGCCAGATCTT GTGTTGAAGTTGCAAATTGAAGAGAAGAAGCTTCGCCTGTTAGATCGGCAGGCACGTTTAAGGAATGAGATTGATCAACA GCAACAAGAAATAATGGCAATGCCAGATAGGCCATACAGGAAGTTTGTTAGGTTATGTGAGCGTCAGCGTATCGAACTTG CTAGACAAGTTCAGGCATCTCAGAGAGCTTTAAGGGAGAAGCAACTGAAATCTATATTTCAATGGCGCAAAAAGCTTCTT GAAGCACACTGGGCTATTCGTGATGCCCGTACTTCTCGCAACAGAGGGGTAGCCAAATATCATGAGAGGATGTTGAAGGA GTTCTCAAAACGTAAGGATGATGACAGGAACAAAAGGATGGAAGCCTTAAAAAACAATGATGTTGACAGATATAGGGAAA TGTTACTGGAGCAGCAGACTAGCATGCCAGGTGATGCTGCAGAGAGATATGCTGTTCTTTCAACTTTCTTATCCCAGACT GAAGACTATCTCCAAAAATTAGGAAATAAGATAACTGCTGCTAAAAATCAACAGGAAGTGGAAGAGGCAGCAAAAGCTGC AGCAGCTGCTGCGCGATTGCAGGGTCTCTCTGAAGAAGAAGTCAGAGTGGCAGCAGCATGTGCTGGAGATGAAGTGATGA TTAGAAATCATTTCATGGAGATGAATGCTCCTAGAGACAGTTCTTCTGTCAGCAAGTATTACAACCTTGCTCATGCTGTG AATGAAAGGGTTGTAAGGCAACCATCAATATTACGGGCTGGAATACTGAGAGACTATCAGCTTGTTGGTTTGCAATGGAT GCTTTCTTTGTATAACAACAAATTGAATGGAATTTTGGCTGACGAGATGGGTCTTGGCAAAACTGTACAGGTTATGGCAT TAATTGCCTACTTGATGGAATTTAAAGGAAACTATGGCCCACATCTTATAATAGTCCCAAATGCTGTTATGGTTAACTGG AAGAGTGAGTTGCACACTTGGTTACCATCTGTTTCATGCATTTTTTATGTTGGAAGCAAGGATTATCGCTCAAAATTATT TTCTCAAGAGGTTCTGGCTATGAAATTTAATGTCCTTGTGACTACTTATGAGTTCATCATGTATGACCGGTCCAAGCTTT CAAAAATTGATTGGAAGTACATCATAATTGATGAAGCTCAGAGAATGAAGGATAGAGATTCAGTTCTAGCTCGTGATCTT GATAGATATCGTTGTCATAGACGCCTGCTTCTGACAGGAACACCTTTACAGAATGATTTGAAGGAGCTATGGTCCCTTTT AAATTTACTTCTTCCTGACGTTTTTGACAATAAGAAAGCCTTTAACGATTGGTTCTCGAAACCATTTCAAAAAGAAGGTC CCAGTCAAAATGCAGAGGATGATTGGCTTGAGACAGAGAAGAAAGTTATCATTATCCATAGACTTCATCAGATTCTTGAG CCTTTCATGCTCAGGCGCCGTGTTGAAGATGTTGAAGGCTCGCTTCCACCGAAGGTATCTATAGTCTTACGATGTAAAAT GTCAGCTATCCAGAGTGCCATTTATGACTGGGTGAAATCAACCGGTTCCCTTCGTCTTGATCCAGAGGATGAGAAACGTA AGATTCAAAAAAATCCAAATTACCAGGAAAAGTCATATAAAACTTTAAGTAACAGATGCATGGAGCTGCGTAAGACTTGC AATCATCCGTTGCTTAATTACCCATTTTTTAGTGACTTATCTAAAGAGTTCATTGTAAAATCCTGTGGGAAATTGTGGAT CCTCGATAGGATCCTTATTAAGCTTCAAAGAACTGGACATCGAGTTCTGCTGTTTAGTACCATGACAAAGCTCCTAGACA TATTAGAAGAGTACCTGCAATGGCGGAGACTTGTGTACCGAAGAATTGATGGGACAACAAGTTTGGAAGACCGTGAATCA GCTATAGTGGACTTTAATAGCCCTGATTCAGACTGTTTCATCTTCTTGCTTAGTATACGAGCTGCTGGGAGAGGCCTTAA CCTTCAGTCTGCTGATACAGTTGTCATTTATGATCCTGATCCTAACCCTAAAAATGAGGAGCAGGCTGTGGCCAGAGCTC ACCGCATTGGACAGAAAAGAGAGGTCAAAGTTATCTACATGGAAGCTGTTGTGGACAAGATCTCTAGCCATGAGAAAGAG GATGAACTGAGAAGTGGAAGCACAGTTGATATGGAGGATGAACTTGTGGGTAAGGATCGCTATATAGGATCCATTGAGAG CCTTATAAGGAACAATATTCAACAATATAAGATAGATATGGCTGATGAGGTTATTAATGCTGGACGTTTTGATCAAAGGA CTACACATGAAGAGAGACGTTTGACTTTGGAGACATTATTGCATGATGAAGAAAGGTATCAAGAAACTCTCCATAATGTT CCTTCGCTGCAGGAGGTGAATCGCATGATTGCTAGGAATGAAGAGGAAGTTGAATTGTTTGATCAAATGGATGAAGAAGA AGATTGGGTTGAGGAGATGACGCAGTATGATCAGGTGCCTAGGTGGCTTCGAGCCACTACAAAAGAATTTAATGCTGCCA TTGCTGCTTTATCAAAAAGACCATCAAAGAAAACTGTTTTGGGTGGTGGTACTGGCTTGGAATCCAGTGAAATTTCTGAA AAAAGAAGGGGACGGCCAAAGGGAAAAAATCATCCTAGTTATAAAGAGTTGGAAGATGAAAATGAATACTCTGAAGCAAG CTCTGAAGACAGAAATGGATATTCTGCACATGAAGGGGAGATTGCAGAGTCTGAAGATGATGGGTTTATTGGGGCTGATG GATCTCAGCCCATGGATAAAGCTCAATTGGAAGAAAATGGTGCACCTTTTGATGCTGTCTATGAATTTCCTCGGTCTTCA GAAGGTGCTAGAAATAATCACGTGATTGAAGAAGCTGGTTCCTCAGGATCATCCTTGAACAGTCAGAGGTTGACACAAAT AGTGTCACCATCAGTTTCTGCTCAGAAATTTGGTTCCCTCTCGGCTTTAGATTCCAGGCCAAGTTCCACTTCAAAAAGGA TGGGAGATGACTTAGAGGAGGGTGAAATTGCAGTATCAGGTGATTCTCACATGGATCATCAACAATCAGGAAGTTGGATT CATGATCGTGATGAAGGTGAGGATGAACAAGTTTTGCAGCAACCCAAGATTAAACGTAAGCGTAGTCTTCGTGTTCGGCC CCGTCATACCATGGAAAGGCCTGAGGACAAGTCTGGCAGTGAGATCGTGTCTCTTCAACGTGGAGAATCATCTATTTTAT CAGACTATAAATATCAACTGCAAACAAGGACTGACCCAGAATCAAAACCATTAGGAAACCCCAATGCCAGCAAGCATGAT AAGAATGAATCATCATTAAAAAATAAGCGAAATTTACCTTTAAGGAAAGTAGCTAATACATCCAAATTACATGGCTCTCC TAAATCTAGTCGTTTGAACTGCATGTCTATTCCTTCAGAAGATGGCAGTAAAGACACTAGAGAAAATCGGGAGGGGAAGC CTATCAATTTAAGTGGATCTTCAACACGAACCACTAAAATGACTGAAATCATCCAAAGAGGGTGCAAGAATGTAATTAGC AAGCTCCAGAGGAGAATAGACAAGGATGGCCAGCAAGTTGTACCTTTGCTGACAGCTTTTTTGAAGAGGATTGAGAATTC TGGGTACACTGCTGGATCTGGGAAAACTCTGTTGGATTTACGAAAGATTGATCAGCGGATTGATAGATTGGAGTATAATG GAGTAATGGAGCTTGTTTCTGATGTGCAGTTCATGTTGAGGAGTGCAATGCATTCTTATGGCTACTCAGAAGAGGTAAAC AATGAAGCAGACCGGGTTCATAATCTCTTTTTTGATATCTTGAAAATTGCATTTCCCAACGTGGACTTCAGAGAAGCAAG AAATGGACTTTCTTCCCCTCCCCAAGTTTCTGCCAGTGCTGTGGCATCCCCAAGGCAGGTGACTGTTGGCCCAAGCAAGA GGAACAGGGTGATGAATGATGTTGAAACTGACCCAACCCTTCCACAAAAGCCACTACAACGCGGATCTGCTTCCGCTGGT GATAGTTCGAGGATCAAAGTCCAGCTGCCACAGAAAGAATCAAGAACTGGAGGTGGTTCCGGCAGTGCCAGGGAGCAACA TCAGCAGGATAATCCTTCACTGCCCACTCATCCAGGTGAACTGGTGGTATGCAAGAAGAAAAGAAATGACAGGGAAAAAT CATTGGTGAAGACAAGGACCGGATCAGCTGGTCCTGTCTCACCACCAAGCATGGGTCCTGCTATAAAAAGTCCAAGGTCA GGTTCAAACCCCAGAGATTCTCGGCCGGTTCAACAGGCTGCGCAAGCAGCGGGACGGGTTGGCCAGCCATCTCAGCAACC AAATGGGTCTGGCGGGTCACTCGGCTGGGCCAACCCGGTGAAGCGCCTTAGATCAGATTCTGGTAAGAGGAGACCAAGCC ATATGTAG 

Protein sequence (LotjaGi1g1v0478100.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MQLPQQSRKFIELAQHGSNQGQGVEQQMPNPVQQAHFQYALQTAQSKSALAVQSQQPKLGMLGPSSVKDQEMRMGNLKMQ DLMSMQAVSQAQGSSSRNSSERFAHGEKRIEQGQQLAPDQKNEGKPSSQGPTGHLMPGNIIRPGQAQANQQSNPNTMNNQ IAVSAHLRAMQAWAHEQNIDLSHPANANYMAQLLMQSRMSQQPKANDANVGAQSSSVPVSNQQVTSPAVASEGSAHANSS SDVSAQSGCSKAKQVAPPSHLSSPINAVAASNSSGMAVQQFSLHGRDAQGCLRQSVVVVNGMPPVHPQQSSENINLVADH PLNAKTSLSGPEPAKMQHTRQLSQYASQDGGLTNEGPSGNHPKPQREPSQMPQQRTGFTKQQLHVLKAQILAFRRLKKGE GTLPQELLRSIVPPPLDSKVQQPIHSAGGQNQDKSVGNIVAEQPSQNSAKDSQPITSINGKSSSKQEAFVRDEKSTVTAA HMQAMPPVEKDSVGKEQQQSVGFSAKSDQETEHGVSRVPVRNELPLDKGKAIAPQASITDTMQITKPAQASAVAQQKDAG PTRKYHGPLFDFPSFTRRHDSFGSSMMVNNNNNLSLAYDVKELLFDEGKEVFNKRRTENLKKIEGLLAVNLERKRIKPDL VLKLQIEEKKLRLLDRQARLRNEIDQQQQEIMAMPDRPYRKFVRLCERQRIELARQVQASQRALREKQLKSIFQWRKKLL EAHWAIRDARTSRNRGVAKYHERMLKEFSKRKDDDRNKRMEALKNNDVDRYREMLLEQQTSMPGDAAERYAVLSTFLSQT EDYLQKLGNKITAAKNQQEVEEAAKAAAAAARLQGLSEEEVRVAAACAGDEVMIRNHFMEMNAPRDSSSVSKYYNLAHAV NERVVRQPSILRAGILRDYQLVGLQWMLSLYNNKLNGILADEMGLGKTVQVMALIAYLMEFKGNYGPHLIIVPNAVMVNW KSELHTWLPSVSCIFYVGSKDYRSKLFSQEVLAMKFNVLVTTYEFIMYDRSKLSKIDWKYIIIDEAQRMKDRDSVLARDL DRYRCHRRLLLTGTPLQNDLKELWSLLNLLLPDVFDNKKAFNDWFSKPFQKEGPSQNAEDDWLETEKKVIIIHRLHQILE PFMLRRRVEDVEGSLPPKVSIVLRCKMSAIQSAIYDWVKSTGSLRLDPEDEKRKIQKNPNYQEKSYKTLSNRCMELRKTC NHPLLNYPFFSDLSKEFIVKSCGKLWILDRILIKLQRTGHRVLLFSTMTKLLDILEEYLQWRRLVYRRIDGTTSLEDRES AIVDFNSPDSDCFIFLLSIRAAGRGLNLQSADTVVIYDPDPNPKNEEQAVARAHRIGQKREVKVIYMEAVVDKISSHEKE DELRSGSTVDMEDELVGKDRYIGSIESLIRNNIQQYKIDMADEVINAGRFDQRTTHEERRLTLETLLHDEERYQETLHNV PSLQEVNRMIARNEEEVELFDQMDEEEDWVEEMTQYDQVPRWLRATTKEFNAAIAALSKRPSKKTVLGGGTGLESSEISE KRRGRPKGKNHPSYKELEDENEYSEASSEDRNGYSAHEGEIAESEDDGFIGADGSQPMDKAQLEENGAPFDAVYEFPRSS EGARNNHVIEEAGSSGSSLNSQRLTQIVSPSVSAQKFGSLSALDSRPSSTSKRMGDDLEEGEIAVSGDSHMDHQQSGSWI HDRDEGEDEQVLQQPKIKRKRSLRVRPRHTMERPEDKSGSEIVSLQRGESSILSDYKYQLQTRTDPESKPLGNPNASKHD KNESSLKNKRNLPLRKVANTSKLHGSPKSSRLNCMSIPSEDGSKDTRENREGKPINLSGSSTRTTKMTEIIQRGCKNVIS KLQRRIDKDGQQVVPLLTAFLKRIENSGYTAGSGKTLLDLRKIDQRIDRLEYNGVMELVSDVQFMLRSAMHSYGYSEEVN NEADRVHNLFFDILKIAFPNVDFREARNGLSSPPQVSASAVASPRQVTVGPSKRNRVMNDVETDPTLPQKPLQRGSASAG DSSRIKVQLPQKESRTGGGSGSAREQHQQDNPSLPTHPGELVVCKKKRNDREKSLVKTRTGSAGPVSPPSMGPAIKSPRS GSNPRDSRPVQQAAQAAGRVGQPSQQPNGSGGSLGWANPVKRLRSDSGKRRPSHM 

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
MobiDBLite 1 28 28 -
MobiDBLite 86 156 71 -
MobiDBLite 86 100 15 -
MobiDBLite 115 134 20 -
MobiDBLite 200 266 67 -
MobiDBLite 323 378 56 -
MobiDBLite 330 378 49 -
SMART 376 413 38 3.0E-10
ProSiteProfiles 377 413 37 19.13
Pfam 378 411 34 5.6E-8
PANTHER 405 1956 1552 0.0
PANTHER 405 1956 1552 0.0
MobiDBLite 414 476 63 -
MobiDBLite 423 465 43 -
MobiDBLite 488 526 39 -
MobiDBLite 493 509 17 -
Coils 643 670 28 -
Coils 797 817 21 -
SUPERFAMILY 882 1126 245 4.44E-64
Gene3D 887 1135 249 7.3E-148
SMART 892 1081 190 3.8E-38
CDD 893 1128 236 5.89616E-127
ProSiteProfiles 908 1073 166 25.762
Pfam 909 1204 296 2.4E-66
SUPERFAMILY 1130 1467 338 8.51E-58
Gene3D 1136 1346 211 7.3E-148
CDD 1216 1347 132 2.38395E-53
Pfam 1226 1337 112 2.0E-16
ProSiteProfiles 1227 1404 178 17.341
SMART 1253 1337 85 6.7E-23
MobiDBLite 1499 1556 58 -
MobiDBLite 1516 1541 26 -
MobiDBLite 1636 1728 93 -
MobiDBLite 1650 1667 18 -
MobiDBLite 1675 1696 22 -
MobiDBLite 1708 1722 15 -
MobiDBLite 1743 1822 80 -
MobiDBLite 1754 1770 17 -
MobiDBLite 1782 1800 19 -
Gene3D 1824 1946 123 1.2E-6
SMART 1824 1939 116 0.0023
SUPERFAMILY 1878 1941 64 4.71E-5
MobiDBLite 1949 2135 187 -
MobiDBLite 1950 1973 24 -
MobiDBLite 1989 2035 47 -
MobiDBLite 2041 2057 17 -
MobiDBLite 2076 2090 15 -
MobiDBLite 2097 2113 17 -

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 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).
Molecular function ATP binding Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
Cellular component Nucleus A membrane-bounded organelle of eukaryotic cells in which chromosomes are housed and replicated. In most cells, the nucleus contains all of the cell's chromosomes except the organellar chromosomes, and is the site of RNA synthesis and processing. In some species, or in specialized cell types, RNA metabolism or DNA replication may be absent.
Biological process Regulation of transcription, DNA-templated Any process that modulates the frequency, rate or extent of cellular DNA-templated transcription.
Molecular function DNA-dependent ATPase activity Catalysis of the reaction: ATP + H2O = ADP + phosphate; this reaction requires the presence of single- or double-stranded DNA, and it drives another reaction.
Biological process Regulation of gene expression, epigenetic Any process that modulates the frequency, rate or extent of gene expression; the process is mitotically or meiotically heritable, or is stably self-propagated in the cytoplasm of a resting cell, and does not entail a change in DNA sequence.
Biological process ATP-dependent chromatin remodeling Dynamic structural changes to eukaryotic chromatin that require energy from the hydrolysis of ATP, ranging from local changes necessary for transcriptional regulation to global changes necessary for chromosome segregation, mediated by ATP-dependent chromatin-remodelling factors.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0478100.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

Loading expression data from ljgea-geneid. Please wait…