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LotjaGi2g1v0191500.2

Overview

Field Value
Gene ID LotjaGi2g1v0191500
Transcript ID LotjaGi2g1v0191500.2
Related isoforms 5
Lotus japonicus genome version Gifu v1.2
Description Guanine nucleotide-binding protein subunit alpha-like protein; TAIR: AT1G31930.1 extra-large GTP-binding protein 3; Swiss-Prot: sp|Q9C516|XLG3_ARATH Extra-large guanine nucleotide-binding protein 3; TrEMBL-Plants: tr|A0A151RDX6|A0A151RDX6_CAJCA Guanine nucleotide-binding protein alpha-2 subunit; Found in the gene: LotjaGi2g1v0191500
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:62290943..62299405) extracted from Lotus japonicus Gifu genome v1.2.

GAGTAATAAATTATCCATTAAGAAAATTCTAGTTCTAGTTGAATTCTAAATGAAACTGATTTTATGTAATAAAACATTTG ATTTGACCTACTTTTCCTCCGTTTACTTTCTGCCAACTGCTACAGCTGACAACTTGAGACTCAGAAGAAGACCTCCTTCT CTTCTTTCTGATCCAAACCTTTCTACTCTCTTCCCTTTCTCTCCAACTAAACTTTCTCTCTCACTTTCCTTCCAACTTTC CCGCACTTTCTCACCATCCAAACACCCCCAATGGCCTCCGAACCCGCCGACGAAGACAACAACACCTGGGAGCACGTCCT CCGCCGCATGCTCCCCGTCGGAGCTCCGATGCCAGACGAGGAGCAACTCGACTACTCCATCGCCGTCGAGTACGAAGGAC CTCCTGTCCAATACCACATCCCTAGGGTTGATCCGCTCGAAGTAGCTTCCACCGCCGCCGCCTCCTCCGCCCCGATTCGC AACTCCGATCACGCCGCGGCCGCAATTCCCATCGCCATGCCGCTTCACCCTCGATTCTCAAGGTTTGGAATCGTCCGTAA CGGCGGTTACGGCCGCGAGCCGCGGAGTCCGGTTGAGAGTCAGAGACCGTCTTCGGTGTCGCCGAATCAGTCTCAGTTTG AGTCTGGCAACGGCGGCGGCGACGTCGATCCCGACGATTTTTCCGGTGAGCCTGTTGCGGACACTGCCAGCGGTGGTTCG TCTCCGGCTCGGTCGTGGACTGTTCCGAACAGCGGCGCCGTCGAGGGTAAGCGCCCGACGACGGTGACGTTCAACACTCC GAGGGATTCGTCATCTGACGACGGCAGTTACCTCTCGCCGCAGTCTGTAGCGACGGAGCCGGTGGGATCGCCGGCGGCTT CTGCGTCTGCGCGGAACGCGCAGACGAAGCGGTGGGTTTGCAGCAGATGTGGGAATAAGAACAGGTTGAAGGAGAAGGAA GCGTGTTTGGTGTGTGATGCGAGGTACTGCTGCAACTGTGTGCTGAAGGCCATGGGGTCGATGCCGGAGGGGAGGAAATG CGTGAGCTGCATTGGGCAGGCCATTGATGAGTCGAAGAGATCGAGCTTGGGGAAGTGTTCGAGGATGCTGAGTAGGGTTT GTAGTCCATTGGAGATTAATCAGATCATGAAGGCTGAGAAGGAGTGTGCTGCTAATCAGCTGCGGCCGGAGCAGCTAATC GTCAATGGGCGCCAGTTGAGGCAGGAAGAGTTGGCTGAGATTCTGGGCTGCGCGATACCGCCTCAGAAGTTGAAGCCAGG GAGGTATTGGTATGATAAGGATTCTGGATACTGGGGCAAGGTGAACATGAAAAACAGAAAACAGAAAGAAAGAAAATTTA GTGTTTTGATATGCTGAAAATGTGCCACTAAAGTGTAATTGTCTGTAATGTGAGGAAACAAACATATTTTCACTTTTGGA TCTTTGCGGGTTAAGATCTTTCTCACTTTATAGACAAGTGCACTTTAGAGGTGCCTTATCTTCAATATGAAGTGTTTATG TTTTATGTTTGTTCTTGGTTTTGTATAGAAACTACTATTTTTAGATTGTTTTGTTGTTTTGCTTAGTTTGGAAGTTGTGG ATTTCAGGAGGGAGAGAAGCCTGATAGGATAATAAGTTCAAAGCTAAATATTGGAGGGAAGCTTCAAACAGATGCAAGCA ATGGAAATACTAGAGTCTACATGAATGGCCGTGAAATAACAAAGATTGAGCTTAGAATGTTAAAGGTAATCATGTTTTTC CTTGCATTTTAGTTTGGATAAAGTTCAGAGCAAAATCGTAGAACATAGAAATTCCTATATGTGCTAGAAGGCTAGATGCC AACTTGAATTTTGTGTGTTTTCTTGCTTGCCGGAACCCTCTTGAGTCTTGACTGAATATTAACTGCAGAATTTTGTGTTT ATAAGGCAATTGATTGTCCTTCAAAGAATATTGCTCACCAATCTTCCGATGGAGCAAAAAAAAAAAGAATATTGCTCACC AAAGCAATGAAATATTTTGTGAAGTTTATCTTGAATGAAAGACAGGAAGAACCTTTCCATGGGACAATCCTGCTTCCCTC TTTTGATTTCATTTAGACCATCTTAAGTGAAAGAAACCTTGAATCTTGTTTTCTCATTCCTGTCTATATAATATTGATCT AATTATAGACCATTAAGAGTTTCCTTTTGATCTTTAGATCTGACTTCATTGGACTTTGGAAATATAAAATTGCACTTTGT ATATCTGTTTGTAATTTATTGCTCTTATCAACACCAATCAATTTGTAACTTGTTTGGCTGTCATTTTAGCTTGCAAATGT TCAATGCCCGCGAGACACCCATTTCTGGGTTTATGATGATGGCTCTTATGAGGAAGAAGGCCAAAATAATATTAAAGGGA ACATATGGGGAAAGGTTCTCTCTTACCTAATATAATATATATATATGTATATATATATATATGTATATATATATATGTAT ATATATATATGTATATATATATATATATCTACTGTTTAATTTGAGCTTGAAAGCGGATGCCTTGATTTGGTTTTTTTATA CAATATCGATTTGGTTTATGGTAGGCAGGCGTCCACTCGTTTGATTTGTTCATTATGCTCATTGCCTGTACCACCTACTA ATCCTCCTGGGGTCAAAGATAATCTGACTAACTATTCAACAAGGTCTGTGCCTGAGTATTTAGAGCAAGGTAGAGTTCAG AAACTATTGTTGTTTGGTATGGAAGGATCTGGAACAGCCACTCTGTTTAAACAGGCATGTCTAACTATTCCTTTCTCTTT CACATCTCTCGCACTCTCTCCCCCTCTCTGTGTCATAGTTTCTTGTATCCATGCCTTTCCGTGTTATAAATTCTAATGTG CCTGATTCGGGTCAATACCTTTGGCTTTCCTTCGGGCAAAAGGCTTTAGTGAAGGTTCATATTTTATATGCTCAGTTTGA AGCTCAACAGGTGCTGGTGGACTGCTAGTTATAATAGTCCATCCATAGTAATACAATTGACTGTTTTCTATGGATTTAGA TGTGTTATTATCAACTATTTTACTCAATGCAAAAAATAAATGTTTTAAACATAGTTTGATTATGCATGCACACATCCGTA CTCTCAGAAGTACATGCTATATAATATAACTAGGTTTTTGCTTATGTATGGGTAATGCATATGCACACCTGCACATGCCA AAATTTCGATGCATAAAGGTTATATGTGCTTGCCATATTCGTAAAATAGGCCAATGCATACTCGTAGATGTTTACATATA TTCATATACACTTAGATGTATATGTAACTAAATAGAAGTTTTATTTTGTATAGTTTCAACATTTCGGATGTGTATTCACT TTCAGCTTACGTGTAATGTAAACTCTGCCTTGCCCCTTTTTCGAGTGCTTTCTAATAATGCCTATTATGGATGGCTTTTC ATTGTACACTTGGCGGTCTTTTCTTTATTTTATTTTTTTAAATCTGCAAGTTTTAGTTTAAATGGCTGACTCACTTTTTA ACATCTTGCAAGGGTTTTCCTTTACCTAATTACTTTGAGTTTATGCTACAGTGTCAACTATTTTTATTGTTCTCATTTTA CTGTTTCCGTGCTTTCTTTATGAGAATAATGTTTTTCCTTGTCCTTGAATCAGGCCAAGTTTTTATATGGAAACAAGTTT TCTCCAGAAGAGTTGCAAAACATTAAACTCATGATTCAAAGCAATATGTACAAGTATCTCAGCATTCTGCTTGAAGGACG AGAGCAGTTTGAAGAGGAAGCTCTGGCAGAGAAAGAATGTGCCTCGTTAGAAGATGAAGAATCTGGACCTGGTATAACAT TTTATTTTATTTTTCCTTCAGGCACAAAATATACATTTTTCTTCAAAAAGTTCCACAGTGCTTGTAAGTTATGAAGTTGA GTGATAAGTTATGCGGTTGTAGTTAGTTGGAGAGCCCAAGGCCTTATAAACCCCTCATTAGAATCCCATACTTCCAATGA GGGACTCAAGTCCCATACCTTGCAATTAGATCCTAACATTGAGCTGTATATTTCTTTCTCTCACCGTCTCCATTTTTTGT CAACATTTCTATGTTTATCTCAAATTATTGTCCAATCAGAACATTTAATGAAGAGTACCCATATTAGTTATGTGGGATGA GGGAGGGAGAGAGGGAACAATAAGTGCTTAAGTGCTTTATGTGGCCCTTATGTGGCACATAAAGGTCACTTTTGGATAAC AGACTTCTCTGATTCTTTCTTGATGTACTGCATCTTTGCAATTTTGCTCCAACATGCAATAAACTCATTACGTTATGCAG ATGTTAAACTTATAAAACTTAACTTCAGGTAACTTATTTATATTTTGTCTGACAATATTGAACATGTATTATAATAAAGA CGACGATATAAACTTGTAATAGGAACAGCCATCAAGGTTTATCTCACTAATTGAATTGAGTTCTATCAAAAACCAAATAT TCAATAAAACCATATAATGTAAAGTACTTCTTAATGGTTACTTGTTGTCATGTTAAGGTTTCTTTCTACTAGTGGTCCAT TGTTACGCGACAAAACAAATATGCTATAACTGCTATGTTGGATGATTTATCCTTTTAAGGAACAATTTTTCCAATAACAA TTCTTGATAGCTAATAGTTGTGTTGGATTCTGTGGATGATGAAAGTTGGTAATAATCTTTTTGTTAATATCTTTGAAAAG TTGGGTTTATGTGAGTGAATCTGATTGTGCAATAAATTCAGCAGAAAGAGCAGCTGAGGAAAACAAACCAACCATTTACT CGATCAATCAAAGACTCAAGCATTTTTCTGACTGGTTGCTGGATATTATGGCTACGGGGGATTTGGAGGCTTTCTTCCCT GCTGCTACGCGTGAGTATGCTCCTATGGTAGAGGAGATCTGGAGAGATCCTGCTGTTCAGGAAACATACAAGAGAAGAGA GGAATTGCATAATCTTCCTGATGTCACTAAATATTTCTTAGATCGGGTATGTCTTTACCATTTTTATCACTTTGTCTTCT AGAGAAGTATTTGGTTGCTTTATCTTGTATGTTCCATTGCAGTTGTGCATGTGAGCATATGATTGTTGTTATGTTACAAC TAAATATTTGTCCATTGAACTTCTTTTGTTTTTGCCTTTTCCATTCTGGAGTTAATTCAATGCAGCAAGCCTCAGTGCTC TCCTGAACTGAACCAACTATTACTTCACCTTATCTATTATGATGAACTTACAAAAAGAGAGTGAAACACTAGAGCTGAGA GAAAGGGGTGTTAGTTACATTATTATTGTTTCAATGTAGAAAATTTGAATTTTAGATGTATGGAAGAGGAGAAAATGTAC CTTCACAAGAAACGGTGTTTGCAAAGAAGAAGCATGAATCTGTAAATTCTATTGGCTAGTAACAATTATCTGGAAATGTC ATTTTTCCCATTTTGTTTTTCCTTGAAAAGGAAGTGCTTGAAAAGTTGCTATTTATCTAAACAACTTAGAAGGGCTGAAG GGTTAAATTAGTTCCTTGCAAGAAATGAATGAACTTCTGATGGACTTTACAGTTAATCTAAATCACATCTAATTTGCGCT TTTGTTTGGTAGCATTAATTTGAACATTTACTACTATGAAGTCTTAGCTCATTTTTATAATTGGGGAAGTTTTTTGTTGC ATATTGTCATTCTTATTCTTCATGAAATTAGTGACGGAGTTAGTATCAACATGATTTCTATTTTAATTTAGGCAAAAGTT TATTAAACTCACTTTCTATAAGGAGATATTCAATCTAATAACTAGCCTTGACTTGAGACTAAAATAATCTGAGTATTCGA TATATCTTTGCATGAATGAGATATACAATATTATATTCAAAGGTTACGTAGTCAATATTGAAGCTTAGGGATTACAAAAT CAGCTAATTAGGGAAAGCAGGGAAACTATGAAATAAGATCAAAACAAAATCTGTACATAATCAATAATATAGTTACAGAA TAATATTACAACACTCCCCCTCAGGATAAACATATAAATCGAATGCATTTAGCTTAGAACATACGTATAGTATTATTAGG AATTGGATCAGAATACAAAGAACATTGATATTGACAGCAAAACTCAATTACACTAGTTATTCAAGGGTCTTGGAACACTA AAACCTGATAACCATGTTCCTGTAAATAGACAATGATATCTACAAGGGTCGCAATGATTCTTTTAATTGTCAACAATAGT AACTAGCTTGTTCTTTGCTGATTCCTCCTTTCTTATTCAGACCGGTTCCATTCTCCTTTTATAGGATCCACTTATGCTCA TAAGTGGTTGGGCTTGACCCATTTCTCCATAATTTTGACTGAGCCACTTGAATCCCAAAAAAATGATTCAAAGGACCTAA GTCCTGAAACTGCTGAGATAAGTGTTCTTAAGGGCTTGAAGCCCTCATGATCATCACCTGTAATCACAATATCCTCCACA TAAACTATACATATTTTTATTTGAATATAAGCATTTAAAGAAGACATACTATATAGTAAATCTTCGCTAAACCAACCCAA CAAAGTTTGAATTGTTTTAGGCCATATTGGGACTTCTGGAATTTGCATTCAAGACCTCAGCCTCTTGCGCAACAAAGCTG GGGTAGACCTCCTCCAGGTCACCATGTATGAAAGCAATTTTAATATCTAACTGAAATAAGGGTTGTGATTTATGCAGCCG TAGCTAAAAAGAGATGAACTTAGACCATCTTCCCCACTGGAGAGTACATATTATTTTAATCCAAACCAAACATGTGTGTA TCCTTTAGCCACAAAACAAACTTTCAAGCGATCCATCTTGTCTTTTGCTTTTGCTGATCTATTCTAGGTTGAATATGAGG GTAGTTTGCTAACTTCGTTCAAATATATTTTTCTTTCTTTTGTTCTTTTGATCTTTTGATTTGTCATTCTTTTCTGGCTA TTAATTTAAAGAACAGCCTTTAAAAATATTGACTTTTTGTCCTATCATTGTGAGGTCTAATCACGTGTGATCCTATACAG GCAATGGAAATATCAAGCAATGAGTATGAACCTTCGGATAAGGATGTATTATATGCTGAAGGAGTCGCTCAGAGCAATGG TCTTGCCTTCATGGAATTCTCATTTGATGATAGGAGTCCCATGTCTGAGATATACAGCGGAAACATAAGTTCCCAAACTC CTTTAATCAAGTAAACCATTCTCTTTCACCTCCTTTACTCTTATTTTGTGGAAGCTTCGTAAAATGTTTTTAACTCCTTC ACATTGTCACTGTCTCAGATATCAACTGATTCGCATAAATTCAAAGGGACTGCGCGATGGCTGCAAGTGGTTGCAAATGT TTGAAGATGTGAGGATCGTCATATTTTGTGTTTCCTTAAGTGACTATGACCAAATGTGGCCAACTAGTACCGGTCAACTT CAAAACAAATTGCTGGCAAGTAGGGATCTTTTTGAGAGTCTGGTGAGGCATCCTTGTTTTCAAGATACCCCTTTTGTGCT TGTGCTAAATAAATATGATGCCTTTGAAGACAAGATAAGCAAAGTTCCTTTGTCTACTTGTGAGTGGTTTGCGGACTTCT GTCCTGTGAGACCCCATCACAACAGTCATGCCCTAGCACAACAAGCATATTACTATGTAGCTGTGAGATTCAAGGAACTT TATCATTCCTTGACCAGCCAGAAGTTGTTTGTGGGGCAAACTCGAGCTCGGGATCGCGCCTCAGTTGATGAGGCATTCAA GTACATAAGGGAGGTCATCAAATGGGAGGATGAGAAGGATGATGATGTGTATGAAATCAATCTGGAAGAGTCATATTACA GTACAGAAATGAGTTCTTCCCCATTCGTCAGGCAGGAATGAATTTCTAACTCTTGATAGCCCTTGAGACTAAATGATCTC ATGTGGATATTAAGTGATAAGCAAGTCTCGCTGCTCCTAAGAATCCAAAGAATTGTAGGAGCATTGCATTTGTGAAGGAC TGAGAGGTCAGTTGATTTTGTTGTAGGGTCTTCTTGATCAGGTTTCTAATGATTTTTTCCTCATCATAAATAAGCTGATT TGATTGAGAGGTTGTAAATTCAGAGGTGATTTGTTTTCTGTACAGCTTATATTGATAATTTTCCAGCTTAAATTTTAAAA ATAAGAAAAGGAAAATTATTTTTTTCCCGTTATTATTTAAGTGAGCCATTGGGTCCATTGGTCACCAAGATAAATACTAA AAAATTGCACATGTGATTGTTTTTTGGAGGTCTAACTTTGAATTGAAAAGTTGTGAAACTTATGTCCAAGAGGGTTCTCA ATATTAAATAACTAGGCTAGATTGCTGTAAACTAAAATTTACTAAACATTACTCATACAAGAGAATTCTGACATTCAAGT CTTTTATCAAACATGTTAAATATTTTTGGAAGATTAATGTAGTGACATAAGTATATTTCGGTG 

CDS sequence (LotjaGi2g1v0191500.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGATTCAAAGCAATATGTACAAGTATCTCAGCATTCTGCTTGAAGGACGAGAGCAGTTTGAAGAGGAAGCTCTGGCAGA GAAAGAATGTGCCTCGTTAGAAGATGAAGAATCTGGACCTGAAAGAGCAGCTGAGGAAAACAAACCAACCATTTACTCGA TCAATCAAAGACTCAAGCATTTTTCTGACTGGTTGCTGGATATTATGGCTACGGGGGATTTGGAGGCTTTCTTCCCTGCT GCTACGCGTGAGTATGCTCCTATGGTAGAGGAGATCTGGAGAGATCCTGCTGTTCAGGAAACATACAAGAGAAGAGAGGA ATTGCATAATCTTCCTGATGTCACTAAATATTTCTTAGATCGGGCAATGGAAATATCAAGCAATGAGTATGAACCTTCGG ATAAGGATGTATTATATGCTGAAGGAGTCGCTCAGAGCAATGGTCTTGCCTTCATGGAATTCTCATTTGATGATAGGAGT CCCATGTCTGAGATATACAGCGGAAACATAAGTTCCCAAACTCCTTTAATCAAATATCAACTGATTCGCATAAATTCAAA GGGACTGCGCGATGGCTGCAAGTGGTTGCAAATGTTTGAAGATGTGAGGATCGTCATATTTTGTGTTTCCTTAAGTGACT ATGACCAAATGTGGCCAACTAGTACCGGTCAACTTCAAAACAAATTGCTGGCAAGTAGGGATCTTTTTGAGAGTCTGGTG AGGCATCCTTGTTTTCAAGATACCCCTTTTGTGCTTGTGCTAAATAAATATGATGCCTTTGAAGACAAGATAAGCAAAGT TCCTTTGTCTACTTGTGAGTGGTTTGCGGACTTCTGTCCTGTGAGACCCCATCACAACAGTCATGCCCTAGCACAACAAG CATATTACTATGTAGCTGTGAGATTCAAGGAACTTTATCATTCCTTGACCAGCCAGAAGTTGTTTGTGGGGCAAACTCGA GCTCGGGATCGCGCCTCAGTTGATGAGGCATTCAAGTACATAAGGGAGGTCATCAAATGGGAGGATGAGAAGGATGATGA TGTGTATGAAATCAATCTGGAAGAGTCATATTACAGTACAGAAATGAGTTCTTCCCCATTCGTCAGGCAGGAATGA 

Protein sequence (LotjaGi2g1v0191500.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MIQSNMYKYLSILLEGREQFEEEALAEKECASLEDEESGPERAAEENKPTIYSINQRLKHFSDWLLDIMATGDLEAFFPA ATREYAPMVEEIWRDPAVQETYKRREELHNLPDVTKYFLDRAMEISSNEYEPSDKDVLYAEGVAQSNGLAFMEFSFDDRS PMSEIYSGNISSQTPLIKYQLIRINSKGLRDGCKWLQMFEDVRIVIFCVSLSDYDQMWPTSTGQLQNKLLASRDLFESLV RHPCFQDTPFVLVLNKYDAFEDKISKVPLSTCEWFADFCPVRPHHNSHALAQQAYYYVAVRFKELYHSLTSQKLFVGQTR ARDRASVDEAFKYIREVIKWEDEKDDDVYEINLEESYYSTEMSSSPFVRQE 

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
ProSiteProfiles 1 349 349 46.697
PANTHER 1 364 364 1.3E-210
PANTHER 1 364 364 1.3E-210
Pfam 1 338 338 1.1E-52
Gene3D 1 142 142 6.0E-24
SUPERFAMILY 2 140 139 6.15E-19
SMART 24 348 325 3.7E-11
Gene3D 158 348 191 8.7E-37
SUPERFAMILY 193 342 150 9.0E-22

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 GTPase activity Catalysis of the reaction: GTP + H2O = GDP + phosphate.
Biological process Signal transduction The cellular process in which a signal is conveyed to trigger a change in the activity or state of a cell. Signal transduction begins with reception of a signal (e.g. a ligand binding to a receptor or receptor activation by a stimulus such as light), or for signal transduction in the absence of ligand, signal-withdrawal or the activity of a constitutively active receptor. Signal transduction ends with regulation of a downstream cellular process, e.g. regulation of transcription or regulation of a metabolic process. Signal transduction covers signaling from receptors located on the surface of the cell and signaling via molecules located within the cell. For signaling between cells, signal transduction is restricted to events at and within the receiving cell.
Biological process G protein-coupled receptor signaling pathway A series of molecular signals that proceeds with an activated receptor promoting the exchange of GDP for GTP on the alpha-subunit of an associated heterotrimeric G-protein complex. The GTP-bound activated alpha-G-protein then dissociates from the beta- and gamma-subunits to further transmit the signal within the cell. The pathway begins with receptor-ligand interaction, or for basal GPCR signaling the pathway begins with the receptor activating its G protein in the absence of an agonist, and ends with regulation of a downstream cellular process, e.g. transcription. The pathway can start from the plasma membrane, Golgi or nuclear membrane (PMID:24568158 and PMID:16902576).
Molecular function Guanyl nucleotide binding Interacting selectively and non-covalently with guanyl nucleotides, any compound consisting of guanosine esterified with (ortho)phosphate.
Molecular function G-protein beta/gamma-subunit complex binding Interacting selectively and non-covalently with a complex of G-protein beta/gamma subunits.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0191500.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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