Your browser is unable to support new features implemented in HTML5 and CSS3 to render this site as intended. Your experience may suffer from functionality degradation but the site should remain usable. We strongly recommend the latest version of Google Chrome, OS X Safari or Mozilla Firefox. As Safari is bundled with OS X, if you are unable to upgrade to a newer version of OS X, we recommend using an open source browser. Dismiss message

LotjaGi4g1v0440900.1

Overview

Field Value
Gene ID LotjaGi4g1v0440900
Transcript ID LotjaGi4g1v0440900.1
Related isoforms 2
Lotus japonicus genome version Gifu v1.2
Description Potassium efflux antiporter; TAIR: AT2G19600.1 K+ efflux antiporter 4; Swiss-Prot: sp|Q9ZUN3|KEA4_ARATH K(+) efflux antiporter 4; TrEMBL-Plants: tr|A0A151TKE5|A0A151TKE5_CAJCA Transmembrane and coiled-coil domain-containing protein 3; Found in the gene: LotjaGi4g1v0440900
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr4:81439973..81449129) extracted from Lotus japonicus Gifu genome v1.2.

GTTTTAACTTGCAAGTAATGTAATGCTTTTCACTAGAGACAAGTAAGCATCCTCCTTAATGAAAATTCACTAAACCACAC CGAATATCAAGGACTATTTCGTACTTTCCCACCTGCAACCCCCTCTCTCTCAAGCTTCACCCACAACCTCTCTGCATCTT TCTGCGTGAAGAGTGAGGGAGATTTCGCGCGCCAAACACACGACGGTGCTATCAACTCCGGCGGTGTCGCCGTAACGCCA CTCCACTACTCTCTCTCTCTCTCTCGCTGAGCCTGGGAGATGAAGTTGTCATCACTTTGGATTCTCAGCCTTCTCATTCT CTGCGATCTACTTCTCTCTCATCCTTCATTCGCCGATAAGTCGGAAACGGAGGAGCCGGAGCTTCTTCTACCGGAAACCA ACGTAACCGCCATCGGTAATGCCTCGCTTGCGAGATCCAAGGATGACAGCTTCGCTACCATGATTGATCGGGCTCTCGAG AGGGAGTTCCCTGAGAATGAGCAGAATGAAGGTTTGCGCAGATCTAACTTCTCTCATTTCCCTTTCTATTGCTCATGCAT GTCCAATTTCTCTTGTGTATCGGATCGGGTTTGCTTGTTCAACATGAATCCTCGAGAATGCCGTCTAGTTAGAGTCTCAT TTCACCTATATCTGGATGCGTTGTTCTTCAATTTCTGATATGCCTTTTGATATTCATGCGTGGTTACTAAGTTTAGCTCC AATTTTTGCTATGAAATACTATCGTTTTTATGTGGATTTGTAGTCATGATTTTGTTGAATCTTTCACGAACCACTGTGTT GCAAGCATTGTGGAAAGTTTTATTCAGATGAGTTCTCTTGGTGAGTTACCTTGATTGTTTTGCAGGCACTGATGATCCTG GTAGTTTCAACAACAGTGTTAATGATCAGCAGGTATGCAATGAATTCCTTCTTATTATATATTTAGTTGCCTCCTGAAGT TATGGATGTTGCTCAATGCGAGCAATGTGTAGACTGTAGAGTATTCAAGTGGCCTGGTTTGGATAATCTAGATATTTAGC CTTACACCAGAGTTTAATTTGGTAGGAATTTAAGTCAGTTGATGATAATTCATTGGATGAGAGTTAAGCTGTTCTAGAAT ATATGCCATTATAGATTATAACTTTGTTCCGATTACACTTGTCATGTGTGAAAAAATGTGTTTTAGATTTTCTGTGGGGT AATGAATTTAGTGGTGGGAATCTGGGGCACTTTAAGCACCATTTTATATAAATACTGTTTCTTTATTTTTGATGCTTTTG TATGTCTGAGGCATTAATAGCACTTGAGTTGAGTCATGATCTGATGTCCTTCCTTCTCATGATATGTTTAATGTATCAGG CTGTTTTGGAAACTGTTGCAAGAGTTAAGTCCAAGAAAAATGAAAGCAAAGAGGAAAAGTATGCACCCCTTTCTTTTCTT GTAGTGTCAATTGGATTGCTGGTTTTTCTTCAAGAGGGAACTGAGTCTTAAAAACTTAATGCGATGCTAATAATTATTTT CAGAATTTATGACATTTGGTAAAAATTTTATCAGGTCATTTCAGTTCCATGATGTTTTCAATTTGGATAATGAGAACCGG GCAGAGGACATGCCAACTTTAATTGATCGGAAGGTATGTCTCATTCAAGCTCTTGATGGTCAGATCTTTCAAACTTACAG AATGGAATAATATTTTCTTACCACCATATCATCACAATATGTATTAAGAATTCACTTGTATTTTTCTTTATACATATTTG GCCAATTGTTTCTTCTTCAGGACAATGTCTTTATCATATCCAATCCCAAGTCAAAATATCCTGTTCTTCAATTAGACTTG AGGTTTACCTACTGTTCCTGTCCTTTTCTTTTTCTTTCTCTTTCAAGTGGAAGTACATGTATGAGTGGCTGCAACTACTA ACCAGTCATGCTTCTTACCCTTTTGATATGCCATATTTGCAGATTGATATCAGATCTTGTGGTTGTTATTGTCTCTGCCA CCTGTGGTGGCATTGCCTTTGCTTGTGCTGGACAACCGGTATGTCTCAAACATTATTATTTTTTAAGCAGATATCCTTAC CATATTCCTCTTAAAAGTGGTGTTATCCACACAATCAAATTTTCAGGTTTTGACCGGATATCTGCTAGCAGGATCAATCA TTGGCCCAGGAGGATTTGGTTTTGTTAGTGAAATGGTCCAAGTATGTTGCCCTTATAATTCTTTTATTATGCATTCTAAT GATTTCCCCCCTTTCTTTTAGCCAGCCACGTTATTTCTAGAAATGAAATCATGGTGTATGAACGGGTTCATGATGTCACA TATAATGTCTTTGTATATGACACATTGAAATGGAGTAATGGAGTGATTATTAGAATTTCACATACTGCTTCTGTTCCTTG TAGGTTGAGACAGTTGCTCAGTTTGGTGTCATTTTTTTGCTCTTTGCATTGGGCTTAGAGTTTTCCACAACAAAGGTTGG CTTGTATACTCATTTATTCCTTTAAGCTAAAAACGTGTGTACTCTTAGCCCGTCCTGATATGGTATAAATCTAAATTTTC ATGTTTTCAGCTTCGAGTTGTTCGAGCAGTGGCTATTCTTGGAGGTCTGCTCCAAATTTGTTTATTTATGTGCTTGTGTG GAATAACAGCTTCGGTATGTCTAATACTTTTACAAATATTTTACAAATTTAAATACCTGATAAGTACAGATTGCCAGCTT GCGTCCCATATTTTTCAAAATATCTTGTTATCTAGTGTATCACGAATCCATGATACCTGTTTTGTTAGATTATTTTCCAG TTATATAAAGATTTAGGTTATGTTTGGCAAACTAGCTGAAAGGATTAGAAGCTAGCTTATAACTGATAGCTGAAAGCCGA TAGGCTAGCTGATTGAATTAAAAATGCTTGGTAAAACTAGCGATTGAACCAGTTGAAAGATGTAAAATGACATAAAAAAG CATATTTGTATGATTGTTGTTATTTAATATTACTTTATTAATTTTTTTTATTACTTTATTAATTAAACATAAGTACCTAT AAAATATTAATTCGAAAATAATTATCACTTTAAATATTTATTTGTTTCAAATTATTTCCTATGTTAAAAATTATGATGAT TTTTTAATTTAGTTTTCATTTTAAAATTTTTTATTAAATTTAACGGGATAATATAAATAAATTTATAGTTCAATTTAATT AGATGAACATATATTTCTTTAAAAAAAATTATTTAAAAAAAATTATGAATTTTTTTATTAAAAGTGAGTGCTGAAAGTAT TAAAATGATAAGGATAAAAGTGAAAATAAATACATTTAAGTTACAAGCTACCTGAAGTAGAATATTAAAAAGGCTATAAG CTAGGTTGTAAGGCATGAAAAGTTTCTTAGGTTGGTACACTGATCTTACTGTTTGAATTAAGCAGTTTTCGGAACTCATT TTTCCATTTCCATCTTAAGTGCGTTGAAGTTTTAGTAATATAATGGATTGATCTCATGCTTGAGATTTTGATATTTACTT GTTTCATTTGTCCCAGCTATACATGTAAATTTGTTATGTGAAAATATATCTTAGATTGTTTAATTGGACTGACCAAATTG TTGCGTAAGGTTTGGTAGCTGTTGTGTTGCTGCTTTCCCTGCATGATTCTTTTATGGCCATATTATGTTTTTCACAATGT ATCATTCATACTCACTAGTAACAAATATATTCATTCATGTCATAACAAGTCACGTGGGCAAGGAGTGTAAAATTTATAGG TCTTTTGGTTCTCAATGTTACACTACAGACATACATATGTTCCCACATGAGTATCTAAACCATGGTAATTTTGACTCTTT GGTCATTGGTGTATCCGTGAGTTGTGTCTATTTGTCTATAGTATTATTGGTGAGTTGACCCTGTGATCAAATTTAGTTCA ATACAAACCTGTAGGAAGGGCTTGTACGTTTCTAGACATGTTGTTGATTTTGAGGCATCTAATTGAGTGAAACAACCAGT GATGTTCTGTACTAATATTTATTGTAAAAAACCCTCCACTTTAGTGGCTTGAATTTCTGATGAAGACACCTATACTATAC CTGCAGTTATGTGGTGGTAAATCATCTGAAGGAATATTTGTTGGTGCATTTCTGTCCATGTCTTCAACAGCAGTGGTAAT TTACTGATCTCATTTTATGATATCACTCTTCCTCATCATACATGTGAAGTACACGAGTAAAACCTTGTTGGACTGTGACA TTTTCATGTTGTTTTCCTGTGGGTTTATAAGTATTTTAAGTAACCTATGCCTGCATTTTAACGATTGTAATATACCATTG AAATGATTTCCTGGTTTCACTTTGATTAGATTTGATTGGATTCATATATCTATATTCTTTATATCCATCACAAAGTTTTC AGCTAAGTAAGAGTTAATTAAACTACAGGACAATGGAAAGTATGAACATTGAAAAATAAAGGTGTTTTTGTTTGAAGGTA GTGCTTTTAAGTTTTTTGGTCAAAATGGTAGTCGCAGTATGCTTAGTAACTAGATCGAGCAAGTAATAGTTGTCACGCAA AATAGGCCTACTTTAATGGAGGAGAATACGATATTATTTGATTGTATGATCATGATTCACCGACAGGGCAGAAGACTGAA ACAAAAAACAACTCTTATAAATTGATAAAAACTCTTTCCATGGTAAAAATTATGTGAATGCAAGGGGTGTGACTATTTGG TTGGAGAGGCAGCATGCTTGCAATTTCAATTACTTAGGTTATGTTAGTCATGTTTATGGCTTCGCTGTTGTGCTCTGTAC ATCATTTGTTTAAAGGATTACTGATTACTGATATACAAATAGATTGATTGTTATTTGTTACAACTTTGATACTTTTTGGG TCTCTTTTTCCTTTTCTTTTGTTACCTATTGCATCAAAAAAGAAATAGAAGATTATAGATACAATGTGGTTGAAGATATG GTTCTATTTAGTGTTTGATTGTTAAGGAGAAATGTATGTGTTGTGCTCTAATAGTTGTGGTGGTGTAGTTATCTTGTTCA TGAAAAATCTAAAACAGAAGCATGATATTTGATCACATTTACTCTGGATGTTATGTTCCTTCCTTGCTGTCACACCTAGA TAGAGCGTCTCTTCAAATATTGTATCCTTCCATCGAAGTTATATTACTTAGAATTTGTTCATTTATTCTTTGACCCATAG GTCTTGAAATTCTTAATGGAAAGGAATAGCATCAACGCCCTCCATGGTCAGGTCACAATTGGAACCTTGATTCTTCAGGT ATGTAATATTTGTTAATATTTATGGATGTATTTTTATAACTGAGAGACATTGCTGCAACCAGTTGTGCAAAAAGAGTGGA GATTAATGCTATCAATAACCCTAATATCCTCGTTAATATTTTCTCACACACTTTTTAATGCAATATTCAAAATTATTGGT TCCTTCAGGATTGTGCAGTTGGTTTGCTCTTTGCATTACTTCCTGTCTTGGGTGGAACATCAGGTGTTCTTCAGGGAGTT ATATCCATGACTAAATCGTAAGTTATTTGTAGGATGAACTATCCCTTATTTATGCTATCTCAGCATAGTTTACGAAGATC TATAACATGTGATATTAAGCCCCAAGGTTCTGTAGTGTTGCTAGCCTGCTACATAGTATTCTGGTGGTTCTGCCTATAAA AATATTTTCATTTAAGAGATGCATGGTAAGGGAACCCAGACATTTCTTAGAGTCAATTTGGTTTTCTTTGGTAGAGTTGG TCGAAACGTAGATGTTTTCTGATTAAGAAAAATAGAATTGCCATTTGCCAATACCTGTTTCAGGTTGTTGTTTTAATACT GCCACTACTTTTAACAGATGATTGCATATACACTCCAAAGACTGGTTGAATTTCATAAGGCAGTCAACTTGATTTGATAT GCTTATGTTATTAAGTTTCTTGTTCCTGCATTATGGTTTTTTCCCTTCCTGTCGAATATTCCTTCTGATTTATTAATTCT TTTGTTGCAGGTTATTGGTATTACTTACATTTTTAGCCGTTTTGTCAATATTATCTCGTACTTGTGTACCGTGGTTCCTT AAGCTTATGATAAGCTTATCATCTCAGGTGAAGATAGACCTTTTGCTCTGTTGTTAATTGCTTGTTAATGCGCCAGCTTT TAATTATCTTTTTCTTGTGCAGACCAATGAACTTTATCAGTTGGCATCAGTGGCGTTCTGTCTACTTGTTGCTTGGGTGT GTCTTCTATTCATTCTTAATCTTCATTGCTAGGCAACAGTGTTATCTTCTTAATATATTGTTTTCTGTTTTATTCTTTTC TTATCTACACTGTTTAGTGCCCTTAGTCTTGGTGGAAGTCTGCTGTTGTTTCCTCTTTGTGTATGTCTTGGTGGTTGTTC TAGTAGTATAATATAAAACCGTTGATGTTTCTTCACCCGATAGCTTAAGCTTTTAGGATAGTTGGTTTATGACTCGATAT CGAAGCCTCTATGACCAAGTGGTCTAGAATTCGATCTTTGTTGCCCCCATTATTCTAATAAAAAGATGAATTTCAACACA AGGTAGGTGAGTTTGTGCATTGTTCATGCTTCAAGGCCAATGGGCTCTTGCGTGATGGTGTGTGTTAGAAACTTAGAAGT ATAATATGAAACCATTCATATTTCTTCACCTTATAGCTTATGCTTTTGCAATAGTTGGTTCATGACAAGTAGCTTAAATG CACGCTGCATGACTCGTAAACATTCATTTATGAAGTCCAAAAACTTGTGTGCTTTCAACTGATCATTTTAATGATTTGTT ATTTCATTTCAGTGTAGTGATAAGCTGGGTTTGAGCCTGGAACTAGGTTCCTTTGCTGCAGGAGTGATGATATCAACGAC AGATCTTGGTCAACATACACTTGAACAAGTAACACATTTTCCTTTGGATATACGTTCTTGGTAGTTGCTAGTTTTACATT ATTTCCTCAAGAGTTGGAAGTTTTCCAATGGTATAGTTTAGTAACAACTCTCCAAAGTCCAAACCCAAGGTCTAATTTTT CCCTTTTTCTCTAGTAATATCTTGTGGTTTGAGGTTATCACTTTGCAATTTCTTTATGGTTATTCAATTGTTTCTTTTGT CATTCTAAGCATTATTTTCTTGGAAATTTGGGGGGAAGGGGACGGGGGTTTGAATGTTCTGTTTGTTACCACTTTGGATT TTCATAATGAATGCCGTAACAAGGGGTATGAGATTCAGGAAACCTTCTTGAACGACATAAATTTGGAGATGATCCATGTT TTTCCATTTATTTGAGCTTACACAAATTGTGATGATTAGGTTGAGCCAATTCGCAACTTTTTTGCGGCTCTGTTCTTGGC CAGCATTGGGATGCTTATACATGTCCATTTCCTTTGGAATCATGTTGACATTTTACTGGCTGCTGTTATATTGGTGATCA TTATAAAAACAATTGTAGCTGCAGCTGTTGTCAAGGGGTTTGGATACAACAACAAGACTTCAGTTCTTGTAAGATCTGAC AACAATCATTATAATTGCATCTGCAAGTTCATTACACCATGCATTTATTTGACAGAGGAGCCTTAGGTTATTCCACATGC GTAGGTTGGGATGTCCCTAGCACAAATTGGGGAATTTGCTTTCGTTCTTCTCAGTCGTGCTTCAAATCTTCATTTAGTTG AGGTATGTGCTTTCATTCGAGAGTTCTAATTTATGCTTATCCTTAGGAAGACAGTGGAATTTATCTCCCTATATTTTATA CATATATATATATATATTTTACTGGAAAAGATTGAAAGTTTATTTTATTAATATTATGCAGTTTTCCTGGAAGCACTTAT TATCATCTGAAGTGTTAATTTAGTCACATGGTTTCTGCTTTTACTCTTATATGCACAGTTAAACTAAAGGTCTGATCCTT ACTGCAGGGAAAGTTGTACTTATTGCTCTTGGGAACAACAGCTCTCAGTCTGGTATGTGTGCACTGTTTTACAGAGTAAT AGTTTACATAGTAATTGTCAATCATAAAACGTTGTTGAAATACTGGCCGTTTACATAGCAATTATCAATCACATGTTTGA ATGTTATATCCAGTTTCGTGGGTAATTGTGATATGTTTTGAATGTTAAATTCTCAAATATATCTTGCTAGTTAATTTGTA GAGACTTTGAACCTTACGCATACAGAAATTGGTGCAGGTGACTACACCATTGCTTTTCAAGCTCATTCCTGCTGTTGTGC ATCTTGGTGCCTTGTTGCGGTGGTTCCCTCCTGACGGTCCAGCTGAGGTAACTTACAGCTTATGAACTGACAAGGGATTT AAAAGATTTTTAGCTTTGATGGTTTCAGTTGTCTTAAGGATCTTGAATATGATTGTACTCAGATTGCATTTAAAGCGGAC AGTTTTCGAGCAGACAGTGCTAAGCGTATTACTTTGATGGTTCAAGGCTCTCATGATTCATGATAGTGAAATATATTATG AAACAGAAATGAAATCTGCGGATTATACCTGATGGCTTCTAACAGTTTGGACAGGTGCCGAAGAGTGCTACTAAGGTTTG ACTATTCATTCTCTACTACAAAGAACTGTATATTCTGCCTGCTTTGGGAGCACGTACCGGAAACAGTGATGCAATGGCAA ACGCAGGCCACGGGAACCGGATTCATCAACTAACCTAGTAAATGGCCATGTTGTTATTAACTTGAATGGCCAATTTTTGT GTATAAAGTAATGTCTAGCTGCAGTTAGTAGTGTAATTCATTTGAAATACGATACTGTTAAATTACCCCTCCCCCCCCTA ATGTTCCCATTTTACTTTATCCCAAATTTTGGGTTGATTGGTTTTTGAATATGTGTAAGTTGTCTACACACAGTCAAATG TATTATGCTCATAGACTGTTGAACTGATTAGTGATAGCGGAAAGTAAATTGATTTGTTCATTTCTTCTGATTTATCATCA AAGATGTTGAATCGTGGGAGATCCTCTCAATGGTAAACTCTCAATTTTCCTTAAACCGATTGAACAGGCGCAGCAACACT TTGAGTAAGATAGCATAATTTTTTAATGTCTATTTATGTTCTTTTACAGATTCATTAACTAATGGAAGAAGCCATGATTT TAAAGTATAAACATAAGACTTGAAAAATTAGTCAAAC 

CDS sequence (LotjaGi4g1v0440900.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGAAGTTGTCATCACTTTGGATTCTCAGCCTTCTCATTCTCTGCGATCTACTTCTCTCTCATCCTTCATTCGCCGATAA GTCGGAAACGGAGGAGCCGGAGCTTCTTCTACCGGAAACCAACGTAACCGCCATCGGTAATGCCTCGCTTGCGAGATCCA AGGATGACAGCTTCGCTACCATGATTGATCGGGCTCTCGAGAGGGAGTTCCCTGAGAATGAGCAGAATGAAGGCACTGAT GATCCTGGTAGTTTCAACAACAGTGTTAATGATCAGCAGGCTGTTTTGGAAACTGTTGCAAGAGTTAAGTCCAAGAAAAA TGAAAGCAAAGAGGAAAAGTCATTTCAGTTCCATGATGTTTTCAATTTGGATAATGAGAACCGGGCAGAGGACATGCCAA CTTTAATTGATCGGAAGGACAATGTCTTTATCATATCCAATCCCAAGTCAAAATATCCTGTTCTTCAATTAGACTTGAGA TTGATATCAGATCTTGTGGTTGTTATTGTCTCTGCCACCTGTGGTGGCATTGCCTTTGCTTGTGCTGGACAACCGGTTTT GACCGGATATCTGCTAGCAGGATCAATCATTGGCCCAGGAGGATTTGGTTTTGTTAGTGAAATGGTCCAAGTTGAGACAG TTGCTCAGTTTGGTGTCATTTTTTTGCTCTTTGCATTGGGCTTAGAGTTTTCCACAACAAAGCTTCGAGTTGTTCGAGCA GTGGCTATTCTTGGAGGTCTGCTCCAAATTTGTTTATTTATGTGCTTGTGTGGAATAACAGCTTCGTTATGTGGTGGTAA ATCATCTGAAGGAATATTTGTTGGTGCATTTCTGTCCATGTCTTCAACAGCAGTGGTCTTGAAATTCTTAATGGAAAGGA ATAGCATCAACGCCCTCCATGGTCAGGTCACAATTGGAACCTTGATTCTTCAGGATTGTGCAGTTGGTTTGCTCTTTGCA TTACTTCCTGTCTTGGGTGGAACATCAGGTGTTCTTCAGGGAGTTATATCCATGACTAAATCGTTATTGGTATTACTTAC ATTTTTAGCCGTTTTGTCAATATTATCTCGTACTTGTGTACCGTGGTTCCTTAAGCTTATGATAAGCTTATCATCTCAGA CCAATGAACTTTATCAGTTGGCATCAGTGGCGTTCTGTCTACTTGTTGCTTGGTGTAGTGATAAGCTGGGTTTGAGCCTG GAACTAGGTTCCTTTGCTGCAGGAGTGATGATATCAACGACAGATCTTGGTCAACATACACTTGAACAAGTTGAGCCAAT TCGCAACTTTTTTGCGGCTCTGTTCTTGGCCAGCATTGGGATGCTTATACATGTCCATTTCCTTTGGAATCATGTTGACA TTTTACTGGCTGCTGTTATATTGGTGATCATTATAAAAACAATTGTAGCTGCAGCTGTTGTCAAGGGGTTTGGATACAAC AACAAGACTTCAGTTCTTGTTGGGATGTCCCTAGCACAAATTGGGGAATTTGCTTTCGTTCTTCTCAGTCGTGCTTCAAA TCTTCATTTAGTTGAGGGAAAGTTGTACTTATTGCTCTTGGGAACAACAGCTCTCAGTCTGGTGACTACACCATTGCTTT TCAAGCTCATTCCTGCTGTTGTGCATCTTGGTGCCTTGTTGCGGTGGTTCCCTCCTGACGGTCCAGCTGAGATTGCATTT AAAGCGGACAGTTTTCGAGCAGACAGTGCTAAGCGTATTACTTTGATGGTTCAAGGCTCTCATGATTCATGA 

Protein sequence (LotjaGi4g1v0440900.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MKLSSLWILSLLILCDLLLSHPSFADKSETEEPELLLPETNVTAIGNASLARSKDDSFATMIDRALEREFPENEQNEGTD DPGSFNNSVNDQQAVLETVARVKSKKNESKEEKSFQFHDVFNLDNENRAEDMPTLIDRKDNVFIISNPKSKYPVLQLDLR LISDLVVVIVSATCGGIAFACAGQPVLTGYLLAGSIIGPGGFGFVSEMVQVETVAQFGVIFLLFALGLEFSTTKLRVVRA VAILGGLLQICLFMCLCGITASLCGGKSSEGIFVGAFLSMSSTAVVLKFLMERNSINALHGQVTIGTLILQDCAVGLLFA LLPVLGGTSGVLQGVISMTKSLLVLLTFLAVLSILSRTCVPWFLKLMISLSSQTNELYQLASVAFCLLVAWCSDKLGLSL ELGSFAAGVMISTTDLGQHTLEQVEPIRNFFAALFLASIGMLIHVHFLWNHVDILLAAVILVIIIKTIVAAAVVKGFGYN NKTSVLVGMSLAQIGEFAFVLLSRASNLHLVEGKLYLLLLGTTALSLVTTPLLFKLIPAVVHLGALLRWFPPDGPAEIAF KADSFRADSAKRITLMVQGSHDS 

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
Phobius 1 2 2 -
SignalP_EUK 1 25 25 -
SignalP_GRAM_POSITIVE 1 25 25 -
SignalP_GRAM_NEGATIVE 1 25 25 -
Phobius 1 25 25 -
Phobius 3 14 12 -
PANTHER 7 583 577 0.0
PANTHER 7 583 577 0.0
Phobius 15 25 11 -
Phobius 26 160 135 -
MobiDBLite 68 88 21 -
Gene3D 159 542 384 3.6E-75
TMHMM 161 183 23 -
Phobius 161 180 20 -
Pfam 166 535 370 2.8E-73
Phobius 181 186 6 -
Phobius 187 205 19 -
TMHMM 190 209 20 -
Phobius 206 210 5 -
Phobius 211 228 18 -
TMHMM 214 233 20 -
Phobius 229 239 11 -
Phobius 240 261 22 -
TMHMM 240 262 23 -
Phobius 262 272 11 -
TMHMM 272 291 20 -
Phobius 273 291 19 -
Phobius 292 302 11 -
Phobius 303 322 20 -
TMHMM 315 337 23 -
Phobius 323 341 19 -
Phobius 342 364 23 -
TMHMM 342 364 23 -
Phobius 365 375 11 -
Phobius 376 392 17 -
Phobius 393 397 5 -
Phobius 398 417 20 -
Phobius 418 428 11 -
Phobius 429 448 20 -
TMHMM 430 449 20 -
Phobius 449 453 5 -
TMHMM 454 476 23 -
Phobius 454 473 20 -
Phobius 474 484 11 -
TMHMM 483 505 23 -
Phobius 485 503 19 -
Phobius 504 514 11 -
TMHMM 515 537 23 -
Phobius 515 534 20 -
Phobius 535 583 49 -

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
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.
Molecular function Solute:proton antiporter activity Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: solute(out) + H+(in) = solute(in) + H+(out).
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.
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 LotjaGi4g1v0440900.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

Loading expression data from ljgea-geneid. Please wait…