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LotjaGi1g1v0688600.6

Overview

Field Value
Gene ID LotjaGi1g1v0688600
Transcript ID LotjaGi1g1v0688600.6
Related isoforms 6
Lotus japonicus genome version Gifu v1.2
Description ABC transporter ATP-binding protein; TAIR: AT2G36910.1 ATP binding cassette subfamily B1; Swiss-Prot: sp|Q9ZR72|AB1B_ARATH ABC transporter B family member 1; TrEMBL-Plants: tr|A0A0L9TFA1|A0A0L9TFA1_PHAAN Uncharacterized protein; Found in the gene: LotjaGi1g1v0688600
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:125595995..125603537) extracted from Lotus japonicus Gifu genome v1.2.

GAAGAGATAAAGACTATTGAGCAGTGGAAATGGTCTGAAATGCAAGGCCTTGAGCTTGTGAATGATGATTCTGCTGCCAC AAAACCAATGGAAACAGGGGACTCTGTTTCCAAAACAGAGCACTCTGTTTCTAAAACAGAGGAGGGTCCTTCTTCTTCTT CTCAAGTTGAGGTTCTAAAGGAAATGGAGAACTCTGAACCTGTCAAAAATGGTTCTGTCAGTGGTGGAGAGAAGCATGAG GCTCTTCCCTCTGTTGGGTTCTTGGAGCTTTTCAGATTTGCTGATGGGTTGGATTGCATTCTCATGACAATTGGAACTTT TGGAGCAATTGTTCATGGTTGTTCTTTGCCTTTGTTTCTTCGGTTCTTTGCGGATCTTGTGAACTCTTTTGGGTCCAATG CTAATAACTTGGACAAGATGACCCAGGAAGTTGTCAAGGTAGAAATGATAGGAAATTGTTCCAAATTCTATGCTTTTGTA AATTGAGATTTTGAAGATGAATGTGAATTGTTCAGGGTTTTAAAGGTAGTGTTGTTTTTTGCAGTATGCATTTTACTTCT TGGTGGTTGGTGCTGCTATATGGGCATCTTCATGGGCAGGTGAGTTTTTTTCAGTTTAGTTTCCAATTTTGAATTCTCTT TGAACAAGCTTCTGGTTCTTCTTTTTTTTGCTTTTGGAGTGTTTGGTGTTTTCATTTTTCAATTGTTTAGAGTTGTGGAT GATTTAATGGAATTGGACTTGTTGCAGAGATTTCATGTTGGATGTGGACTGGAGAGCGTCAATCAACAAAGATGAGAATC AAGTACCTGGAAGCTGCTTTGAGCCAGGACATTGAGTTCTTCGACACCGAGGTTCGAACATCCGATGTTGTTTTCGCCAT CAACACTGATGCTGTTATGGTCCAGGATGCCATTAGTGAGAAGGTGGATGAACTAGTATTATGTGTTCTTCTTTCTTTCT TACTTTTTTTTGTTAGTACTTGTTTGGATGCAAACCAAAAAGCACTTATTAGAGCTTATTTTCTAGTAGATAAGCTCGAA TAAGTTCGACGGGCTAGTGTCATTAGGTTGGACTAGTTTTTTGATTTGGTTGTTGATTGGTGCTTGATGTGCAGTTAGGC AATTTCATTCACTACATGGCCACATTTGTTTCTGGTTTTATTGTGGGTTTCACTGCTGTTTGGCAATTGGCTTTGGTCAC CCTTGCTGTAGTCCCTATGATAGCTGTGATTGGAGGCATTCACACCACCACGTTGGCCAAGCTTTCCGGCAAAAGCCAGG AAGCTCTTTCTCAAGCCGGCAACATTGTGGAACAGGTAAAGAGTAATAGCATGTTTGAATCAGCTCATCATTTCTCAGAA TCAATCACTTTCGGCCCCCGCAAACTTCTTCCCATATTCGGAATCAATTGTAGAAAAATTTCTGACTGTATTTGTTCATG TTGCAGACGGTTGTGCAAATCAGAGTAGTGTTGGCCTTTGTTGGGGAATCAAGAGCAATGCAATCCTATTCATCAGCCTT GAAGGTTGCTCAGAAGCTTGGATACAAAACCGGGTTTGCAAAGGGATTGGGATTGGGTGCTACATACTTTGTTGTTTTCT GTTGTTATGCACTTCTTCTATGGTATGGAGGCTATCTGGTTAGGCACCACTACACCAATGGAGGACTTGCCATTGCAACC ATGTTTGCTGTTATGATCGGTGGAATGTGAGTAGTAGTAATGTATTTTTGTGTTTTAGTGCATGTTTGGATACACAGTGG AAACCTACGGTGAAGCCAACTTACGGTGGACAGAAATATCTTTCCTTAGCTTTTGCCACTGTTCACATGATTTTGGCACC ACGGTAGTTTTCAATTGTGTATCGAAGCATGCACTTAGCAACACCATGAACATTTTAAGGTTTGACATGTTTAAGGATTT GATCCACACAGAGGTTTGGGGCAGTCTGCACCTAGCATGGCTGCATTTACAAAAGCTAAGGTTGCTGCTGCAAAGATTTT CCGTGTAATTGATCACAAGCCTGGTATAGACAGAAACAATGAATCTGGCTTGGAATTGGAGACAGTCACTGGACTTGTGG AGCTGAAAAATGTAGACTTCTCTTACCCATCTAGGCCAGAGGTTCAGATCCTCCATGATTTCTCCTTGAATGTGCCTGCT GGCAAGACCATAGCTTTGGTGGGTAGCAGTGGCTCTGGCAAGAGCACTATTGTCTCCCTCATTGAGAGATTCTATGACCC AACTTCAGGTAAAGTTCTAAGCATTTGGAAACACAACAATTCTTATAGCATGTTTGAATCACCTTCTCCTTCATTAGAAT CAATTCTTAAACACAATGTACTCAGAAGCTTCTCCTCATGACTGGTTATAGTCTGTTTGAATTAGTTTCTCTGTCCTCAG AATCAATTCTGGCACCAATAAGCTATTCACAAAAGATTTTCCCCATAATTGATTTTAGCTTTAAAATTAATTGTAGAAGC ATTTCCGAACATGCATTATGGCTTCTTAATCTATTGTAAAAGGTTTCTAAACATGTGATTAGTGTGAAGTTTAACTGGTT TGTTTGAATCTTGAGATTGGATTCCATACTAGTTCTTATGGTTGCATTGTTCAACAACTGTGTGTAGGACAAGTTCTGCT AGATGGGCATGACATTAAAACATTGAAGCTTAGATGGTTGAGGCAGCAGATAGGACTGGTGAGCCAAGAGCCTGCTTTGT TTGCTACCACAATTAGGGAAAATATATTGTTGGGAAGGCCTGATGCAAGCCAGGTTGAGATTGAAGAAGCTGCCAGGGTT GCCAATGCACATTCCTTCATCATCAAACTTCCTGAAGGCTATGACACCCTGGTTAGTCAATGTGTTTTATGACAATGGCT ACAAGAAATGCATGTTGCGTGATGATGATTTTTTTGTTCTCTTCATCCAATCACATCATTGGATTTGAACATCTAACATG GTACTGTTGATGCATTGAATTGTTTCCATGGTTGTCAGTCACTTCTTAGACTGTTTGTTTATTTGTTGACAGCAGTACGA AATAAACCTTAACACATACTTTAAGATAAAAGTTGATCATCACACACTTACTATTTTATGATAAAGTATAATTTGCTAAA TAAGAATTTGGATTAAAGAAAGGGAATTTTTGTTACCCCACAACTGTTACTATTGGTTTTTAAGATGATACAGAGCCAGG GGTGATGTTGTCTTGACTGTGCATTTGGTCAAAAAGCAAACTCAAGAAAAAAAAAATATTATGGGGTTTGGTTTGAAGTC AAAGTCAGGAAGTGAATGTGATTGTTCAGTGCATTGCATCGGAAAACACCAAGAGGGTAACATGCTACAGTCAACTTGTG CATGTTCATACTTAAAAAAATAGACAAACAAACAACCAAGCCGGAAATGCCCATAAGAATAATAAAAAATAAAGAGGACC GAAAAAATTATTCATTAGGAGTGCATCTTTCAGAAGAATAAATAACTTCTGCGTAAAACTCCAAATACAATAGCTATGAA TGAAAGAGGAATTATACAATATACGACAATTTAAAGATGATGGGGGCAGAAACTGCAAATACATTCAAGTTTATTTAAGT CTTATAAGTTGCTCCTTATCTGGGTTGTTATAAGACTCTTGGGCATGTTTGGATATTTAATGAGTAAAATAGGATGGAAT GGAATGAATTAAAACCATCAAACTGTTATTTGAATATTTTATGATGGGATGAAGTGAAGTTTCACTCATGTTTAAAAAGT GGATACAGTACTAATGAAATAATTGTGTGTTTGCTTATCCTTGGGTTGGATTGAATGTGTTTTTTTTTCCCAATCCAACA ACTTTGGGAGAAGAAAAATAGAGATACTGGATGAAATGGAATACTTTCCATTTCTTTCTATCAATCCAAATCTAGTCTTA GAAAATGATAATTTCTTAGATTAATATCTGTGAAAGTAAAATTTTTGTAATGGCAGGTAGGAGAAAGAGGGCTGCAACTT TCTGGAGGGCAAAAACAGCGAATAGCAATAGCAAGGGCAATGCTTAAAAACCCAGCAATTCTTCTCCTAGATGAGGCAAC AAGTGCATTGGACTCTGAGTCAGAAAAGCTGGTTCAGGAAGCCCTTGACAGGTTCATGATTGGCAGAACAACTCTTGTAA TTGCGCATCGCCTCTCCACCATCCGCAAAGCTGATCTCGTAGCAGTACTTCAGCAAGGAAGTGTTTCAGAAATTGGAACT CATGATGAGCTCTTTTCCAAAGGTGAAAATGGAGTATATGCCAAGCTTATAAAGATGCAGGAGATGGCACATGAAACTGC CATGAATAATGCCAGAAAGAGTAGTGCACGGTAGCTTTCACTAATCTTGAACATTGGCATTTTTTGAGAAACTGCTTTAA GTTCATTTCTATTGCTCATAGAAGTTCATATGGCTTTTCCTTACTACTTTCACTAATTTTGAGTTCATCTTTTTAAGTAC TAATGTTACAAGCTGAGATGTATCATATAATCATCTCATGGCAATTTTTCATTTTCAGGCCTTCAAGTGCCAGAAACTCA GTAAGCTCACCCATAATTGCTCGGAATTCTTCTTATGGCCGGTCACCATACTCGCGCAGGCTGTCTGATTTCTCCACATC TGATTTTAGTCTCTCCCTTGATGCATCACATCCAAATTACAGGCATGAAAAGCTTCCCTTCAAAGAACAAGCAAGTTCCT TTTGGAGACTTGCAAAAATGAACTCTCCTGAATGGCTTTATGCTTTGATTGGCTCTATAGGCTCTATTGTTTGTGGATCC CTCAGTGCATTCTTTGCTTATGTTCTTAGCGCTGTCCTTAGTGTCTATTACAGTCCAGACCACAGACACATGATCCGCGA AATTGAAAAGTACTGCTACTTGTTGATTGGGCTGTCATCAACTGCACTTCTCTTCAACACATTGCAACACTTCTTCTGGG ATATTGTTGGGGAGAATCTTACTAAAAGAGTGAGGGAAAAAATGCTGACGGCGGTGCTCAAAAATGAAATGGCATGGTTT GATCAGGAGGAAAATGAAAGTGCCAGGATCTCTGCAAGGCTGGCTCTTGATGCCAACAATGTCAGATCAGCCATTGGAGA CAGAATTTCAATAATTGTGCAGAACACTGCACTTATGCTAGTTGCTTGCACTGCAGGTTTTGTGTTGCAGTGGCGCCTTG CCCTTGTTCTCATAGCTGTCTTCCCTGTTGTTGTTGCAGCCACTGTGTTGCAGGTTTGTTTTCTTATCACTTCTTTCTAA CATGCTTTGTAATTCATTATTTCACTTCTGGACCATATAGTGCGTGTTTAGATCAGCATTGTCACAATTGATTTTGAATA AAATTGATTTTGATAAAATTGATTTAGGTAAAAGTAAGTTGAAAGTGAAGTATTTTATGTTTAGAAACGTTTATGAAAAA AGTGGTTTTGTAGGGTAATGTGAAATTCAGTTTTAAAGTCTCATAATTGATTGTGTAATTGTGTTCAACGCAGAAGCTAC TCTGTCAACAGACTGTGAAATAGAGCATTTAATGCTCTTAATTAGCAGTTATATTTTTGTTTGTATATAATTATGTTGTT TCCTGTTTGTACTTAGTTTATTTTAGGTAGTTTCTTATTTTCATTCATTCTCCCTAATTCTCTCTTTAGTCAAGGATTTC CTTCTTTGACTTTGATCAATCACATTATGTAATTCCCTCTATAAGAAGAGGAATCCCTGTACAGTTTTTCATATCAATAA TATTACCAAATATTTCAACTTGGTATCAGAGCCTATCCTAGATCCATTTGTTGTTTGTTGTGGAGACTTCCCATATTCGG GGCACCCGTTGTTGTTGATCCCACGTTCCAGGTTGTTCAGTCCTGGACGTGAGGGGGTGTGTTAGAAGTCCCACATTGGC TAGAGATAGAGCCAAGATAAGCTTTATAAGGGTAGTGCAAACCTCAACTCTTGAGCTAGCTTTTGTGGTTAAGTATAGGC CATACCAAGTCAAATAACCACTTTATCCCAAAAGCTTAAGCTGTTGGGTAAGGGCCACATTAATGGTTTTATATTATATT CTAACATACTCTCTTTAGCTTCTATACAGAATTGATTTTGAGATTGAAATTGATTCTCCCAGATGACTCCCAAATATCCA TATCATCATCATCCAAAAGTGATTTTACCCACTCAATTGATTTTGACTTCCCCCAACATGAAACCGAACACACACTTAAT TGTTTTTGGTTTTGTGCAGAAAATGTTCATGACTGGTTTTTCTGGTGACCTGGAAGCTGCTCATGTCAAGGCTACACAAC TAGCTGGGGAGGCTATAGCCAATGTAAGAACTGTTGCAGCCTTCAATTCAGAAGCAAAAATTGTTGGCCTTTTCACCTCA AACCTTGAAGCTCCCTTACAAAGGTGCTTTTGGAAGGGGCAGATTTCTGGAAGTGGATATGGGATAGCTCAGTTTGCACT TTATGCTTCCTATGCACTTGGACTTTGGTATGCTTCTTGGCTTGTAAAGCATGGAATCTCTGACTTCTCCAAAACAATCA GAGTTTTCATGGTCCTCATGGTATCTGCCAATGGTGCTGCTGAAACATTAACACTTGCTCCTGACTTCATCAAGGGAGGT AGAGCCATGAAGTCAGTCTTTGATCTCCTTGACCGGAGAACCGAAATTGAGCCGGATGACCAAGATGCTACTCCGGTTCC TGATCGTCTTCGCGGGGAAGTTGAACTTAAGCACGTGGACTTCTCTTATCCCACTCGCCCAGATATGCCAGTCTTTAGAG ACCTTAATCTTCGAGCTAGAGCTGGAAAAACTCTTGCCCTTGTAGGACCTAGTGGCTGTGGTAAGAGCTCAGTAATTGCA CTCATACAGAGATTCTATGATCCAACCTCTGGTAGGGTCATGATTGATGGGAAAGACATCAGAAAGTACAACCTCAAGTC CTTAAGAAGACACATTTCTGTGGTACCTCAAGAGCCATGCCTTTTTGCTACTACCATTTATGAAAACATTGCTTATGGAC ACGACTCAGCATCTGAAGCTGAGATCATTGAAGCTGCAACTCTTGCCAATGCTCACAAGTTCATATCTGGTCTTCCAGAT GGATACAAGACCTTTGTCGGCGAGCGAGGTGTTCAGCTGTCAGGGGGACAAAAGCAAAGAATTGCGGTTGCTCGCGCTTT TGTGAGGAAGGCCGAGCTTATGCTTCTTGATGAGGCGACGAGTGCGCTTGATGCTGAGTCTGAGAGGTCTGTTCAGGAGG CTCTAGACAAAGCCTCTTCAGGCAAAACAACTATCATTGTTGCACACAGGTTATCAACTATAAGAAATGCTAACATGATT GCTGTGATTGATGATGGGAAAGTGGCTGAGCAAGGTTCACATTCACATTTGTTGAAAAATTGCCCGGATGGGATTTATGC GCGCATGATTCAATTGCAAAGGTTCTCACACAGCCAAGTCATCGGGATGGCCTCTGGTTCAAGTTCTTCAACAAGACCAA AAGATGGGGAAAAAGAAGGCTAG 

CDS sequence (LotjaGi1g1v0688600.6) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGCAAGGCCTTGAGCTTGTGAATGATGATTCTGCTGAAATGGAGAACTCTGAACCTGTCAAAAATGGTTCTGTCAGTGG TGGAGAGAAGCATGAGGCTCTTCCCTCTGTTGGGTTCTTGGAGCTTTTCAGATTTGCTGATGGGTTGGATTGCATTCTCA TGACAATTGGAACTTTTGGAGCAATTGTTCATGGTTGTTCTTTGCCTTTGTTTCTTCGGTTCTTTGCGGATCTTGTGAAC TCTTTTGGGTCCAATGCTAATAACTTGGACAAGATGACCCAGGAAGTTGTCAAGTATGCATTTTACTTCTTGGTGGTTGG TGCTGCTATATGGGCATCTTCATGGGCAGAGATTTCATGTTGGATGTGGACTGGAGAGCGTCAATCAACAAAGATGAGAA TCAAGTACCTGGAAGCTGCTTTGAGCCAGGACATTGAGTTCTTCGACACCGAGGTTCGAACATCCGATGTTGTTTTCGCC ATCAACACTGATGCTGTTATGGTCCAGGATGCCATTAGTGAGAAGTTAGGCAATTTCATTCACTACATGGCCACATTTGT TTCTGGTTTTATTGTGGGTTTCACTGCTGTTTGGCAATTGGCTTTGGTCACCCTTGCTGTAGTCCCTATGATAGCTGTGA TTGGAGGCATTCACACCACCACGTTGGCCAAGCTTTCCGGCAAAAGCCAGGAAGCTCTTTCTCAAGCCGGCAACATTGTG GAACAGACGGTTGTGCAAATCAGAGTAGTGTTGGCCTTTGTTGGGGAATCAAGAGCAATGCAATCCTATTCATCAGCCTT GAAGGTTGCTCAGAAGCTTGGATACAAAACCGGGTTTGCAAAGGGATTGGGATTGGGTGCTACATACTTTGTTGTTTTCT GTTGTTATGCACTTCTTCTATGGTATGGAGGCTATCTGGTTAGGCACCACTACACCAATGGAGGACTTGCCATTGCAACC ATGTTTGCTGTTATGATCGGTGGAATAGGTTTGGGGCAGTCTGCACCTAGCATGGCTGCATTTACAAAAGCTAAGGTTGC TGCTGCAAAGATTTTCCGTGTAATTGATCACAAGCCTGGTATAGACAGAAACAATGAATCTGGCTTGGAATTGGAGACAG TCACTGGACTTGTGGAGCTGAAAAATGTAGACTTCTCTTACCCATCTAGGCCAGAGGTTCAGATCCTCCATGATTTCTCC TTGAATGTGCCTGCTGGCAAGACCATAGCTTTGGTGGGTAGCAGTGGCTCTGGCAAGAGCACTATTGTCTCCCTCATTGA GAGATTCTATGACCCAACTTCAGGACAAGTTCTGCTAGATGGGCATGACATTAAAACATTGAAGCTTAGATGGTTGAGGC AGCAGATAGGACTGGTGAGCCAAGAGCCTGCTTTGTTTGCTACCACAATTAGGGAAAATATATTGTTGGGAAGGCCTGAT GCAAGCCAGGTTGAGATTGAAGAAGCTGCCAGGGTTGCCAATGCACATTCCTTCATCATCAAACTTCCTGAAGGCTATGA CACCCTGGTAGGAGAAAGAGGGCTGCAACTTTCTGGAGGGCAAAAACAGCGAATAGCAATAGCAAGGGCAATGCTTAAAA ACCCAGCAATTCTTCTCCTAGATGAGGCAACAAGTGCATTGGACTCTGAGTCAGAAAAGCTGGTTCAGGAAGCCCTTGAC AGGTTCATGATTGGCAGAACAACTCTTGTAATTGCGCATCGCCTCTCCACCATCCGCAAAGCTGATCTCGTAGCAGTACT TCAGCAAGGAAGTGTTTCAGAAATTGGAACTCATGATGAGCTCTTTTCCAAAGGTGAAAATGGAGTATATGCCAAGCTTA TAAAGATGCAGGAGATGGCACATGAAACTGCCATGAATAATGCCAGAAAGAGTAGTGCACGGCCTTCAAGTGCCAGAAAC TCAGTAAGCTCACCCATAATTGCTCGGAATTCTTCTTATGGCCGGTCACCATACTCGCGCAGGCTGTCTGATTTCTCCAC ATCTGATTTTAGTCTCTCCCTTGATGCATCACATCCAAATTACAGGCATGAAAAGCTTCCCTTCAAAGAACAAGCAAGTT CCTTTTGGAGACTTGCAAAAATGAACTCTCCTGAATGGCTTTATGCTTTGATTGGCTCTATAGGCTCTATTGTTTGTGGA TCCCTCAGTGCATTCTTTGCTTATGTTCTTAGCGCTGTCCTTAGTGTCTATTACAGTCCAGACCACAGACACATGATCCG CGAAATTGAAAAGTACTGCTACTTGTTGATTGGGCTGTCATCAACTGCACTTCTCTTCAACACATTGCAACACTTCTTCT GGGATATTGTTGGGGAGAATCTTACTAAAAGAGTGAGGGAAAAAATGCTGACGGCGGTGCTCAAAAATGAAATGGCATGG TTTGATCAGGAGGAAAATGAAAGTGCCAGGATCTCTGCAAGGCTGGCTCTTGATGCCAACAATGTCAGATCAGCCATTGG AGACAGAATTTCAATAATTGTGCAGAACACTGCACTTATGCTAGTTGCTTGCACTGCAGGTTTTGTGTTGCAGTGGCGCC TTGCCCTTGTTCTCATAGCTGTCTTCCCTGTTGTTGTTGCAGCCACTGTGTTGCAGAAAATGTTCATGACTGGTTTTTCT GGTGACCTGGAAGCTGCTCATGTCAAGGCTACACAACTAGCTGGGGAGGCTATAGCCAATGTAAGAACTGTTGCAGCCTT CAATTCAGAAGCAAAAATTGTTGGCCTTTTCACCTCAAACCTTGAAGCTCCCTTACAAAGGTGCTTTTGGAAGGGGCAGA TTTCTGGAAGTGGATATGGGATAGCTCAGTTTGCACTTTATGCTTCCTATGCACTTGGACTTTGGTATGCTTCTTGGCTT GTAAAGCATGGAATCTCTGACTTCTCCAAAACAATCAGAGTTTTCATGGTCCTCATGGTATCTGCCAATGGTGCTGCTGA AACATTAACACTTGCTCCTGACTTCATCAAGGGAGGTAGAGCCATGAAGTCAGTCTTTGATCTCCTTGACCGGAGAACCG AAATTGAGCCGGATGACCAAGATGCTACTCCGGTTCCTGATCGTCTTCGCGGGGAAGTTGAACTTAAGCACGTGGACTTC TCTTATCCCACTCGCCCAGATATGCCAGTCTTTAGAGACCTTAATCTTCGAGCTAGAGCTGGAAAAACTCTTGCCCTTGT AGGACCTAGTGGCTGTGGTAAGAGCTCAGTAATTGCACTCATACAGAGATTCTATGATCCAACCTCTGGTAGGGTCATGA TTGATGGGAAAGACATCAGAAAGTACAACCTCAAGTCCTTAAGAAGACACATTTCTGTGGTACCTCAAGAGCCATGCCTT TTTGCTACTACCATTTATGAAAACATTGCTTATGGACACGACTCAGCATCTGAAGCTGAGATCATTGAAGCTGCAACTCT TGCCAATGCTCACAAGTTCATATCTGGTCTTCCAGATGGATACAAGACCTTTGTCGGCGAGCGAGGTGTTCAGCTGTCAG GGGGACAAAAGCAAAGAATTGCGGTTGCTCGCGCTTTTGTGAGGAAGGCCGAGCTTATGCTTCTTGATGAGGCGACGAGT GCGCTTGATGCTGAGTCTGAGAGGTCTGTTCAGGAGGCTCTAGACAAAGCCTCTTCAGGCAAAACAACTATCATTGTTGC ACACAGGTTATCAACTATAAGAAATGCTAACATGATTGCTGTGATTGATGATGGGAAAGTGGCTGAGCAAGGTTCACATT CACATTTGTTGAAAAATTGCCCGGATGGGATTTATGCGCGCATGATTCAATTGCAAAGGTTCTCACACAGCCAAGTCATC GGGATGGCCTCTGGTTCAAGTTCTTCAACAAGACCAAAAGATGGGGAAAAAGAAGGCTAG 

Protein sequence (LotjaGi1g1v0688600.6) extracted from Lotus japonicus Gifu v1.2 Proteins.

MQGLELVNDDSAEMENSEPVKNGSVSGGEKHEALPSVGFLELFRFADGLDCILMTIGTFGAIVHGCSLPLFLRFFADLVN SFGSNANNLDKMTQEVVKYAFYFLVVGAAIWASSWAEISCWMWTGERQSTKMRIKYLEAALSQDIEFFDTEVRTSDVVFA INTDAVMVQDAISEKLGNFIHYMATFVSGFIVGFTAVWQLALVTLAVVPMIAVIGGIHTTTLAKLSGKSQEALSQAGNIV EQTVVQIRVVLAFVGESRAMQSYSSALKVAQKLGYKTGFAKGLGLGATYFVVFCCYALLLWYGGYLVRHHYTNGGLAIAT MFAVMIGGIGLGQSAPSMAAFTKAKVAAAKIFRVIDHKPGIDRNNESGLELETVTGLVELKNVDFSYPSRPEVQILHDFS LNVPAGKTIALVGSSGSGKSTIVSLIERFYDPTSGQVLLDGHDIKTLKLRWLRQQIGLVSQEPALFATTIRENILLGRPD ASQVEIEEAARVANAHSFIIKLPEGYDTLVGERGLQLSGGQKQRIAIARAMLKNPAILLLDEATSALDSESEKLVQEALD RFMIGRTTLVIAHRLSTIRKADLVAVLQQGSVSEIGTHDELFSKGENGVYAKLIKMQEMAHETAMNNARKSSARPSSARN SVSSPIIARNSSYGRSPYSRRLSDFSTSDFSLSLDASHPNYRHEKLPFKEQASSFWRLAKMNSPEWLYALIGSIGSIVCG SLSAFFAYVLSAVLSVYYSPDHRHMIREIEKYCYLLIGLSSTALLFNTLQHFFWDIVGENLTKRVREKMLTAVLKNEMAW FDQEENESARISARLALDANNVRSAIGDRISIIVQNTALMLVACTAGFVLQWRLALVLIAVFPVVVAATVLQKMFMTGFS GDLEAAHVKATQLAGEAIANVRTVAAFNSEAKIVGLFTSNLEAPLQRCFWKGQISGSGYGIAQFALYASYALGLWYASWL VKHGISDFSKTIRVFMVLMVSANGAAETLTLAPDFIKGGRAMKSVFDLLDRRTEIEPDDQDATPVPDRLRGEVELKHVDF SYPTRPDMPVFRDLNLRARAGKTLALVGPSGCGKSSVIALIQRFYDPTSGRVMIDGKDIRKYNLKSLRRHISVVPQEPCL FATTIYENIAYGHDSASEAEIIEAATLANAHKFISGLPDGYKTFVGERGVQLSGGQKQRIAVARAFVRKAELMLLDEATS ALDAESERSVQEALDKASSGKTTIIVAHRLSTIRNANMIAVIDDGKVAEQGSHSHLLKNCPDGIYARMIQLQRFSHSQVI GMASGSSSSTRPKDGEKEG 

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
MobiDBLite 1 29 29 -
Phobius 1 50 50 -
PANTHER 31 1283 1253 0.0
PANTHER 31 1283 1253 0.0
SUPERFAMILY 42 362 321 3.27E-53
Gene3D 43 630 588 1.1E-240
Phobius 51 72 22 -
TMHMM 53 75 23 -
CDD 54 351 298 7.18181E-109
Pfam 54 327 274 1.5E-55
ProSiteProfiles 56 343 288 43.734
Phobius 73 98 26 -
TMHMM 96 115 20 -
Phobius 99 123 25 -
Phobius 124 178 55 -
Phobius 179 200 22 -
TMHMM 179 198 20 -
TMHMM 200 222 23 -
Phobius 201 205 5 -
Phobius 206 225 20 -
Phobius 226 281 56 -
Phobius 282 302 21 -
TMHMM 285 307 23 -
Phobius 303 313 11 -
TMHMM 314 336 23 -
Phobius 314 332 19 -
Phobius 333 705 373 -
SUPERFAMILY 369 617 249 4.05E-92
Gene3D 371 621 251 1.1E-240
ProSiteProfiles 378 614 237 26.231
CDD 378 617 240 1.39621E-156
Pfam 396 545 150 1.1E-36
SMART 405 591 187 5.5E-17
ProSitePatterns 517 531 15 -
Gene3D 683 1020 338 9.6E-92
SUPERFAMILY 697 1017 321 2.88E-49
CDD 699 1015 317 9.00801E-112
Phobius 706 734 29 -
TMHMM 706 739 34 -
ProSiteProfiles 710 997 288 39.794
Pfam 711 980 270 5.6E-51
Phobius 735 753 19 -
TMHMM 752 774 23 -
Phobius 754 774 21 -
Phobius 775 829 55 -
TMHMM 830 852 23 -
Phobius 830 848 19 -
Phobius 849 853 5 -
TMHMM 854 876 23 -
Phobius 854 871 18 -
Phobius 872 938 67 -
Phobius 939 959 21 -
TMHMM 939 961 23 -
Phobius 960 970 11 -
Phobius 971 992 22 -
TMHMM 974 996 23 -
Phobius 993 1299 307 -
SUPERFAMILY 1024 1272 249 9.63E-89
Gene3D 1025 1279 255 7.5E-95
CDD 1033 1272 240 5.39755E-136
ProSiteProfiles 1033 1269 237 25.444
Pfam 1052 1200 149 1.4E-34
SMART 1060 1252 193 2.1E-16
ProSitePatterns 1172 1186 15 -
MobiDBLite 1280 1299 20 -

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 ATP binding Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
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 ATPase activity Catalysis of the reaction: ATP + H2O = ADP + phosphate + 2 H+. May or may not be coupled to another reaction.
Molecular function ATPase activity, coupled to transmembrane movement of substances Catalysis of the reaction: ATP + H2O = ADP + phosphate, to directly drive the active transport of a substance across a membrane.
Biological process Transmembrane transport The process in which a solute is transported across a lipid bilayer, from one side of a membrane to the other.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0688600.6, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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