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LotjaGi1g1v0596400.2

Overview

Field Value
Gene ID LotjaGi1g1v0596400
Transcript ID LotjaGi1g1v0596400.2
Related isoforms 1
Lotus japonicus genome version Gifu v1.2
Description Tyrosyl-DNA phosphodiesterase 1; TAIR: AT5G15170.1 tyrosyl-DNA phosphodiesterase-like protein; Swiss-Prot: sp|Q8H1D9|TYDP1_ARATH Tyrosyl-DNA phosphodiesterase 1; TrEMBL-Plants: tr|G7KVX8|G7KVX8_MEDTR Tyrosyl-DNA phosphodiesterase; Found in the gene: LotjaGi1g1v0596400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:113581180..113589058) extracted from Lotus japonicus Gifu genome v1.2.

AGTGTTGAAGATTTCGAGTTCCATTTCCATGTCTCACTCTCACTCTCACTCTCACGTTGGCTACTTGGTTCCACTGAACC ACAATTTAGACGAAGAACCCTCGCTTCCCAAGCTACCCATCTCAGGCGGCGCTAACCTCATCGGACGGAACAACATTGCC GTCTCGGACAAGAGGCTCAGCCGCAACCACCTCACTCTAACCGCTTCTCCCGGCGGCGGCGCCGCTAGTTTACTTGTCGA GGGGACCAATCCGATCGTCGTCAATTCCGGGAACAAGAGAAGGAAGCTCAACTCTCTTGAATCAGCCACCGTTTCTGATG GCGATGTCATCGAGCTCATTCCTGGTCACCATCTTTTCAAATACCAAGTGTTGCCTCGTCGTGGTGGTGGTGGTCGCAAC AACAATCAACCTCATCATGTGCGTGATTGATTGATATTTGATTGTTACTGTGTTTATCTATGTTTGCGTGAATTGAATTG CTTTTTTTTGTGATTTGTGTGAAATGTGCAGGATGATGAGGTTGAGAGAGGAAGAAATGCAGTAGTGGCACAAAATGCGG GGCGTTCTCGGTTGTGTGAAGAAGAGGCGATTCGTGATTTTCGCGTTCCTGAGGACGAATTGCCTTGTACCTTTCGACTT TTGCGTGTGAAAGGGTTACCAGCTTGGGCAAATACTTGTTCTGTTTCAATAGGTGATGTTATTCAGGTAGGAAATGCTAG TTATATGATATGGAATGTTGCATTTTCATGGATTGAATTTGAATGTTTAAGCATGATGCAGTGCTTCAAGAGAATGCTTG ACTGTTTTAATTATTGGCTAAAAGATACTTGTTGATTGATGTATTTCAATGCTTATTACTGGTAGGGGGATATTCAAATT GCTATCCTTTCAAACTACATGGTTGACATTGACTGGTTAATTCCTGGTGAGTATTTTGCATTTTTTTTGGTTCCAGGTTT CACATGTAACTTTTATTAGAGGAGTTAGATTGTACACTTTCTGTTAATGACATTTACTGGGTAGTTAGTTTGTTACATAA TTGTAATTAGTAGGTAAAGTTAGTTACATAGTACTGAGTAGTGTGTGTATATATGTATTTTTTTTTTGATAGGCAAATGT TAGTTGTTAGTAATGTTAGTAAATTAGTTGGTTTGAACCCTGGCCTCTTCACCCTAAATTCCCCCAACTCTTTTGTCCCC TAGCTCTTACCGCTTGAGCTAACCCTCGAGGACTACTGAGTAGTATATAACTCTACCATTTACTGTAATACATGTTGTAC AATTCACTTTTCTGAATAGAATATTTATTTCAAGTTTATTACCTTTCTCTTCATTTTTTTATACCCTAAGTTTCATAGCT TGCATTCTGACATTTGTTTTGTCATTGACACTGCTCTGAGATGCTACACAAAATATTCAGAAGTTACTGTTTCTTTGTTC TATATTGGAATTTTTTGAGAAAGTTGGGTTGTTAATTCTTTTCTCAGCCCTCCTACTGGTATATAATGTATAACACAATA GAAACAGCCAGTTCCACGTCTCTCCAGGTCACGAATGTTGTACCAGTATAGCACATGCTTTGTCTTATCACTTATGCTTT TTATAGGGAAAATTATACTATTGTACTGTACATATTTTAACATATCCAAAAGGGGATAGTGATCAATCTATCCACGATGC ATTACTACTGGCAGGTCTAGTGCTATAAATCTGTGAATTTTGATTGAAGTTCTTTCATTTCTTATCACCTTCAACTGAGT TTTTCTCCTATTTTTTCTTGGTGTAGCATGTCCTGCACTTTCAAAAGTTCCCCATGTGCTTGTTATTCATGGAGAGAGTG ATGAGAGGGTGAATTACTTGAAGGTTTGTCCTAGATCTACTTTATTTGGCTAGCTTCTTTGCTTGATTAAAGTTGTAAGA CAGGTTAAATGAATATTAACTCGCTACTTCTATGACTGGTAGAGAAGCAAACCTGCAAACTGGACTCTGCACAAACCGCC ACTGCCGATTTCATTTGGAACACACCATTCAAAGGCCATGCTTCTTGTATATCCTCGAGGAGTAAGAATCATTGTGCATA CAGCAAACTTAATTCATGTAGATTGGAACAACAAAAGCCAAGGTCTGTGGATGCAAGATTTTCCATGGAAAGATCAAAAT AGTCTAAGCAAGGGATCTGGATTTGAAAATGATCTGGTTGAATATCTCAGCATGTTGAAGGTATATACATTGTCCTTTTA TATGTCAACAACTAAACAAAAATCTTAAGAAAAAAATGGGGCTTCAACCACATCGATGTGACAAACAATTGGACTAAATA TATTTTATTTGAGTCAAACCCATTTGGAAAGAATCTGCTGTCATTTCTAGTTTTACTTTTGAAAAAGCTTTTACTTCGAT TAAATCAATTGTGGTATTTCTTCCTTGTAGGCACTTGTTAAAACCTTTCAACTTAGTTTAGGTGAACGTGTTTCCTGAGT ACTTACATTACATGGCTTGTGAAAATTAATTAATTGACCACAGAATTTGACTTTAATCTTGTTGATTGATGAGTGTTTTC ATTAGTTTTTCTATTATGACTACCCATACTATGCCCATCGTGATTTTTTTGGTGGTTCAGTGGCCAGAATTCTCGGTTAA GCTTCCATCTCATGGAAACTTCAGTATATGTCCATCTTTTTTCAAGAAGTTTGATTATAGTGATGCAATGGTATGTTTTC CATTCCCTGCTCTTATATTACTTCCTTTGTTATCAAAAGGCTATTACTTATTAGTTAAATGTTATGTTGCAAAATTTGTT ATATTTTTAGCTACTTAGAATATATGATTCTGTTTGCATTATATTCAGGTTAGATTAATTGCATCTGTACCTGGATATCA TTCTGGTACTGGTTTGAAAAAGTGGGGACATATGAAGTTGCGTTCACTGCTCCAAGATTGTACATTTGATGAAGAGTTTA AGAAATCACCCCTTGTTTATCAGGTGCTTATATATATATATATATATATATATATATATATATTCATTACATTATCTTCC TACTTATGGTAGTAAAGTTCTGACTAAAATGTATCTTAAGTGTCAGATTTTTAGAAGGTGCAATATTAATATTCAGTTTG TTGATATCCTAAACCTGTAACTGCTGCAGTTCTCCTCCCTTGGTTCTTTAGATGAAAAATGGATGACTGAGCTGGGATCA TCATTGTCAGCTGGTCTCTCTGAAGATAAAACACCCCTTGGTATGGGGGAGCCTCAAATAATATGGCCTAGAGTAGAAGA TGTCAGATGCTCATTAGAGGTAAAGTATATAGGTTTTGTGGACTATTGTTTTATTTTGTGAGAAAAAAACAATTAAGTAA AGGTTTGCATTTCATGGTCAATTTAAAAGAAAATTACTTTGTTGACTATAGTCAATTATTTATTGACTTATTATATGCCT ATTTTATTGCATCTGGTTAAAAACCTATTGAATTTTGTGATGCACTCTTAATAATTTTCTCTAGTATTAATGAAAATAAA TCTAAATCATGTATGTCAGATTCACTAATGAGCTTCGGCAGCATACCTAAGTATCCAGATCTAGGCTGCACTGTAATATA TTGAATCCCCAGATTTTACCCACTTAATTTCCAAAGAGCTAGGCATGGACCCATTTACCTTGTTCCTATTTATATAAGTC AAACTTTGGAATTTTTTAATTATAAGTTTGGTTTTCTAGTTGCAAAAAATAAAGAGTAGAAAGCTCAACATTTATAATAA TTGGAAGCTACATTACAATATAGGAAATTAGCAATATTTTGTAAATGTTTATTATATAAAATCGGTAAAAATATATGTGT ATAATGTGGGACAGGTAGCATAAGACCTAGACCCGCTAAACTATACCCATAGCTGGGCCCTGGTTGGTAATAGTCATCAG GTACCTATTGCATCTGGGTTCAATGTTCATCCTTATTTCACTTCATCAAGGGCTTTTGGTGCTAACTTGATAAATGATAC CAACGTTTCTTGCCTGTAAAAACAATTGAATGGTTTGAACGATTATTTGAAGTTTTTTTCCAGTTACCATATCCTTGATT TCTGTCTTACATAAATATAGATGTGGATCTTTCTGAGACAAAGTTTATGCCTTTTGTTTGTTTTGTAGGGCTATGCAGCT GGAAGTGCAATTCCAAGTCCTTTGAAGAATGTGGAGAAAGCATTTTTGAGGAAGTATTGGGCGAAATGGAAAGCAGAGCA CACTGGTCGTGAGTATGTTTTATCACTCAATTGAAATTATAATAGGACTTATTAATATTGCTTTTTACATGAATGCTTGA TGGGTCATTGACCAATGTTTATGGAAGGAGAGGAAAGAAACATAAAGATAGCTAACAGCATAAAAAGCTCACTATGGTAT GAGGGGAAGGATCTGCGGGAGAGGGTTATTGCTTAATTAGAGGAAGAATAGGAGGCCATTGACTTGGGAAACAGGTTAGA AGTGTTTTGGTGTCACTTTCATGAAAGGACTAAACTTACCAAAGTTGATTGTCATTTCATTAGAGAAAAAATCGCCAGAT ATCATTAAAACTTCTTTTATGAGCCCTAAGGATCAACTAGCTGATATGCTTACCAAATCTTTATGGGATCCTATAATTGC ATTCGTATGATGGATGCGTATGATGGATGCTCCAACTAATAATCATTAGGCTTAATCCAGTTTTTGGTCCCCAACCTTTG TCATAAATATGGCTTTAGTCCCTCGTCGGAGTAAAGGTGGGGATTGGTCCCCAGTTTTTTGCAAAATCATTGGTTTTGGT CCTTCCGGCCGATTGGGTCAACGCCGGAGCTCCGGCAGCTGATGTGCCCTTGCCACGTCAATTAGTGAGGTCCAGATGGC TTTTTTTTTCTTTTTCATTTTAAAAAAAACCTAATGAATTTAAAAAAAATAAAATTGAAAAAAATAAAAAATCTTAAACA GAAACCCAATTTTATCTTCATCTTCAACATTTCTCAGATCAAGAAGCCCCACCCCAGATCATTCTCAGATCATTCTTCAT CTGCAACTGAAACTCAACCTTCACCCCCACCCCCAAACCGCAACTCCACCCCAACCCCTCACCTGCAACCAAAACCCCAA CCCCCCACTCCTCATCTCCACCCTCTGTGGCAGATCAAGAAGCTGATCTTCGAACCTTCGATATGGTGGCTTGGTGATGC AAGCTTTGATCGAAGGAGAGATGAAGGTCGTGGTGGCTTGGTGCGGTGAGGGTTTGTCAAACGCGCACCACCGCCACGTT TGTGCTCTGAAATCGCGCCGCCACCATCATCTTCATGGAGGCCAGCCACCGTAGTGTCCAGATCTGGGTTGGGGCTTTAG GGATGGGGTTTCGATTGGATCTGGGTTGGGGCTTTGAGGATGCCATAGCCATGGTCTTTTGATAGTGAATAAAAGGTTGG ATTTGTGGGAATGGGTTGTTAAAAGTTGCGATTTTGAGGAAGAATCAGTGGCTGTTGCTACTGGTCTTGTGGAATTTGAT CACATTTACTCTTGGAGACATGCTTACATCTACGCACATCACTGTCTCTTCTTCTTCCTTCCTTCTAAAGTTCTCATCTT TTTTGAGTTTCATTATTTGGGTCTTCATCAATTTGCATAATCGTAGCAGTTTCTGGGATTCTTTTTCATTTTCATTTTTT TTAAAATCATGGGTATTCAGGTTTGGTTCATTAACTTTGAGGCCAAGTGCGTATTGGTAAATCATTTTGTTGTTGTATTG GAAAATCTTCACGTGGTTAGATTTATTCAGTGTAGTCCAACTGCTGTAATTTGCATCCAACTTCTTCAGTGTGCTGAAGC AACACAATTATTATTGAATCAACCTTCTGCATAGAAAAACAATTGCTTTTCTTTTTTATGTTGACCTAATTTCTAAATCA ATTTAAAAAATGTATTAGTAAAATATTTATATTTAAAAAAATTAATGTTTTAATTTTTTTAAATGAAAATGAAAAAGAAA ATCCAGCGAGGCTCATTAATTGACGTGGCAAGGGCCACATCAGTTGGCGGAGCTCCGGCATTGACCCAATCGGCCGGAAG GACCAAAACCAATCATTTTGCCAAAAATTGGGGATCAATCCCCACCTTTACTCCGGCGAGGGACTAAAGCTATATTTATG ACAAAGGTTGGGGACCAAAAACTGGATTAAGCCTAATCATTATATTAGAAAAACAGCTGTCATTTTCAATTTGGGTGGGA TTTGTTTAGAGGTAGTGAAGTAGTCATGAAAAAGTGTGTGGGGACATTTTTGGGATGCGGAATTAATTGAGAGGAGGGAG AGACACCTGGAGATTAAGGAGAAGATAACATATGTTGTATATCCCTCATCTCTGCCTCAGTAGTCAGTATCCATTTGCTC ATCTCTGCCTCAGTAAAGATAGGTTTTCCACATTTTCTCCGATCTAGTTCTGTTGCACATCTACTTGGAAACATTGAATA TGTCTCACAAGATCTTATGTTTTGGAGATTATTCCAAACTTGTCTAACCAATTTTACTTTCTGTGCTGTTTCAGCCGTGC AATGCCCCACATAAAAACTTTCACTCGCTACAACGGTCAGAATCTTGCGTAAGAGCTTCGTTAGACCTTTTCTTCTATGA TCTTCAATTTCCGATTTTGTTGATTTTTTTGGTTATTCAATGTACCAAGTCATACTATAGATAGTTAACAATGAAAACAC CATCTTCCGAAATAGTTGGTTCTTGTTAACTTCAGCAAATCTGAGCAAAGCTGCCTGGGGAGCTCTTCAGAAGAATAATA CTCAGTTAATGGTTCGGTCATATGAGGTACATTATGCTTGTCAGACTTGTTATTATTGGCAGTTCAGACTCAAGAATTGA TCATCTTCATTGTTTTTATAGTTTGTCTACTGAGATACAAGAATTTGAAGATGCGAAAAAAGAGCGATTTCTCTAGTTAT TGTTCCTTATACTTAGGGTATTGCAGTCAAATGCATATTATTCTGTTTTCACTTTTCAGAGGTTGCACTAAACAACATTT TCTGCATATTTCCTTGCAGTTGGGAGTGCTCTTTCTACCATCATTATTGAAACGACGCGGAACTGGATTTTCTTGTACTA GTAATGTTACACTATCCGAGGTAGCTGATATCCATGCTCTTCGGTGTGATTTATGCTTGACATGGTTAAAATTGAATTGG TTAGGGGGAAGGGATCTTCTGGTCACCTCCCTGACCATGAGAAATGGAAAAGGAGAAAGACACCCATGCTAACAAAACTA AGTATTACAGGATAAATGTCCAGCACACGAAACTTCTGAAATGAAGAAAACAAAACTGGTAACCTTAACTGGGTTGACAA TGGAGACTACACCTTCATCATCTGAAGTTATCATCCCATTGCCAGTGCCCTACGAGCTCCCTCCCAAGCCTTACTCTTCC GAAGGTCATTTCGTGCTACTCGCCTATTTTAAGTGTGCTGTTACGTTTTGAGTCTGTTTGGGTACAGGCTTATTGGATTT TATTGGAGTATATCTACTAAAAAAAGCACTGAATAAACTCCAATATGTGCTCCTTTATTTGCATCCAAGCAGGTTCCTTA CATGTCTTCTAATTATCATTTCCCTCTGCAGATGTGCCTTGGTCTTGGGACAGGCGGTATACCAAGAAAGATGTCTATGG TCAAGTTTGGCCTCGGATGTAATCATATCAAGATAGATGACATTCTTAGTGTACATATTGATTGGTCCTCTCCCCTTGTA CTAATTCAATTTTAGAACATGAATTGACTTTAAGAACATTGCACCGATTTTTCGACCCAGAGATTCCAAGTGCATGTTTG TGTTTTACATGAGACGAACGAATTTCATTTTTCATTCCA 

CDS sequence (LotjaGi1g1v0596400.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGTCTCACTCTCACTCTCACTCTCACGTTGGCTACTTGGTTCCACTGAACCACAATTTAGACGAAGAACCCTCGCTTCC CAAGCTACCCATCTCAGGCGGCGCTAACCTCATCGGACGGAACAACATTGCCGTCTCGGACAAGAGGCTCAGCCGCAACC ACCTCACTCTAACCGCTTCTCCCGGCGGCGGCGCCGCTAGTTTACTTGTCGAGGGGACCAATCCGATCGTCGTCAATTCC GGGAACAAGAGAAGGAAGCTCAACTCTCTTGAATCAGCCACCGTTTCTGATGGCGATGTCATCGAGCTCATTCCTGGTCA CCATCTTTTCAAATACCAAGTGTTGCCTCGTCGTGGTGGTGGTGGTCGCAACAACAATCAACCTCATCATGATGATGAGG TTGAGAGAGGAAGAAATGCAGTAGTGGCACAAAATGCGGGGCGTTCTCGGTTGTGTGAAGAAGAGGCGATTCGTGATTTT CGCGTTCCTGAGGACGAATTGCCTTGTACCTTTCGACTTTTGCGTGTGAAAGGGTTACCAGCTTGGGCAAATACTTGTTC TGTTTCAATAGGTGATGTTATTCAGGGGGATATTCAAATTGCTATCCTTTCAAACTACATGGTTGACATTGACTGGTTAA TTCCTGCATGTCCTGCACTTTCAAAAGTTCCCCATGTGCTTGTTATTCATGGAGAGAGTGATGAGAGGGTGAATTACTTG AAGAGAAGCAAACCTGCAAACTGGACTCTGCACAAACCGCCACTGCCGATTTCATTTGGAACACACCATTCAAAGGCCAT GCTTCTTGTATATCCTCGAGGAGTAAGAATCATTGTGCATACAGCAAACTTAATTCATGTAGATTGGAACAACAAAAGCC AAGGTCTGTGGATGCAAGATTTTCCATGGAAAGATCAAAATAGTCTAAGCAAGGGATCTGGATTTGAAAATGATCTGGTT GAATATCTCAGCATGTTGAAGTGGCCAGAATTCTCGGTTAAGCTTCCATCTCATGGAAACTTCAGTATATGTCCATCTTT TTTCAAGAAGTTTGATTATAGTGATGCAATGGTTAGATTAATTGCATCTGTACCTGGATATCATTCTGGTACTGGTTTGA AAAAGTGGGGACATATGAAGTTGCGTTCACTGCTCCAAGATTGTACATTTGATGAAGAGTTTAAGAAATCACCCCTTGTT TATCAGTTCTCCTCCCTTGGTTCTTTAGATGAAAAATGGATGACTGAGCTGGGATCATCATTGTCAGCTGGTCTCTCTGA AGATAAAACACCCCTTGGTATGGGGGAGCCTCAAATAATATGGCCTAGAGTAGAAGATGTCAGATGCTCATTAGAGGGCT ATGCAGCTGGAAGTGCAATTCCAAGTCCTTTGAAGAATGTGGAGAAAGCATTTTTGAGGAAGTATTGGGCGAAATGGAAA GCAGAGCACACTGGTCGTGACCGTGCAATGCCCCACATAAAAACTTTCACTCGCTACAACGGTCAGAATCTTGCGTAA 

Protein sequence (LotjaGi1g1v0596400.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MSHSHSHSHVGYLVPLNHNLDEEPSLPKLPISGGANLIGRNNIAVSDKRLSRNHLTLTASPGGGAASLLVEGTNPIVVNS GNKRRKLNSLESATVSDGDVIELIPGHHLFKYQVLPRRGGGGRNNNQPHHDDEVERGRNAVVAQNAGRSRLCEEEAIRDF RVPEDELPCTFRLLRVKGLPAWANTCSVSIGDVIQGDIQIAILSNYMVDIDWLIPACPALSKVPHVLVIHGESDERVNYL KRSKPANWTLHKPPLPISFGTHHSKAMLLVYPRGVRIIVHTANLIHVDWNNKSQGLWMQDFPWKDQNSLSKGSGFENDLV EYLSMLKWPEFSVKLPSHGNFSICPSFFKKFDYSDAMVRLIASVPGYHSGTGLKKWGHMKLRSLLQDCTFDEEFKKSPLV YQFSSLGSLDEKWMTELGSSLSAGLSEDKTPLGMGEPQIIWPRVEDVRCSLEGYAAGSAIPSPLKNVEKAFLRKYWAKWK AEHTGRDRAMPHIKTFTRYNGQNLA 

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
CDD 12 114 103 3.26202E-10
Gene3D 18 114 97 8.5E-16
SUPERFAMILY 21 114 94 1.65E-11
Pfam 28 111 84 1.9E-5
PANTHER 36 502 467 5.1E-147
PANTHER 36 502 467 5.1E-147
Gene3D 167 344 178 1.1E-49
SUPERFAMILY 168 382 215 1.62E-56
Pfam 171 502 332 6.6E-73
CDD 188 323 136 3.59283E-57
SUPERFAMILY 358 502 145 1.73E-34
Gene3D 358 504 147 2.7E-41

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.
Biological process DNA repair The process of restoring DNA after damage. Genomes are subject to damage by chemical and physical agents in the environment (e.g. UV and ionizing radiations, chemical mutagens, fungal and bacterial toxins, etc.) and by free radicals or alkylating agents endogenously generated in metabolism. DNA is also damaged because of errors during its replication. A variety of different DNA repair pathways have been reported that include direct reversal, base excision repair, nucleotide excision repair, photoreactivation, bypass, double-strand break repair pathway, and mismatch repair pathway.
Molecular function Phosphoric diester hydrolase activity Catalysis of the hydrolysis of a phosphodiester to give a phosphomonoester and a free hydroxyl group.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0596400.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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