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Field | Value |
---|---|
Gene ID | LotjaGi3g1v0381400 |
Transcript ID | LotjaGi3g1v0381400.1 |
Related isoforms 1 | |
Lotus japonicus genome version | Gifu v1.2 |
Description | Methyltransferase-like protein; TAIR: AT5G57280.1 S-adenosyl-L-methionine-dependent methyltransferases superfamily protein; Swiss-Prot: sp|Q9CY21|WBS22_MOUSE Probable 18S rRNA (guanine-N(7))-methyltransferase; TrEMBL-Plants: tr|I3S7K4|I3S7K4_LOTJA Uncharacterized protein; Found in the gene: LotjaGi3g1v0381400 |
Working Lj name | n.a. |
Genomic sequence (LjG1.1_chr3:77426271..77436647) extracted from Lotus japonicus Gifu genome v1.2.
GTAAAATCGTCCTTTACAAATGTCTTGCTTCTATAAAATAAAGGCCACAAATTAGGGTTTTCGTTCGCTCATTCATCTCC GAAGCAAGAAGAAGAGAAAGCAGCCGCATCCCCAGCCTCCTCCTCTTCCTCTCTGCTCACAAATTAGGGTTCGTCTTCTG CATCTCGAAATTTTCTAGGGTTTAAGTTTCTTATCGGACTATGTAATTCGTTGTTTGATTTCCTGATTTTGATGCCTTTT ATTGTGATTGTGGTGTCGCATTGTTCGGATCCCTGTTTCTGCTTTGATTCTTCAGCACTTTTTGTTTCCATTTTGAATGT CAATCTGTTGCTCTTTCTGATCAGAAATTTGGTCCAGTTTTATTTTGGATTCAGCCCCTTTTACAACAGATGAAACTTGT TTTTGCAGTAACAATTTTTTGAAATTTCTTTCAAGTCTGTTCTGAAGCTTTTGAAATGAATTCTACACAAGTTTTTATAC TATTATCAATACTAAATGTTTTGGAACACTGGTTTTGCTTACTTTCTTGTGCAGAATTCAATTAGGCGTTTTACATTTAT GTAGTTATTTGAACTGCCATTTTCTTTATGCTAGAGTATTATGCTTTGGATTGCTTTAGTGCTCTTAATGAGTTCCATCC ATATAGTGAATGATGATCCTTGCATCTGTTGTACTTGGATATGTTGAGTTTGGTTTGTAATTTGTTGATATTAGATTTCA CTCAATCATGGGGAACTATATTTCATTGTAGTCTAAATGGATTTTGTTATTCTTTTTGACTGTTCACTGTGAGGTCACAA TCTGTTCTGCAATTTACTGGATTTTGTACTCTGAGAGAACGATCTTAGATATCCATGAAGTGAATGATGATCCCTGCATC TGTTGTACTGGTAATTGTTGAGTTGGGTTTTGAATTTATTGATATTAGGCTTCAATCAAACACGGGGAGCTATATTTCAT TGTAGTCTAAATGGTTTTTATTATTCACTTTGTCTGTTCATTGTGAGGTCACAATCTGTTCTTTGATTAACTGAATTTTG TACTCTGAGAGAAAGATCTCATATATTCATTCGTCGGGAACGGATCTTCTCAACTGTAAGAAAAAATGGCCATGTCAAGT TTTACCATCTAACCATTAATTTATGTGTCTAACGATATAAGAAACAGAGAAATTATAATCAATGGTTAAGGGTGAAACTT GACATGGGTATTTTACTTTTACAATTAAGTGGATATGTTTCCCTGGTCATTTGTTGTTCCACACCTTTCTCTAACATACA GATCTAATGTTAGCTATCTTTTTCATAATCCCTACACACTATATAACATTGTAAATGTGCTTGTGTTTGACCAGGATGGA ATCTCAGGTGAAGCATGCTATCGTGGTCAAAATTATGGGCCGTACTGGGTCTAGGGGTCAAGTGACTCAAGTCAGAGTCA AGTTTTTGGATGACCAGAATCGTCACATCATGAGGAACGTCAAAGGACCAGTCAGGGAAGGTGACATCCTCACCCTTCTC GAGTCTGAGAGAGAAGCAAGAAGGTTGCGCTAGAGGAGCTCTCATGCTTTGGTTCAGGATTTGACGAACCGTTTTTGTTT TGTTTTAGCTAGTTGATGCTACTTGTTCGTGTCATGATCTTAATTTATGCATCTATTATTACTTGAATTTCATGTCTACA CTTCATGTTGTTGAATTTTGAGTAAATCTGTGCTTTGACTATAAGTTTTGTCCTTCTATATTGGCCGCATGAGACCTTGA GCCCATATGTTTAAACCTTATTAAAAGTGTGAAAATTTTCTGGACTAGTTAGTGGTTACTTTGATATAATTATTCAAAAT GGCGGTGATTTGTAATCTGCGCATGCTATGAATGGCGTTACTGCTTGTGGAGTACAGGAGTTTTTTTTGTTGTTGTCATG GATGGAAATACAGATTCAAAACTTGTGTAGGAAAGTATGAGTAAGGATCATGAGTATCTCCACCCAGTATGGATACATGC ATTGGTACCATATTTTATTTTGACCATAGTTAAAGTAACTGATTGGAAAATGATAATAATTGTACAAGTTTCCTCTCTTT GATCCAGAGAAGTATGTCGGAAAAATGGTGTATTTAGTATTTACATAGATGGATAAGTGCAATTACTAATTGTAATTTAT GTGAATTAGTTTCAATTTTAATTTTTTTGGGTCTCCCAAGCTTTTGGGACTTCCACAGATCGTTCTTGTTGATTTGGAGA AGTTTTCATTTTATGTATACTTTTTCTTGATTAGAAATTTTTACTAGTTATATCTTCAATTAAGTAGCTTCTTTTTCTTC TTGGATCATACATCATGTAGATCAATTACTTAGGTTGGTGATCATTCATGCTACTTAGGTGTATTGGTAGCACTAGTTTC TACGGTGTTAGTCCAACATAGCTTCGATTTTCTGCTTCGATTTTCTTCCTTGACTACGAAGGATGCATTTGTTTGGCTAA TCATCAAAATAATGTAGAGGTTTTTGTTTGTCTAACGAAAAGTGTAGTAGAGTAGAACCAATTTTACAAGCCTTATCAAG TCTATGCCATTGGTGCTACAAGTTTAAAAAAAAAAGGAGCTCACTGCTGAGTGGCCATGGCTGAACTGGTCTTTCTTTCT AGAACAGTGATGCCCATCAGTCTTCCTCCAAGATTTGTGTTGTCAACTTCTTTCTCAAAGTTGTGGTGTAGATGTACCAA ATACTCAAGATGGTCTTCTTTCTTTCCCTCCATGGATTTCAGATTTCCAGCAACACAAGATTGGACGCAAGCCTTATTTC TGCAGCAAGACGCCAAACCGGTTTGATTTGTTGTTTTAGCATTTGCACACAGTTTAAGAGCTAATCATTAGATTAATATT TTCACTAAAATACCCTTATTTATTTTCATTCATGTTAATCATTCCTTCCTCATTTTCCACACTCACACTACTAATTTCAC ATCATTACCAATACAATGTTAATTTTTTGACAGAACCAATACAATGCTAAGTGTGGGAAAATTGATTTGTTTATATAATC ACATCAAGTATAGCCTTTTCAATTTCCTATGCATTCTTTTATTCTATTTTTTAAAACTCTCGATCTTTCCACTGGAATTT CGTACTCTCTCCTGTAAATATGTCAAATTTTACATACTTCCAATTTTATCAACTATACATGCTTCCCTCGCACCAAAAAA ACTATTCATGCTTCCCACCAAAATTTTACCTAAATTTGAACCACTAATCATCTTTTCACAGTACTTAAATCAAAATATCT GATAGCAACTTCTTCCTTCTCTTTTAAAACTGATGTGGCTAAATTTTCATAATCTAATTTTATAGAGTCTTCAATTATTT CTTCAATTGAGTCTTCAACCCTTTCTTTTAATGTGTTCTCCATTTTTTTAACCTGTATATTTCTGCTACAGCAACCATAA CTCATAACCAATTTATAATGTGAGTGATTTTAATGTATGCTTATTTTTTCCATTGACAATATAAGAGAGTATTCAAAATT TGAGTTACTACTATAAGAGAGAAACTTGACCAGAATAATGACTTACATTTTTCGTAAATAGGGATAGTAATTAATAGAGA TAGTGGAGAATTGAGTATAGTAGGTGAGTTTATTGAGAAACTTTAAATTAATTATTCAACAAGGATATAGAGGGAAGAAA ATGAAAAATGGAAAAAAATGCATTGAATATATAAAACAACAACCATTTTGAAATTATAGCAAAAGCTAAAACAACAAACA AATTGGAACGGAGGGAGTAACTAACATAACCCTGATCTCTAGTTTTCCTTATGAATTGGACTGGACATAGGCCCGGTTCT CCATCAGCCAATCAAATCGTCCGGTCCGGTCCGGTCCGGTCCGGATGAATATTACACGGTTCTCAGTTCTCACACTCGTA TAAGACAGACTCAAGTGTTAGCAGTTCTCACACTCGTATGAGCTATGGCGTCAAGACCAGAGTTCGTAGCGCCGCCAGAG ATATTCTACGACGACTCTGAAGCGCGCAAGTACACTTCTTCTTCCCGTATCATTCAAATTCAAGCGAGTCTCTCAGAGAG AGCATTGGAGCTTCTCGCTTTACCCGACGATGGCGTTCCCAAATTGCTCGTTGACATTGGTTGTGGATCGGGACTCAGCG GTGAAACGCTCTCTGAGAATGGTCACCATTGGATTGGTCTTGACATTTCTCCTTCCATGCTCAGTATGTTTCCCCTTCTT TTTTCATTCTTTTCAAAATTTTATCTGTTTTGCATTTTTGATGATTTTTTAACTCATAGATGTTGCTCTGGAGCGAGAGG TTGAAGGTGACCTTTTAGTTGGTGACATGGGTCAGGTACAGAACAGTGTTTCTCCTTAATCAGAAATAGGGTTTTAGTGT TTATTGCTGTTGGAGTTCATCTTGAATCTAAGCTTAATATTGAGCTATGTTATAAGCAGTTGCAGTTTCAAGTTCCATGT TATTGATACTTTGTTGTGATTTTTTTTTTTTTTTTGCATTGGGTACTGATTTTTATTGCTCTTGTTTTTTGGTCTTAGGG TTTAGGGCTTCGTCCTGGAGTTATTGATGGAGCCATCAGTATATCTGCTGTTCAGGTGAGAGATTAGATTAATGAGAAAA TCAAACTAAAATGTTTATTGATTGCTGAATCAGGTGTAGGATGGAGGATATTATGCTCTATTATAATGTATCAACTTTTA AGCAGAGTTACATATTCTGAAATCCCAACTTTTGTATATTTAAAAATCATACAATGGTAATGAAGACAAATTTTAGGTTT ACGATTTATTTAGGACAACCAATAACCTGTTTTTGTTTGGGTGTGAACAAGTCATGCCTTTCTGCCTAGTTTGATTGGTT TGTCTCATTTTCGGTCCTAATTTTGGTGACTCTTATGTGATCATGCAGTGGTTATGCAATGCTGATAAATCCTCTCACAA TCCTCGATTAAGATTAAAGTATGTTCTTTTCTTATTTATTATACCGCTTTTCAGTTTTCATTAATCAATACCTGTGCATT TTGAGCTTCTTCAAACTCATAAGTATATGGAAACTTGCTCAGCTCTTCCACTTTTCTTTGACTACTTTATGTATAAGATT GGACTAAGCTGAAATCTTTCACCTTTACTCCTTTGCTCGAATAATATATAACTCCTTTGCTCGAATAATATATAATTCTC AATTTCTTTTGTAGGGCTTTTTTCACATCTTTATACAGATGCTTAACAAATGGAGCTAGAGCAGTATTTCAAGTGTATCC TGAAAATCTAGACCAGCGTGAGTTGATTTTGAGTGCTGCAATGCATGCTGGATTTGCTGGTGGTATAGTGGTGGATTTTC CACACAGGTGAGAATATATCCTACGATATTGCTGCAGCTCATTTGTTTCATAGAGAATAATGTACCTGAAAATCATTTTC TTCGTTTGTTCTGTTAATTAGCTCAATAGTCGTTCTTCCAGTACAATCAGCACTAAAACTATGATTGCTGCATTATAGCT GTAATTATAGTTTCCTGCTCAATGGAGCCATGAGACAGCCTAATGTTATCGTGAAAAGTATTCATATATTATTATTACCT TTTGCGGATATAAAGTAAAATAATTTTTCGAAACTCAAGTGTTGTGGATGTCATCCATTCATCACTTTTCTTGCCACTCC TTGATTTGCTCAACATTATTTGTGAGAACTAGCAGAAACTGATTACATATCTAGAGAACTTTCCTAGAGTGTATACGTTC CTAGCTGATAATGTACATCACACTTAAGATGAACCCCAGGATGAAAGATGGTACGAGGATGATCACAAATGTTATGTACA TTGGTCCTTTTTTTTTATTCTCTCAATCTCTCTTCACTCTTCATGTATGTATACATTTATTTCAAAGGTCACCCTTCTTG ATTCACTCCTGTTTTCCACCTTTATGTATTGTACACACTTAAAGGAAAAAGATTCATTATTTGATAGTAAAGGTTTGTGT TTTGTTAGACATGTTTTATAGCCATAAGATTTCTTTTGAAATGCATTATTTTGCCTAGCCTTCTTTTGGCATGGTGTTTC ACTAACTGAATAACAATTGTCTTGTAATAGTTCTAAGAGGAGAAAAGAGTTTCTTGTTCTCACATGTGGTCAACGATCAA TGAATACATCCTTGTCCATGGGTAAAGATGGAGATGAGGAGAGTTGCTCTGATGATGACAATGATGAAGATGAAGAAAAT CAAACTGTGAGTCTTGCTACATTTATGAATTCAATTCAGAATGTCCGAACTTTTTGTGAAAAATATTCCTACTAGAAGTA TTGCTTCAATTACCAAATTCCTATTCATAAATTCATTCTAGATTTTGAAAATGCAAAATATGTTAGATGCCTTTTTCACT TGTCCTTTACTCATGGGCTTATATCTAGGTTACTTTTTTGGGCAGGTGTGTGTCTCCGACAGGCATAGACCCCGAAAGAA ACAGAAAAATAATAAGAGGGGCAAGGGGAAGGAATGGATTATGAGGAAGAAGGATCAGATGAGAAGAAGAGGAAATGTTG TTCCTCGAGATACCAAGTACACGGGTCGGAAACGAAAGGATCGCTTTTGATCTTGTTTGGATTTTGTCTGTGATATTTAT TATTTGTTAATGGGCATTGCGGATTACAACTTTCTCCTGATCCTGAAGGATACTCTTACATGTTTGTTCCTGCAATGAAA TATGGAACCTTAGGGATATTTTTGTGTACTAATTATACAATATGTTGGTAGAGCAACTTTTGAGTGATGAGTAATTATAG TTGTGTCTGTTTCACATTTTTACCAATATCGAATCTTATTGTAATTTTTCACAGGTCTCAGGTTTATCACATTTCACATT ATGTGTAGTTTTCATGCCATTGCACAACATATACACAAAGTAAATTTATTTTCTTCATTTGCCACTTGATGTGACCACCA ATACAATTGAGTGATGCACAGAAGTAATTTTGATTTCTTCATTTGCCACTTGATATGACCACCAGTACAAGTGATTGGTA TAAGATTCTTGTTTAAATTTTTAGATTATTGTTCTGATGATATATTACAATATTAGATGATCTTGTGCAATTTTTGAATC AAAGCTGAATCCAACATTTAGGTTAAATGAGAAAATTTGGGAAGTTGTATTTGTGCCATCCGTATTTGTGCCACACCAAA AAAAAAAAAATAAGGATCGTGCTTCTTGTAGTGTATGGCGACGGTGAAATAGCGGCCAAAGGATTTGGTGTTTGATTTTG AAAAAAGAAAAATACTGGCCAGGTTTTATGAGAAGTTGAGGAATGAGAACTCTGTTTATTCATGCAACAATCTAAACTTA CAAGATGTAAATAAAAATCCTTCACTAACAAAAAATGCTCTTCAGATCAAGAATTTTTATTTACATTTTCATATGCTTAA TTTAATGTTACACTACAACTAATTATTGGCATGACATGCATGAAGAGTGTTGCAGATCCCTCTTGCTCGAGAAAGAGAGG TGTGTATGTGTGTGTGTGAACTACATCTACATATAGACAACAACACAGGCCTTTATTGCTCTTTATTCACAGTCCTCGTC TTCACTTGCTGGATTCGATTCTCTTTTTCCTGTAGAACCTCATGGAGTTTTTCAGCTGTATAGGGAGGAGGCACTGTACA TGGAGGTGTATCACTTGGTGAATTCACCATAGACTCCACCATAAAATGCTTCCTTGCCCCGCGCAGGGAACAGGCCATAC TTTCAGAACAAACCTCAACAGCTTCTGCAGGTATTGTTGGTTTGAATTTCAAGAGCTTTGCATAGTTATTTAGCAGGTGA AACATGTAATCATACACAAACTTCATCTTTAAATTCTCAATGATGTAGTCAGTTCCTCCTTTGCCAATAGCCTCTGCCTG CAATCAGGGACCAAACCAGAAAAAAATGGGTGAGAGGGGGCGGAAATTTAACATATTAAACATATATATTAAAACGTGTA GTGAAATACAATTAAAAATTTTAAATCATGAACTCAACATGTGTTTGTTATTTTGTAAGTATGAAAATCATCTAGAGACT GAAAGAGGAAGAGGGTAATTACACTGTCAAGGTGAGCATTGCCCCAATCCACAGCAAACTTAATCTCTTCACACATGTTT TTGGCGCTGACAGGCCAGTAGTGCAATAAGGGTACCATGCTTCTTGTAAAGAAGTCATAAAACCTAGGCTCTATGAACAT AGTCATGGAGTCACATGCTATTATGTACTTTTCACTCACAGACCATGTGGCCCCTTCTGCATAAATCTTGTACCTTAATA ATGCAGACAGAATTCATAGTTCAGCAAGTAAAATCTAAAGATTATAATATGCTACCAATTTAAAATTCAGACTAAGTGCT TGAAAACATTTACATACCTGTAGTCACATTGATCTTCTAGTTTCGTGTCCTGAAATTGGTTAGCTTTCTCCTGTTGCCAT TGCTGAAAAAGGAACAGAAAATCTTAATTCCATCTTGAAACAATTAATGCAACCACTGGAAACATAAGTTAGAGGATTAG TGTATGTTTGGAAACTCTTCTACAATTGATTCTGAAGTCACGATCAACTCCAGGGAGAAACTTATCTAGTCAATAGCTTC TAGGTTTCAAAAGTGATTATGATGAATGAGAATCCGATCCAATCATGCTATTAAAATCATATATTTACCACGCCATATAT CCGGGCATTCCAATCATGTTCGTCTGAGGCGTTACACTGGCTGAGTACTTTCCTGATAGGAGACACTGCTGGGTTGCCCT TCCAAAAAGCATAGGGTATCCTATCCTTCCATTTGGCCTTATTGTTCCCTTTTTGTATATTCTGCAATGTTGTTTCCCAT GGTCTTATGTGGAGCTCAGCCCTAGTAAAAATATTGTACAAGTATAAGTGAATTGTTTGGAAATCTTTCTACAATTGATT CTAATGTCCAAATCAATTTTGGGGAGAAGCGTATGGGCATGTTTGGATCAGCTATGCCTAAAATTGATTTTGATTGAATA AATTTTGGTAAAATTGATTATGATGATCGTAAGTTGGAAGTGATGTGATTTATGTTTGGATACCTTGATGAGAAAAGTGG ATTTTGTAGGTAATATTGTGAAATTCAACTGTAAAATCTCAGAATAGAGTATATTCAATGTACTAACTACTATCTCTAGC TTCAGCAAAATTGATTTCAGGGATCAAATAAATTCTCCAGAATGACCCACAAACATCTATATTGTCATCCAGAATTGATT TACCCTATATCAGAATTGATTCTAAGGTTTCCCAGCGGGGAACCAAACACTCATTCAGTACCTTTTGAGTATCAGAAGGT ATAAGCTTTGTTTTGCTTTTGATCAATTTTTGGAAAAAATAATGAAATGGCATGGTATCTTGAAACTTGGATATGTGACA TAAAACACATAGTAGATGAAATGAAAAAGGGAATAGAAGCTTTACCAACCCCAGAAGGTCCAATCAGGGAATACAATGTC ATATGAATTTTCCTCTCCACAGTAATGGAACACAGGTGGAGGTGACAAGGCTTGTGGTCCTTGAAAAGCTTTCTTTTGCA CCACAGTCTTATCTCCACATGAAAACATTAGCTCCAAATCTGGTATCTTTCCTGGGTATAGCCTTAGAAGCTGCAAAATC CCCCATATTGTGAACACATCCCTTGTCTGAAAGGATTTGGAATACTTTTCCACATAAGCTTTTCCATTCACAACCACAAG CCTGAAATGTGAGATGTTTTTGGCTCTTTCCACCATGTCCCTTGTGATTCCTGCACTCTCCCATGGTTTAAGATCTTCAT GGATCCATCTGAAGTACTCTGGACATGATGCAGCTGATGAATCATCATAAAGCTCAATTTTTTCAGGGTAGTATGCTGGA CAGGTTGGTGCTGAGGTTCCATTGAGGCAGTACAGTGGGAATTGGGGTTGTTGCTTATTGAACACTACAATTGTCTTGAG GATAGCTGTGCTTGTGATTTTGGACTGAAATATAAAATAAACCAGTCATGTACACTTATTCAGTTTTTGACACGTTCGGA AAACTGTAGTTTGTAACTCCCATTCCCAACAAATAACTTTCACGTAGACCAACACTCGTTACATAAGTCTATAATAATCC ACTAAAAATGCACATGTAAAAATAATCAATTAATCATTGGGTCATCTTGTTTTAAGTCAATAATCATTGGGTCACCTTTG TCATACAAAAATACTCCTTTGATACACTAGCACAAGTCGCACATTTTTTTATATTAGCCCCTTTCATTCACAAAAAAAAA ACTAGGCACAATTTGTAGACTACTTTTTTTTTTAATACTTTTTTTTAAATGTTTTTT
CDS sequence (LotjaGi3g1v0381400.1) extracted from Lotus japonicus Gifu v1.2 CDS.
ATGGCGTCAAGACCAGAGTTCGTAGCGCCGCCAGAGATATTCTACGACGACTCTGAAGCGCGCAAGTACACTTCTTCTTC CCGTATCATTCAAATTCAAGCGAGTCTCTCAGAGAGAGCATTGGAGCTTCTCGCTTTACCCGACGATGGCGTTCCCAAAT TGCTCGTTGACATTGGTTGTGGATCGGGACTCAGCGGTGAAACGCTCTCTGAGAATGGTCACCATTGGATTGGTCTTGAC ATTTCTCCTTCCATGCTCAATGTTGCTCTGGAGCGAGAGGTTGAAGGTGACCTTTTAGTTGGTGACATGGGTCAGGGTTT AGGGCTTCGTCCTGGAGTTATTGATGGAGCCATCAGTATATCTGCTGTTCAGTGGTTATGCAATGCTGATAAATCCTCTC ACAATCCTCGATTAAGATTAAAGGCTTTTTTCACATCTTTATACAGATGCTTAACAAATGGAGCTAGAGCAGTATTTCAA GTGTATCCTGAAAATCTAGACCAGCGTGAGTTGATTTTGAGTGCTGCAATGCATGCTGGATTTGCTGGTGGTATAGTGGT GGATTTTCCACACAGTTCTAAGAGGAGAAAAGAGTTTCTTGTTCTCACATGTGGTCAACGATCAATGAATACATCCTTGT CCATGGGTAAAGATGGAGATGAGGAGAGTTGCTCTGATGATGACAATGATGAAGATGAAGAAAATCAAACTGTGTGTGTC TCCGACAGGCATAGACCCCGAAAGAAACAGAAAAATAATAAGAGGGGCAAGGGGAAGGAATGGATTATGAGGAAGAAGGA TCAGATGAGAAGAAGAGGAAATGTTGTTCCTCGAGATACCAAGTACACGGGTCGGAAACGAAAGGATCGCTTTTGA
Protein sequence (LotjaGi3g1v0381400.1) extracted from Lotus japonicus Gifu v1.2 Proteins.
MASRPEFVAPPEIFYDDSEARKYTSSSRIIQIQASLSERALELLALPDDGVPKLLVDIGCGSGLSGETLSENGHHWIGLD ISPSMLNVALEREVEGDLLVGDMGQGLGLRPGVIDGAISISAVQWLCNADKSSHNPRLRLKAFFTSLYRCLTNGARAVFQ VYPENLDQRELILSAAMHAGFAGGIVVDFPHSSKRRKEFLVLTCGQRSMNTSLSMGKDGDEESCSDDDNDEDEENQTVCV SDRHRPRKKQKNNKRGKGKEWIMRKKDQMRRRGNVVPRDTKYTGRKRKDRF
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 |
---|---|---|---|---|---|---|
PANTHER | 1 | 291 | 291 | 9.4E-142 | ||
Gene3D | 2 | 210 | 209 | 2.0E-56 | – | |
SUPERFAMILY | 13 | 208 | 196 | 6.75E-26 | ||
CDD | 55 | 162 | 108 | 9.36827E-9 | – | |
Pfam | 56 | 159 | 104 | 7.6E-10 | ||
Pfam | 202 | 288 | 87 | 2.0E-22 | ||
MobiDBLite | 211 | 291 | 81 | - | – | |
MobiDBLite | 221 | 235 | 15 | - | – | |
MobiDBLite | 256 | 291 | 36 | - | – |
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 | Methyltransferase activity | Catalysis of the transfer of a methyl group to an acceptor molecule. | ||
Molecular function | RRNA (guanine) methyltransferase activity | Catalysis of the reaction: S-adenosyl-L-methionine + rRNA = S-adenosyl-L-homocysteine + rRNA containing methylguanine. | ||
Biological process | RRNA (guanine-N7)-methylation | The addition of a methyl group to the N7 atom in the base portion of a guanine nucleotide residue in an rRNA molecule. |
Expression pattern of LotjaGi3g1v0381400.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.
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