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LotjaGi1g1v0688600.4

Overview

Field Value
Gene ID LotjaGi1g1v0688600
Transcript ID LotjaGi1g1v0688600.4
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_chr1:125595980..125603537) extracted from Lotus japonicus Gifu genome v1.2.

ATGTCACCAGATTCTGAAGAGATAAAGACTATTGAGCAGTGGAAATGGTCTGAAATGCAAGGCCTTGAGCTTGTGAATGA TGATTCTGCTGCCACAAAACCAATGGAAACAGGGGACTCTGTTTCCAAAACAGAGCACTCTGTTTCTAAAACAGAGGAGG GTCCTTCTTCTTCTTCTCAAGTTGAGGTTCTAAAGGAAATGGAGAACTCTGAACCTGTCAAAAATGGTTCTGTCAGTGGT GGAGAGAAGCATGAGGCTCTTCCCTCTGTTGGGTTCTTGGAGCTTTTCAGATTTGCTGATGGGTTGGATTGCATTCTCAT GACAATTGGAACTTTTGGAGCAATTGTTCATGGTTGTTCTTTGCCTTTGTTTCTTCGGTTCTTTGCGGATCTTGTGAACT CTTTTGGGTCCAATGCTAATAACTTGGACAAGATGACCCAGGAAGTTGTCAAGGTAGAAATGATAGGAAATTGTTCCAAA TTCTATGCTTTTGTAAATTGAGATTTTGAAGATGAATGTGAATTGTTCAGGGTTTTAAAGGTAGTGTTGTTTTTTGCAGT ATGCATTTTACTTCTTGGTGGTTGGTGCTGCTATATGGGCATCTTCATGGGCAGGTGAGTTTTTTTCAGTTTAGTTTCCA ATTTTGAATTCTCTTTGAACAAGCTTCTGGTTCTTCTTTTTTTTGCTTTTGGAGTGTTTGGTGTTTTCATTTTTCAATTG TTTAGAGTTGTGGATGATTTAATGGAATTGGACTTGTTGCAGAGATTTCATGTTGGATGTGGACTGGAGAGCGTCAATCA ACAAAGATGAGAATCAAGTACCTGGAAGCTGCTTTGAGCCAGGACATTGAGTTCTTCGACACCGAGGTTCGAACATCCGA TGTTGTTTTCGCCATCAACACTGATGCTGTTATGGTCCAGGATGCCATTAGTGAGAAGGTGGATGAACTAGTATTATGTG TTCTTCTTTCTTTCTTACTTTTTTTTGTTAGTACTTGTTTGGATGCAAACCAAAAAGCACTTATTAGAGCTTATTTTCTA GTAGATAAGCTCGAATAAGTTCGACGGGCTAGTGTCATTAGGTTGGACTAGTTTTTTGATTTGGTTGTTGATTGGTGCTT GATGTGCAGTTAGGCAATTTCATTCACTACATGGCCACATTTGTTTCTGGTTTTATTGTGGGTTTCACTGCTGTTTGGCA ATTGGCTTTGGTCACCCTTGCTGTAGTCCCTATGATAGCTGTGATTGGAGGCATTCACACCACCACGTTGGCCAAGCTTT CCGGCAAAAGCCAGGAAGCTCTTTCTCAAGCCGGCAACATTGTGGAACAGGTAAAGAGTAATAGCATGTTTGAATCAGCT CATCATTTCTCAGAATCAATCACTTTCGGCCCCCGCAAACTTCTTCCCATATTCGGAATCAATTGTAGAAAAATTTCTGA CTGTATTTGTTCATGTTGCAGACGGTTGTGCAAATCAGAGTAGTGTTGGCCTTTGTTGGGGAATCAAGAGCAATGCAATC CTATTCATCAGCCTTGAAGGTTGCTCAGAAGCTTGGATACAAAACCGGGTTTGCAAAGGGATTGGGATTGGGTGCTACAT ACTTTGTTGTTTTCTGTTGTTATGCACTTCTTCTATGGTATGGAGGCTATCTGGTTAGGCACCACTACACCAATGGAGGA CTTGCCATTGCAACCATGTTTGCTGTTATGATCGGTGGAATGTGAGTAGTAGTAATGTATTTTTGTGTTTTAGTGCATGT TTGGATACACAGTGGAAACCTACGGTGAAGCCAACTTACGGTGGACAGAAATATCTTTCCTTAGCTTTTGCCACTGTTCA CATGATTTTGGCACCACGGTAGTTTTCAATTGTGTATCGAAGCATGCACTTAGCAACACCATGAACATTTTAAGGTTTGA CATGTTTAAGGATTTGATCCACACAGAGGTTTGGGGCAGTCTGCACCTAGCATGGCTGCATTTACAAAAGCTAAGGTTGC TGCTGCAAAGATTTTCCGTGTAATTGATCACAAGCCTGGTATAGACAGAAACAATGAATCTGGCTTGGAATTGGAGACAG TCACTGGACTTGTGGAGCTGAAAAATGTAGACTTCTCTTACCCATCTAGGCCAGAGGTTCAGATCCTCCATGATTTCTCC TTGAATGTGCCTGCTGGCAAGACCATAGCTTTGGTGGGTAGCAGTGGCTCTGGCAAGAGCACTATTGTCTCCCTCATTGA GAGATTCTATGACCCAACTTCAGGTAAAGTTCTAAGCATTTGGAAACACAACAATTCTTATAGCATGTTTGAATCACCTT CTCCTTCATTAGAATCAATTCTTAAACACAATGTACTCAGAAGCTTCTCCTCATGACTGGTTATAGTCTGTTTGAATTAG TTTCTCTGTCCTCAGAATCAATTCTGGCACCAATAAGCTATTCACAAAAGATTTTCCCCATAATTGATTTTAGCTTTAAA ATTAATTGTAGAAGCATTTCCGAACATGCATTATGGCTTCTTAATCTATTGTAAAAGGTTTCTAAACATGTGATTAGTGT GAAGTTTAACTGGTTTGTTTGAATCTTGAGATTGGATTCCATACTAGTTCTTATGGTTGCATTGTTCAACAACTGTGTGT AGGACAAGTTCTGCTAGATGGGCATGACATTAAAACATTGAAGCTTAGATGGTTGAGGCAGCAGATAGGACTGGTGAGCC AAGAGCCTGCTTTGTTTGCTACCACAATTAGGGAAAATATATTGTTGGGAAGGCCTGATGCAAGCCAGGTTGAGATTGAA GAAGCTGCCAGGGTTGCCAATGCACATTCCTTCATCATCAAACTTCCTGAAGGCTATGACACCCTGGTTAGTCAATGTGT TTTATGACAATGGCTACAAGAAATGCATGTTGCGTGATGATGATTTTTTTGTTCTCTTCATCCAATCACATCATTGGATT TGAACATCTAACATGGTACTGTTGATGCATTGAATTGTTTCCATGGTTGTCAGTCACTTCTTAGACTGTTTGTTTATTTG TTGACAGCAGTACGAAATAAACCTTAACACATACTTTAAGATAAAAGTTGATCATCACACACTTACTATTTTATGATAAA GTATAATTTGCTAAATAAGAATTTGGATTAAAGAAAGGGAATTTTTGTTACCCCACAACTGTTACTATTGGTTTTTAAGA TGATACAGAGCCAGGGGTGATGTTGTCTTGACTGTGCATTTGGTCAAAAAGCAAACTCAAGAAAAAAAAAATATTATGGG GTTTGGTTTGAAGTCAAAGTCAGGAAGTGAATGTGATTGTTCAGTGCATTGCATCGGAAAACACCAAGAGGGTAACATGC TACAGTCAACTTGTGCATGTTCATACTTAAAAAAATAGACAAACAAACAACCAAGCCGGAAATGCCCATAAGAATAATAA AAAATAAAGAGGACCGAAAAAATTATTCATTAGGAGTGCATCTTTCAGAAGAATAAATAACTTCTGCGTAAAACTCCAAA TACAATAGCTATGAATGAAAGAGGAATTATACAATATACGACAATTTAAAGATGATGGGGGCAGAAACTGCAAATACATT CAAGTTTATTTAAGTCTTATAAGTTGCTCCTTATCTGGGTTGTTATAAGACTCTTGGGCATGTTTGGATATTTAATGAGT AAAATAGGATGGAATGGAATGAATTAAAACCATCAAACTGTTATTTGAATATTTTATGATGGGATGAAGTGAAGTTTCAC TCATGTTTAAAAAGTGGATACAGTACTAATGAAATAATTGTGTGTTTGCTTATCCTTGGGTTGGATTGAATGTGTTTTTT TTTCCCAATCCAACAACTTTGGGAGAAGAAAAATAGAGATACTGGATGAAATGGAATACTTTCCATTTCTTTCTATCAAT CCAAATCTAGTCTTAGAAAATGATAATTTCTTAGATTAATATCTGTGAAAGTAAAATTTTTGTAATGGCAGGTAGGAGAA AGAGGGCTGCAACTTTCTGGAGGGCAAAAACAGCGAATAGCAATAGCAAGGGCAATGCTTAAAAACCCAGCAATTCTTCT CCTAGATGAGGCAACAAGTGCATTGGACTCTGAGTCAGAAAAGCTGGTTCAGGAAGCCCTTGACAGGTTCATGATTGGCA GAACAACTCTTGTAATTGCGCATCGCCTCTCCACCATCCGCAAAGCTGATCTCGTAGCAGTACTTCAGCAAGGAAGTGTT TCAGAAATTGGAACTCATGATGAGCTCTTTTCCAAAGGTGAAAATGGAGTATATGCCAAGCTTATAAAGATGCAGGAGAT GGCACATGAAACTGCCATGAATAATGCCAGAAAGAGTAGTGCACGGTAGCTTTCACTAATCTTGAACATTGGCATTTTTT GAGAAACTGCTTTAAGTTCATTTCTATTGCTCATAGAAGTTCATATGGCTTTTCCTTACTACTTTCACTAATTTTGAGTT CATCTTTTTAAGTACTAATGTTACAAGCTGAGATGTATCATATAATCATCTCATGGCAATTTTTCATTTTCAGGCCTTCA AGTGCCAGAAACTCAGTAAGCTCACCCATAATTGCTCGGAATTCTTCTTATGGCCGGTCACCATACTCGCGCAGGCTGTC TGATTTCTCCACATCTGATTTTAGTCTCTCCCTTGATGCATCACATCCAAATTACAGGCATGAAAAGCTTCCCTTCAAAG AACAAGCAAGTTCCTTTTGGAGACTTGCAAAAATGAACTCTCCTGAATGGCTTTATGCTTTGATTGGCTCTATAGGCTCT ATTGTTTGTGGATCCCTCAGTGCATTCTTTGCTTATGTTCTTAGCGCTGTCCTTAGTGTCTATTACAGTCCAGACCACAG ACACATGATCCGCGAAATTGAAAAGTACTGCTACTTGTTGATTGGGCTGTCATCAACTGCACTTCTCTTCAACACATTGC AACACTTCTTCTGGGATATTGTTGGGGAGAATCTTACTAAAAGAGTGAGGGAAAAAATGCTGACGGCGGTGCTCAAAAAT GAAATGGCATGGTTTGATCAGGAGGAAAATGAAAGTGCCAGGATCTCTGCAAGGCTGGCTCTTGATGCCAACAATGTCAG ATCAGCCATTGGAGACAGAATTTCAATAATTGTGCAGAACACTGCACTTATGCTAGTTGCTTGCACTGCAGGTTTTGTGT TGCAGTGGCGCCTTGCCCTTGTTCTCATAGCTGTCTTCCCTGTTGTTGTTGCAGCCACTGTGTTGCAGGTTTGTTTTCTT ATCACTTCTTTCTAACATGCTTTGTAATTCATTATTTCACTTCTGGACCATATAGTGCGTGTTTAGATCAGCATTGTCAC AATTGATTTTGAATAAAATTGATTTTGATAAAATTGATTTAGGTAAAAGTAAGTTGAAAGTGAAGTATTTTATGTTTAGA AACGTTTATGAAAAAAGTGGTTTTGTAGGGTAATGTGAAATTCAGTTTTAAAGTCTCATAATTGATTGTGTAATTGTGTT CAACGCAGAAGCTACTCTGTCAACAGACTGTGAAATAGAGCATTTAATGCTCTTAATTAGCAGTTATATTTTTGTTTGTA TATAATTATGTTGTTTCCTGTTTGTACTTAGTTTATTTTAGGTAGTTTCTTATTTTCATTCATTCTCCCTAATTCTCTCT TTAGTCAAGGATTTCCTTCTTTGACTTTGATCAATCACATTATGTAATTCCCTCTATAAGAAGAGGAATCCCTGTACAGT TTTTCATATCAATAATATTACCAAATATTTCAACTTGGTATCAGAGCCTATCCTAGATCCATTTGTTGTTTGTTGTGGAG ACTTCCCATATTCGGGGCACCCGTTGTTGTTGATCCCACGTTCCAGGTTGTTCAGTCCTGGACGTGAGGGGGTGTGTTAG AAGTCCCACATTGGCTAGAGATAGAGCCAAGATAAGCTTTATAAGGGTAGTGCAAACCTCAACTCTTGAGCTAGCTTTTG TGGTTAAGTATAGGCCATACCAAGTCAAATAACCACTTTATCCCAAAAGCTTAAGCTGTTGGGTAAGGGCCACATTAATG GTTTTATATTATATTCTAACATACTCTCTTTAGCTTCTATACAGAATTGATTTTGAGATTGAAATTGATTCTCCCAGATG ACTCCCAAATATCCATATCATCATCATCCAAAAGTGATTTTACCCACTCAATTGATTTTGACTTCCCCCAACATGAAACC GAACACACACTTAATTGTTTTTGGTTTTGTGCAGAAAATGTTCATGACTGGTTTTTCTGGTGACCTGGAAGCTGCTCATG TCAAGGCTACACAACTAGCTGGGGAGGCTATAGCCAATGTAAGAACTGTTGCAGCCTTCAATTCAGAAGCAAAAATTGTT GGCCTTTTCACCTCAAACCTTGAAGCTCCCTTACAAAGGTGCTTTTGGAAGGGGCAGATTTCTGGAAGTGGATATGGGAT AGCTCAGTTTGCACTTTATGCTTCCTATGCACTTGGACTTTGGTATGCTTCTTGGCTTGTAAAGCATGGAATCTCTGACT TCTCCAAAACAATCAGAGTTTTCATGGTCCTCATGGTATCTGCCAATGGTGCTGCTGAAACATTAACACTTGCTCCTGAC TTCATCAAGGGAGGTAGAGCCATGAAGTCAGTCTTTGATCTCCTTGACCGGAGAACCGAAATTGAGCCGGATGACCAAGA TGCTACTCCGGTTCCTGATCGTCTTCGCGGGGAAGTTGAACTTAAGCACGTGGACTTCTCTTATCCCACTCGCCCAGATA TGCCAGTCTTTAGAGACCTTAATCTTCGAGCTAGAGCTGGAAAAACTCTTGCCCTTGTAGGACCTAGTGGCTGTGGTAAG AGCTCAGTAATTGCACTCATACAGAGATTCTATGATCCAACCTCTGGTAGGGTCATGATTGATGGGAAAGACATCAGAAA GTACAACCTCAAGTCCTTAAGAAGACACATTTCTGTGGTACCTCAAGAGCCATGCCTTTTTGCTACTACCATTTATGAAA ACATTGCTTATGGACACGACTCAGCATCTGAAGCTGAGATCATTGAAGCTGCAACTCTTGCCAATGCTCACAAGTTCATA TCTGGTCTTCCAGATGGATACAAGACCTTTGTCGGCGAGCGAGGTGTTCAGCTGTCAGGGGGACAAAAGCAAAGAATTGC GGTTGCTCGCGCTTTTGTGAGGAAGGCCGAGCTTATGCTTCTTGATGAGGCGACGAGTGCGCTTGATGCTGAGTCTGAGA GGTCTGTTCAGGAGGCTCTAGACAAAGCCTCTTCAGGCAAAACAACTATCATTGTTGCACACAGGTTATCAACTATAAGA AATGCTAACATGATTGCTGTGATTGATGATGGGAAAGTGGCTGAGCAAGGTTCACATTCACATTTGTTGAAAAATTGCCC GGATGGGATTTATGCGCGCATGATTCAATTGCAAAGGTTCTCACACAGCCAAGTCATCGGGATGGCCTCTGGTTCAAGTT CTTCAACAAGACCAAAAGATGGGGAAAAAGAAGGCTAG 

CDS sequence (LotjaGi1g1v0688600.4) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGAGAACTCTGAACCTGTCAAAAATGGTTCTGTCAGTGGTGGAGAGAAGCATGAGGCTCTTCCCTCTGTTGGGTTCTT GGAGCTTTTCAGATTTGCTGATGGGTTGGATTGCATTCTCATGACAATTGGAACTTTTGGAGCAATTGTTCATGGTTGTT CTTTGCCTTTGTTTCTTCGGTTCTTTGCGGATCTTGTGAACTCTTTTGGGTCCAATGCTAATAACTTGGACAAGATGACC CAGGAAGTTGTCAAGTATGCATTTTACTTCTTGGTGGTTGGTGCTGCTATATGGGCATCTTCATGGGCAGAGATTTCATG TTGGATGTGGACTGGAGAGCGTCAATCAACAAAGATGAGAATCAAGTACCTGGAAGCTGCTTTGAGCCAGGACATTGAGT TCTTCGACACCGAGGTTCGAACATCCGATGTTGTTTTCGCCATCAACACTGATGCTGTTATGGTCCAGGATGCCATTAGT GAGAAGTTAGGCAATTTCATTCACTACATGGCCACATTTGTTTCTGGTTTTATTGTGGGTTTCACTGCTGTTTGGCAATT GGCTTTGGTCACCCTTGCTGTAGTCCCTATGATAGCTGTGATTGGAGGCATTCACACCACCACGTTGGCCAAGCTTTCCG GCAAAAGCCAGGAAGCTCTTTCTCAAGCCGGCAACATTGTGGAACAGACGGTTGTGCAAATCAGAGTAGTGTTGGCCTTT GTTGGGGAATCAAGAGCAATGCAATCCTATTCATCAGCCTTGAAGGTTGCTCAGAAGCTTGGATACAAAACCGGGTTTGC AAAGGGATTGGGATTGGGTGCTACATACTTTGTTGTTTTCTGTTGTTATGCACTTCTTCTATGGTATGGAGGCTATCTGG TTAGGCACCACTACACCAATGGAGGACTTGCCATTGCAACCATGTTTGCTGTTATGATCGGTGGAATAGGTTTGGGGCAG TCTGCACCTAGCATGGCTGCATTTACAAAAGCTAAGGTTGCTGCTGCAAAGATTTTCCGTGTAATTGATCACAAGCCTGG TATAGACAGAAACAATGAATCTGGCTTGGAATTGGAGACAGTCACTGGACTTGTGGAGCTGAAAAATGTAGACTTCTCTT ACCCATCTAGGCCAGAGGTTCAGATCCTCCATGATTTCTCCTTGAATGTGCCTGCTGGCAAGACCATAGCTTTGGTGGGT AGCAGTGGCTCTGGCAAGAGCACTATTGTCTCCCTCATTGAGAGATTCTATGACCCAACTTCAGGACAAGTTCTGCTAGA TGGGCATGACATTAAAACATTGAAGCTTAGATGGTTGAGGCAGCAGATAGGACTGGTGAGCCAAGAGCCTGCTTTGTTTG CTACCACAATTAGGGAAAATATATTGTTGGGAAGGCCTGATGCAAGCCAGGTTGAGATTGAAGAAGCTGCCAGGGTTGCC AATGCACATTCCTTCATCATCAAACTTCCTGAAGGCTATGACACCCTGGTAGGAGAAAGAGGGCTGCAACTTTCTGGAGG GCAAAAACAGCGAATAGCAATAGCAAGGGCAATGCTTAAAAACCCAGCAATTCTTCTCCTAGATGAGGCAACAAGTGCAT TGGACTCTGAGTCAGAAAAGCTGGTTCAGGAAGCCCTTGACAGGTTCATGATTGGCAGAACAACTCTTGTAATTGCGCAT CGCCTCTCCACCATCCGCAAAGCTGATCTCGTAGCAGTACTTCAGCAAGGAAGTGTTTCAGAAATTGGAACTCATGATGA GCTCTTTTCCAAAGGTGAAAATGGAGTATATGCCAAGCTTATAAAGATGCAGGAGATGGCACATGAAACTGCCATGAATA ATGCCAGAAAGAGTAGTGCACGGCCTTCAAGTGCCAGAAACTCAGTAAGCTCACCCATAATTGCTCGGAATTCTTCTTAT GGCCGGTCACCATACTCGCGCAGGCTGTCTGATTTCTCCACATCTGATTTTAGTCTCTCCCTTGATGCATCACATCCAAA TTACAGGCATGAAAAGCTTCCCTTCAAAGAACAAGCAAGTTCCTTTTGGAGACTTGCAAAAATGAACTCTCCTGAATGGC TTTATGCTTTGATTGGCTCTATAGGCTCTATTGTTTGTGGATCCCTCAGTGCATTCTTTGCTTATGTTCTTAGCGCTGTC CTTAGTGTCTATTACAGTCCAGACCACAGACACATGATCCGCGAAATTGAAAAGTACTGCTACTTGTTGATTGGGCTGTC ATCAACTGCACTTCTCTTCAACACATTGCAACACTTCTTCTGGGATATTGTTGGGGAGAATCTTACTAAAAGAGTGAGGG AAAAAATGCTGACGGCGGTGCTCAAAAATGAAATGGCATGGTTTGATCAGGAGGAAAATGAAAGTGCCAGGATCTCTGCA AGGCTGGCTCTTGATGCCAACAATGTCAGATCAGCCATTGGAGACAGAATTTCAATAATTGTGCAGAACACTGCACTTAT GCTAGTTGCTTGCACTGCAGGTTTTGTGTTGCAGTGGCGCCTTGCCCTTGTTCTCATAGCTGTCTTCCCTGTTGTTGTTG CAGCCACTGTGTTGCAGAAAATGTTCATGACTGGTTTTTCTGGTGACCTGGAAGCTGCTCATGTCAAGGCTACACAACTA GCTGGGGAGGCTATAGCCAATGTAAGAACTGTTGCAGCCTTCAATTCAGAAGCAAAAATTGTTGGCCTTTTCACCTCAAA CCTTGAAGCTCCCTTACAAAGGTGCTTTTGGAAGGGGCAGATTTCTGGAAGTGGATATGGGATAGCTCAGTTTGCACTTT ATGCTTCCTATGCACTTGGACTTTGGTATGCTTCTTGGCTTGTAAAGCATGGAATCTCTGACTTCTCCAAAACAATCAGA GTTTTCATGGTCCTCATGGTATCTGCCAATGGTGCTGCTGAAACATTAACACTTGCTCCTGACTTCATCAAGGGAGGTAG AGCCATGAAGTCAGTCTTTGATCTCCTTGACCGGAGAACCGAAATTGAGCCGGATGACCAAGATGCTACTCCGGTTCCTG ATCGTCTTCGCGGGGAAGTTGAACTTAAGCACGTGGACTTCTCTTATCCCACTCGCCCAGATATGCCAGTCTTTAGAGAC CTTAATCTTCGAGCTAGAGCTGGAAAAACTCTTGCCCTTGTAGGACCTAGTGGCTGTGGTAAGAGCTCAGTAATTGCACT CATACAGAGATTCTATGATCCAACCTCTGGTAGGGTCATGATTGATGGGAAAGACATCAGAAAGTACAACCTCAAGTCCT TAAGAAGACACATTTCTGTGGTACCTCAAGAGCCATGCCTTTTTGCTACTACCATTTATGAAAACATTGCTTATGGACAC GACTCAGCATCTGAAGCTGAGATCATTGAAGCTGCAACTCTTGCCAATGCTCACAAGTTCATATCTGGTCTTCCAGATGG ATACAAGACCTTTGTCGGCGAGCGAGGTGTTCAGCTGTCAGGGGGACAAAAGCAAAGAATTGCGGTTGCTCGCGCTTTTG TGAGGAAGGCCGAGCTTATGCTTCTTGATGAGGCGACGAGTGCGCTTGATGCTGAGTCTGAGAGGTCTGTTCAGGAGGCT CTAGACAAAGCCTCTTCAGGCAAAACAACTATCATTGTTGCACACAGGTTATCAACTATAAGAAATGCTAACATGATTGC TGTGATTGATGATGGGAAAGTGGCTGAGCAAGGTTCACATTCACATTTGTTGAAAAATTGCCCGGATGGGATTTATGCGC GCATGATTCAATTGCAAAGGTTCTCACACAGCCAAGTCATCGGGATGGCCTCTGGTTCAAGTTCTTCAACAAGACCAAAA GATGGGGAAAAAGAAGGCTAG 

Protein sequence (LotjaGi1g1v0688600.4) extracted from Lotus japonicus Gifu v1.2 Proteins.

MENSEPVKNGSVSGGEKHEALPSVGFLELFRFADGLDCILMTIGTFGAIVHGCSLPLFLRFFADLVNSFGSNANNLDKMT QEVVKYAFYFLVVGAAIWASSWAEISCWMWTGERQSTKMRIKYLEAALSQDIEFFDTEVRTSDVVFAINTDAVMVQDAIS EKLGNFIHYMATFVSGFIVGFTAVWQLALVTLAVVPMIAVIGGIHTTTLAKLSGKSQEALSQAGNIVEQTVVQIRVVLAF VGESRAMQSYSSALKVAQKLGYKTGFAKGLGLGATYFVVFCCYALLLWYGGYLVRHHYTNGGLAIATMFAVMIGGIGLGQ SAPSMAAFTKAKVAAAKIFRVIDHKPGIDRNNESGLELETVTGLVELKNVDFSYPSRPEVQILHDFSLNVPAGKTIALVG SSGSGKSTIVSLIERFYDPTSGQVLLDGHDIKTLKLRWLRQQIGLVSQEPALFATTIRENILLGRPDASQVEIEEAARVA NAHSFIIKLPEGYDTLVGERGLQLSGGQKQRIAIARAMLKNPAILLLDEATSALDSESEKLVQEALDRFMIGRTTLVIAH RLSTIRKADLVAVLQQGSVSEIGTHDELFSKGENGVYAKLIKMQEMAHETAMNNARKSSARPSSARNSVSSPIIARNSSY GRSPYSRRLSDFSTSDFSLSLDASHPNYRHEKLPFKEQASSFWRLAKMNSPEWLYALIGSIGSIVCGSLSAFFAYVLSAV LSVYYSPDHRHMIREIEKYCYLLIGLSSTALLFNTLQHFFWDIVGENLTKRVREKMLTAVLKNEMAWFDQEENESARISA RLALDANNVRSAIGDRISIIVQNTALMLVACTAGFVLQWRLALVLIAVFPVVVAATVLQKMFMTGFSGDLEAAHVKATQL AGEAIANVRTVAAFNSEAKIVGLFTSNLEAPLQRCFWKGQISGSGYGIAQFALYASYALGLWYASWLVKHGISDFSKTIR VFMVLMVSANGAAETLTLAPDFIKGGRAMKSVFDLLDRRTEIEPDDQDATPVPDRLRGEVELKHVDFSYPTRPDMPVFRD LNLRARAGKTLALVGPSGCGKSSVIALIQRFYDPTSGRVMIDGKDIRKYNLKSLRRHISVVPQEPCLFATTIYENIAYGH DSASEAEIIEAATLANAHKFISGLPDGYKTFVGERGVQLSGGQKQRIAVARAFVRKAELMLLDEATSALDAESERSVQEA LDKASSGKTTIIVAHRLSTIRNANMIAVIDDGKVAEQGSHSHLLKNCPDGIYARMIQLQRFSHSQVIGMASGSSSSTRPK DGEKEG 

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 37 37 -
PANTHER 21 1270 1250 0.0
PANTHER 21 1270 1250 0.0
SUPERFAMILY 29 349 321 3.92E-53
Phobius 38 59 22 -
TMHMM 40 62 23 -
Pfam 41 314 274 1.4E-55
CDD 41 338 298 1.09339E-108
ProSiteProfiles 43 330 288 43.734
Phobius 60 85 26 -
TMHMM 83 102 20 -
Phobius 86 110 25 -
Gene3D 94 993 900 2.7E-293
Phobius 111 165 55 -
Phobius 166 187 22 -
TMHMM 166 185 20 -
TMHMM 187 209 23 -
Phobius 188 192 5 -
Phobius 193 212 20 -
Phobius 213 268 56 -
Phobius 269 289 21 -
TMHMM 272 294 23 -
Phobius 290 300 11 -
TMHMM 301 323 23 -
Phobius 301 319 19 -
Phobius 320 692 373 -
SUPERFAMILY 356 604 249 4.05E-92
Gene3D 363 628 266 2.7E-293
ProSiteProfiles 365 601 237 26.231
CDD 365 604 240 1.07416E-156
Pfam 383 532 150 1.1E-36
SMART 392 578 187 5.5E-17
ProSitePatterns 504 518 15 -
SUPERFAMILY 684 1004 321 2.75E-49
CDD 686 1002 317 9.99747E-112
TMHMM 693 726 34 -
Phobius 693 721 29 -
ProSiteProfiles 697 984 288 39.794
Pfam 698 967 270 5.5E-51
Phobius 722 740 19 -
TMHMM 739 761 23 -
Phobius 741 761 21 -
Phobius 762 816 55 -
Phobius 817 835 19 -
TMHMM 817 839 23 -
Phobius 836 840 5 -
Phobius 841 858 18 -
TMHMM 841 863 23 -
Phobius 859 925 67 -
TMHMM 926 948 23 -
Phobius 926 946 21 -
Phobius 947 957 11 -
Phobius 958 979 22 -
TMHMM 961 983 23 -
Phobius 980 1286 307 -
SUPERFAMILY 1011 1259 249 9.52E-89
Gene3D 1012 1266 255 7.4E-95
CDD 1020 1259 240 4.32435E-136
ProSiteProfiles 1020 1256 237 25.444
Pfam 1039 1187 149 1.4E-34
SMART 1047 1239 193 2.1E-16
ProSitePatterns 1159 1173 15 -
MobiDBLite 1267 1286 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 LotjaGi1g1v0688600.4, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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