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

LotjaGi2g1v0419200.2

Overview

Field Value
Gene ID LotjaGi2g1v0419200
Transcript ID LotjaGi2g1v0419200.2
Related isoforms 1
Lotus japonicus genome version Gifu v1.2
Description Histone-lysine N-methyltransferase, H3 lysine-9 specific; TAIR: AT2G22740.1 SU(VAR)3-9 homolog 6; Swiss-Prot: sp|Q8VZ17|SUVH6_ARATH Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH6; TrEMBL-Plants: tr|A0A1J7GXF1|A0A1J7GXF1_LUPAN Uncharacterized protein; Found in the gene: LotjaGi2g1v0419200
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:91743422..91751275) extracted from Lotus japonicus Gifu genome v1.2.

GCAGTTACATACATCGCTATACCTATACGAATAAACGAACGAACCTGGCCATTTCTTCAGTGGAGTTCACATCAACAATC AACATCACTCTCCTTCGAATCATTCACAGCGAGCAATCGCATGTCATGGGAGTTCCAAGAAGCGACGATCACACTCTCTG ATTGCTCTGTTGTTTCTCATCCTTCAAGGTAGCTGCCATGTCGACACACTTTTTCTATTATTCTTCAGCTTTCGATCTTT CTTAACCTAATTGATTGCATGTCTTCACATTGATTCCTTTCATCATGCTAATTCTCCTATTTGTTTGTGTTGTTCCCTGC TTAAATCGTTTACTTCAAACTAGGGTCTGTTCTTAGATGCCTTCAAACTAGGATAAGGGAGCATTGTTGAATGGTTAATT TGTTGGATATACTAGAATGCTGGATTTCTTTATTTATTTTGGATGCATGTGTAATTTCGTATGTATTTCACATGTCTTTG GTTGGTACTTGGTACTTGGAACATACATGGCCTTAGAAGAGGTGAATTTTGCAAAAAAAAAATCCATTTGCTCCTGTTTC AGGTGATACCCTGTTAAAAAGGAACTAACTCTGTGATTTAAAAGAGATTTTTGTGTGGATCACTTATTAGCAGTGTTGTT AATTGCGGGTCGCGGAAAATAGCCGTAAGACAAAATTCCGCTATTATGTCAAACCCTCAAAGTGGAAAATAACGAAAAAT GGCGGTAAATGAGGATAGTAGCGCGCCCTCAGAGAGCGCTAAGCTATAGTGCCGCAATATCCGCTAGTTGACAACACTGA TTATTAGTGGTCTCAAGTTCGAGCTCTAGGCATGCAGCTGCATTAAATTCCTTTCTATAATCTTTTTCGATTCGAGTAGG ATTGCCTCTTGCGGATAATATCTGTGATGCCAGGCCAAAGAAAAGAGTTTTTTTGTGAGATGTTATTTTTCAAATATTGA ATAGTTGAAAGGAGATATATAATTTGAGGATTTGGCTGCTCTAATCTAAAGTGAGGAAGCTATTTTAGAGGATAAAGTAA ATAATTATAGTCATTGGTTCGAAAAACAATGATTGATTATCAGGGTTGTCAATAAGCGCACTATAGTGGGGCTATAGCGT AGTAGTTGTTGCGTAGCTGTGAAGTTCAGTGTAGCATCTGTTTTGGCCGCTATAGCAGAGGAAATAGCAGCCATAGCGGC GCTATTTGGCCGCTATTTGTGGCAATTGATAAAGTCCCAAAAACAACCCACAAAAAGTTCATTTTACGGCATTTCGGGGA GATATTTCAGGGTTTGTTCTTCTGAAACAAACTGAAAATGGTCTAGTTTGAGGAGGATGAGAAGGAAGTGATATTAAACT TCCATGCTTTTAGTTTTAGGTAATTTAGGTTAGGAAATACACTTAAACCTCTTGGTTACCTTGACTTTTGATGGTACTCG TATGATGTATTTAAGACGCCTATGCATAGTAGTCAATTGCGAGCTGTAGTGTCGTAGTGGAGCGGCGCGGCGCGGCGCAC CTCACAATAGCCAATAGCGGCGCTATATGGATGAAGGGAAAAATGACTCAAGCCCCTTGGTTTTAAATCGTTGGGGAACC TTTTTAGGGGCATTTTAGGACTTCTCAGTTCTCAGGGCCATTTTAGGTCAAACTCGAAAGAATGAAGCTTCATTCTTCAT TCATATTTGCAAATCCGATTTCTTTACCTTGCTTTTGAGTGGTTTTTAGCTGTGTGTTATAGTTCAAGACTTATGATTTT TATTTCTATTATGAATGTTATGAATTTTTGGAAATATTTGACATTGTTTGGTATTTATATGTATATAGTATTAAACTATT AATTATATATAGTGGCCATCCCGCTATGTGCTATCCCACTTTTGGGGCCGGCCGCTATCCGGGATTGACTACTATGCGCC TATGACTTTTTAATGTTAATTATGAGTGTCATGAATTCTGAGTATTTTTTTAATCATTTATATGTATATAGTTATATTAT ACAAACTTGGTGTTTATAGAGTGCTAATATGTCAGTTTTCAATGTTGAGGTAACCTTATTTTGTTTTGATGTTTCTCTGC AGTTACATCGCTATACGAAGCTCGCCATTTCGCCTTCCTTATTCGCACTGAACATGACTCTCCTTTGTTCGAATATTCGA GAGGCATCATAGCGAGCAAATACCTCAGATATTATATCGCTTGCTGGAGGATGTTATGGGAATTCGAAGCGACACTCTCT GATTGCTATGTTTCTCATCGCTAACGTGACACTCTCATCATTCAATTTCACATCTCACCAAGGTAGCTGGCATGTTAACA TTTCCCCTATTACTCCTCAGCTTTAAATCTTTCTTAACGTAATTGCATGTCTTCACATTCCTTTCATCATGTTAGTTCTC CTTTCTGTTTGAGCCCTATTTAGATCGTTCATTTGAACTTGGAATAGGTGTATTTTGCAAAATGTTTCCATTTGCTCCTG TTTCACGTGATACCCTGTTAAAAAGGAACTAACTTGTGATTTAAAAGAGATCTTACCACTGAGCGTGTGGATCAGGTATT AGCAGTGTTGTTAATCGCGGAAAGCCAAAAATCCGCTATGTCAAACCCTCAAGAGCGGAAAATAACGGAAAATAGCGGAT AGGGGTGCGGCGGTGCGCCCTCAGAGTGCTATGGTATAGCGCCGCAATATCCGCTATTTGACAACACTGATTATTATTGG TCTCAAGTTCGAGCCCTGGGTATGCAACTGCATTAAGTTGGTATTCAACTGCATTAAATTACTTTCTATAATCCTTTTCG ATTCGAGCAGGATTGCCTCTTGCGTGGATAAGACCTGTGACTCCAGGCCGAATGCCGAATAAAAGAGTTTTTTTGTGAGA TGTTATTTTTTAAATATGGAACAGTTTAAAGGAGATATATAATTTGAGGATTTGGGTGCTCTAATCTAAAGTAAGGAAGC CATTTTGGAGGATAAAGTAAACAATTATACTCATTGGTTCAATTGATATTGTAATAATACGTTTACACATTTATAGCAAA CTATAAAATTATTTAAAGTCAATGGCTATTATTACTTATTTTACCCTCTAAAGTGACTGTCTCACTTTAAAGAAGCTAAA TTCCCAATTTGAACATCATTGTCTCTTGGCTCCTGAGGATTGCGCTTTTTTGTTCAAGTGAGTGTGAGATATGACTTAAG AACTGAAACTATAATAGTAAAAAAAGTACCTCTGAAATTTCAACCATCTAAGGGGGGAAGATAATCAGAAGGTTAGGGGC AAAACTATGTATAATGCTGCCTTCCAAAACTTTAAAATTGAAACGTTCCCTTAACTTCTCAATATTGTATAATGTAATTC GAACACTTAAATATTATATCTTGCACTCTCAAATTTTGTTTGTTTTCGTCCCTGTTGTCAGTCTTTGGGGGCTATTAGCA GCTGTCTAGTTTAAGGGATTTGTAAATTGAACATCTTAATCTCTTCCTTTTACTATAAAAGTTGTGTTTGAGTAGGCAAG TGATATGTAAATACTTCACTTTCTTGTTTTTCTAATGTTAAAGCCTTTCTTCAATAAGCACTGTGCTTGTTGGATCTCTA GCCTCAAGGCATTTTTAACCTTAGAGTTCATTTCACCTTTGATTAGCGAATGTTAACTCTTCATGTCTCATTTTTACATC TAGTAATTATTATTTTTCCATTTATTTTGTGTTCTCCAATTTTTTGGTATAGTTTTTCATTTTCTTTTCCTGATTCCTTG CATAGCTTCCTGTTTGCAGAGTAAAAAGTAGAGTGCTGGCTCATCAGTGTATGGGGATTTGAGTTGAGTTGGGGGTCGGG GTTTAGAGAAAGAGAAGAATTTGGAGTCATCAAGAGGAATAACCCCATCAATCAACAGGGGTCATTGTGGAGAAAAATTT GGGAAGCCATTGATGGAAAATGGGGACTGCACTTTCCTGGCTCGACCCAGGTATAAGCAGCGTAAAGTTTCTGCCATTCG GGATTTCCCAGAAGAATGTGGACCATTTGTTTCAAAAAACGCTCCAGTTTCAAAGGTGGATATTGCTGATTCTGATTATG CTAATAATACAGTTCTTGAGGATAAGAATGATGAGCATGTAGAGGGTGGCACTGATAGAGTATCCAAGTGTGATAAAGAC ACTCAACATTCTGAGTTAAAAAATGATACGTTTCTCACTGAGAATCTTGACCAAGCAATTGACTGTGGTTTGATGAAGGA AAATTCTGTGGTCTCATCTCTTCAAGTGGATGAGCCTAATTTATCAAATTATGAACCTGCAAACGCGACAGTGGTGGGCA TGGATACTTTTGATACAGAGTTAGAAAGAACAGAAAAATCTGTAAAACATGATTCCGCAGCTGGTGAGGCGCCTATGATT AATGGTGAGGTGCCTATGATTGATTGTTCAAAATCATTGTCATCTGATATCAATGTTGCTTATTCCGGTGCTTGTATGGG GGAGGCTGGAACTAAAAGGTATCTTCCTCGAAAAAAAGTTTCAGCTGTCAGAGAGTTTCCTCCTTTCTGTGGACCTCATG CTCCCCGTCTTAGTATGGATTATTGTCTGAAGGGGATCTCTTCTTTGAATAACAATAGAGCGGATCAACAGGTTTTGGCT GTAGATGACAGTTTATTGAAAAAAGCGGCAACCACTGATGTTAAAGAAAACAACACCGCAGATGAATACCATAAGAGAAA GCTTGTGGACATTGTTCAAGTTGATTATGAAGGGAATGCTAATTTGCCATCAGAAAACAAAAGAGGAAAGTACATTGCGC TTCCTGAGGAAAGTAATCGCCAGATTTCAATGAAGACCAAGGCAGCTGATAAGGAGGAAAGTAGGGATGCTGTGATGGTT GAGGGAACGTCAAGGCTTGAAATTATAGTTCACCCTGAAGTCCAAAGTCTTGAGACAATGCCTTTGGATAAGTCTACTTC TCAGTGTAAGTTGAATGGAAATAGATTGGCAGTATCATCAGACAGGAAAGTAGTGCTAGGCTTGATAGCTACATCACAAT GTCCATGGAGTTTTGATAGATCTTCCACCAAATCTAATTTGTTTGGTGGTACAAATGAAGACAAGGGAGCGAAAGCTGAT TCTTTTGCGCGGCCAGACAAGTCTAAAACTGTTGTCAAGGCGTTGAAAAAGAAAAAGGGAAGTTCCCCTACTAATGATAG GTGTCAATTGGTAATTTCAGAAAAGAAGGACTCTTTTGATCCTAATGAAATTGACGAAGACTGGCAAATTGTCCCAAAAT CACATAGTTTGAATGTAAATGTTTTTCCTTTTGGTCATAACAGTTTGGTTGGTCATGAGAATGACTCAAATGTGACACGA CAAAAAGTGAGGGAAACATTGCGCTTGTTTCAAGCTGTTTCTAGAAAGCTTTTGCATGAAGTAGAAGCAAAGTCAAACGA GCGAGCTAATACTCCTAAGAGGGTTGATTTACAAGCTGCAAAGATCCTTAAGGATAAAGGGAAATATGTCAACACTGGCG ACAAGATATTGGGATCTGTCCCCGGGGTTGAAGTTGGTGATGAATTTAAATTCAGGGTGGAGCTTAATATAGTTGGCCTT CATCGCCAGATTCAAGGCGGTATAGATTATGTGAAGCACAATGGTAAGATACTTGCAACGGCTATTGTTGCATCCGGGGG CTATGCTGATGATCTGGATAATTCAGATGTTTTGACATATACAGGGCAGGGTGGAAATGTGATGAGCACTGATAAAGAAC CTGAGGATCAGAAGCTTGAGCGGGGCAACCTTGCTCTGAAGAACAGTATTGAGGAAAAGAATCCTGTCAGGGTGATTCGT GGCTATGAATCATCGGAAGGAAGGACATATGTTTATGATGGGCTGTATCGAGTTGACTCATCTTGGCAGGAAATGGGGCC ACATGGGAAGCTGGTTTACAGGTTTCGCCTGCTAAGAATCTCTGGTCAACCAGAGCTTGCTTTGAAGGAGGTGAAAAAAT CTAAAAAATTCAAAACAAGAGAAGGTCTATGTGTTGATGATATTTCTTATGGTAAAGAGCGAATTCCCGTATGTGCTGTG AACACCATAGATGATGAAAAACCCCCACCATTTACATATATAACTAGCATGATGTATCCCGATGGTTGCAATCTCGCTCC TCCTGAAGGATGTTACTGTACTAATGGGTGTTCTGACTCGGAGAAATGTCCATGTGTAGTAAAAAATGGGGGAGAGATCC CATTCAATCATGATGAGGCTATTGTAGAAGCGAAGCCTCTGGTCTATGAGTGTGGACCTTGCTGCAAGTGCCCTTCGACT TGTCATAACCGAGTCAGCCAACTTGGCATAAAGTTCCAACTTGAAATTTTTAAAACCCCCACAAGGGGATGGGGTGTAAG ATCCCTAAATTCCATTCCTTCAGGAAGCTTTATTTGCGAATATATAGGAGAGGTTCTTGAAGATAAGGAAGCTGAACAAA GAACTGGTAATGATGAGTATCTTTTTGATATTGGGAATAACTACAACAACAATACACTCTGGGATGGACTTTCTACCCTT ATGCCAGATTCACAGATAAGTTCTGCTGAACTTGTGAAAGATGGTGGCTTCACCATTGATGCATTAGAGTTTGCTAATGT GGGGAGATTCATCAACCACAGTTGCTCCCCGAATCTGTATGCCCAGAATGTTCTTTATGATCATCATGACAAGAGGATTC CTCACATAATGTTCTTTGCTGCTGAGAACATTCCTCCCTTGCAAGAGCTGGCGTATGATTATAATTATAAGATAGACCAG GTCTATGATTCCGATGGCAATATAAAAAAGAAGGATTGCTTTTGTGGTTCTTCAGAATGCAGTGGCAGGATGTACTGAGA CCTGCTTTTGGAACAGTGATATTTTGCTGCCTCAATTCTAAGGAAATTTTCATTAAAAAGTAAGTGCTGATAATTCTGGG TTAGTTAGTTATGCTTGTTTGTTTGAGTAGATAAACAGAAGATAAAAAGAGGGAAAGAACATGAATGAAAAATGAGTTAT CCCATTTGTTTGAGCTGTGAAAAGGAAAATATACCCTGTAAACTTTTTTTTTTTGTTCCCTGAAGTCGTGGAGACTATAA GGCTATAAGCATAAAATCCTTATGTGAACATCCCTATGTGAAAATACATGTTTGTTTAGGTATGAAAGTGGTAACAATAG TAATCATATATTACTTTTTTCTTTTATTTTATCTAATCAAATTACCAAAAGTAAAACTTTTACGTTTTCTCTATTTAAAC AGATAATGTTTAATTTTTCATTATTTGTTTGTTTTATCTTCCTTTTTTTACACTTACATTCAATTAGATGACGGAAATAT CTACAGTTTTATTTTATCAGGTTAGACGGATAGCTGCTTACTTGTAAATGGATAACTGTTGCATCATTCAATCTCTTGGT TTGTCCCCTCCTCCAAGTGACTTTGTTAAAGGCAATGTTGATGGAAGTTGTGATCCAGTGAATAACAGGACAGGCTAGGT GGGTGGAGTTTTTAAAGATGATAAAGGAGGATCAAAAGCTTTTGGAGTAATGATGACCCTGGTTGTCCTCTGTTTGCTGA AATTCTGGCTGTTAAGCATGGTCTTAGGGTGATTACCAACTGGAGTTGGGAGGTTCAGTTTCATCATGTTCAGAGTATTT ATATTTATAATTCTACAGCTGTTTGGTTAGCAAAGTTAGGCTCTAAATCTATTAGTGGTTTAGTTTTAGACTTTTAGTTG AGGAACCTCCCATTGAGGTGGAAACACTTATGGTGAAGGACTTGTAGATTATAATTTGTCTGTTTATTTCATTTTTACCG GAAAATTTTGAAAT 

CDS sequence (LotjaGi2g1v0419200.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGAAAATGGGGACTGCACTTTCCTGGCTCGACCCAGGTATAAGCAGCGTAAAGTTTCTGCCATTCGGGATTTCCCAGA AGAATGTGGACCATTTGTTTCAAAAAACGCTCCAGTTTCAAAGGTGGATATTGCTGATTCTGATTATGCTAATAATACAG TTCTTGAGGATAAGAATGATGAGCATGTAGAGGGTGGCACTGATAGAGTATCCAAGTGTGATAAAGACACTCAACATTCT GAGTTAAAAAATGATACGTTTCTCACTGAGAATCTTGACCAAGCAATTGACTGTGGTTTGATGAAGGAAAATTCTGTGGT CTCATCTCTTCAAGTGGATGAGCCTAATTTATCAAATTATGAACCTGCAAACGCGACAGTGGTGGGCATGGATACTTTTG ATACAGAGTTAGAAAGAACAGAAAAATCTGTAAAACATGATTCCGCAGCTGGTGAGGCGCCTATGATTAATGGTGAGGTG CCTATGATTGATTGTTCAAAATCATTGTCATCTGATATCAATGTTGCTTATTCCGGTGCTTGTATGGGGGAGGCTGGAAC TAAAAGGTATCTTCCTCGAAAAAAAGTTTCAGCTGTCAGAGAGTTTCCTCCTTTCTGTGGACCTCATGCTCCCCGTCTTA GTATGGATTATTGTCTGAAGGGGATCTCTTCTTTGAATAACAATAGAGCGGATCAACAGGTTTTGGCTGTAGATGACAGT TTATTGAAAAAAGCGGCAACCACTGATGTTAAAGAAAACAACACCGCAGATGAATACCATAAGAGAAAGCTTGTGGACAT TGTTCAAGTTGATTATGAAGGGAATGCTAATTTGCCATCAGAAAACAAAAGAGGAAAGTACATTGCGCTTCCTGAGGAAA GTAATCGCCAGATTTCAATGAAGACCAAGGCAGCTGATAAGGAGGAAAGTAGGGATGCTGTGATGGTTGAGGGAACGTCA AGGCTTGAAATTATAGTTCACCCTGAAGTCCAAAGTCTTGAGACAATGCCTTTGGATAAGTCTACTTCTCAGTGTAAGTT GAATGGAAATAGATTGGCAGTATCATCAGACAGGAAAGTAGTGCTAGGCTTGATAGCTACATCACAATGTCCATGGAGTT TTGATAGATCTTCCACCAAATCTAATTTGTTTGGTGGTACAAATGAAGACAAGGGAGCGAAAGCTGATTCTTTTGCGCGG CCAGACAAGTCTAAAACTGTTGTCAAGGCGTTGAAAAAGAAAAAGGGAAGTTCCCCTACTAATGATAGGTGTCAATTGGT AATTTCAGAAAAGAAGGACTCTTTTGATCCTAATGAAATTGACGAAGACTGGCAAATTGTCCCAAAATCACATAGTTTGA ATGTAAATGTTTTTCCTTTTGGTCATAACAGTTTGGTTGGTCATGAGAATGACTCAAATGTGACACGACAAAAAGTGAGG GAAACATTGCGCTTGTTTCAAGCTGTTTCTAGAAAGCTTTTGCATGAAGTAGAAGCAAAGTCAAACGAGCGAGCTAATAC TCCTAAGAGGGTTGATTTACAAGCTGCAAAGATCCTTAAGGATAAAGGGAAATATGTCAACACTGGCGACAAGATATTGG GATCTGTCCCCGGGGTTGAAGTTGGTGATGAATTTAAATTCAGGGTGGAGCTTAATATAGTTGGCCTTCATCGCCAGATT CAAGGCGGTATAGATTATGTGAAGCACAATGGTAAGATACTTGCAACGGCTATTGTTGCATCCGGGGGCTATGCTGATGA TCTGGATAATTCAGATGTTTTGACATATACAGGGCAGGGTGGAAATGTGATGAGCACTGATAAAGAACCTGAGGATCAGA AGCTTGAGCGGGGCAACCTTGCTCTGAAGAACAGTATTGAGGAAAAGAATCCTGTCAGGGTGATTCGTGGCTATGAATCA TCGGAAGGAAGGACATATGTTTATGATGGGCTGTATCGAGTTGACTCATCTTGGCAGGAAATGGGGCCACATGGGAAGCT GGTTTACAGGTTTCGCCTGCTAAGAATCTCTGGTCAACCAGAGCTTGCTTTGAAGGAGGTGAAAAAATCTAAAAAATTCA AAACAAGAGAAGGTCTATGTGTTGATGATATTTCTTATGGTAAAGAGCGAATTCCCGTATGTGCTGTGAACACCATAGAT GATGAAAAACCCCCACCATTTACATATATAACTAGCATGATGTATCCCGATGGTTGCAATCTCGCTCCTCCTGAAGGATG TTACTGTACTAATGGGTGTTCTGACTCGGAGAAATGTCCATGTGTAGTAAAAAATGGGGGAGAGATCCCATTCAATCATG ATGAGGCTATTGTAGAAGCGAAGCCTCTGGTCTATGAGTGTGGACCTTGCTGCAAGTGCCCTTCGACTTGTCATAACCGA GTCAGCCAACTTGGCATAAAGTTCCAACTTGAAATTTTTAAAACCCCCACAAGGGGATGGGGTGTAAGATCCCTAAATTC CATTCCTTCAGGAAGCTTTATTTGCGAATATATAGGAGAGGTTCTTGAAGATAAGGAAGCTGAACAAAGAACTGGTAATG ATGAGTATCTTTTTGATATTGGGAATAACTACAACAACAATACACTCTGGGATGGACTTTCTACCCTTATGCCAGATTCA CAGATAAGTTCTGCTGAACTTGTGAAAGATGGTGGCTTCACCATTGATGCATTAGAGTTTGCTAATGTGGGGAGATTCAT CAACCACAGTTGCTCCCCGAATCTGTATGCCCAGAATGTTCTTTATGATCATCATGACAAGAGGATTCCTCACATAATGT TCTTTGCTGCTGAGAACATTCCTCCCTTGCAAGAGCTGGCGTATGATTATAATTATAAGATAGACCAGGTCTATGATTCC GATGGCAATATAAAAAAGAAGGATTGCTTTTGTGGTTCTTCAGAATGCAGTGGCAGGATGTACTGA 

Protein sequence (LotjaGi2g1v0419200.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MENGDCTFLARPRYKQRKVSAIRDFPEECGPFVSKNAPVSKVDIADSDYANNTVLEDKNDEHVEGGTDRVSKCDKDTQHS ELKNDTFLTENLDQAIDCGLMKENSVVSSLQVDEPNLSNYEPANATVVGMDTFDTELERTEKSVKHDSAAGEAPMINGEV PMIDCSKSLSSDINVAYSGACMGEAGTKRYLPRKKVSAVREFPPFCGPHAPRLSMDYCLKGISSLNNNRADQQVLAVDDS LLKKAATTDVKENNTADEYHKRKLVDIVQVDYEGNANLPSENKRGKYIALPEESNRQISMKTKAADKEESRDAVMVEGTS RLEIIVHPEVQSLETMPLDKSTSQCKLNGNRLAVSSDRKVVLGLIATSQCPWSFDRSSTKSNLFGGTNEDKGAKADSFAR PDKSKTVVKALKKKKGSSPTNDRCQLVISEKKDSFDPNEIDEDWQIVPKSHSLNVNVFPFGHNSLVGHENDSNVTRQKVR ETLRLFQAVSRKLLHEVEAKSNERANTPKRVDLQAAKILKDKGKYVNTGDKILGSVPGVEVGDEFKFRVELNIVGLHRQI QGGIDYVKHNGKILATAIVASGGYADDLDNSDVLTYTGQGGNVMSTDKEPEDQKLERGNLALKNSIEEKNPVRVIRGYES SEGRTYVYDGLYRVDSSWQEMGPHGKLVYRFRLLRISGQPELALKEVKKSKKFKTREGLCVDDISYGKERIPVCAVNTID DEKPPPFTYITSMMYPDGCNLAPPEGCYCTNGCSDSEKCPCVVKNGGEIPFNHDEAIVEAKPLVYECGPCCKCPSTCHNR VSQLGIKFQLEIFKTPTRGWGVRSLNSIPSGSFICEYIGEVLEDKEAEQRTGNDEYLFDIGNNYNNNTLWDGLSTLMPDS QISSAELVKDGGFTIDALEFANVGRFINHSCSPNLYAQNVLYDHHDKRIPHIMFFAAENIPPLQELAYDYNYKIDQVYDS DGNIKKKDCFCGSSECSGRMY 

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
PANTHER 348 980 633 3.9E-291
PANTHER 348 980 633 3.9E-291
ProSiteProfiles 389 981 593 171.496
Gene3D 466 681 216 2.0E-76
SUPERFAMILY 515 688 174 1.59E-57
SMART 529 679 151 2.0E-82
Pfam 533 679 147 6.0E-50
ProSiteProfiles 534 675 142 52.51
Gene3D 682 958 277 5.2E-91
SUPERFAMILY 691 957 267 7.98E-75
SMART 701 792 92 3.3E-27
Pfam 704 800 97 1.4E-16
ProSiteProfiles 745 805 61 11.293
SMART 808 957 150 1.8E-41
ProSiteProfiles 808 951 144 18.243
Pfam 819 951 133 1.3E-20
SMART 965 981 17 0.0022
ProSiteProfiles 965 981 17 9.134

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).
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.
Molecular function Zinc ion binding Interacting selectively and non-covalently with zinc (Zn) ions.
Biological process Histone methylation The modification of histones by addition of methyl groups.
Molecular function Histone-lysine N-methyltransferase activity Catalysis of the reaction: S-adenosyl-L-methionine + histone L-lysine = S-adenosyl-L-homocysteine + histone N6-methyl-L-lysine. The methylation of peptidyl-lysine in histones forms N6-methyl-L-lysine, N6,N6-dimethyl-L-lysine and N6,N6,N6-trimethyl-L-lysine derivatives.
Biological process Histone lysine methylation The modification of a histone by addition of one or more methyl groups to a lysine residue.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0419200.2, 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…