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LotjaGi2g1v0265100.4

Overview

Field Value
Gene ID LotjaGi2g1v0265100
Transcript ID LotjaGi2g1v0265100.4
Related isoforms 4
Lotus japonicus genome version Gifu v1.2
Description Alpha-1,4 glucan phosphorylase; TAIR: AT3G29320.1 Glycosyl transferase, family 35; Swiss-Prot: sp|P53536|PHSL_VICFA Alpha-1,4 glucan phosphorylase L isozyme, chloroplastic/amyloplastic; TrEMBL-Plants: tr|A0A151T017|A0A151T017_CAJCA Alpha-1,4 glucan phosphorylase; Found in the gene: LotjaGi2g1v0265100
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:73457260..73466367) extracted from Lotus japonicus Gifu genome v1.2.

ATTAAAAAGATAGTGAGATACAATTAATGTAATGATGAAAGAGTTTTATTTTAAATTAGCGTAAATATGGAAGGTTGTAT AATTTTTTTAAAACCAATGTTTTAATTAGCCTCATTACATGTTTCTTAAAAAAAGTGTAATTGTCTGAAGGATGCCTTAT AATTAGGGGCTAAGAGAGTAATATGTCTTTTTGGCATGTCACTGACAATTATCTTGTGTCCAACTTCACTGCAATCTGAT TAATCATTGCTTTTTATTTTTTGTTTTAGAAGCTACAACCTCTCTGAGCTCATTCGCTCCAGATGCTTCATCTATCGCGT CGAGTATTAAGTACCATGCAGAGTTCACCCCTTTGTTTTCTCCAGAGAATTTTCATCTTCCACAAGCTTTCTTTGCAACT GCACAGAGTGTTCGCGATACTCTCCTAATAAACTGGAATGCTACTTATGATTACTATGAGAAGCTGAATGTTAAGCAGGC ATATTACCTTTCAATGGAATTTTTGCAGGTTGGGTGCTATCATATTGATTTGAACAGCTTCACCATTTCAGGCATCTAAT ATTTTTCTTCATCTATCATTCAATGTTTCAGGGTAGAGCATTATTAAATGCAATTGGCAACCTAGAGCTAAATGGTCCCT ATGCAGAGGCTTTGAGCAAGCTCGGGCATAAATTAGAAGATGTGGCAGGCCAGGTGTGACATTCTCAGCTGTATCTCTTT TACCTATTTTTTAATTTATAAAATGTTGCTTGTTTTACTGCTATCATGAGTTACTGTTTATCTAATCATAAGACAAGCTG ATGTGGTTTTTGAATTGAATATTATAATGAAAGAGAACTTATTTTTTAAATAGCATATTTACTATAAGTTCAACAGTTGA GAGAGTCAAGCAAGTGTTGTATTTGGGATTGTTATCTAATTCCTTTTTCTAAATATTTTTGTCAAAATTTTACAAGCTTA CAAACCATTTTTTTATATACTCTCACTTGGAGTTGTGGTAATTCATTTTGGTTGGACAATAATAGGAGCCAGATGCTGCA CTTGGAAATGGGGGTCTTGGGCGTCTTGCTTCATGTTTCTTGGACTCTTTGGCAACCTTGAATTATCCAGCATGGGGTTA TGGATTGAGATATAAGTATGGCTTATTTAAACAGCTCATAACCAAGGATGGGCAGGAGGAAGTTGCTGAAGATTGGCTTG AGGTATGTTTTATTGTACATTCACAAGTGCCCATGGCATGTACTTAAAAGGTCTGCATTTGGTTTTTCAGTTCTATTAAT GTTCTTTCTTTGTCTGTGACCTCTTCTAACAGATGGGCAGCCCCTGGGAGATTATTAGAAATGACGTCTCATATCCTGTA AAGTTCTATGGGAAGGTTATTTCAGGGTCAGATGGAAAAAAACATTGGACTGGAGGAGAAGATATTAAAGCCATTGCACA TGATGTTCCCATACCAGGATATAAAACTAAAACCACAATCAACTTGAGACTTTGGTCTACGAAAGCTGCATCAGAAGATT TTGATTTATATGCTTTTAATTCTGGAAAGCACACTGAAGCCAACGAGGCTCTTGCAAATGCTGAAAAGGTTTGGATGATA TGGCTAGAGTAAACTCTTTCAAAAAATAGTAAAATCCTTATAAGTATAGGAGAATTGGACTGATTGGATAATTATGTTGG AACAAACAAGTACTAAAGAATTTATCCTCTCCAGAATTTTGACTTTAATGTGTCTTTTATAGTTTTGTCTTTTAGTGTCT TTTTCTAACGATCTATGTCTGTTTGGTGTCTATTTCCTGTGCAGATGTTGTGGAAAATATTTGAGTGACTTCTAATAACA TGGAGTTTTTCTAGTTAACTTGAATTTCACGACAATGTGAATGCAAGTTAAGAATAGGACATTTTATATGGTGTTTTCTT TCAAATGCAGATTTGCTACATACTCTATCCTGGGGATGAATCAACAGAAGGGAAGATCCTTCGCCTGAAGCAACAATATA CTTTATGTTCTGCTTCTCTTCAAGATATCATTGCTCGTTTTGAGAGAAGATCAGGAGCAAGCGTGAATTGGGAAGAGTTT CCTGAAAAGGTTGCAGTGCAGATGAATGATACTCACCCAACCTTATGCATCCCAGAGCTTATGAGAATACTAATAGATGT GAAGGGTTTGAGCTGGAAGGATGCTTGGAATATCACTCAACGGTATCTAGTTTTTTTTATGTTTTGTTTTTGTGTGGAGG AGGGGAGTCCAGTCAACTCATGTGAACGCTTGATTTGAGTTTTCTGATTGAATATGATATATCTGATACTGTGATCTAGG ACTGTAGCATACACAAACCATACTGTTCTTCCTGAGGCATTAGAGAAATGGAGCTTGGAGCTTATGCAGAAACTGCTTCC ACGTCATGTTGAGATTATAGAAATGATTGATGAGGAGGTAATACCAAAATATTTGCATAAGCTCTTTTTTTTTTTCAAGG TACAGGCACTAAGTTGTTGCTGACATTCATGCTTTACAGCTTATTCGGACCATAATCGCAGAATATGGCACAGAAGATTC AGAGTTACTGGGAAAAAAGTTGAAGGAAATGAGAATACTAGATAATGTTGAATTGCCTGCAGAATTCGCGGGTATACTGG TTAAGGAGGCCATTGACATTCCTAGTGAGGAGCTGCAAAATTCTGAACAAGAAGTGGACGAAGAAAATCATGATGAAGAA GTGGAAGAAACAATAGCTAAACAGGATGGGAAAGATAAAATTTCCATTGAGGATAAGAAAGAAGAGTTGCCTGAGCCAGT ACCAGAACCACCTAAAGTGGTTCGTATGGCCAATCTCTGTGTTGTGGGTGGTCATGCAGTGAATGGGGTTGCAGAGATAC ACAGTGAAATTGTAAAGGATGAAGTGTTCAACGCATTTTATAAGGTAAATATTTCAGTAATTCCTCTTTCCTTTTTTTTT GCTTTAGATCTATGACAAGATCAACGAAAATTGTTTGCATCAATGACTTCTGTGCCATGTTTCTTGCAGTTGTGGCCTGA GAAATTCCAAAACAAAACAAATGGTGTGACACCAAGGAGATGGATCAAGTTCTGTAATCCAGATTTGAGTAAAATAATAA CCGAGTGGATAGGCACTGAGGATTGGGTCCTAAATACTGAAAGGCTGTCTGAACTACGAAAGGTAGTTTCCATTATTTAA TTTGTTGTTTTTGTTTTTCTTTCACAAATTCTTAATTTATAAAATTGAAGAAGGATTTACGTTTTTTTTTTTCATTTGAT CCCTTTTTCCTTTTCACGAATGTTAGGTTTCGCAGCACCAATCATACAAGTAGGTTTCGCAGCACCAATCTTCTGAGCAA ATGATCACCAATTTTGGAATTTTATAATTCTTTATACAAATTTGCTTAAATAACCGAATATAAATAAAAAATATAATCGC TTCTACTTAACCTAAAAAGTGTAACTATTTTGCATTTACTGATCTCCTTTAACATAAGATTTCTGAACAAGAAAATTGGG TCTGGTGATGTACTATTCAGCAAGTAATTGAACATCTGGTATGTTGAATTTGAATCTGAATGCTCATCGATTCCAGGATT AGCTCAATATCATGAAGCCTTCTTAGATACATCAACATCAACAACAAAAGCCTTTTCCCATTAGGTAGACCTTAAAATAC ATATTAAATGAAATTCTAAACTTAGTATACTTCCGCTTCTTGATATTTAAGGAATCAATATAATATATTGATTATGATTT GTGGGAATGTTCTGAAATTAATTGATTGGAATTAAGCATATTTTGGGCCATGTTGTTTCCATTATTTTCCACTTGGATCT CTCAATAATATTAGTCTCAGCTTGATTGCCATGTCTCTGTAATTAAAGCTGACCATACTAGTATTATTTATTAATAGTTT GCAGATAATGAGGATCTACAAATGCAATGGAGGGAAGCAAAGAGGAATAACAAGATTAAAGTTGCAGCATTCCTGAGAGA AAAAACAGGATATTCCGTCAGTCCTGATGCAATGTTTGACATCCAGGTAAAATGATGCCTTGGAGTTTTTTTTACTGCCA ATTTGGACTTGGCTAAGTTTTAAGCATGGAATGGAAGTTGGAAAACTTTTTTAGGTCAAAGGAAAAGTCTGGTACTTGAA TGCAATATATTATACTTTTGCACTTCAGAATCCAAGGCATGAACGTTTATAGCTTAAATTTTAGGTGTCTTGGTAGACTA AGGTTAGGTCAATTTATGAGTATGGGAGATTTAGGCTAAGCTATGCTAGACTTTTCCTTAACTAGGTCAGGCCTGTTTTG CCAAATACTGGCCATGGTGTTGGCTGGGTCTTCCCCTAAGTTGTTTGATCAGTCAGTGAATACTCATTATCCAATTCCAT AGTCCAATCCGTGCTCACATGAACTGTTTCAACCCATAAAGAGATTGATGTTGGTGATATACCTGTCCAGACTCCCCTTG AGCAGCAACAAAACTAGTAGTATGCTTCCTCGGTAATCTCATAGGCAAAAAGGAAATCTTAATATCAAGCTGAAAGAGAG GCCAATGACTCATAGCAGCCATGAGAAGTGGAAGCCAAATTGAAGCAATCTTGGGTAAGGGTGAGAATACCACCCTGGAT GGGATAGTGCTCACTCGTAGACTTAGACAGTTAGACTGAGGAATAAAAACTGAGGAAAAGGAGGTAACTAAAGCAAAATA TGGGGAAGAAAAATGACGATTCTAAATACCCTGTGAATTAGTCATTCAGTCAGTGAAAATATAAGGCTCTGAGATCTTAT TTACATTACCGAGTAGTATGGTACCATAAGGTAAAGTACAATATACAGTAAGGAAATAACGAAAATACACCATCTGTACA TGCTTTTTTTAGGTTTAGGCTGGATTGAAAGCTTGGGCTTACATTGCTTACACAGCTATACCCAGTGACCAGGAAAGTGC AATGTCGTAGTGGCAGAACTGTATAGCATCCTCATTAGCATTCAACTGGTTTGGAGACTAGTTTTTAGGCCAGGTCAACA TAGGCCGAAAGTAGGCTTGGTTATAGGCTAATAGGCTTCCTAGCCAATTCCCACCCCTACTTATGAGTCATTACCATCAA ATTCTCTACTTTGAAGCTAGTTTTCTTTCTTATAATAATACCGTTAGTTACGAATTCAGTTTCTACCCGACCCATTAGTT TTCATTACATATTTTTGGTAAACTATTGCTTAATTATTTTTTATTCAGGTGAAGAGAATCCATGAATATAAGCGGCAATT AATGAATATTTTGGGAATTGTTTATCGCTACAAGAAGATGAAAGAAATGAGTGCTGCAGAAAGGAAAGAAAAATTTGTTC CAAGAGTTTGCATATTTGGGGGAAAAGCATTTGCTACTTATGTGCAAGCCAAGAGAATTGTGAAATTTATAACAGATGTT GGGGCTACTGTAAATCATGATCCTGAAATAGGAGATCTTCTTAAGGTACCTATGACTCTGTTTTGCATGCATTCTTTTTC TTTTATTGGTTTTTGTTTTGTCCAAGAATTCTAAGGCATAACATTGCTAAAGGTATGTGAAGTGATAATTATTTTAAAAT TAACATTGATGTGTGAAATGTGAATAAAGAAATGTTTAATGTGAAAATATCATTTAATAGAATTTAATTTTTTTGAACTC TCAGTGTAAAACTCCTTTACACAGATGCAATCGTTTCATGTCACATCAGATTGCATGCTTAAGGATAGTTACGTGTTTTT TAAATAAATTAAATTAAAAATTTACTTTTTGACATGGCAAAAAACTACTGGATTATTAAATCCATATAAATTTGTCTTTT TATATCATTTTATATATTTTTTCTGCTAGTTTAACAGTTAGTTTTACCAAAAACTCCTTATTCAATCAGTTACCTTTACA CCTTTAAGCTAACTGCTAGAAGCTAGCTTTTCAACTTCTAGTTAGCTTATCAACTCGTTTTGATGAACAGCCAAAGTCCA TGTGCAATTTTATATGGAAAAGATTCTGTGTAATTTAACATGTACATCACACACTACAACATTCTACTATGCAAATCTAA AGGAAAAGTGTGATATGTACACAAAGAAAGATGGTTTTGAAAATATTATATGCATATGAGCATATCATTCCAGGAAAAAA ATCAAACTTTATTCATGGAATTGTTCTGCTGGCTACTGCATTAATCAATTTATCAGTCTGATTTAAGTTTAATGTAGGTC CAATTTCATGGTTGATGGAATCCTCATATACATTTCTATTAGTAGATAATTTGGACTTGATGAATAAAGAAGAAAACAAT TTGAGATGCTAAATTAACTTCTTTGTCCAATTTGACCACAAGAATTTTGGAGATGCAATCGGGATATGTTTTTCATTGTA GATCCCCATGTTGCTCTGTAGCAGAGACGTGTAGAAAATATTATTTAATCTTTGTCCACTTTTGTGGAAACTTTATCTAG GGTATCAATTTTGTGATGCACTAAATGTAGAGATGAAACTGCTCTATTTCATCATGAAATTAATAAAAACATTTAATCAT TTCTGAGGAGAGAAATTCAAAATAATGCTTTATCAACTCTCTTGGAAAACCAGATTCTTAGTTCTTTATCATTCTCTTTT CTTCCTAGGCGGAACATTTAGAATTTTTTGAATAGTTTGATTATTTCCTGCCCAGGTTTTTTCATTTGAATTGCAACCAA CTATTTATTTATTGTTTATTTCATATTTTATCAGGTTATTTTTGTCCCTGATTACAATGTCAGTGTTGCGGAGATGCTTA TTCCAGCTAGTGAATTGTCACAGCATATCAGGTAGCTCTATTTCTTGTAGTTAATTTGCTTTATACCTTGTGTTGCATGA TTTTACTCATGTAAGTGGTGCTATACATTTACTAATTCAGCTGATATATTAAAATAATTAACGTAATATTATCTTCTATA CTAATCATCAGCTGTTCAAATTTTGACATGAGTAGCTTGAAATATAAATTTTTTTTAATTACATGAAATTGTTTAATATT CATACACAGATCAATATGTTGCTCGTAAAAACAACTGCTGTTAAATATTTTGAGCATGGAAAATTGAAAAACTTTTGTTG AAGATAAGTATTTAGAAATTTTCAAAGGTGTTTCAGTAATGTGTTCAGACATATTACAAATGCATCCCAGGTTTGTCGAG AAAGTACTGAGAGAAGTTTCTGGTATTTGGCCATTTTATCCTGACATGCAAGTCCTCTCCCAATAAGATTGTAATATGCT GAGTGTCAGAATCTGATAAGCAACAAAGCATCCCTTGAAATACTGGTGTTTCATAGGAACATGCTGTTGGAGCCATGGTT ATTTCCTGGATTGCCTGTGTAGATTGGGATCAGTTTCAAAGAATCCCAGAAAACAGAACCAAGGTTTCTCCGAAAGAGAA CAAGATTTCAAAATTGAGAACATAAGCCTGTTTAATGTTGCTAGTCTTCTAAATAAAATCAACCCATATGCTCAGATTTA GTTTACTGGGCTGAATGATGTGTATATACCAAAAATATTGACACTTGACAACTATTAACGGATTTACTGATATGGACAAA TCATTTTTCTGTACATAAAGCAGAGGGTATGACTCAGGTTCAATTGTGAAGAATATGTTTATAGATTAGGGGAAAAAAAT TAATCTTGAAGAATTCAGTCAATTACTGTTAGAGTTGCATTTAACAAGTCAAGATTTTAGGATGATTGGTTCTTGAAATA TGAAATGCAATTAAAGCCTCTGACCTAATGGTCAACAATATGATTCTCAGCACTCCAATTTCATTCAATTAATTTGTCAG CACAAGTTGTCATTTGCAATGCATTGTCAGCTTACCAACTCCAAAGGGATGCATGATTTGGGGGTGGTAGGAGGTTTTGA CAAATGGCAATAACAAATCAGTTCTAACCTCAGAATATTGTTCTCCAAATTTCTTATTTCTTTTTAAAAAAATATCATTA TTTTGTTTTTCCTATGAAATTTTGAGTATTTGTGCACTGCCTAATTAATATGTTCTGTTTATTTCCTGTAGTACTGCTGG AATGGAGGCGAGTGGAACTAGCAACATGAAATTTGCAATGAATGGATGCATACTGATTGGAACTTTAGATGGTGCCAATG TTGAAATAAGGGAAGAGGTTGGTGCAGACAACTTCTTCCTCTTTGGTGCCAAGGCTCATGAAATTGCTGGGCTGAGGAAA GAAAGAGCCGAGGGAAAGGTTTGTCTTAATACCAATTTGTGCATTTTAATTACCATGGAATATAATGTCATCCTGGTTGT AGCATACCAGCATCGAACTAAAATTCCACAGTTGAAGTTTCAAATATCGATAATATTTCAATTTTCAAAAGTAATTCAAG TTATTATTCCTGACAAAGGAGTTCCTAACATAATCTCGTTCAAGTCGTTCAAGTTAATGATTCCTGCCAATGTTGGTTCT TAAATTTAGTTTGTCCCTGATCCACAATTCGAAGAAGTTAAAGAATTCGTCAGAAGTGGTGTTTTTGGATCTTACAACTA TGATGAAATGATTGGATCCTTAGAAGGAAATGAAGGTTTTGGTCGAGCAGATTACTTTCTTGTGGGGAAGGACTTCCCCA GCTACATAGAATGCCAAGAGAAGGTTGATGAAGCTTATAGGGACCAAAAAGTAAGTTTATTGACTGTTTTCAAATTTCAC ATGCTAGCCAATTGTAGAAGCATGCAAGCAATTTATGAATTCTATTTACTTGTCATATAGTTTAATAGTCCAGGATTGTT CCTTCATGCAACTTAATGCCATGATAATTTTAGTATTAAGTATTAACTACACAAATGGCGTTATTGCCCGCATTTAAAGT CCCTCATGCATCAACTTTCTGTACGAGTTGATCAAGCATAAACCATACAAGAAGCTAGTTTCTTTTATGTTATCTTTGGC ATTAAAATTTTTAAATCATGTGTGGGTGCAGCTATGGACGAGAATGTCAATATTGAATACAGCAGGCTCACCCAAGTTTA GCAGCGACCGCACCATTCATGAGTATGCCAGGGATATATGGAACATTGAGCCAGTAAAATTGCCGTAG 

CDS sequence (LotjaGi2g1v0265100.4) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGAATTTTTGCAGGGTAGAGCATTATTAAATGCAATTGGCAACCTAGAGCTAAATGGTCCCTATGCAGAGGCTTTGAG CAAGCTCGGGCATAAATTAGAAGATGTGGCAGGCCAGGAGCCAGATGCTGCACTTGGAAATGGGGGTCTTGGGCGTCTTG CTTCATGTTTCTTGGACTCTTTGGCAACCTTGAATTATCCAGCATGGGGTTATGGATTGAGATATAAGTATGGCTTATTT AAACAGCTCATAACCAAGGATGGGCAGGAGGAAGTTGCTGAAGATTGGCTTGAGATGGGCAGCCCCTGGGAGATTATTAG AAATGACGTCTCATATCCTGTAAAGTTCTATGGGAAGGTTATTTCAGGGTCAGATGGAAAAAAACATTGGACTGGAGGAG AAGATATTAAAGCCATTGCACATGATGTTCCCATACCAGGATATAAAACTAAAACCACAATCAACTTGAGACTTTGGTCT ACGAAAGCTGCATCAGAAGATTTTGATTTATATGCTTTTAATTCTGGAAAGCACACTGAAGCCAACGAGGCTCTTGCAAA TGCTGAAAAGATTTGCTACATACTCTATCCTGGGGATGAATCAACAGAAGGGAAGATCCTTCGCCTGAAGCAACAATATA CTTTATGTTCTGCTTCTCTTCAAGATATCATTGCTCGTTTTGAGAGAAGATCAGGAGCAAGCGTGAATTGGGAAGAGTTT CCTGAAAAGGTTGCAGTGCAGATGAATGATACTCACCCAACCTTATGCATCCCAGAGCTTATGAGAATACTAATAGATGT GAAGGGTTTGAGCTGGAAGGATGCTTGGAATATCACTCAACGGACTGTAGCATACACAAACCATACTGTTCTTCCTGAGG CATTAGAGAAATGGAGCTTGGAGCTTATGCAGAAACTGCTTCCACGTCATGTTGAGATTATAGAAATGATTGATGAGGAG CTTATTCGGACCATAATCGCAGAATATGGCACAGAAGATTCAGAGTTACTGGGAAAAAAGTTGAAGGAAATGAGAATACT AGATAATGTTGAATTGCCTGCAGAATTCGCGGGTATACTGGTTAAGGAGGCCATTGACATTCCTAGTGAGGAGCTGCAAA ATTCTGAACAAGAAGTGGACGAAGAAAATCATGATGAAGAAGTGGAAGAAACAATAGCTAAACAGGATGGGAAAGATAAA ATTTCCATTGAGGATAAGAAAGAAGAGTTGCCTGAGCCAGTACCAGAACCACCTAAAGTGGTTCGTATGGCCAATCTCTG TGTTGTGGGTGGTCATGCAGTGAATGGGGTTGCAGAGATACACAGTGAAATTGTAAAGGATGAAGTGTTCAACGCATTTT ATAAGTTGTGGCCTGAGAAATTCCAAAACAAAACAAATGGTGTGACACCAAGGAGATGGATCAAGTTCTGTAATCCAGAT TTGAGTAAAATAATAACCGAGTGGATAGGCACTGAGGATTGGGTCCTAAATACTGAAAGGCTGTCTGAACTACGAAAGTT TGCAGATAATGAGGATCTACAAATGCAATGGAGGGAAGCAAAGAGGAATAACAAGATTAAAGTTGCAGCATTCCTGAGAG AAAAAACAGGATATTCCGTCAGTCCTGATGCAATGTTTGACATCCAGGTGAAGAGAATCCATGAATATAAGCGGCAATTA ATGAATATTTTGGGAATTGTTTATCGCTACAAGAAGATGAAAGAAATGAGTGCTGCAGAAAGGAAAGAAAAATTTGTTCC AAGAGTTTGCATATTTGGGGGAAAAGCATTTGCTACTTATGTGCAAGCCAAGAGAATTGTGAAATTTATAACAGATGTTG GGGCTACTGTAAATCATGATCCTGAAATAGGAGATCTTCTTAAGGTTATTTTTGTCCCTGATTACAATGTCAGTGTTGCG GAGATGCTTATTCCAGCTAGTGAATTGTCACAGCATATCAGTACTGCTGGAATGGAGGCGAGTGGAACTAGCAACATGAA ATTTGCAATGAATGGATGCATACTGATTGGAACTTTAGATGGTGCCAATGTTGAAATAAGGGAAGAGGTTGGTGCAGACA ACTTCTTCCTCTTTGGTGCCAAGGCTCATGAAATTGCTGGGCTGAGGAAAGAAAGAGCCGAGGGAAAGTTTGTCCCTGAT CCACAATTCGAAGAAGTTAAAGAATTCGTCAGAAGTGGTGTTTTTGGATCTTACAACTATGATGAAATGATTGGATCCTT AGAAGGAAATGAAGGTTTTGGTCGAGCAGATTACTTTCTTGTGGGGAAGGACTTCCCCAGCTACATAGAATGCCAAGAGA AGGTTGATGAAGCTTATAGGGACCAAAAACTATGGACGAGAATGTCAATATTGAATACAGCAGGCTCACCCAAGTTTAGC AGCGACCGCACCATTCATGAGTATGCCAGGGATATATGGAACATTGAGCCAGTAAAATTGCCGTAG 

Protein sequence (LotjaGi2g1v0265100.4) extracted from Lotus japonicus Gifu v1.2 Proteins.

MEFLQGRALLNAIGNLELNGPYAEALSKLGHKLEDVAGQEPDAALGNGGLGRLASCFLDSLATLNYPAWGYGLRYKYGLF KQLITKDGQEEVAEDWLEMGSPWEIIRNDVSYPVKFYGKVISGSDGKKHWTGGEDIKAIAHDVPIPGYKTKTTINLRLWS TKAASEDFDLYAFNSGKHTEANEALANAEKICYILYPGDESTEGKILRLKQQYTLCSASLQDIIARFERRSGASVNWEEF PEKVAVQMNDTHPTLCIPELMRILIDVKGLSWKDAWNITQRTVAYTNHTVLPEALEKWSLELMQKLLPRHVEIIEMIDEE LIRTIIAEYGTEDSELLGKKLKEMRILDNVELPAEFAGILVKEAIDIPSEELQNSEQEVDEENHDEEVEETIAKQDGKDK ISIEDKKEELPEPVPEPPKVVRMANLCVVGGHAVNGVAEIHSEIVKDEVFNAFYKLWPEKFQNKTNGVTPRRWIKFCNPD LSKIITEWIGTEDWVLNTERLSELRKFADNEDLQMQWREAKRNNKIKVAAFLREKTGYSVSPDAMFDIQVKRIHEYKRQL MNILGIVYRYKKMKEMSAAERKEKFVPRVCIFGGKAFATYVQAKRIVKFITDVGATVNHDPEIGDLLKVIFVPDYNVSVA EMLIPASELSQHISTAGMEASGTSNMKFAMNGCILIGTLDGANVEIREEVGADNFFLFGAKAHEIAGLRKERAEGKFVPD PQFEEVKEFVRSGVFGSYNYDEMIGSLEGNEGFGRADYFLVGKDFPSYIECQEKVDEAYRDQKLWTRMSILNTAGSPKFS SDRTIHEYARDIWNIEPVKLP 

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
Gene3D 1 362 362 2.4E-164
PIRSF 1 821 821 1.6E-197
PANTHER 1 821 821 0.0
SUPERFAMILY 1 820 820 2.24E-272
CDD 1 815 815 0.0
PANTHER 1 821 821 0.0
Pfam 26 348 323 1.1E-128
Coils 369 389 21 -
Pfam 386 815 430 2.8E-169
MobiDBLite 394 416 23 -
MobiDBLite 394 415 22 -
TIGRFAM 412 815 404 5.6E-169
Gene3D 417 816 400 6.1E-177
Gene3D 468 800 333 6.1E-177
ProSitePatterns 659 671 13 -

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 Phosphorylase activity Catalysis of the reaction: 1,4-alpha-D-glucosyl(n) + phosphate = 1,4-alpha-D-glucosyl(n-1) + alpha-D-glucose 1-phosphate. The name should be qualified in each instance by adding the name of the natural substrate, e.g. maltodextrin phosphorylase, starch phosphorylase, glycogen phosphorylase.
Biological process Carbohydrate metabolic process The chemical reactions and pathways involving carbohydrates, any of a group of organic compounds based of the general formula Cx(H2O)y. Includes the formation of carbohydrate derivatives by the addition of a carbohydrate residue to another molecule.
Molecular function Glycogen phosphorylase activity Catalysis of the reaction: glycogen + phosphate = maltodextrin + alpha-D-glucose 1-phosphate.
Molecular function Pyridoxal phosphate binding Interacting selectively and non-covalently with pyridoxal 5' phosphate, 3-hydroxy-5-(hydroxymethyl)-2-methyl4-pyridine carboxaldehyde 5' phosphate, the biologically active form of vitamin B6.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0265100.4, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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