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LotjaGi4g1v0366900.3

Overview

Field Value
Gene ID LotjaGi4g1v0366900
Transcript ID LotjaGi4g1v0366900.3
Related isoforms 2
Lotus japonicus genome version Gifu v1.2
Description Histidine kinase; TAIR: AT1G27320.1 histidine kinase 3; Swiss-Prot: sp|Q9C5U1|AHK3_ARATH Histidine kinase 3; TrEMBL-Plants: tr|A0A023W2K9|A0A023W2K9_LOTJA Histidine kinase 3 variant 2; Found in the gene: LotjaGi4g1v0366900
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr4:74676694..74683363) extracted from Lotus japonicus Gifu genome v1.2.

ATGAGCTTGCTCTATGTAGTAGGGTTTGGTCTAAAGTTGGGGCATCTAGTTTTAGTGCTATGTTGCTGGGTTGTGTCTGT TGTTTACCTCAACAGGTTATTCTGCAGTGAAATTAAGGGTACTAGGGTGGGTTTTCAGGGTGGTTTTGGCAAGATGGGGC TGAAATGGTGGGAGAAGATCTCAGGGAGTGGTTCCAGAACTTATCAACATTGCTACCAGTATATTGGGTCCAAGGGAGTG AAGAGACAAATGTGGTGGAACCTTTATAGGGCGTGGATTGTGTTTTGGATCGGAGTATCTGTGTTTATCTACTTCTACAT GTCCTTTCAAGATGCTGAGAAGAGGAAAGAGACTCTGGCAAGCATGTGTGATGAAAGGGCTAGGATGCTGCAGGATCAGT TTAATGTGAGTATGAATCATATCCAAGCCATGTCGATTCTGATCTCAACTTTCCATCACTCCAAGAACCCCTCAACCATT GATCAGGTACTACTAAGCTTTATTTGCTATGCATAATGTTGCAAATCAGGATGTAACTCCTCACTGTGTGAGTGAATATT TGTGTTGGCACACCTTTTTACTTTTAGTGTTCATTATTGTACACCAGGATATCTTGTAACTTTATTTACTTAATTTTATT GTATAGCTTTTGATTTATTTCACTGGCATTAAATTTAGTGTCAAATTGCATTTCTTTCCTCATTTTCATGGCAAAATTGT TGGGGTCTAAATGGTTATAAGATTGCTAAACTTGAGCTTCTGGAGCAGGACCCCAATTTCCTTCCCACCGCCCACCCCAC CATACACCTTTCTCTTTATTTTTGGATAGAAAATGTTCCAATTTGCAGCGGTAATTAGTCTCATATCTGCAAATCAATCT TACCATCATCCAATCCTTTTGCCAGTAGCTGGAGTCGGCTACATAAATCAGTCTACACCATGAAGTTCTATTATATTTTA AGTTTAGACACATATAAGTTACATATAAGTTTTTGCTAATATTTTGGCTTATGGTATTCGATATTCCTTGGTCTCCCTCT ACCTCTCTAGAGGTACTCTCCCTTCTATCTTGTTCAACCTCTTTTACAAGCACTTCTATGGTTCTTCTCCAAATGCCTGT TGAGAACTCTCACTTTTACACGCGCTTCTATGGTTCTTCTACCTTATACAAGGTAGAGTAATCCTCAACTGTAAGCTAGC TTTTGGGGTAGAGTAATGCCTAATCCAAATTCTCTGATGATATTAGAGCCTATCCTAGATACGTTTATTGGGCCACCCAT AAATGGACCACTCGCCGATGTTCAGTTATGCAAACTTCACGCTCCAGATGTCCATCCTCGGACGTGAGGGGGTGTGTTGA TAAGTCTCACGCTGACTAGAGATATAGATAAATAAATCCTTATATAGCGTAGAGCAATCCTCTCCACTTAGCTAACTTTT GGGGTAGAGATAAGCCTAACCCAAATTCTAAGAAGTAAGAATGCCTAAACCACCTAAGACTCTACCTTTTTTTTCTATAA TCCTATCATGTTTTAGGTAGATACTCACCGTTATTAATCTTTCCATTTCTGCTACATTAAAGCTTTCATTCTTGTTGGCT CTTTAGTACCCAACATTTAGTTCCATGCAATATTGCAGGTCTCATGTTTCTGTGATAAAATTTACTAGTGATACATTTTT TAATCATAAAATCCACCTGATGGATTCCTTCATTTCATGGGATCCAATGGTTTATGTCATCCCTCTATATTTCTACAAAT CAACTAACTTTTAAAATTTGCAGAGAACTTTTGCCAGGTACACGGATAGAACAGCTTTTGAGAGGCCCCTTACAAGTGGT GTAGCATATGCTGTAAGGGTGCTCCAATCCGAAAGGGAACAATTTGAAAAGCAACAAGGCTGGACTATTAAGAGGATGGA CACTGTGGAGCAGAACCCAGTTCATAAGGATGATTATGCCCCAGAAAAATTGGAGCCATCCCCCATTCAGGAAGAATATG CTCCTGTCATATTTGCACAAGATACGGTTTCACATGTCATTTCTGTTGACGTGCTTTCTGGAAAGGTACTTTTCTGCAAT AAAATTGCTGTAAAATTTTATGTGGAGCACTAAGTTTGTCAGCTGAATTGACGCACCTTGCGGATATTTGAACCATATAT AGTTAATTATGCAAATTGTGAAAATGTTATACAACAGCCTCAGATATCCTGATGATGATTTTGGTCCATTCATTCTAAGC TCTAACTTCTGGGTAATATGAATGGACTTATTTTTTTAATATCATTAAGTAGAATTGAGACAGGTTGTTCGTGCTTGATA TTTTACATATGTAGCAATTATTTAGATTATGGCTGTCATAGTTTCTCACTTATTCATCCACAGGAAGACCGTGGGAATGT GTTGCGTGCAAGAGAATCAGGGAAAGCTGTTCTAACTGCGCCCTTCAGGCTGCTCAAAACAAATCGTCTAGGGGTTATCC TGACATTTGCTGTCTACAAGAAAGATCTTCCATCAAATGCTACCCCAAATGAAAGAATTCAAGCAACTGATGGGTATGCA TAAAATTTGAAATTTATTGGATCTGACATTCTATTAGTTTATTTTTCTTTAATTTTTTTATCTTCATATAAGAACTTACT CCCTTTCCTAGCAACTAAACGCTGCATTCAAATTTGTTGGAAAATATTAATGAACACAGTTTATGAGTGAACTATATTCT AGCTCTTCCCTTGTGGCAATCAAAAGTTTGAAGTTGCTAATCTTCACTGAAATCCAGTACTGCTTGGAATTTCAGAAAGA AAAAATCATGAATATATTTAATGTAAGAGAGTAGCATTTAATATCTTCATTACTGCTGAACAGGTATCTTGGTGGGGTCT TTCATGTTGAGTCGTTAGTGGATAAATTACTTCAGCAACTTGCTAGCAAGCAAACTGTAAATGTTGATGTGTATGATACT ACAAATCATACTCATCCAATCGCCATGTACGGCTCAAATGTATCCAGGGATGCGTTCTATCATGTCAGCAGTCTTAACTT TGGAGACCCCTTCAGAAAGCATGAGATGCACTGCAGGTAAGCCTTATGCTGCAGAGTCAGTTTGGTAATTCTGTCCTGCT TAATCCCCAGCATATTCAGTAAGAATGAAAGTGACATTCATTATAGGTAGAAGATATGATATTGAATTCAAGGGGATATA GTATTACATGGTATAATACTTTATTATGGGTTTGATGTTAGCAAAACCTTGTTTAGATTTCATTTTTCTGATGCTTTAAC ACTTTTTTGGGGGGTCATTAAGATATTAAGTCTAACTTCTTTTTTTAATTACATTTGCAATGATTAAAATGGGTTTGTCA ATGACTTGAAGAGTCTATGAAATTTAAGTTTGATGCTTACACAGGTTCAAACAGAAACCGCCATGGCCATTGTTGGCAAT AGCTGCTTCAATTGGTGCCTTTCTTATTCCACTCCTTATTGGACAAATTTCCTATGCTACTGTGATTCAAATTGCAAAAG TAGAAGAAGATTACCGTCAGATGATGGAGCTAAAAGAACGAGCTGAGGCAGCTGATGTTGCAAAATCCCAGGTATGTAGT ATTTTTATTTACTTTTAAACTTCTTGTTCTAGCTTACTTACTACTGACTTATATCAATTATAACTGCAGTTTCTTGCTAC TGTTTCCCACGAGATCAGAACACCAATGAATGGTGTTTTAGGTGAGTTGTCTTCTTTCTATGGTTTAGTATACAGCATCC AATATTCAACAATGTATATTCCACAAAAATAAGAGCTTCTTTACATGACCTTATTCTAATTTGCATTTTCAGGGATGTTG CATATGCTTATGGACACAGATCTAGATGTAACCCAACAGGAATATGTCAGAACAGCGCAGGACAGCGGAAAATCACTGGT ATCACTTATAAATGAGGTTTTGGACCAGGCAAAAATTGAATTTGGTAAGCTAGAGCTTGAGGCTGTGCTCTTTGATGTAC GGGCAATTCTGGATGATGTGTTGTCACTATTTTCTGAGAAGTCTCAAGCAAAAGGATTAGAGGTAATATATCAATCGTCT ACTGTAGCAATTTTACATATGAAATTTCAAAGTTTGCATTGTCATCTTGTAGCTCATGCCTTTTCATGATTTATTTTTCT GGGAGCACAGTTGGCAGTTTTTGTGTCAGATCAGGTTCCTGAACTGCTAATAGGTGATCCAGGAAGGTTTCGACAAATAA TTACAAACCTCATGGGTAACTCAATTAAGGTAAGTCTATGGGAGAAAGAAGAGCACTATTTAATGTGAATGTCTCTTTGT CTGATATCATACTGTAGAATGAAAGTTGCTCATAGATCTTTCCTTATAGGCATGCACCAGTCTTACTGTCACGAACCATA AAATTTAAGCTGTTAGGTGAAGTCACGAATTGTTTTATATTATGTTTTTGACACGCCCCCTCACGCAAGAGCTCATTGAG CCTGAAGCGTGGAAAACGCATAAGTCCACCTACCTTGTGCTGAAATTCAAATTTTTATTGGAAAAATGGGGGCAACAAAG ATGAAACTCTTGACCATTCGGCCACAAAAGGCTCTGGTACCATGTCATGAACCATCTATGATCTATCCCAAAAGCTGAAG TTGTTGGGTGAAGGCACATGAATGATTTTATATTATATTTCAAACACTTACTATCTCTTGGATTGTTTTGGATATTGGGG GAAAATTCAATTAGTGTTCCTGCCAAGAATGACAATTAGTAGATCAAAGTTGATGTGTATTTCAAGAATAAATATCACGA AAACTAATTGTGTTATTGTTATGCAGTTCACGGACAAAGGACATGTTTTTGTCACTATCCATCTTGTTGAGGAGGTTGTC CATTCAGTAGAGGTTGACAAAGAACCAAATTCTGATAAAAATACCTTGAGTGGTTTCCCAGTGGCTGATATCCGCAAGAG CTGGGAAGGATTCAAGGCTTTCAGTCAGGAGGGACCTCTTGGTTCTTTCTCATCCTCCTCGAGCGATTTCATCAATTTGA TTGTATCTGTGGAGGACACAGGAGAAGGTATTCCTCTAGAAGCCCAGTCCCGCATCTTCACTCCATTCATGCAGGTAAAT CCATCCATCTCTAGAAAACATGGGGGAACTGGTATTGGCCTAAGCATTAGCAAGTGTTTGGTTGGCCTCATGAATGGTGA AATTGGATTTGTAAGCACACCCAAGATTGGATCCACTTTCACTTTTACCGCGGTCTTCACCAATGGACTCCCGAGTTCAA ATGAGTGTAAAATTCAGCAAATCAGCAACCAGCCTCAACCAGCATCTTCAGCATTTGAGGGGATGACTGCATTGGTTATT GACCCGAGAACCGTTCGCGCAAAAGTGTCTAGATATCACATCCAACGGCTTGGCATTCATGTTGAAATCGTTTCAGATTT AAACCAAGGGTTGTCAACCATAGGCAATGGGAGCATAGTTACCAATATGGTCCTGATTGAGGAGGCGGTCTGGGACAGAG ATTCAGGCATGTCATCTCACTTTGTCAAGAACACAAGGAAAGTTGATAATGGGGTTCCTCCAAAGCTGTTTATTCTTGTT AATTCTAGTAATTCTTCTAAAGCAAGTAGTGTAGCCTCTGATGTTCATTATCCTACTGTCATCACAAAACCTCTCAGAGC AAGCATGCTTGCTGTCACGCTACAACGAGCCATGGGTGTTAGGAACAAGAGTACTCCTCCAAATAGGGAACTCCAAAGTT TGTCTCTTCGCCAACTTCTTCTCGGGAGGAAGATTCTAATCGTAGACGACAATAGTGTGAACCGTGCAGTAGCAGCCGGT GCTTTGAAGAAGTATGGAGCAGCTGTGGTTTGTGTTAGCAGTGGGCAAGATGCCATCTCTTCACTGACGCCACCCCATCA GTTTGATGCCTGTTTCATGGATATTCAAATGCCAGAAATGGATGGGTATGCAACTAGAAATCTTTTACCTTTTTCCTAAA TTTTGGAATTAAAACTGAAATCTCTACATAAACACACAAAAGGTTTTTTTTTAATTCTTCTATTGATCTATAGGAATTAC AGGACAGTTTATGTGAAAACCAAACTTGTTGCATTACATATATCTATAGCATGTTTGGATCAACTTCTCTTTCTTCTTTC TGGGTCCTAGAAGCTACTCACATAAGCTTCTCCCCACAAATAATTTTTCTTTGGGAATCAATTATAGAAGGATTTCCAAA CATGCATCTAATGTATAGAATTCACACAAGGTGTTTGGAATCTAACTTCGTGGCACAGTAATACTGTAATAGCACAATTC ACTTGACAATTCTAAATTAAAAGAAAAAGTAAAATTTGATTTATGTCATTGTTACTTCTAAAAATACAATTATCATCATG TCACAAGGTGCTAATACACAATTATTTTCCAACAGTTTTGAAGCTACAAGGAGAATTAGAGAGATGGAACACAATGTGAA CAGAGAAGTGTCTATGGATGGCTTTGAGAATGTTTCGAACTGGCATGTGCCCATTTTAGCTATGACTGCAGATGTGATCC AGGCTACACATGAGGAATGCCTAAGATATGGCATGGATGGATATGTTTCAAAACCATTTGAAGCTGAACAGCTTTATAGA GAAGTTTCTAGATTTTTCCCTTCATCTTGA 

CDS sequence (LotjaGi4g1v0366900.3) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGAGCTTGCTCTATGTAGTAGGGTTTGGTCTAAAGTTGGGGCATCTAGTTTTAGTGCTATGTTGCTGGGTTGTGTCTGT TGTTTACCTCAACAGGTTATTCTGCAGTGAAATTAAGGGTACTAGGGTGGGTTTTCAGGGTGGTTTTGGCAAGATGGGGC TGAAATGGTGGGAGAAGATCTCAGGGAGTGGTTCCAGAACTTATCAACATTGCTACCAGTATATTGGGTCCAAGGGAGTG AAGAGACAAATGTGGTGGAACCTTTATAGGGCGTGGATTGTGTTTTGGATCGGAGTATCTGTGTTTATCTACTTCTACAT GTCCTTTCAAGATGCTGAGAAGAGGAAAGAGACTCTGGCAAGCATGTGTGATGAAAGGGCTAGGATGCTGCAGGATCAGT TTAATGTGAGTATGAATCATATCCAAGCCATGTCGATTCTGATCTCAACTTTCCATCACTCCAAGAACCCCTCAACCATT GATCAGAGAACTTTTGCCAGGTACACGGATAGAACAGCTTTTGAGAGGCCCCTTACAAGTGGTGTAGCATATGCTGTAAG GGTGCTCCAATCCGAAAGGGAACAATTTGAAAAGCAACAAGGCTGGACTATTAAGAGGATGGACACTGTGGAGCAGAACC CAGTTCATAAGGATGATTATGCCCCAGAAAAATTGGAGCCATCCCCCATTCAGGAAGAATATGCTCCTGTCATATTTGCA CAAGATACGGTTTCACATGTCATTTCTGTTGACGTGCTTTCTGGAAAGGAAGACCGTGGGAATGTGTTGCGTGCAAGAGA ATCAGGGAAAGCTGTTCTAACTGCGCCCTTCAGGCTGCTCAAAACAAATCGTCTAGGGGTTATCCTGACATTTGCTGTCT ACAAGAAAGATCTTCCATCAAATGCTACCCCAAATGAAAGAATTCAAGCAACTGATGGGTATCTTGGTGGGGTCTTTCAT GTTGAGTCGTTAGTGGATAAATTACTTCAGCAACTTGCTAGCAAGCAAACTGTAAATGTTGATGTGTATGATACTACAAA TCATACTCATCCAATCGCCATGTACGGCTCAAATGTATCCAGGGATGCGTTCTATCATGTCAGCAGTCTTAACTTTGGAG ACCCCTTCAGAAAGCATGAGATGCACTGCAGGTTCAAACAGAAACCGCCATGGCCATTGTTGGCAATAGCTGCTTCAATT GGTGCCTTTCTTATTCCACTCCTTATTGGACAAATTTCCTATGCTACTGTGATTCAAATTGCAAAAGTAGAAGAAGATTA CCGTCAGATGATGGAGCTAAAAGAACGAGCTGAGGCAGCTGATGTTGCAAAATCCCAGTTTCTTGCTACTGTTTCCCACG AGATCAGAACACCAATGAATGGTGTTTTAGGGATGTTGCATATGCTTATGGACACAGATCTAGATGTAACCCAACAGGAA TATGTCAGAACAGCGCAGGACAGCGGAAAATCACTGGTATCACTTATAAATGAGGTTTTGGACCAGGCAAAAATTGAATT TGGTAAGCTAGAGCTTGAGGCTGTGCTCTTTGATGTACGGGCAATTCTGGATGATGTGTTGTCACTATTTTCTGAGAAGT CTCAAGCAAAAGGATTAGAGTTCACGGACAAAGGACATGTTTTTGTCACTATCCATCTTGTTGAGGAGGTTGTCCATTCA GTAGAGGTTGACAAAGAACCAAATTCTGATAAAAATACCTTGAGTGGTTTCCCAGTGGCTGATATCCGCAAGAGCTGGGA AGGATTCAAGGCTTTCAGTCAGGAGGGACCTCTTGGTTCTTTCTCATCCTCCTCGAGCGATTTCATCAATTTGATTGTAT CTGTGGAGGACACAGGAGAAGGTATTCCTCTAGAAGCCCAGTCCCGCATCTTCACTCCATTCATGCAGGTAAATCCATCC ATCTCTAGAAAACATGGGGGAACTGGTATTGGCCTAAGCATTAGCAAGTGTTTGGTTGGCCTCATGAATGGTGAAATTGG ATTTGTAAGCACACCCAAGATTGGATCCACTTTCACTTTTACCGCGGTCTTCACCAATGGACTCCCGAGTTCAAATGAGT GTAAAATTCAGCAAATCAGCAACCAGCCTCAACCAGCATCTTCAGCATTTGAGGGGATGACTGCATTGGTTATTGACCCG AGAACCGTTCGCGCAAAAGTGTCTAGATATCACATCCAACGGCTTGGCATTCATGTTGAAATCGTTTCAGATTTAAACCA AGGGTTGTCAACCATAGGCAATGGGAGCATAGTTACCAATATGGTCCTGATTGAGGAGGCGGTCTGGGACAGAGATTCAG GCATGTCATCTCACTTTGTCAAGAACACAAGGAAAGTTGATAATGGGGTTCCTCCAAAGCTGTTTATTCTTGTTAATTCT AGTAATTCTTCTAAAGCAAGTAGTGTAGCCTCTGATGTTCATTATCCTACTGTCATCACAAAACCTCTCAGAGCAAGCAT GCTTGCTGTCACGCTACAACGAGCCATGGGTGTTAGGAACAAGAGTACTCCTCCAAATAGGGAACTCCAAAGTTTGTCTC TTCGCCAACTTCTTCTCGGGAGGAAGATTCTAATCGTAGACGACAATAGTGTGAACCGTGCAGTAGCAGCCGGTGCTTTG AAGAAGTATGGAGCAGCTGTGGTTTGTGTTAGCAGTGGGCAAGATGCCATCTCTTCACTGACGCCACCCCATCAGTTTGA TGCCTGTTTCATGGATATTCAAATGCCAGAAATGGATGGTTTTGAAGCTACAAGGAGAATTAGAGAGATGGAACACAATG TGAACAGAGAAGTGTCTATGGATGGCTTTGAGAATGTTTCGAACTGGCATGTGCCCATTTTAGCTATGACTGCAGATGTG ATCCAGGCTACACATGAGGAATGCCTAAGATATGGCATGGATGGATATGTTTCAAAACCATTTGAAGCTGAACAGCTTTA TAGAGAAGTTTCTAGATTTTTCCCTTCATCTTGA 

Protein sequence (LotjaGi4g1v0366900.3) extracted from Lotus japonicus Gifu v1.2 Proteins.

MSLLYVVGFGLKLGHLVLVLCCWVVSVVYLNRLFCSEIKGTRVGFQGGFGKMGLKWWEKISGSGSRTYQHCYQYIGSKGV KRQMWWNLYRAWIVFWIGVSVFIYFYMSFQDAEKRKETLASMCDERARMLQDQFNVSMNHIQAMSILISTFHHSKNPSTI DQRTFARYTDRTAFERPLTSGVAYAVRVLQSEREQFEKQQGWTIKRMDTVEQNPVHKDDYAPEKLEPSPIQEEYAPVIFA QDTVSHVISVDVLSGKEDRGNVLRARESGKAVLTAPFRLLKTNRLGVILTFAVYKKDLPSNATPNERIQATDGYLGGVFH VESLVDKLLQQLASKQTVNVDVYDTTNHTHPIAMYGSNVSRDAFYHVSSLNFGDPFRKHEMHCRFKQKPPWPLLAIAASI GAFLIPLLIGQISYATVIQIAKVEEDYRQMMELKERAEAADVAKSQFLATVSHEIRTPMNGVLGMLHMLMDTDLDVTQQE YVRTAQDSGKSLVSLINEVLDQAKIEFGKLELEAVLFDVRAILDDVLSLFSEKSQAKGLEFTDKGHVFVTIHLVEEVVHS VEVDKEPNSDKNTLSGFPVADIRKSWEGFKAFSQEGPLGSFSSSSSDFINLIVSVEDTGEGIPLEAQSRIFTPFMQVNPS ISRKHGGTGIGLSISKCLVGLMNGEIGFVSTPKIGSTFTFTAVFTNGLPSSNECKIQQISNQPQPASSAFEGMTALVIDP RTVRAKVSRYHIQRLGIHVEIVSDLNQGLSTIGNGSIVTNMVLIEEAVWDRDSGMSSHFVKNTRKVDNGVPPKLFILVNS SNSSKASSVASDVHYPTVITKPLRASMLAVTLQRAMGVRNKSTPPNRELQSLSLRQLLLGRKILIVDDNSVNRAVAAGAL KKYGAAVVCVSSGQDAISSLTPPHQFDACFMDIQMPEMDGFEATRRIREMEHNVNREVSMDGFENVSNWHVPILAMTADV IQATHEECLRYGMDGYVSKPFEAEQLYREVSRFFPSS 

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 5 5 -
Phobius 6 30 25 -
TMHMM 13 35 23 -
Phobius 31 87 57 -
PANTHER 59 540 482 0.0
PANTHER 59 540 482 0.0
TMHMM 88 110 23 -
Phobius 88 107 20 -
Phobius 108 390 283 -
ProSiteProfiles 156 382 227 38.711
SMART 156 357 202 3.7E-27
Pfam 159 355 197 3.9E-38
Gene3D 160 389 230 3.7E-95
Phobius 391 409 19 -
Phobius 410 997 588 -
Gene3D 414 506 93 4.1E-25
Coils 420 440 21 -
SUPERFAMILY 429 509 81 6.87E-19
Pfam 443 506 64 5.9E-19
CDD 443 504 62 2.23546E-17
SMART 443 508 66 6.9E-23
ProSiteProfiles 450 686 237 31.198
SUPERFAMILY 497 681 185 5.63E-27
Gene3D 507 686 180 3.2E-26
SMART 521 686 166 3.6E-16
PANTHER 540 995 456 0.0
PANTHER 540 995 456 0.0
Pfam 604 684 81 4.8E-21
CDD 607 684 78 3.51729E-33
PRINTS 611 625 15 4.1E-12
PRINTS 629 639 11 4.1E-12
PRINTS 646 664 19 4.1E-12
PRINTS 670 683 14 4.1E-12
SUPERFAMILY 710 838 129 1.07E-6
CDD 816 890 75 0.00139306
Gene3D 847 993 147 1.3E-37
SUPERFAMILY 860 993 134 9.11E-34
SMART 861 990 130 7.9E-31
ProSiteProfiles 862 994 133 41.016
Pfam 863 989 127 3.7E-21
CDD 864 986 123 2.45057E-30

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 Phosphorelay sensor kinase activity Catalysis of the phosphorylation of a histidine residue in response to detection of an extracellular signal such as a chemical ligand or change in environment, to initiate a change in cell state or activity. The two-component sensor is a histidine kinase that autophosphorylates a histidine residue in its active site. The phosphate is then transferred to an aspartate residue in a downstream response regulator, to trigger a response.
Biological process Phosphorelay signal transduction system A conserved series of molecular signals found in prokaryotes and eukaryotes; involves autophosphorylation of a histidine kinase and the transfer of the phosphate group to an aspartate that then acts as a phospho-donor to response regulator proteins.
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 Nucleoside metabolic process The chemical reactions and pathways involving a nucleoside, a nucleobase linked to either beta-D-ribofuranose (a ribonucleoside) or 2-deoxy-beta-D-ribofuranose, (a deoxyribonucleoside), e.g. adenosine, guanosine, inosine, cytidine, uridine and deoxyadenosine, deoxyguanosine, deoxycytidine and thymidine (= deoxythymidine).
Biological process Phosphorylation The process of introducing a phosphate group into a molecule, usually with the formation of a phosphoric ester, a phosphoric anhydride or a phosphoric amide.
Molecular function Transferase activity, transferring phosphorus-containing groups Catalysis of the transfer of a phosphorus-containing group from one compound (donor) to another (acceptor).

Expression data

Expression pattern

Expression pattern of LotjaGi4g1v0366900.3, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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