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LotjaGi4g1v0304800.1

Overview

Field Value
Gene ID LotjaGi4g1v0304800
Transcript ID LotjaGi4g1v0304800.1
Lotus japonicus genome version Gifu v1.2
Description Zinc-transporting ATPase; TAIR: AT2G19110.1 heavy metal atpase 4; Swiss-Prot: sp|O64474|HMA4_ARATH Putative cadmium/zinc-transporting ATPase HMA4; TrEMBL-Plants: tr|K7LWU0|K7LWU0_SOYBN Uncharacterized protein; Found in the gene: LotjaGi4g1v0304800
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr4:68022135..68030862) extracted from Lotus japonicus Gifu genome v1.2.

CACCCTTTCAGTCACCCACGAAACACACACTTTTATTTATTTATGAAACGTTCTTACTTCTTAGTATATATATATAGAAT GTATATCTGAAAACTGTCACCTTTTTTTTCTCTTTCCTCCTTGTTTTTGTTGAGCTGTATTTGTACATTTTATCTAGCAC CTCTGGTGCTCTTATTTATACCATTAATTGGCTTATCTGTGATTCAGCTCCATTTCCCCTCAACTTCTGAAGCGACGTTT TGATAGTGGTGGTGATGGCTTCCCAGAAACAGGAGGAGAAGAAGTTGCAGAAGAGCTACTTCGACGTGTTGGGTTTGTGC TGCTCTTCAGAGGTGCCGCTGATTGAGAGCATCCTGAAACCTCTCGAAGGAATCAATGAGGTTTCTGTCATTGTCCCTTC ACGAACCCTCATTGTTGTCCATGATAGTCTCATCATTTCTCAGCTCCAGATTGGTAAGGTTCTTCTTCCCCCATCATATC ATCGTCATGATTTTAACCATTTTTTGTGTGTGTTTGTTACTCTGTTTTTGTCCTGCACCAACTTTAATTTAATTTAATTT GTGTTTGTCCCATTGATGACTAATGGTCAAATAAGTTTACCAATTAACTACATTCCCCCATTCTTGCATCCTGCACACAT GGACTGAACAAGAACAAATGTGGCAGTAATAATTTTTTGGAAGATAAGAAATAAATAAATTGTAAAAAAGAAATTGAATT TGGGGACATGGAAGTTGAAACATGGTGGTCTGTTTAGCCCCTATTTCTTAACTCATAATTATAAAAAAAATGTTAATCAA TTTATTTTTCCATCTTTCTATTTTAATCTTCATCGCATCATATATACACTTGGTGAGAGGGAAAGATACTATATGTGTTT GATACATTACCCCACTGGTTACTCTAGTGGGTCACCAAGATGGAAAAAGTTGTCTCTTTTGCATTTCTTCACTAATTTAT GAATGAAGATAGGGATTAGGGAGTTCATTTTTAACTCTACTAAGCCATCACGTTCATGAACTAAACCCAAAGTTTTTCAA TATAAAATATTTAAATGCCTTTTTTGTTCCTATTAGAAAACTATAATGTTTCCTTTGGTTAATTATTAGAGTTTAATGGA TATGCACTGACAGTGTAAAATAGTTTTACACAGTCATTCAATCAAAGCATGCCACGTAGGAGAGATTATTACATTTGACT TTAATTTTAATTAAAAGAATAAGATATTTTCTGATTTGGCGGAATTCAATTGGATGTCTGTGTAAAACTATTTTATACTG TCAGTGCATATCCATTAAACTCTAATTATTATTCATGAGCTTGTTTGCTTCATATTATTTCTAGTTGGACGTTGTTTCCT CATATAACTAATAGGACAAAGCTATTGGGGTCATTCCCTTACTTATTCTCACCACCTTTTGCAGAAGGTATAAATTGTTT TCTGCAATCTTCAATGCAATATGTAATTGATTTTTTATGTTCCGCAATCATAGATGTGAAATATTGAGATTGTGAGAATA TGTGTGGGGATGACATGCATAGTTTTATCCCAACTCATTTCTTGCTCCGTAAAATTAACTTTGGTTTAGAGGGCTGCTAA CTGAGAAATAAAGGAACTCTTCATATGTTAAAATTTCTCCTTCGTATCATTTTATCCGGTTCTGTACAGTGAAATTAAGA GTTAAAGCTTCTAAAATGTTGTTGTTGTGGTGACAGTTAAGGTTCTGAATCAAGCAAGGCTAGAAGCAAATGTTAGAGTG TATGGAAATGAAAAGCACCAAAAGAGATGGCCAAGACCATATTCAATTGCTTCTGGATTGCTTCTTTTGCTTTCGTTTCT CAAGTATGTCTACTCTCCATTAAAATTCCTGGCGCTTGGAGCAGTTGCTGTGGGCATATACCCAATCATCTTGAAATCTT TTGCTTCTCTACGAAACGCAATACTTGACATCAACATTCTCATGATCATAGCAGGTAACGAACCAATTGCACTTTCTAAT GCTTATTTTTTAGTGCTTAATTATATTATAGTAGTATACAATATGATAGCTCTAGTGAGTCTTTTGAGCAATTATAAAAA GGTGCTTCCTGTGCCACCTTGATTCAGGCTAAGGTATGGTACACCAAATGAGTTGACATAGTAATAAAAATGCATGTATT ACATGAGTCAACAATTGTATTTTTTCAATAATGTACCTTAAGGTTAATAGTGTCGATTAGATCGGTGTTAGGTCTCTCAT TTGATCGAAACCATGTCACTCAGACCCAATGCTAGGGTCGGGATTCACTGTAACCGTTGCAAGGTCGTTGTGGACATCAA CAAAAGTCGTCAGGGGACAGTTGCGTTTTCCAGTGAATGAGAGCACTATTAGACAAGAATTATAACATTGAGAATTATAA TTTCAATTACGGTATGTCATTAATGTACTGAATCGCCTAATGAGAGTATCACGCCAAAAAAATATGGATAGCACAGAATT CACCTTATAAAAAAGGTCGTGTCTCATTTTAAGTGCATTAATAGAATTTAAGATAAGTGGTTAAGATATTTAATATTTTT TGCTTTATTTTTTTATAAATAATTTTATTGATCTACTAAGATGTGATTAAATTACTTTAGGTAATTTAGACAAGTTCATT ATAAAATTAATTCTAATAACAATCATGATTTTCTAGGACTTTTACAAGGGAACAAAGGGCTTTTTTTCTTCTTTGACTTT TTATTTTATTTTATGCCTCCCCTTTAATTTAGCATTTAAATTGAGAAAATTTATAAATAATGTGAAAGGGCAGAATGTGC ATGTAGGGGTGGGAATAGGTTGGGTTTAGGTAGGCTTTGCGTAAATAGGCCTAGCCTGTTTAAAAATCTTAAGGCCTGGG CCTGGCGTGTGGCCTGTCCAAGGCTTTTTTTCGAGTCTGGCTTGACCTTCTCGAAAGCCTGGTCTGGCCTGGTAGCCTAT TTAAAGGCTCGTTTCACAACAAGAGTTTTGCGTTTGCTAACAAACTTATTTGTACAGAAGCTATCAAACTTATAAATTAA CGGTTAAATTATACTAAAATAATTTTTTCAACAATCAGACACATAATATTATAAGCTATTAGGTAGAGATGAAACTAAAC GAGAGATTATATTGGTTTCTTAGTGTTTGAGAGCCCATTATAAAATCACACTTCATATAAAGGTATTTACATATGTTATA TATCTATTTTTAAATAGAGTTATAACTTTGAGTCATTATATAAGTCAATTTGCTTAAATATATAAAAATGTCAATAAGTA TATAATATCAAGATATTATGATAAATTTCTAATGTATAGACATCATCAATGGTGAAATTTATTTATACTAATCATATTTA CAATGTACCAGAAAAATACGAATCATTTTTACTTAAATAGGCTAGCTTATAAGGCTTAAAAGACTTTTTTGAATGGCCTG AGCCTAGTCTTTTTAACTAAATAGGCTTTTCAAAAAGCCTAAGCCTTGCCTAATTACCAATTTGGTCTGGCCCGGGCCTG CAGTAGGCTAGACCATAGGCCCCTACGAACGGTCTGACATATTCTCACTCCTATGTGTCTGCACTAACACTGGTCAATCA ATTAAAATATTTTTTTTATCCGCGTACTTAAAATTTAATTGGTTAGTACTTAGTAAGGTAAGTACGAAAATATAGAAAAT ATAAAATTTAATTACACTAGTAACTATATATGTATTTTTAGTCCAAAAAAAACTATGTATTTTGCCTATGTAAAAAAAAA TTTGCCACATCATAAAATAAATAAGAAAATACCAGAATAAAATATAACAAGATATATTTGTAAAAAAAATTAAACTGTCA ATATATATAAATTAAATTCATTTTAATTTGGAAGTTTTTTTTACTGAGAAGAAAGATATATAGCCTCTTTTTTTTTAATG TTTTTTCCGCAATCTTATCCTTTTGGTAAGAGATAAACACTATAAAACTTATGTAAAACTCCACAAAATTTGAATTTTGC AAAACATTTGTCAAATTGACTTGTGAAGAAAGAAATCCATTTATAATTTTATACTCATACTTATCCGTGTGCCTGCCTTT TCCCAGAAGAAAAAGGTTATTTTGCCGTGTGCTCATAATTAAAACTGACATGCTATCCAAAATTCATTTTAATATTAAGT TAAAACGTTTGCTTGATTGTGACTGTATAGTATAGACACTACATGTTCATAAAAAAACAACCTTTCAAGAAATAGGTGTT TTTTTTTTACCCTAAAAAAAAGGTCTATTTTTTTTTCAAAAATAAAACTTCACTTGATTAATTTTTTTTTTCAAAATTAT AAACATTTAACCTGCTTCAGATTCTCCCCGACTAATAGCTCAAGTGGTAAGAGTTAGGAGAGATGTAGGTTGCGTGAGGG AGGTCCACAGATCAATCCCTGACGGGTGCAATTTATCTTTTCCATGTAAAAAAAACCTGCTTTAGATTATTCATCCACAA GCTATGTCAGACATATATCATATATGCATGCCTCTAAAATGCGAAAATTATGTTTAACTAGAGCATAATTAACTTTTATG TATTAATCATTAAAGATATCACATCCACGCATTTGTAATTTGCAGTTCCACTGAATGTGTTTTAATTTGACAGTAATTGG GACAATTGCTATGAATGATTATTTGGAAGCCGCCACCATTGTTTTCCTATTCTCAATTGCAGAATGGCTAGAGACAAGGG CAAGCTACAAGGTATTTTTCTTATTTCATTTTTCATGCTTAACACTAGTTCTAGTATTGTTCTTTAATTTATCAAGAGAC TAGTGATCCAGATTATACAGTAAAGCCTTAATCAAATGAGTGTTGATGCTTCTTATTGTATAACTGAAATGACATTTGTT CAAAATCATACAGTTTTTTTCCCATTAGAATCATGCATAATGTTTGTTTGTCACAACTTTGAACAATTCTGAGCTGTCAA AATCATAGTCTTGTTGCCTTATTACTTACACAAAATTATGAAAAATGTATGATTTACTAGTACTAGAATTATTATCACTA TCATGATGATTGATGAAGAAACTTAACAAAATCATGGCAAATGCAGTAATGCAGTAATGTCAGTATTAGAAACCACCTAA AATTTGCAATTTTTATGGATTCAGGCAAATGCAGTAATGTCATCATTGATGAACATAACTCCTCAAAAAGCAGTGATAGC TGAAACAGGAGAAGTTGTGGATGCTGATGAGGTGAAATTTAACACCATCATTGCAGTTAAAGCAGGGGAGGTGATACCCA TTGATGGGGTTGTTTCAGATGGAAACTGTGAAGTTGATGAAAAAAATTTGACTGGGGAATCATTCCCAGTAGCCAAACAA AAGGATTCTACTGTCTGGGCTGGCACCATCAATTTAAATGGTAAATTATTTATCTCCATTATATGTATCATTGGTAAATA AAAAGAAAAATATGTATCTTTGAGGGTTAATTTTTTTTATTGGTTAAAAGGTTATATTAGTGTGAAAACTACTGCATTAG CAGAAGATTGTGTGGTGGCTAAAATGGCAAAGCTTGTGGAAGATGCTCAGAACAGTAAAACCAGCACTCAAAGATTGATT GACAAATTTGCCAAGTTTTATACCCCAGGTTAGTTAAATTCAAGAGTATTTGCTTGCATTCTATTTCCTTGTTCTTATTT CTTGATGGTAATGTTTTCAGCTGTTGTCGCCATATCAACTCTTGCGGCGGTGATTCCACTAGTGTTGAAAGTACATAATG AGAAGCACTGGCTTCACTTTGCACTGGTGATCTTAGTGAGTGCATGCCCATGTGCACTTGTCCTTTCAACACCAGTTGCA ACGTTTTGTGCCTACACTAAAGCAGCTACATCCGGTCTTCTCATCAAAGGGGGTGAAAATCTTGAAACACTGGCAAAAAT TAAGATCATGGCTTTTGACAAAACTGGCACTATAACAAAGGGTGAATTTGTGGTGACAAGTTTTCAATCCCTCTCAAAGG ACATTGATTTGAGCACGTTGCTTTACTGGTAAGGATTGCTTCCCTCTCTTCATCCTTTGTATCTGTCAATCTTTATTTGA AATGCATATTCAATTTAGTGAATTATGGTGATAGATCTTGTTAGAAATTTTTTTAAGCTTATTTTGAATATGGATCAAAT AGATGGTTGGATTCTGAGATAAATGAGTTTAACAAATTCAACTTTTCAGGGTGTCAAGCATTGAGAGCAAGTCAAGCCAT CCATTGGCTGAAGCAGTGGTTGATTATGGAAAGTCTTTCTCTATTGAACCAAAGCCAGAAAAGGTGACTGAATTTGAAAA TTTTCCTGGAGAAGGAATCTGTGGGAAAATTGATGAGAGTGTTTTTTTCATTGGTAACAAAAAAATTGCCACAAGAGCAG GGTCTGAATCAGGTGAACACCTTTCCCCTATTTATGTTTATGGTGACATTACTCTTTAAGGTCAATTCAAAAGTAGAAGT GTAAACCTGGTAATGATACAATCCTGCTATTGAGAGAGATTCATTACACTATAATTATAACTCATTTCAATATCCCTTTT AGCTAACAATTAACCATGGAGCCTTATTGATTTTTCTGTTTACTTGAACTGAATGAAGTTTTTATTGTAATGATTTTGTA GTTCCGACGTTACAAGGTGAAGATCAAAGAGGAAAGACCACCGGGTACATATACTCCGAAGGGAGCCCAGTTGGATATTT TTCTCTATCGGATGCTTGTCGATCAGGGGTTCAGGAAGCAATAGCGCAGCTTAAGTCATTGGGAATCAAAACCGCTATGC TCACCGGGGATTGTGAATCAGCCGCAATGCAAGCACAGGAGCAGGTATATGATGTTACATGGTTAAACCTCTATGAATAT ATTATGGCTATGTTCTAGAATTTGGATATATCATTGTATGAGTATCAGATTCTATATTTGCAAACACAAATACACATTGA ACTTATATGCTGTGAGTCTGTGACTGATGAATTGATTTAATGTTTTAAGATGTCACAAGACCATTCATTTTTTTATTGTA CATATCTGAATATGCTCTAGTGTTACATTTACTTTCCATGTATGATGTGTCAGTGGGAGTCATAGAACCTGAAATAAATA CTAATGGGAACATTGATTTCATTTGCAGCTTGGAAATGCTCTGGAGTTAGTCCATGCAGAACTTTTGCCAGAGGACAAGG TGAAAATCATCTCAGGGTTTAAAACTGAAGTCCCAACAGCCATGATTGGAGATGGTGTTAATGACGCACCTGCATTGGCT AAAGCTGATATAGGAATCTCAATGGGAATTTCAGGTTCTGCACTGGCAAGTGAGACAAGCAATATAATTCTCATGTCAAA TGATATTAGGAAGGTGCCAGAAGCCATTAAGCTCGCGAGAAAATCTCGGAGGAAAGTGATAGAAAATATCATCTTGTCTG TCATTACGAAGGCTGCGATTGTCTGTTTGGCCATTGCTGGCCATCCAATTGTTTGGGCTGCAGTTCTTGTTGATGTTGGA ACATGTCTCTTGGTTATCTTAAACAGCATGTTGATTCTGAAGAAAGGACACAAACATGGAGGAAAATGTTGTAGATCTTC AACTCATAAACATGTCCACAAAAAAGGATGTGGTGGTGGCAATTCCCCTCATCATCACCATCATCACGGGCATAAGCACA AACATCAACATCAGCATCTGCATCAACATGATAGCCATGAGCATTGTTGCTCAGACAAAGCAAAAAAGATATCTCAGCCT CAGAAGTGTGCCTCCAAGACATGCTCCTCTAATAGTCCACCCCGCCCTTCAAGTTTGAGTCTAGGCAGAAGTGTTAAGCA TCTTAATATCTCAGAGGGTCATGTCCAATGTGCTGAAAATGATGAAAAAGAAATCCAACAGTCTGCTCAACATTGTCACT TGATCCATCATTGTGAAAATCTGAAAGACCATGGCATTCAGCATAAAAAATCAGGTTGTGATTCTGATTCTAAGAAGCAC GGGTCAGGTGAAATATCCATTGACATCGATGGACATGTCCATTCAGCCTCCAAGCATGGCTGTTCAACTTTGAAAGAGGA AACAAAAGGTTCTTGTTGTGGAAACCGCTCGGACACATATCACAAATGGCCTACTGAAATTGGCTGTGACTGTGAGGGTT TAAATGAGAGAGAAGTGAGTGCTTGTTGCAGAAATGTGGGGTCTTTGAAAGAATCTTTGGAATCCTCTATTATGCAGCAT GCTTGTATTAGTTTGAACAAGAGATAAGTTGGTGGATGTTGCAAGAGCTACATGAAAGAATGTTGTGCCAAGCATGGACA CTCAGGGGCTGGTTTTGTAGGAGGCTTATCATAAGCAATAAATGTCAACAAGCTTGCTTTTGTAAGTTTATATATTTTAA TGAAGATCTGGTGGAGCTTGTCAAGTTGACAAACAGCACTGTGGCATTAGTTTGAAGGTAGTTTAGTAAGGAAAACAAAC ATTGTTCTTGGCTTTTCATTTTCAAGTTTTTGTTTTATTTCAGAGAATTGGGTAGATGTTAAGGTCTTCTGGCTCTTTCA TGTATGTTGCATATTATACTGGTAGATGTTAACATCAAAACTAGACAGTTATCTATCAATAATCTATCTCAATTGTTTGC TTCTGTTACGTTTTGTTGTGGTATGCTGGTTTGGTGACTGACTCTTATTTGGTGATGACACATTCTGTTTACACTACAAC TCCACATA 

CDS sequence (LotjaGi4g1v0304800.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCTTCCCAGAAACAGGAGGAGAAGAAGTTGCAGAAGAGCTACTTCGACGTGTTGGGTTTGTGCTGCTCTTCAGAGGT GCCGCTGATTGAGAGCATCCTGAAACCTCTCGAAGGAATCAATGAGGTTTCTGTCATTGTCCCTTCACGAACCCTCATTG TTGTCCATGATAGTCTCATCATTTCTCAGCTCCAGATTGTTAAGGTTCTGAATCAAGCAAGGCTAGAAGCAAATGTTAGA GTGTATGGAAATGAAAAGCACCAAAAGAGATGGCCAAGACCATATTCAATTGCTTCTGGATTGCTTCTTTTGCTTTCGTT TCTCAAGTATGTCTACTCTCCATTAAAATTCCTGGCGCTTGGAGCAGTTGCTGTGGGCATATACCCAATCATCTTGAAAT CTTTTGCTTCTCTACGAAACGCAATACTTGACATCAACATTCTCATGATCATAGCAGTAATTGGGACAATTGCTATGAAT GATTATTTGGAAGCCGCCACCATTGTTTTCCTATTCTCAATTGCAGAATGGCTAGAGACAAGGGCAAGCTACAAGGCAAA TGCAGTAATGTCATCATTGATGAACATAACTCCTCAAAAAGCAGTGATAGCTGAAACAGGAGAAGTTGTGGATGCTGATG AGGTGAAATTTAACACCATCATTGCAGTTAAAGCAGGGGAGGTGATACCCATTGATGGGGTTGTTTCAGATGGAAACTGT GAAGTTGATGAAAAAAATTTGACTGGGGAATCATTCCCAGTAGCCAAACAAAAGGATTCTACTGTCTGGGCTGGCACCAT CAATTTAAATGGTTATATTAGTGTGAAAACTACTGCATTAGCAGAAGATTGTGTGGTGGCTAAAATGGCAAAGCTTGTGG AAGATGCTCAGAACAGTAAAACCAGCACTCAAAGATTGATTGACAAATTTGCCAAGTTTTATACCCCAGCTGTTGTCGCC ATATCAACTCTTGCGGCGGTGATTCCACTAGTGTTGAAAGTACATAATGAGAAGCACTGGCTTCACTTTGCACTGGTGAT CTTAGTGAGTGCATGCCCATGTGCACTTGTCCTTTCAACACCAGTTGCAACGTTTTGTGCCTACACTAAAGCAGCTACAT CCGGTCTTCTCATCAAAGGGGGTGAAAATCTTGAAACACTGGCAAAAATTAAGATCATGGCTTTTGACAAAACTGGCACT ATAACAAAGGGTGAATTTGTGGTGACAAGTTTTCAATCCCTCTCAAAGGACATTGATTTGAGCACGTTGCTTTACTGGGT GTCAAGCATTGAGAGCAAGTCAAGCCATCCATTGGCTGAAGCAGTGGTTGATTATGGAAAGTCTTTCTCTATTGAACCAA AGCCAGAAAAGGTGACTGAATTTGAAAATTTTCCTGGAGAAGGAATCTGTGGGAAAATTGATGAGAGTGTTTTTTTCATT GGTAACAAAAAAATTGCCACAAGAGCAGGGTCTGAATCAGTTCCGACGTTACAAGGTGAAGATCAAAGAGGAAAGACCAC CGGGTACATATACTCCGAAGGGAGCCCAGTTGGATATTTTTCTCTATCGGATGCTTGTCGATCAGGGGTTCAGGAAGCAA TAGCGCAGCTTAAGTCATTGGGAATCAAAACCGCTATGCTCACCGGGGATTGTGAATCAGCCGCAATGCAAGCACAGGAG CAGCTTGGAAATGCTCTGGAGTTAGTCCATGCAGAACTTTTGCCAGAGGACAAGGTGAAAATCATCTCAGGGTTTAAAAC TGAAGTCCCAACAGCCATGATTGGAGATGGTGTTAATGACGCACCTGCATTGGCTAAAGCTGATATAGGAATCTCAATGG GAATTTCAGGTTCTGCACTGGCAAGTGAGACAAGCAATATAATTCTCATGTCAAATGATATTAGGAAGGTGCCAGAAGCC ATTAAGCTCGCGAGAAAATCTCGGAGGAAAGTGATAGAAAATATCATCTTGTCTGTCATTACGAAGGCTGCGATTGTCTG TTTGGCCATTGCTGGCCATCCAATTGTTTGGGCTGCAGTTCTTGTTGATGTTGGAACATGTCTCTTGGTTATCTTAAACA GCATGTTGATTCTGAAGAAAGGACACAAACATGGAGGAAAATGTTGTAGATCTTCAACTCATAAACATGTCCACAAAAAA GGATGTGGTGGTGGCAATTCCCCTCATCATCACCATCATCACGGGCATAAGCACAAACATCAACATCAGCATCTGCATCA ACATGATAGCCATGAGCATTGTTGCTCAGACAAAGCAAAAAAGATATCTCAGCCTCAGAAGTGTGCCTCCAAGACATGCT CCTCTAATAGTCCACCCCGCCCTTCAAGTTTGAGTCTAGGCAGAAGTGTTAAGCATCTTAATATCTCAGAGGGTCATGTC CAATGTGCTGAAAATGATGAAAAAGAAATCCAACAGTCTGCTCAACATTGTCACTTGATCCATCATTGTGAAAATCTGAA AGACCATGGCATTCAGCATAAAAAATCAGGTTGTGATTCTGATTCTAAGAAGCACGGGTCAGGTGAAATATCCATTGACA TCGATGGACATGTCCATTCAGCCTCCAAGCATGGCTGTTCAACTTTGAAAGAGGAAACAAAAGGTTCTTGTTGTGGAAAC CGCTCGGACACATATCACAAATGGCCTACTGAAATTGGCTGTGACTGTGAGGGTTTAAATGAGAGAGAAGTGAGTGCTTG TTGCAGAAATGTGGGGTCTTTGAAAGAATCTTTGGAATCCTCTATTATGCAGCATGCTTGTATTAGTTTGAACAAGAGAT AA 

Protein sequence (LotjaGi4g1v0304800.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MASQKQEEKKLQKSYFDVLGLCCSSEVPLIESILKPLEGINEVSVIVPSRTLIVVHDSLIISQLQIVKVLNQARLEANVR VYGNEKHQKRWPRPYSIASGLLLLLSFLKYVYSPLKFLALGAVAVGIYPIILKSFASLRNAILDINILMIIAVIGTIAMN DYLEAATIVFLFSIAEWLETRASYKANAVMSSLMNITPQKAVIAETGEVVDADEVKFNTIIAVKAGEVIPIDGVVSDGNC EVDEKNLTGESFPVAKQKDSTVWAGTINLNGYISVKTTALAEDCVVAKMAKLVEDAQNSKTSTQRLIDKFAKFYTPAVVA ISTLAAVIPLVLKVHNEKHWLHFALVILVSACPCALVLSTPVATFCAYTKAATSGLLIKGGENLETLAKIKIMAFDKTGT ITKGEFVVTSFQSLSKDIDLSTLLYWVSSIESKSSHPLAEAVVDYGKSFSIEPKPEKVTEFENFPGEGICGKIDESVFFI GNKKIATRAGSESVPTLQGEDQRGKTTGYIYSEGSPVGYFSLSDACRSGVQEAIAQLKSLGIKTAMLTGDCESAAMQAQE QLGNALELVHAELLPEDKVKIISGFKTEVPTAMIGDGVNDAPALAKADIGISMGISGSALASETSNIILMSNDIRKVPEA IKLARKSRRKVIENIILSVITKAAIVCLAIAGHPIVWAAVLVDVGTCLLVILNSMLILKKGHKHGGKCCRSSTHKHVHKK GCGGGNSPHHHHHHGHKHKHQHQHLHQHDSHEHCCSDKAKKISQPQKCASKTCSSNSPPRPSSLSLGRSVKHLNISEGHV QCAENDEKEIQQSAQHCHLIHHCENLKDHGIQHKKSGCDSDSKKHGSGEISIDIDGHVHSASKHGCSTLKEETKGSCCGN RSDTYHKWPTEIGCDCEGLNEREVSACCRNVGSLKESLESSIMQHACISLNKR 

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

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Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
Phobius 1 94 94 -
PANTHER 3 879 877 0.0
PANTHER 3 879 877 0.0
Gene3D 7 81 75 3.2E-11
SUPERFAMILY 10 78 69 8.51E-9
ProSiteProfiles 13 79 67 13.581
CDD 95 696 602 0.0
Phobius 95 112 18 -
TMHMM 110 132 23 -
Phobius 113 117 5 -
Phobius 118 136 19 -
Phobius 137 140 4 -
Phobius 141 159 19 -
SUPERFAMILY 145 388 244 3.14E-18
TIGRFAM 145 696 552 1.3E-175
TIGRFAM 145 485 341 3.0E-98
TMHMM 147 178 32 -
Phobius 160 164 5 -
Phobius 165 184 20 -
TIGRFAM 168 672 505 2.1E-72
Gene3D 172 297 126 1.5E-30
Phobius 185 312 128 -
Pfam 204 372 169 3.0E-45
SUPERFAMILY 208 293 86 9.55E-21
PRINTS 243 257 15 4.5E-24
TMHMM 310 332 23 -
Phobius 313 332 20 -
Phobius 333 343 11 -
Phobius 344 368 25 -
TMHMM 347 369 23 -
Phobius 369 650 282 -
Gene3D 375 646 272 3.5E-77
SFLD 377 646 270 0.0
SFLD 377 646 270 0.0
Pfam 390 608 219 6.1E-36
PRINTS 394 408 15 4.5E-24
SUPERFAMILY 394 695 302 5.67E-44
ProSitePatterns 396 402 7 -
Gene3D 405 525 121 3.5E-77
PRINTS 540 550 11 4.5E-24
PRINTS 594 610 17 5.0E-6
ProSitePatterns 594 616 23 -
PRINTS 594 613 20 4.5E-24
PRINTS 618 630 13 4.5E-24
PRINTS 626 651 26 5.0E-6
Phobius 651 671 21 -
TMHMM 655 672 18 -
Phobius 672 676 5 -
TMHMM 676 698 23 -
Phobius 677 698 22 -
Phobius 699 933 235 -
MobiDBLite 719 751 33 -
MobiDBLite 719 746 28 -
MobiDBLite 767 787 21 -

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 Nucleotide binding Interacting selectively and non-covalently with a nucleotide, any compound consisting of a nucleoside that is esterified with (ortho)phosphate or an oligophosphate at any hydroxyl group on the ribose or deoxyribose.
Biological process Cation transport The directed movement of cations, atoms or small molecules with a net positive charge, into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore.
Cellular component Integral component of membrane The component of a membrane consisting of the gene products and protein complexes having at least some part of their peptide sequence embedded in the hydrophobic region of the membrane.
Molecular function Cation-transporting ATPase activity Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: ATP + H2O + cation(out) = ADP + phosphate + cation(in).
Biological process Metal ion transport The directed movement of metal ions, any metal ion with an electric charge, into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore.
Molecular function Metal ion binding Interacting selectively and non-covalently with any metal ion.

Expression data

Expression pattern

Expression pattern of LotjaGi4g1v0304800.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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