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LotjaGi1g1v0399500.1

Overview

Field Value
Gene ID LotjaGi1g1v0399500
Transcript ID LotjaGi1g1v0399500.1
Related isoforms 3
Lotus japonicus genome version Gifu v1.2
Description Beta-adaptin-like protein; TAIR: AT5G11490.1 adaptin family protein; Swiss-Prot: sp|Q9LDK9|APBLA_ARATH Beta-adaptin-like protein A; TrEMBL-Plants: tr|A0A072V2B0|A0A072V2B0_MEDTR Beta-adaptin-like protein; Found in the gene: LotjaGi1g1v0399500
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:88660325..88668483) extracted from Lotus japonicus Gifu genome v1.2.

AAAAGATGCTCAATAAGCCTTGAAGTTAGCTTATAAAAAATAAAAAAAACCTTTATGTTTTTTTTTTTAGTTCATATCAC ACTTTAGATGTTCAACCATCCTGTGTGGATGGATGCTATAGCTAGTTTATTAGAGTGTAATTTCCTAATTTCCTTTTCCC CTTCCTTAAAAAAAAGAAAAAAGAAAGAAAGAAAGAGGCACCAGATAGATCTTGCCACTTCAGCTTCTCACACGTCGAAA TAATCAAATTTCCCCTCTTTCTTTCTGTTAATTTTTTTTCTACTTCCCTTCATTCACCACTCGGATTCCATTTTTGACAA AAAAAATTTACAAGCCACTGCAACTACAATAATCGATCATTCTTCTATCTCCGTTCAGATCTTACTTCATCGGCGACCAA ATCGTGTGGCTATCCTACTCAACCTGCAGTGGCCATGGCTCCACCGCAGTCTCAGCGATCTCCATCGCCCTCTCAACCAT CAGGGTCAGTTCCCAACTTCACAATTTCATTTCTCTGTTTGAATAATTTGCAATTTCAATTTGGACTCATCGACGGAAGC CATTGCATAGAAATCGCCACCTGACAAACCCGAAATTTCCCATGTTTTGGTTTTACATCGTAACATGTCTGCAATTACTA GTACTCGCACTTTCTTAACTTTCGCTAGCTTGTCATCAACATTGAATTTCCTCGAGTTTTGTCCTATTTGGCGTGCTATT GTGAAATTCACTCTACTTGAAATGAGTATATGATTTAAGCTCTACACACTGAGCTACAGAACAGAAGAATGTACATGTAA TCTTCCGGATTAATCAACATTGGGAGATGCTATGTTTACTTCACTGAGTTGGTGCACTAGCTATTTATGCCCTTGTTATT TATTGCTATCACAATCTCTTATGTCCATATGGTTGATTCTATATTCTTAACTTCAACTCTTGACCTATTTAATTGAACCA GGAAGAGTGAAGTGTCCGATTTGAAATTACAGCTCCGGCAGCTGGCTGGGAGCCGAGCTCCGGGTACTGATGATTTGAAG AGGGATCTCTTCAAGAAGGTGATATCCAACATGACTATAGGCATTGATGTATCGTCTCTCTTTGGGGAGATGGTGATGTG CTCAGCAACATCAGATATTGTTCTGAAAAAGATGTGCTACCTGTATGTTGGGAACTATGCCAAGGGCAACCCTGAACTCG CTCTTTTGACAATTAATTTTCTGCAAAGAGATTGCAAGGACATGGATCCGATGATTCGGGGACTAGCACTGAGGAGTCTG TGTACACTCCGAGTGGAAAACTTGGTGGAGTATTTGGTTGGGCCATTAGGGTCTGGGTTGAAGGACAATAATAGTTATGT CAGGATGGTGGCGGTTATTGGGGTTTTGAAACTATATCATATATCAGCTTCCACTTGCATCGATGCAGATTTTCCAGCAA CGCTGAAGCATTTGATGCTTAATGACCCAGATACTCAGGTTAGGATTCTGTTTTTGGGATGATTTCATTTTCTTCCTCAA TCTATGATAAATCATAACAGTTCTGTTCAACTTTTTGAAGAGTTTAGAGTTTTACTTAGAAACAAGCTGATTGACTTAGC ACAATGATTAATGAATTGCATAGCACACAGTCCTTAAAATAATACTATGGTTGGTTTTGCTTTCCTTTTTGGTCAGGTAA AGAATGCATTCATCTCCTAATTTCTAAATTATCATTTTCCTAAATTATATTAGTGTCCCTGGATGGTGTCTTTGTACACA TATCAATATATCATGTTGGAAATTTTGTTGCATGGAAATCTTGTATGACACTTGCAAGAGAGAGAGAGAGAGAGAGAGAG AGAGAGAGAGAGCTTATCCTGCATAATAATTAATACACTGATAACCCGTTCTTTTGAAAGTTGGACTTTTATATTATCTG GCCCACTTGAAGGTAAATTTTATTTATTCAAAAGAGTGTGTTCAGTTTGTACACTTTAGAAGGCTGTAAACGGGTTGTTC CTTTGAGATCTAATTTTTTATAATATTCCTGTTCTTTTAAGAAGGGAAATGATTGATATTTTTAATGTATTTTTTGTATA GTTAGGAAATGAAATGTTTGATTTTTAGGTTAGAAGCATGTATTTGTACTTAATGAGCTTATCATGTATTTTTGTTCTTT TAGTTAGTAATACTATTATCAAGCTCTGCAACATGTTCTGTGAGTTCTTATATTTTCATCTTTATAGCTTCATCGGAGAT AATTTGATTTCCTTAACCTTAACAAACATCATAAAAGTGGGAAGCTCTTCTAAATTTTTTGTTCACTTGTCCTTTGTTTG ATCTTTAAACTGAAAATTATTTACCTATTTAAGATAAACTTCTATCTACTTATTGCTTTTCATTTGTTATTCACCCATAT AAGGATTTCATAAGTCTTCCTATTTCAAAAATTTAAAACAACTGCAGTCACCAAATGGCTTGTACTTCACATGTGTAAAT GGTCATGTTTGTTTCATCAGGTAGTTGCAAATTGTCTGTCTGCTTTACAAGAAATCTGGACCTTAGAGTCAGGCTCGTCA GAGGAAGCAGCCAGAGAGAGAGAAGCTGTGCATAGCAAGCCAGTTATATATTATCTTTTGAATCGGTAATCTTTTTTATT TCTTGCTGTCCAATACTTTGTTAAATTATTTGGGTAAGCAGTAAGATGTGGTACTTAATTGACGGTGTTCCTTAAAGGAC AGTGCTGTTTGATCTTTGAGATATTTAGCATTCACGGGCACATACCAGAGAAACTGAAGCTTCTCAATCCTAGGATTCCC TTTAAAAGTTTTCTTTTTAATCTATTTGCCATTATGAAAAGGGCTTACAGTTACCGTATAATATGCCAGCATATTAGTTT CTTCGTCCTTGTATACATTATAACTCCATTATATGGAGTATGATTGTGGGAGTACAAGGTTGATTTGAGTAGTTTCTTTA CAAATGTAAATGAGAATATTTTAATACATTTAAGTGTTAACTAAAAATCTGTCTTTCATTGTGGCAGACATCGGAGACAA AAAGAAACCATCTGTAATATCTTGCAAAAATACTGATTTTAAACAACTTAAAAATTCATTTTCTTTGTACTTGCAGCATT AAGGAATTTAGTGAATGGTCTCAATGTGTTGTGCTTGAATTGGTGGCCAAGTATGTTCCATCAGATAACAGTGAAATATT TGATATAATGAATCTCCTTGAAGATAGACTCCAGCATGCAAACGGTGCTGTTGTCTTGGCAACTACAAAAGTATTTCTAC ATTTGACTTTATCTATGGCTGATGTTCACCAGCAGGTATGTATTCTTGTGATGCCAATTTGTGTTCTCAGAAATAGGAGT GGGGTTTTCTTGTGAGCGAAGAAATAATATGATAGAGGCTTACAAATGAGGGGAAAAGTGAGAATACTACTAGCATCTCA CACTCGATAAGTAAATCTCTCCAACAGTGAGGACAATATTTTTTCGGTGGTCCTATGACCCTCCCAAAAAAATTCTCTCT CCTCTGATTGACTCTCATCCAAATCACTTACACATTTCTCTCTTAAATCTCTCCTATTTACATTTCTTCTCTGAGTCCGC CTAACGAAATGAAGCATAAACTACTTGGGCTTGGATTGTTCATTAAACGAACTGGGGACTGCAGCATTTTACCTCAATCC TAGGTCAGCTTCAAGCATAGGTTTGGCTGTGTTTGCATATGGCTTGGCCATGCTCTGTTTGATTAGTTACCCATTTATTT GAACTACCATTGTTATGATTTAAACCTTTTAGTTTGATCTTTTAGTTATTTTGCCTGTATCTTGTCACTTTGGCTTCTTC CCTAAAACTTGGTAATTTCTGATGCAAATTCCTTTTGTTCAGGTTTATGAGCGTATCAAAGCCCCTCTGTTAACTCAAGT GAGCTCAGGAAGTCCAGAACAATCTTATGCAATTTTAAGCCACCTACATCTTTTGGTCATGCGTGCACCTTATATATTTT CCTCAGATTACAAACATTTCTATTGCCAGTATAATGAGCCATCATATGTCAAAAAGTTGAAGCTTGAAATGCTGACAGCA GTTGCAAATGAAAGTAACACCTATGAGATAGGTAGGTAACTCCCTGGTCTGCATTGCCCTCATTCTTTTCGGTATGACTT ATTCAAGAACTTCTTGTGTCCCATTTCAGTGACAGAATTATGTGAATATGCTGCAAATGTTGACATTCCAATTGCAAGGG AATCAATACGGGCTGTTGGAAAGATAGCATTGCAACAGTATGATGTCAACGCTATTGTTGACCGTCTTCTACAGTTTCTT GAGATGGAAAAGGACTATGTTACTGCTGAAGCTCTGGTAAACATGACAATTACCTGCTACATACCCTGGAATTGGCCTAA GAGTAGTATTTTTCTGCTTCCTGTTATTATGTGAACATTTATGCAATGTATGGCATTTTAATTCGACTTGGTTATGGTTG GATAACTAACAGAGTTTGCATTTTAATTCGACTTAGTTATGGTTGGATAACTAACAGAGTTTGAAAGTTCATTTATGCAG GTGCTTGTGAAAGATCTGTTGAGAAAATATCCACAATGGAGTCAAGATTGTATTGCTGTTGTTGGGAATATCAGTAGCAA AAATGTCCAAGAACCCAAGGCTAAGGCAGCTCTCATATGGATGCTGGGGGAATATTCTCAAGACATGAATGATGCTCCAT ATGTATTGGAGAGCCTTGTTGAAAATTGGGACGAGGAGCATTCTGCTGAGGTAGTATACAAAACTTTTTATGGTTATTAG ACTTGTAATGTCCAGATTTGAGATTTAGATTTCCATACTTGGTTTTGCAGTATTTATTTGTTTTCAAATATACATTATCA ATTTCTTTAGAAGGTTTAATTTCTTGTGTCCTGCCAATTTATGACATGGCATAGGCACATGCATTATTCTCTTGATCTTT GGACACTTGAAAATCCCTCTGCTTCAAGAACTCCCTTCTGTCCCAGCAGAAACAGAAGAGAAAAATCATTTTCGGATTTC AGGAAAAGAAAATAAAAAATCAACCAAAAGAATTAAAAGAATGGAATGTATTATTGAAAAACTGAAAGAAAATGGACAAT GAAATTCTCCCCAAGGGTTTCCCCTTCACAAATGATTTCTGCTTTTACTCTCAAACCATCATTTATACAGAATGAATCCT CTCTAATCTGATTTGCTTCTTTTTATTTACATAATCCTCTCCTACTACTCACTAACTAGTAACTATACTATAACAGCCCT AACTACTATAAAAGCCCCTAAGTAGTTTTCCCTTCTCTTACATCCTAACATGGCATGTATCATCTTAATATGTTTATGGA GAACATCAGGAGGAAGGAATTGACCAGTCCTTGCATCCCCTCCCTGGCCGTACCATGAATACCCACGTCTGCCATGGAAT CATAGTTTGGTTTGATCAGGGTGTGATTCTAATTTGATTGTCCTATAATTATGTCCTTATAATGAATAGAAATATGCCAT TGACACCACCTGGAAGTTGCCTGTTAGTCACCAAACCTTTGTTTAATTTGAGAAAGAAAAAAGACCTATAATGGCATCTC GTGTAAAGTATTGCAGTGGGGGGAGTATGAGCATGCCTTTATGTTACCTGATTATACCTTGAACAATTGCTGTGTCATGA TGCAGGTTCGCTTACATCTTCTTACTGCAGTTATGAAGTGTTTCTTTAAGAGACCCCCTGAGACTCAGAAAGCATTAGGA GCTGCACTAGCTGCTGGTCTTGCTGACTTTCACCAGGTTTGAGTTGTTGCTTGCTACTACTTCTTATTTGAATTGTCCAA ATAATGCAATATTAAATATTTGCTTGCAGTGTAGTCTTACATGAGCTTTTGTTGATCGCAGGATGTTCATGATAGGGCCT TATTTTATTACAGGCTTCTGCAATACAAAGTGTCAGTGGCAGAAAGCGTGGTGAATCCCCCAAAGCAAGCAGTTTCAGTA TTTGCTGATACTCAGAACAGTGAAGTCAAAGATCGCATATTTGATGAATTCAACAGTTTGTCTGTTGTATACCAAAAGGT AATCAATGACTCAATCCCCCCAAGTGGTTTTGAACGATGAACCCAAATTAATCATTGAGTTCGGATGAGTTTTAATAACT TGAAGCCATTCTAAAACCTAATTTTTTAATGAAATAACTTTTTCCATTTTAAACAGATTTAAAATAAAAATGAGGGAAGA TTATAATAAATGTTTCCTCCTACCATGCATAGTTATCAACTGTGTTTTTGTATGTTTCTTCCCTGTAGAATGTGTCTGAC TTGAGTGAATTTGTTGTTAAGATTTGAAAAATATAAAACCTCATTCATCTAAACTTGTGCCTCAATGCGATGAGGGTTAC ACTACACCTTGCAACTACTGTTATTTTAAACATGTTTGTAATGATCCTTTTCAATTTTCCCTCCCTCTGTTATGAGCTGT ATATTTAATTATGTTAAACTAATCATAGCAAATTCTTGCAGCCTTCTTATATGTTCACTGATAAGGAACACCGAGGGATA CTTGAATTTTCAGATGAACTTGGAAATCTATCTATTAGTGTAGAATCTGGAGATTCTGTTGTTCCAGCTCAGAGGGTGGA GGAAAATGACAAGGATCTGCTTCTAAGTACCACAGAAAAAGATGAAGTTAGAGATCCCGGTAGCAATGGTTCTGCCTATA ATGCTCCTTCCTATGATGCTGCTATTTCACAACCGCTTGCAGATTTGGCATTACCAAGTACTGGCTTAACTGGGCAAGCT CCAGCATCTAGCTTGGCAATTGATGATCTGCTTGGTTTAGGTTTTCCAGTTGGGACTGCAGCCACACCTTCACCTCCTCC ATTGAACCTCAACCCAAAAGCAGTATTGGATCCTGGCACATTTCAGCAGAAATGGCGTCAACTGCCAATATCCTTATCAG AGGTTTGCTTTAAAATTATAATCTCAGTTTCATTAATAAAGTAGCATTGGCTTAGAATAATAATTTTAATTTGAACGCTG TTATTATAAAAAAGTTTTATACTGTTATCTAGCCACATCACTCAAACTCATTAAATAATGTGGCAACACATTAATGGGTG GTAGTATAAAATTGTAAATTTTTCTTTAACTGAGTGCGCTACCGTTGAACTCTAGAAATACTTTACTATGTTTTTGATGC CATCTTTCTCTTTTGCTTCGGCTGCCTGCCCATTGACCAAAAATGTTGAGCATTTTAGTTTATTTGCAGCATTTAACATT CGTGATCTGATGCAGGAATATTCTTTAAGTCCTCAAGGAATTGTGTCGTTGACAGCTCCCAATGCACTCCTCCGACACAT GCAAAGTCATTCAATACAGTGCATTGCCTCCGGTCGTCAGTCGCCTAACTTCAAGTTCTTTTTCTTTGCTCAAAAAGCGG ACGAAGCATCAGTGTACCTTGTAGAGTGTATAATCAACACATCATCGGGCAAGTCGCAGATTAATATAAAAGCTGATGAT CAAAGTTCTTCCCAGGCATTCTCAACTTTATTCCAATCAGCCTTGTCCAAATTTGGTTTGCCTTGAAACTTGATGCTGCA TCCTTTTGTACTGTGGAGTAGGCAGTCATGAAATTTTGGAATCCCTGCTTGAATATATAAAAAACGGTGATAGATATTGG GTCCACATCCTTTCCCCTTCAAGAAAAGGGGGAAATCAGGTCAGTGTATAAGCAGAGGGATTCCATTGGCTAAAAGATTT TGTAGTTGTTTTATATCCGATCCAACGTGGTGATTCATTGGAAGATATTCAGTTTGAAAAACTGAGTCTGGTTTGCAAGT TTGTAGAGGTTTTATGTTGATTTTCGGACATTTATCCAAGCGTTTACAGAAATGTGGAATTTAACTCATTAACAATTGAC TGCTGATTGGAAATCTATAATAATGCTTGATGCCTGTAGTGTTGCCACTTCTGTGTTGGCAGTAGGTAATTTTTTAAGAG GGCCATCTATTTCAATTCTGCTGTTAAACGAAGTTACTATTGACATCATAAGTTTTAAGGTCACAAGGTCACGTAATCTT TCACTTAATTTTGCAAGTTTGATTTTCTTAGCTAACTAAATTAGAGATATAAATACATTGCATTTTAAATTTTTGCTTA 

CDS sequence (LotjaGi1g1v0399500.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCTCCACCGCAGTCTCAGCGATCTCCATCGCCCTCTCAACCATCAGGGAAGAGTGAAGTGTCCGATTTGAAATTACA GCTCCGGCAGCTGGCTGGGAGCCGAGCTCCGGGTACTGATGATTTGAAGAGGGATCTCTTCAAGAAGGTGATATCCAACA TGACTATAGGCATTGATGTATCGTCTCTCTTTGGGGAGATGGTGATGTGCTCAGCAACATCAGATATTGTTCTGAAAAAG ATGTGCTACCTGTATGTTGGGAACTATGCCAAGGGCAACCCTGAACTCGCTCTTTTGACAATTAATTTTCTGCAAAGAGA TTGCAAGGACATGGATCCGATGATTCGGGGACTAGCACTGAGGAGTCTGTGTACACTCCGAGTGGAAAACTTGGTGGAGT ATTTGGTTGGGCCATTAGGGTCTGGGTTGAAGGACAATAATAGTTATGTCAGGATGGTGGCGGTTATTGGGGTTTTGAAA CTATATCATATATCAGCTTCCACTTGCATCGATGCAGATTTTCCAGCAACGCTGAAGCATTTGATGCTTAATGACCCAGA TACTCAGGTAGTTGCAAATTGTCTGTCTGCTTTACAAGAAATCTGGACCTTAGAGTCAGGCTCGTCAGAGGAAGCAGCCA GAGAGAGAGAAGCTGTGCATAGCAAGCCAGTTATATATTATCTTTTGAATCGCATTAAGGAATTTAGTGAATGGTCTCAA TGTGTTGTGCTTGAATTGGTGGCCAAGTATGTTCCATCAGATAACAGTGAAATATTTGATATAATGAATCTCCTTGAAGA TAGACTCCAGCATGCAAACGGTGCTGTTGTCTTGGCAACTACAAAAGTATTTCTACATTTGACTTTATCTATGGCTGATG TTCACCAGCAGGTTTATGAGCGTATCAAAGCCCCTCTGTTAACTCAAGTGAGCTCAGGAAGTCCAGAACAATCTTATGCA ATTTTAAGCCACCTACATCTTTTGGTCATGCGTGCACCTTATATATTTTCCTCAGATTACAAACATTTCTATTGCCAGTA TAATGAGCCATCATATGTCAAAAAGTTGAAGCTTGAAATGCTGACAGCAGTTGCAAATGAAAGTAACACCTATGAGATAG TGACAGAATTATGTGAATATGCTGCAAATGTTGACATTCCAATTGCAAGGGAATCAATACGGGCTGTTGGAAAGATAGCA TTGCAACAGTATGATGTCAACGCTATTGTTGACCGTCTTCTACAGTTTCTTGAGATGGAAAAGGACTATGTTACTGCTGA AGCTCTGGTGCTTGTGAAAGATCTGTTGAGAAAATATCCACAATGGAGTCAAGATTGTATTGCTGTTGTTGGGAATATCA GTAGCAAAAATGTCCAAGAACCCAAGGCTAAGGCAGCTCTCATATGGATGCTGGGGGAATATTCTCAAGACATGAATGAT GCTCCATATGTATTGGAGAGCCTTGTTGAAAATTGGGACGAGGAGCATTCTGCTGAGGTTCGCTTACATCTTCTTACTGC AGTTATGAAGTGTTTCTTTAAGAGACCCCCTGAGACTCAGAAAGCATTAGGAGCTGCACTAGCTGCTGGTCTTGCTGACT TTCACCAGGATGTTCATGATAGGGCCTTATTTTATTACAGGCTTCTGCAATACAAAGTGTCAGTGGCAGAAAGCGTGGTG AATCCCCCAAAGCAAGCAGTTTCAGTATTTGCTGATACTCAGAACAGTGAAGTCAAAGATCGCATATTTGATGAATTCAA CAGTTTGTCTGTTGTATACCAAAAGCCTTCTTATATGTTCACTGATAAGGAACACCGAGGGATACTTGAATTTTCAGATG AACTTGGAAATCTATCTATTAGTGTAGAATCTGGAGATTCTGTTGTTCCAGCTCAGAGGGTGGAGGAAAATGACAAGGAT CTGCTTCTAAGTACCACAGAAAAAGATGAAGTTAGAGATCCCGGTAGCAATGGTTCTGCCTATAATGCTCCTTCCTATGA TGCTGCTATTTCACAACCGCTTGCAGATTTGGCATTACCAAGTACTGGCTTAACTGGGCAAGCTCCAGCATCTAGCTTGG CAATTGATGATCTGCTTGGTTTAGGTTTTCCAGTTGGGACTGCAGCCACACCTTCACCTCCTCCATTGAACCTCAACCCA AAAGCAGTATTGGATCCTGGCACATTTCAGCAGAAATGGCGTCAACTGCCAATATCCTTATCAGAGGAATATTCTTTAAG TCCTCAAGGAATTGTGTCGTTGACAGCTCCCAATGCACTCCTCCGACACATGCAAAGTCATTCAATACAGTGCATTGCCT CCGGTCGTCAGTCGCCTAACTTCAAGTTCTTTTTCTTTGCTCAAAAAGCGGACGAAGCATCAGTGTACCTTGTAGAGTGT ATAATCAACACATCATCGGGCAAGTCGCAGATTAATATAAAAGCTGATGATCAAAGTTCTTCCCAGGCATTCTCAACTTT ATTCCAATCAGCCTTGTCCAAATTTGGTTTGCCTTGA 

Protein sequence (LotjaGi1g1v0399500.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAPPQSQRSPSPSQPSGKSEVSDLKLQLRQLAGSRAPGTDDLKRDLFKKVISNMTIGIDVSSLFGEMVMCSATSDIVLKK MCYLYVGNYAKGNPELALLTINFLQRDCKDMDPMIRGLALRSLCTLRVENLVEYLVGPLGSGLKDNNSYVRMVAVIGVLK LYHISASTCIDADFPATLKHLMLNDPDTQVVANCLSALQEIWTLESGSSEEAAREREAVHSKPVIYYLLNRIKEFSEWSQ CVVLELVAKYVPSDNSEIFDIMNLLEDRLQHANGAVVLATTKVFLHLTLSMADVHQQVYERIKAPLLTQVSSGSPEQSYA ILSHLHLLVMRAPYIFSSDYKHFYCQYNEPSYVKKLKLEMLTAVANESNTYEIVTELCEYAANVDIPIARESIRAVGKIA LQQYDVNAIVDRLLQFLEMEKDYVTAEALVLVKDLLRKYPQWSQDCIAVVGNISSKNVQEPKAKAALIWMLGEYSQDMND APYVLESLVENWDEEHSAEVRLHLLTAVMKCFFKRPPETQKALGAALAAGLADFHQDVHDRALFYYRLLQYKVSVAESVV NPPKQAVSVFADTQNSEVKDRIFDEFNSLSVVYQKPSYMFTDKEHRGILEFSDELGNLSISVESGDSVVPAQRVEENDKD LLLSTTEKDEVRDPGSNGSAYNAPSYDAAISQPLADLALPSTGLTGQAPASSLAIDDLLGLGFPVGTAATPSPPPLNLNP KAVLDPGTFQQKWRQLPISLSEEYSLSPQGIVSLTAPNALLRHMQSHSIQCIASGRQSPNFKFFFFAQKADEASVYLVEC IINTSSGKSQINIKADDQSSSQAFSTLFQSALSKFGLP 

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
MobiDBLite 1 22 22 -
PIRSF 9 838 830 1.9E-234
PANTHER 10 833 824 0.0
PANTHER 10 833 824 0.0
Gene3D 13 608 596 1.3E-179
SUPERFAMILY 27 597 571 3.19E-98
Pfam 38 550 513 2.1E-90
MobiDBLite 636 654 19 -
MobiDBLite 636 664 29 -
Gene3D 705 836 132 1.4E-25
SMART 716 833 118 5.7E-27
Pfam 720 832 113 1.7E-27

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 Intracellular protein transport The directed movement of proteins in a cell, including the movement of proteins between specific compartments or structures within a cell, such as organelles of a eukaryotic cell.
Biological process Protein transport The directed movement of proteins into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore.
Biological process Vesicle-mediated transport A cellular transport process in which transported substances are moved in membrane-bounded vesicles; transported substances are enclosed in the vesicle lumen or located in the vesicle membrane. The process begins with a step that directs a substance to the forming vesicle, and includes vesicle budding and coating. Vesicles are then targeted to, and fuse with, an acceptor membrane.
Cellular component Membrane coat Any of several different proteinaceous coats that can associate with membranes. Membrane coats include those formed by clathrin plus an adaptor complex, the COPI and COPII complexes, and possibly others. They are found associated with membranes on many vesicles as well as other membrane features such as pits and perhaps tubules.
Cellular component Clathrin adaptor complex A membrane coat adaptor complex that links clathrin to a membrane.
Molecular function Clathrin binding Interacting selectively and non-covalently with a clathrin heavy or light chain, the main components of the coat of coated vesicles and coated pits, and which also occurs in synaptic vesicles.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0399500.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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