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Field | Value |
---|---|
Gene ID | LotjaGi4g1v0127800 |
Transcript ID | LotjaGi4g1v0127800.1 |
Related isoforms 2 | |
Lotus japonicus genome version | Gifu v1.2 |
Description | protein kinase family protein; TAIR: AT5G66210.1 calcium-dependent protein kinase 28; Swiss-Prot: sp|Q9FKW4|CDPKS_ARATH Calcium-dependent protein kinase 28; TrEMBL-Plants: tr|A0A0R0G0J8|A0A0R0G0J8_SOYBN Uncharacterized protein; Found in the gene: LotjaGi4g1v0127800 |
Working Lj name | n.a. |
Genomic sequence (LjG1.1_chr4:18617128..18626756) extracted from Lotus japonicus Gifu genome v1.2.
CTTCCCTCCTTCCTCTTCCTAACTTCCTTTCCTCTTCCTTACCTGCTCCAACCTGTCTCACCCTCAAATCACCTCTCACT CTCCTTGCACATGAATGACAACTACCACTATATATTACAACCCAACTCTAACTCTCTCTATTGCTTTAACCATTTTCATT CCTCATAAACCATGGGCTCCTGCTTTTCCACCAACACCGCCACTAAGCCGCAGCAGTCAACGGCGGCGCAGAAGAAACAA CCGCCGCCCAACAGACATCAACGGCAGCGAGCCCAGCGGCACGTGGCTGGCTCCAGGCACGTGCCGTCCGGGATGCGCGC CGATTTCGGTTACGACAAGGACTTCGATGAGCGTTACTCGCTTGGGAAGTTGTTGGGACACGGTCAATTCGGTTATACCT ATGTCGGAGTAGACAAAGCCAGTGGGGATCGTGTTGCGGTTAAGAGACTCGAGAAGAGTAAGGTCATTTTCGTTTCTTCC TTCAAGCTCTCATTGTTTTGTTTTGTTTTGTGTTTCTTATTTGGTCATTGGTTTGGGATTTAAGGTATCAGAAACATGGA AATGTTAGGCTAAGTTTACTGTGTTGTTTGAGTGTTTGAACTTTGCATATATAGAAATGTAACTAATCATAACTGAAGCT AACAGAAATCAACACAGTAGGATTAATTAACCGTTTTAACTAACTTGTATAATTCTTGGTATCGTTACATCCCCGCGAAG TTAGGGTAAAGGAGGCTGGACCCTGAGTTTCACAGAGCACTGGTGAAAGGCTTCTTGAGAGTGCTGAGCTGAGAATGTGA TGGACTCGAAGGTGTTATTGCACTTAATCGCGATCAAAGGGTAGGATGAGCTCCAAGTGCTTGGTCCGAGAGTGTAAGAT GGAATTGGTATTGAGTGTAATTGTACTTAGATTGTCACAGTAGATGGTAAGTGGGGCTAGGAGCTGGGCTTTTCATATCA GGCTTGGGTTTGGAAAGACATCATTGTCTGGAGCTGTGAGTTTTGGATTGACTGCTATATAGGTGTGGTCATCGGTTTAG CTGAGGTCGTGTCTGCTTTTTTAAGAAGATCATTGATGTACTTAGTTCGAGATAGAATTATTCTGCCTTCACACAATGAT GCGCTTGAATAATTAAGGAGCCTAGCTGCCTAGGTCTTTCAGAGGGAATTTTGCATCCAGTGAGTGGATGAAGGAATCAA TGGCTTCTGAGGAGTTAAAAAAAAGAGGCAGCCTGGCGCACGAAAGCTCCAGCAATGCCCCGGGTCCTGAAGGGTCCGAA CACTTGGTCTATTGTACTGAGCCTTACCTTACCTTCATTGTTACTCAATAGAGTGTTTTTAGGACTTGAACTTGTAACCC GAGTCATACGGCGACAACTTTTTACCGTTGCGCCAGCTTGCTGAGGTGTTGCGATGAATATATCATCAACATGGTCTAGT GCCAAAACAATGGAAGTGGTAGTTGAGAGAACAAACAGGGATGCGTGTGATTTGGCGATAGTGAATCCCATCTGAAGTAG AGATCGGTGAAGCTTTGCATAATGCAATACCATTCCCGCGTGGCCTCTTTTCGGCACTAAAAGGCTTTGTGCAGATTGCA TGCTAAATCTTTGCCACCTTGAGTATAGCTTTTGTGCTAAACTATATAGAAGTCCTCCATCAGGTCCCCATTAAAAAATG AGTTGGTAATATCTATCTGCCTGATAGGCCAGCCTCTTGTAATAGCTAGAGTGAGGATAATTTCTAACGGTGGCAGGCTT GATTACCGGGCTAAAGTTTTCATAGTTCAAAGCCCTCTTGTTGGTTGACGCCTTTGGCTACGTGTCGGATTAAGGTATCC TTGACGACATTGACCATATCCTAGGAAGGTCCACTTACTGGATTAAAATTAGAGTTTGTCTTTATAATGAGGCCTTAGAC ATGGATAACACACACGTCCAAAGGTTCTAAGTGTGAACTGAAATAGGAAGTTGATTTCTAAGACAGTAGCTCAGTTGGTG TTTGATTGCCAAGATTGGGAGTAGGTAATCTGTTTTAATGTATACTACTGTTTGGAAGGCATACCCCGAAAAGGAGAATG ACATAAGATGCATTATCTAGGAGAGCAAGCCCTATTCAGTCACATGTCTATGTTTTTTTTTTTCAGCTGTGCCTTATTGT TCATGAGTATAGGGGCAACTATGTCTATAAATAATTCCTTCACTGTTGAGAAATTTGGTGAAAGGGGCATACTCTTGGCC TCATCAGATTAAAACATTTTGATTGATCTGCCTAGCTGCTTTTCTATCATGTATTTGAATTTAAGAAAAGTAGGAAAGGC TTAGACTTGTTTTGCAGCAAGTGAATCCAGGTGTATTTAGAGTAGGCATCAACAAAGTGAATATAGTACTTGCACCCATT AGAGGTTGCTATTGAGGCAAGACCCCATATATCCAAATAAATTAATTGCACTGGTTTGTCATACCTTGTATTTCAATCAT AAAAAGGTAGCTTGTGGCCTTGTGGGATATAGCTAGACAACAATACTCACGAATCAAATTAGTTTTATTCATAGAAGCTG GAATGTTACATTTTTCCAGTACAAGTTCAAATGTCTTTGAACAAGCATGACCTAGTCTGGCATGCCAAGTGGCATTCAGG GTACATGTTTGAAGCACCTGTGTACATTTGGCATGAAGACTTTTAGAATGACTTTTAAAAGAATTTTAGAAATTTCTGGA ACATGAAGATGATTGTGCACAAACAGTAGTCTAAGTGTTTTTGAGAATCAAGAGGCTGCTCCATTGGCCACTTTGACTCT AGTATCACCCTTGTAGGCTGATTTCCGCATCAGATTCAATGAGTCTGGTGTGACATAATTGGTTGGACCTGAATCCGGGT ACCATGCAGGGATATAATAATTAATTGAGCTAGTTTCTGGTACTGCTATCATGCCTGTATTGATTGATGGAGTTTTGTCA TCGTCATCAATCTCACTATTGAAGGCTGAAGAGTGATTGCTTTGACAGAAGTTCTGATTTACAGATGAAGATCAACTTGT GCTTGATAATTTGGGTTAAATCTGTGTGAACAGTTGAGTTTAGTATGTTTATGCTTGCCAAAGACCTCGCATTGTGGCTT ATCATGACTTTGTCTTCTTCCTCCTCTACTATAGCCGCAGCCTTTTGAGGAGTGAAAACAAACAATCTATTCATATTTCT TCCTCTAACTCAATATCCAGATTGCGGCTGTATTAAGTTTGCTTGGAGGCCTTGCATTGGAAATGAATTTTCCTCTTTGT GATGTTTCTCGAGTCTTTCTTCCTGTGACATAGTGCTTCGATCTCTGCTACTGTATAAGGATCGATTCTTGATAATGCTG AATTAACAACCGAGTCACCTTCGTTGGGCATGTAATCATGTCAACTGTCTTCTTGATTGTAAGCATGTAATCATTGGCTG AGCCTATCTTCTTGATGTTCTTTAGTTGAATCTTCAATTGTTCAATTTTGCTCTTGTTTGATTAACAAATCAAGTTTCTT CCAAATTTCAAATGAGAGGTCACAAGTTCACAACTTACCGCTCTTATTGTGGAATTTTCAGACATTGATGCCAACAGCCA TGATGCAAGTAGTTGATCTTGTTATTCCCAATTGGTGTATTCTTCAGTTCACCAATCCATTGCCTCATCTTCATTGTTGT GATACTTCTCTGGCTTTCCATCTAAATTTTTTATGAACTTCTGGAGCTTGAATCCTCGGGTGGTGGTTAATGCTTGGTAT TTCCAAGTAAAGAAATTGTGCTCATCCAATTTGATTGACTGGATTTGAGAAAGTTTGGGTAGTGAAGCTTGTAGGCTGTG TTCAGCCATTGGTGTTGGATCATGATGCTCTGATACCATAAAGGTATCAATACTTTGACGAGAGAGAGAGAGAGAGAGAG AGAGAGAGAGAGAGAGAAGTTCTCAGAAATAGAAATGTGAGACCAAGTTTATTGTCGTGTTTGAGTGTTTGAACTTTATA CCGATGGACTGTGGGTCTAACGGGAAAGCACAGATTAGGATTAGTGTTGCCTCTTGAAGCCATATTAGAATTTGGGAGGC CTAACTCAACCACAAAAGCTAGCTCAAGAGTTGAGGGTTGCCCTACCCTTTATAAAGGCTATCTATGTCATATCTCTAGC CAATGTGGGACTTCTAACAGGGATTAACATGACAACCATTTAAATAATTTGAGAATCTTTAGTTTAAGAACTAATTTGAG GTCTATGGTGCATGTTGCGTAATAATTCGGAGGTTCTCGCTTCATGCTACTGCAAGTATTGCACATGCCTGTAATCATGT GTTCCTAAATCAATCCCTTGAATGTACTGGCAGATGGTTCTCCCTGCTGCTGTTGAGGATGTTAAGCAAGAGGTCAATAT ATTGAAAGCAGTTGCCGGTCACGAGAATGTGGTTCAGTTCTATAATGCTTTTGATGATGATTCATACGTTTACATAGTTA TGGAGTAAGTTGGTTTGTTTTTTCATTGTGCTGTTTTCCATGCCCCTCTGGTCTTGAGCACTACTTTGCTGAAGTGTGCT CTGGATTTATATATTGGGAGCTCAACTATTGAATCATTGTGTCTTGCTCACTCTATGTGTTTGTTTGTATGCTCATGTTT ACTTTCTTAGGTTATGCGAGGGTGGAGAACTGCTGGATCGGATATTGGCCAAGTAAGTTTTGCTTGATTTTGGATGTGAT TGCTATTTTTCTTCAGTTAGTTATCACTTAAGAGTTTAGAATGTGTTATAAAATTGCAGAAACCAGGGTCAATATTCAAT AACGACTCGTGGGTTTGTGTTTGGGGCTGTTCTTTTTTCTTGTACCAGAACTTACTTCATCTTTCTTTGCTTTGAGCAGG AAGAACAGCCGTTACACTGAAAAAGATGCAGCTGTAGTTGTAAGGCAGATGCTCAAGGTTGCAGCTGAGTGCCATTTACG TGGTTTAGTGCACCGAGACATGAAACCGGAGGTATGGTCAAGCTCACTGATATATCTGGCAAATTTGTGTAAAATGGGAA ATGTGGTAGTGTACTAGATGCTGTTTGATAAATCAATTTTATTTTTCTTTGCATGCAGAATTTTCTTTTCAAATCAACCA GAGAAGATTCACCTTTAAAGGCTACAGATTTTGGTTTGTCAGATTTCATAAAGCCAGGTAAGGAAATATCTTTATTTCCA TGATCAATTTGCTTTGTTTTTCCACCTTCCCTCTTTTGTACCAGGAATGTTCTCCTTTTTGATTGATTGAGGTATCAGAC ATGCTGCAATCTATGTGTGAGAATTCTAGTTTTCTATATTTGAATAAAAGAAAAAACACTGCAGGAAAGAAGTTCCATGA TATTGTTGGCAGTGCTTACTATGTTGCACCTGAAGTATTAAAGCGGAAATCAGGCCCTCAATCTGATGTGTGGAGTATCG GTGTTATTACATACATCTTGCTATGTGGGAGACGCCCATTTTGGGATAAGACTGAGGATGGTATCTTCAAGGAGGTATAA TACGTTATCATTGTAATTTTCTGATTATCCAATTTACGTGGGATTCCTCATTTATTCTTGTTTCTTAGTGACATAATAAG TTCTGGTATCTACTTTCATTGTGTACTGATTTTGAGTTCTGACAACAGAATTTGCTTTACTTTTTTGTTGTTATGTTTAA TTGATAACCTGATATATGCAGGTCTTACGTAACAAGCCTGATTTCCGCCGGAAACCGTGGCCGACTATAAGTAATGCTGC AAAGGATTTTGTCAAGAAATTGCTAATAAAGGATCCTAGGGCAAGATTAACTGCTGCTCAAGCTCTATGTATGTATCCCT TTGTTTTCTTACAATGAGAAGGTTGTTTATTAGTTGAGCATTTAAGTGATCCCTGTCTGATGAGAGCAGCAGAAGTCTTA ATCACTAGAGGTTTTTGTCACTGCATCATATGTAGAGTGTGCTCTGTTTACACTTGTAGGGTTGAACTGAATAAAGTCAA AATGTGTTTCAGACTCTCAGTTTAAACTATAAATTTATCGTTAATAGATCTTTTGAATTACTTTAGTGGAAATGTATAAA GTTTTAATGATACCAAGTATTATATTTATGCGCACCTAATTACCCTCATTTTATACTTACTACAATTTTTAAAAAAAAAG TGTAACTATGTTTTTTCGTAGCGATCGATTTGTCTTTATATCATTGCTAAATTATTTTCTTTAGATTCCTGCTTGATTTC TGTATTATTTAATTAAAACTTATTTTGAGTGCTAGAGTGTATTGCTTTATTAAATTAGGAGAGAGGGATGAGGAAAAGTA AGTAAAGGACAAAAGGTAAATAACATTCCGATTGCCTATTTAAGTGCACATAAACCATTTTTGAGAGAAAGGTTACCAGA CAGCTCTGAAAACTAAGGTGGCCAAACTACTCTTTGAAAACTACTTCTCAATTAACATTATATCTAAAATGAGGTAAGTG TGCTTTGTTAATCATTTTAAAAGTAGTAAGAGTTGTAAAGATTCTTAATAATAGCTAGAAGTTTAGAACCTCTAACTGCT TTCTGTAAGAACAGCCATGCTTGACTTGCTGAATCACTGGTGCCCTATTTCATAGGATTTTATTGGCAGTTCAGATTCAG TAAACATGGTGAATGGTGTTTCTGTACAGTGGTAATGCTATACAAACGAACACTTCACGTTACACAAAATCTCAACTATT TTTGTGCCACTAATCACACCTAACTCTAATGCACAGCAATGCAATCAAACTGCAACATATCTTTTGTTGTTCAAGTAGCA TTATCTTTTCATATAATTTGCTTAGTGAAACTGTAATTCTTATCCTCTGCTTCACAAAATATTTTGTAAGAAAAGCTTTC AGTAATGTGTAACGGTTTCCATTAATCCTGATATTTCCAGCACATCCATGGGTTAGAGAAGGTGGAGAAGCATCGGAGAT TCCTATTGATATATCTGTCCTGAACAACCTGCGGCAGTTTGTGACGTATAGTCGATTCAAACAATTTGCACTAAGGGTGA GACATTTATTGTTGCCTTTGCATGTCAGATGGCATAGGATTTGTTTGATGTTAAGCTTTGTTGATATTTGATTACCCTGC AGGCATTGGCTAGCATACTTAATGAAGAAGAGTTGGCTGATCTAAAAGATCAATTTGATGCAATAGATGTGGACAAAAAT GGCTCGATTAGCCTGGAAGAGATGAGACAGGTAAGCGTATTCATTTACCGGTATTGTAGCTAACTGTAATCTAAATATGC CACTTTCATGAATAAATGATTCCCTTAAATATAGTTTCTCCACTTAAGTATAAAAGGTAAGATTTTGTGCAGGCTCTTGC TAAAGATCTTTCTTGGAAGTTGAAAGAATCACGTGTACTAGAGATATTGCAAGCAGTGAGTATGTTTTGATTTTTGTAGG CATCATACATAGTTTTATTGCTACTTATCAGCGCTTGTTCTCTTTCTAAATTGTGAAAGTTTCTTTGGTGATGAATGATA TTACTTCCACACCTATGACAATATATGTTGCTTCCCCAACTCCCCTAGTTAACGTTATACATCATGGTTGTTTTGTCCTG TTTGCGTTAAACACTCTAACATCTGCACATTGCCTTCTGGCTTTGGAAAATAAGTATAACTTAGTCTTTTGTGCTTGCAG ATTGACAGCAACACAGATGGGCTGGTGGATTTCACTGAGTTTGTTGCAGCTACATTACATGTGCATCAATTGGAGGAGCA TGACTCTGATAAGTGGCAGCTACGGTCACAAGCTGCTTTTGAGAAATTTGACTTGGATAAAGATGGCTATATTACTCCAG AAGAACTTCGAATGGTTGGTCTCATGTCTTTTTCCCCCAAAACATTTTTCATGTAAAATGTGTACCCTTAATAAAACAAT TCAATTTTAGGTGGCAAGGATGTTAGTGCCTTGCTAGAAAATCTGCTTCTCATTTTGAACTGTAAAAGTTTCAAAAAAAT TGGCATACATATCTGCTGCAAACCTACAACTAAGATTCTGTTTATCTTTTCAGCATACTGGCTTGAGAGGATCGATTGAC CCTCTGCTTGAGGAAGCTGACATCGACAAAGATGGAAAAATCAGCCTATCGGAGTTTCGTAGACTTCTAAGAACTGCAAG CATGGGTTCTCAAACTGTGACAACCCCAACTGGCTATCAGCGGAGGAGCTAGTTTAGTGGTGTTTTAGAGACTGAGATAT GTTAAGATGTGAGAGTGCTGGAACTCCTCCAAGTTATGTCTTGTGTGATTAAGCTGAAGCCCATAAGATTATCATCTATT ATGCAGATTTTACTCACCAAATGCTCTGGCAATGTAAGAAACTCAAACTCCTGTGTTTAGTCGACGATTCACCCGCACAA GGATATGTTCACGTCTTTGGGACTGCATCAAGAGGTGTTTGGTAGAGTTTCAGAAGACCCTGCATGGAATGGCTTCAGGT ATTACGTCCATTCCAGTGTATATCTTTTAAGTATGGGCGTTTTATTGGTTGTGCCATGCATGTAATAATAATGAACTTCT TAGAACTGTCAATAAAGATGAAATTAAATATGTTGATTGAATTATATTCTTACCATTTTCCCACCTTTATCTTATTTTAT TTCCTTCAGAAAGCAATTGCTGCCTGCTTTTCTTACTACATACTAATTCTTGAATTTGGATTTGACCTAATTCTGCCCTA GAAGAACTGTTTGACATGTGTTGTACGAGTGTCCAACAAATGTTAGTGATGTACTAGTGTCCGACACCGGACACTCCATA TTGTAGGGGTGTATGTGCTTCAATGGCATGAGAAATTTGATCTGTATTACTTATTGATGACTCTACTTCTAATGGCGTGG ATTTATGTGTATATACAAGATCATTAAATAGTGTTATCAGTTGTTTATATGTAGATGACATGCGTATCTTTGGTCCCTAT TACGATGTTGTAAATAATAGTAATTACTTTCTTTCATCTGAATTTGATATGAAAGACGTATCTGAAGCAAGTGTAATATT AGGTGTTGAAATCATAAGAAAGGGTGATAGAAACTCCCAAATGTTGAAAAACTTATTCAAAAAGTTTAGACATTTTGACG CCTCTTGATTCCAATACTAAAGAAAAATAGAGGTGATACTAATAGCCAAAATGAGTTTGCCCAAATGATTAAGTGTCTGT TTGTGTTTCCATTCCCTCAGTGTGAAAGCCAGGTGTTTGTTACCATTCCCTCAATGTGAAGCTCGGCGGTTCAACCCAAC TCAAGAGTTCTATTGGGAAAGAGTGCTTAGGAATTCGAGATTCCTGTGTGGCATGATAACTCAACTAAACCACTGCAAAA ACAAACATGCTCCAAGAGCTTGTTGAAATGAATGATTTTTTCTCGACCTAGCGTAACTCATAGGTTGATAAAGCAGATAT ACCCAAAATCTCAACCTCGATGATTGGAATGCATTACAAGGCTCATGAAATTATTGAAATATTTAAGAGGTGGATAACCG TTTTGTTAGAAGGATACAATAATGCTAGCTCGATCTATGATTTGTGACAAAAATCCACAAGTGATTATATATATTCATAC TTGCGGTAACTTAGAGATCAACCAAACAA
CDS sequence (LotjaGi4g1v0127800.1) extracted from Lotus japonicus Gifu v1.2 CDS.
ATGGGCTCCTGCTTTTCCACCAACACCGCCACTAAGCCGCAGCAGTCAACGGCGGCGCAGAAGAAACAACCGCCGCCCAA CAGACATCAACGGCAGCGAGCCCAGCGGCACGTGGCTGGCTCCAGGCACGTGCCGTCCGGGATGCGCGCCGATTTCGGTT ACGACAAGGACTTCGATGAGCGTTACTCGCTTGGGAAGTTGTTGGGACACGGTCAATTCGGTTATACCTATGTCGGAGTA GACAAAGCCAGTGGGGATCGTGTTGCGGTTAAGAGACTCGAGAAGAGTAAGATGGTTCTCCCTGCTGCTGTTGAGGATGT TAAGCAAGAGGTCAATATATTGAAAGCAGTTGCCGGTCACGAGAATGTGGTTCAGTTCTATAATGCTTTTGATGATGATT CATACGTTTACATAGTTATGGAGTTATGCGAGGGTGGAGAACTGCTGGATCGGATATTGGCCAAGAAGAACAGCCGTTAC ACTGAAAAAGATGCAGCTGTAGTTGTAAGGCAGATGCTCAAGGTTGCAGCTGAGTGCCATTTACGTGGTTTAGTGCACCG AGACATGAAACCGGAGAATTTTCTTTTCAAATCAACCAGAGAAGATTCACCTTTAAAGGCTACAGATTTTGGTTTGTCAG ATTTCATAAAGCCAGGAAAGAAGTTCCATGATATTGTTGGCAGTGCTTACTATGTTGCACCTGAAGTATTAAAGCGGAAA TCAGGCCCTCAATCTGATGTGTGGAGTATCGGTGTTATTACATACATCTTGCTATGTGGGAGACGCCCATTTTGGGATAA GACTGAGGATGGTATCTTCAAGGAGGTCTTACGTAACAAGCCTGATTTCCGCCGGAAACCGTGGCCGACTATAAGTAATG CTGCAAAGGATTTTGTCAAGAAATTGCTAATAAAGGATCCTAGGGCAAGATTAACTGCTGCTCAAGCTCTATCACATCCA TGGGTTAGAGAAGGTGGAGAAGCATCGGAGATTCCTATTGATATATCTGTCCTGAACAACCTGCGGCAGTTTGTGACGTA TAGTCGATTCAAACAATTTGCACTAAGGGCATTGGCTAGCATACTTAATGAAGAAGAGTTGGCTGATCTAAAAGATCAAT TTGATGCAATAGATGTGGACAAAAATGGCTCGATTAGCCTGGAAGAGATGAGACAGGCTCTTGCTAAAGATCTTTCTTGG AAGTTGAAAGAATCACGTGTACTAGAGATATTGCAAGCAATTGACAGCAACACAGATGGGCTGGTGGATTTCACTGAGTT TGTTGCAGCTACATTACATGTGCATCAATTGGAGGAGCATGACTCTGATAAGTGGCAGCTACGGTCACAAGCTGCTTTTG AGAAATTTGACTTGGATAAAGATGGCTATATTACTCCAGAAGAACTTCGAATGCATACTGGCTTGAGAGGATCGATTGAC CCTCTGCTTGAGGAAGCTGACATCGACAAAGATGGAAAAATCAGCCTATCGGAGTTTCGTAGACTTCTAAGAACTGCAAG CATGGGTTCTCAAACTGTGACAACCCCAACTGGCTATCAGCGGAGGAGCTAG
Protein sequence (LotjaGi4g1v0127800.1) extracted from Lotus japonicus Gifu v1.2 Proteins.
MGSCFSTNTATKPQQSTAAQKKQPPPNRHQRQRAQRHVAGSRHVPSGMRADFGYDKDFDERYSLGKLLGHGQFGYTYVGV DKASGDRVAVKRLEKSKMVLPAAVEDVKQEVNILKAVAGHENVVQFYNAFDDDSYVYIVMELCEGGELLDRILAKKNSRY TEKDAAVVVRQMLKVAAECHLRGLVHRDMKPENFLFKSTREDSPLKATDFGLSDFIKPGKKFHDIVGSAYYVAPEVLKRK SGPQSDVWSIGVITYILLCGRRPFWDKTEDGIFKEVLRNKPDFRRKPWPTISNAAKDFVKKLLIKDPRARLTAAQALSHP WVREGGEASEIPIDISVLNNLRQFVTYSRFKQFALRALASILNEEELADLKDQFDAIDVDKNGSISLEEMRQALAKDLSW KLKESRVLEILQAIDSNTDGLVDFTEFVAATLHVHQLEEHDSDKWQLRSQAAFEKFDLDKDGYITPEELRMHTGLRGSID PLLEEADIDKDGKISLSEFRRLLRTASMGSQTVTTPTGYQRRS
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 |
---|---|---|---|---|---|---|
MobiDBLite | 1 | 46 | 46 | - | – | |
MobiDBLite | 1 | 25 | 25 | - | – | |
PANTHER | 10 | 515 | 506 | 1.4E-295 | – | |
PANTHER | 10 | 515 | 506 | 1.4E-295 | – | |
SUPERFAMILY | 59 | 334 | 276 | 6.34E-80 | ||
CDD | 61 | 321 | 261 | 3.24623E-125 | – | |
ProSiteProfiles | 62 | 322 | 261 | 48.357 | ||
Pfam | 62 | 322 | 261 | 8.5E-68 | ||
SMART | 62 | 322 | 261 | 2.2E-89 | ||
Gene3D | 62 | 145 | 84 | 2.4E-142 | – | |
ProSitePatterns | 68 | 91 | 24 | - | ||
Gene3D | 146 | 327 | 182 | 2.4E-142 | – | |
ProSitePatterns | 184 | 196 | 13 | - | ||
Gene3D | 328 | 501 | 174 | 2.4E-142 | – | |
SUPERFAMILY | 354 | 505 | 152 | 1.91E-33 | ||
ProSiteProfiles | 365 | 400 | 36 | 13.314 | ||
Pfam | 369 | 431 | 63 | 1.1E-9 | ||
SMART | 369 | 397 | 29 | 0.0016 | ||
ProSitePatterns | 378 | 390 | 13 | - | ||
ProSiteProfiles | 402 | 437 | 36 | 9.855 | ||
SMART | 406 | 434 | 29 | 4.0 | ||
ProSitePatterns | 415 | 427 | 13 | - | ||
ProSiteProfiles | 444 | 479 | 36 | 11.138 | ||
SMART | 448 | 476 | 29 | 0.35 | ||
Pfam | 451 | 503 | 53 | 1.7E-10 | ||
ProSitePatterns | 457 | 469 | 13 | - | ||
SMART | 478 | 506 | 29 | 0.0098 | ||
ProSiteProfiles | 482 | 509 | 28 | 9.911 | ||
ProSitePatterns | 487 | 499 | 13 | - |
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 kinase activity | Catalysis of the phosphorylation of an amino acid residue in a protein, usually according to the reaction: a protein + ATP = a phosphoprotein + ADP. | ||
Molecular function | Calcium ion binding | Interacting selectively and non-covalently with calcium ions (Ca2+). | ||
Molecular function | ATP binding | Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator. | ||
Biological process | Protein phosphorylation | The process of introducing a phosphate group on to a protein. |
Expression pattern of LotjaGi4g1v0127800.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.
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