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LotjaGi2g1v0338700.1

Overview

Field Value
Gene ID LotjaGi2g1v0338700
Transcript ID LotjaGi2g1v0338700.1
Related isoforms 2
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|I1J4M8|I1J4M8_SOYBN Uncharacterized protein; Found in the gene: LotjaGi2g1v0338700
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:81553860..81560392) extracted from Lotus japonicus Gifu genome v1.2.

CAACAACTTCAACATCACAATTCACAACTCCAACACCAAACACAACACCAAGATTATTATTACTAGCATTTAGCAATGTG GGGCTCACTGGGCCCAGAACCCTCTCACTCTCAACAGCTCTCTCTTCTTCTTCATTGATTTTCTTTCACCTTCTTCTACT TACTTTCTGAACCAACTCAACCTTCACTCACATCTCACTTTCCTTCATCAATGTTGGTCGTGGGTTTCGGGAAACCTTTG TCTTTTCCAGATTTTCAAGATCGGATTCGCTTTCACTCTGTCCCTTTTCTTAGGTACACCCCTCTTTCTCTTTCACTCCC TCAAAAGTTCAAAGTCATCTTTTTTCCTCATCTTTTTCAAAAAAAAAGAAAGACCCTTTTTTCTTCTTCTTCTTTTGTTT ATTCTTTTCTTAGCTAGCTGAAAATTGTAACATTTGACTCTCAGTTTTTCAACACCCCCATAAGAGAAAAACCAACACTT ATGACCTTCAAAGGTTGGTAATATTGAATTTTCTTTTTCACTTCTTCATGGTTTTTCTTATTTGTCTGAAGTCATGCTTG GATACCCTGATTTGAATTTTGTTTATTCTCATTTGATTTTCTTAAAGCTGACTTTTTATTGGTGGGGGTTCATTTCTTAT AAAAATGAAGTTGTTCAATTATGAAGGCTTTCAATTCAACGTTTGATTGCGGCTGCTTCATGACTGTGACTGGGTCTGGT TCTATTTTTGTATACAAGACAAAACCTAAAAAACCTCTTTCTGTTGCAACAGAATTTTCCACCAAAGATTTTTCTGTTCT TTCTATTTATTTAGCTCATTTATCTCTATGCTTAGATGTGTTGATTTCTATCTAGTTACATAGGTTTTGGGATGTCATGT TTCAGAGAGAACACAGGTCTTGTAGATTTTGCTGATGCTGAATAGCTTAAACTTGGAAGCATAAGAGGGTGTTAGTGATT GCAAAATATGGATCCAAATAGGGGAGATAGCTGGAGGGAATTGGTCAAGAAGATGCTTCCTCCTGGTGCTTCTGTTCCTG ATGATGCTTCTGATCTTGATTACTCTATAGCTCTTGAATATGAAGGTCCACCGGTTTCGTATGAAGTGCCAAGAGTTGAG CCCTTCGATGTGAACTCAAGAGAAATTCCCACTGCTGAACCACTGTCTGGATCACAAAGATCAAGTACTCATGTGATTGA ACCTATCCCTCTGCCGGTGTCTCGTATTGCAGGTGTGACGGGGTCTCCTAATCATAGCCCGAGGGTGTCGGGAAGTTCAG AATCTGTGGTTTCGGTGTTGCAGAACCCGGATCTTTCTTCTGCGTCGCCTTCTGCTTCGCCTGCTTCAGTTCATAATCCT GCTAACAATCCTCCTATGCCGGCGGCTAATGAAGCAAAGAGGGCGCCTGTTGTCACTTTTAATACTGTTGATAGATCTCA GACGAAAGAGGTGGAGGTTGTGAAGCCGGTTTATCCGGAATACGTCGGGGTTTTGAAAGAAAGGAAGAAGAAGAAAATAA GAGTTTGCTATAGGTGTGGGAAAGGGAAGTGGGAAACTAAGGAGTCTTGCATAGTTTGTGATGCCAAGTATTGCAGTAAC TGTGTGCTAAGGGCGATGGGATCGATGCCAGAAGGGCGCAAGTGCGTAACTTGTATTGGTCAGCCAATTGATGAATCCAA GCGTCTGAAATTGGGTAAATATTCGAGGGTGTTGTCCCGGCTGTTAAGTCCTCTAGAAGTCAAGCAAATTATGAAGGCAG AGAAAGAGTGTTCTGCTAATCAGCTTAGGCCGGAGCAGTTGATTGTGAATGGATTGCCCCTGAAGCCAGATGAGATGGCA GACCTACTTGGGTGCCCCTTACCTCCACGTAAGCTGAAGCCCGGTAGATATTGGTATGACAAAGAATCTGGTCTTTGGGG AAAGGTGATAATTTGTGCTTTATTGTTGACAATATTAATTCTGCTTCAACTTTCCCTTGTAAATAATATTATTTTTTAAT TGTGATTACATTGAGTATATCAAATTCATAAGATTAACTTATCAAAGTGTTAAATTTCATTTTTCTTGGCATATCAAAAG TATTATGTCAAATTCATGTGGTTAACTTGTCAAAATGCTATGTTTCCATTTCTAATCTCAGAGCAGGTTTTTATTTCTGT CCTTGTTCATTTGATAGGAAGGGGAAAAACCTGACAGACTCATAAGCTCGAACTTGAATTTCACGGGGAAACTCTGCTTT GACGCTAGTAATGGAAACACTGAGGTTTACATCAATGGTCGAGAGATTACTAAACTTGAATTGAGGGTACTCAAGGTAAG CTTTTATCTTTGTTTAAATTTAAACAAAATTTATATTTACTATATTTAGTTGCAACTTTGATTCAGCTGTCAGACTAAAG GAGTGCTCAGTAAGAGTGAAAATGGAAGTAGTGGGTGCGGGTGTGCCGCCACAGCCACCAGATTTTTCGAGATATGAACA TCTGACTGCAGCTATTACCCAAAGCTCGGATGTTTTGAAACGATAAGACATTTTTGACATTATAACGGAGAAAGGATAAT AACAAAAAACCTCTCACCTAACAGACAACCTTATTTCTAATCTTTGGATGGTCATTATCATCATCATGGCATTATAGTAT TATTAAATGCAATGGAATAATCCTGTCGTTTGAATTTTCAGCTGGCAAACGTGCAGTGTCCGCGTGATACACACTTTTGG GTTTATGATGATGGTCGTTATGAGGAGGAAGGTCAAAATAATATCAGAGGAAACATTTGGGGGAAGGTACTAACCAACAT ATTTGTTTGTGGGAGCATCTTTATATCATATGAGAGTGTAGAATATTAATGAAAGAGTTGTTAATTTTTTCTTGGATAGG CATCAACAAGATTTGTTTGTGCCCTGTTCTCTCTGCCCTTTCCCCACGGACAGCCTCATGGGACAAGAGATGAGATTAGT AATTATACCACAGTTCCTAATTATCTAGAAAAGAAAAAGATTCAGAAGCTTCTTCTTCTTGGAATTCAAGGGTCTGGAAC TAGCACAATATTTAAGCAGGTACAGTTTTTATTTCAAATGTTTACACCTATGTTCATGATAGTTACTTCTGATAAACACT TCAATTGTTTTGATATATATGAGAACTTAGTAGTTCACTGATGCATTTTTTTTCTTCTTATTATTTTCTTTATTCCAAAC ACCCCCCTTTTTTTCTTTCGATTCTTTTACTAAGCTGTGTATGGTTGGGAGTTGATATGAGATTGGCACCAAGTGAAATT TTTTGTAGTTTGGTCATTTACACCAATGGTATTAAGATAAAAGCATTTTTTGGAACCTAGTGTGTTTAGTATTGATTCTA TTCTGTGGCACTCTTGTAATTGCTGAGCAGGCCAAGTTTTTGTATGGGGACAAGTTCACTACTGAAGAGCTGCAGGATGT CAAACTGATGATCCAGAGTAACATGTACAAGTATCTTAGCATTTTGCTCGATGGAAGAGAGCGCTTTGAAGAGGAGGCTG TTTCTAGAATGAATGAACAAGGTTCCCCTGGCCAAACTACAGAACCAGGTAATATTTCATGTCATGGTAATTTTCTTCTT GGAAAAAGTTTTGTTCACCACTCAATTCCACCCACACCTAGTGAGAGAGTGGAATAGAAGAGAGAAATATGAGATATGAT AGGTGCTGTGATAGGAAAAGAAGAGACATATAGGAAGAGAAAAGTGAGTGGAAATGTGATGGAGGAGAAAGTTAGGTGGG AATGTGTCAAAACCTTTCTTCAAGTTTCCACTTCATGTGTCACTGTTTAGCTGACGAGAGACCATGTATGATGGAACACT ACTTCAACTTTATGCCTCAATTATCATCAACCACATACACTTACTTTCGATTGTTATAAATAACAACACTATTGAAAACT AAAACATCAGATTCATTCCTAGTTTATCTTAAAAATGGCTAATATACTGCAAATGTGTTGTTTATCAATATAGATTTGGT CTGTGTGAATGCTAATCCTATGGGCAACTTTTATTTGATCTGTAATGGATCAGAATGCTTCCAGTGTATCACCAGATTTC AATATTTATTCAGGTAGCAATGGTGAAGCAAGTAATACTAGTGAATGCATCTATTCCCTCAACCCAAGGCTAAAGCATTT CTCTGACTGGTTGTTGGACATTATAGCTACTGGGGATTTAGATGCATTCTTCCCTGCAGCCACACGTGAATATGCACCGT TAGTTGAAGAAGTGTGGAAGGATCCAGCAATACAAGAAACCTTCAAAAGAAAAGATGAGCTTCACTTTCTTCCAGATGTT GCAGAGTACTTCTTAAGCCGGGTAATTGCTTATCATTTCATCCTTGAAACTGTGTCCTCCTGTTCAGTTAAAGTTGGCAG GCATCTGACGTTTACTGAATCTTAACCTCACAATCCGTTTTTATTCCTGCTGATTTTTTCGTAAAATTTGTATGTTCTTC TGATTTAAGAGCTTAGATGCTACTTTCTTGAGTTAAATATTCCTTGCATGCTTTGTCTGATTAGCCTAATATTCTACTGC TTTGCCAATTAGTTTCATCACTTGTATGCCTCAGTGCAATATCTATCTTCTCTGCTATTCATTTTGTTAGGATTTGTTTG AAATGAAAATAGAAGATAGAACACTTGTGTAACTTTTCTGGTTATTAACATTTACAAATGCTGTGAGAAGTAGAAACGGT TATTATTTTGCTAGCATGGGTTGCCTTTTCAGCTTTAGGAAAATCAATGGTATTGACATGTATAGCTTGGTAACGAGCTC TTGTTTCTTCCAGGCTGTTGAGATATCTAGCAATGAATACGAACCTTCTGAAAGGGACATACTTTATGCAGAAGGGGTTA CACAGGGAAATGGCTTGGCTTTCATGGAATACTCCCTAGATGACCGTTTGCCAAGGTCGGAGACTTACACAGATAACCTG GATGGTCAGCTTCCACCTCTGACCAAGTAAGCTATCTTTATTCCTTTCTGAATTTCAGAAGCCTCTTTTTTCTGAGGGAA AGTTTCCTGCATAGTTAAACTTTTGCTCTCTTTCTCTTTTGTATCTCTCTTTTTTTCTTTAGAGGGGGGCAATAGGAGTT AAGTGCGTTTGGCTCCACATTTGGGAGCTTTAGAATCAATTCTGTGACCAAAAATCACTTTTAGGTGGTTATATAGGTGT TTGGAAATCTACTTCGAGAATTGATTTTAGTCCCAAAATCAACTATGCGGAGAAGCTAGAGTGAGCAGCTTCTGCGGTGA ACATAATCAATTGTGAGAGTATTTGAGGGATATCTTGAAGTACATTGCAAATTTTGTTTATTTTTAAAAACGAAGATGAA GGGAGTCTTGGCGCAACGGTAAAAGTTTTTGCCATGTGTCTCATGTCACAGGTTCATGTCCTGGAAACATTCTCTACCAT TCCCTGAACCTGCGCATAGTATGAACTTTCGTGGATGGAGCTGCCATTTTTACAAAAACGAAGATGACTAATAACTTCTC TTTGATGTCTCAGGTACCAGCTCATAAGGGTGAACGCCAAGGGCATGAGTGAGGGTTGCAAGTGGGTTGAAATGTTTGAA GATGTCCGAGCAGTGGTCTTTTGCGTTTCCCTCAGCGACTTCGACCAGTTGTGGCTTGCCCCAGACAGCAGCGGCAGCGG CACACTTCTTCAAAACAAGATGATACAAAGCAAGGAGCTTTTCGAGACCATGGTGAGGCACCCTTGCTTCAAAGACACCC CATTTGTCCTGGTCCTGAACAAATACGACATGTTTGAGGAAAAAATGAGTAGGGTGTCCTTAAATGCTTGTGAATGGTTC AGCGATTTTTGTCCCGTGCTCGCACACCAAAACAACCAGTCACTGGCACATCAGGCTTACTTCTACGTCGCAATGAAATT CAAGGACCTCTATGCATCCCTCACGGGAAGGAAACTTTTTGTGGCACAAGCAAGAGCGAGGGACCGAGTAACTGTTGATG AGGCATTTAAGTACATAAAAGAGGTTCTCAAGTGGGATGAGGAAAAGGACGAGAATTACTATGGTCCACCTGAGGATTCA TTTTACAGCACAGACATAAGCTCCTCTCCCTATATCAGACAAGAGTAAACAATGTCCATCAAAATTTATTATTGAGTTAT GGATAAGGGTGGAATATGTAACATGCTGGCCAGGTTCTGGTGTCTGATATTTATGTAGTGAAATTGAAATCTGTAATGGA AAAAGTTATTTATTCTGGTAGAGTTCGTTTGAAAAGATGAATATTTGTCCTGTTTCTGCATGACTGCATGTATGATGTAT TGCATGTGGAGGCGTTGTTCATTGGTCCTGGAGCTTTTACAGGTGTTTGGTTGGAAGGGAGGGTGTGTTTAAAAACTCTA GAGGCATGGTTCAATTTTTTGGAAGGGAAAAGGGAATAGGGTAGGGTTCACGGGTTGGGTTGGTATGTATTTGAGGTATA GTAGAACACAAAATAATTAAATTAAATTGGTTGATTTGGTTTTTGTAACTTCT 

CDS sequence (LotjaGi2g1v0338700.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGATCCAAATAGGGGAGATAGCTGGAGGGAATTGGTCAAGAAGATGCTTCCTCCTGGTGCTTCTGTTCCTGATGATGC TTCTGATCTTGATTACTCTATAGCTCTTGAATATGAAGGTCCACCGGTTTCGTATGAAGTGCCAAGAGTTGAGCCCTTCG ATGTGAACTCAAGAGAAATTCCCACTGCTGAACCACTGTCTGGATCACAAAGATCAAGTACTCATGTGATTGAACCTATC CCTCTGCCGGTGTCTCGTATTGCAGGTGTGACGGGGTCTCCTAATCATAGCCCGAGGGTGTCGGGAAGTTCAGAATCTGT GGTTTCGGTGTTGCAGAACCCGGATCTTTCTTCTGCGTCGCCTTCTGCTTCGCCTGCTTCAGTTCATAATCCTGCTAACA ATCCTCCTATGCCGGCGGCTAATGAAGCAAAGAGGGCGCCTGTTGTCACTTTTAATACTGTTGATAGATCTCAGACGAAA GAGGTGGAGGTTGTGAAGCCGGTTTATCCGGAATACGTCGGGGTTTTGAAAGAAAGGAAGAAGAAGAAAATAAGAGTTTG CTATAGGTGTGGGAAAGGGAAGTGGGAAACTAAGGAGTCTTGCATAGTTTGTGATGCCAAGTATTGCAGTAACTGTGTGC TAAGGGCGATGGGATCGATGCCAGAAGGGCGCAAGTGCGTAACTTGTATTGGTCAGCCAATTGATGAATCCAAGCGTCTG AAATTGGGTAAATATTCGAGGGTGTTGTCCCGGCTGTTAAGTCCTCTAGAAGTCAAGCAAATTATGAAGGCAGAGAAAGA GTGTTCTGCTAATCAGCTTAGGCCGGAGCAGTTGATTGTGAATGGATTGCCCCTGAAGCCAGATGAGATGGCAGACCTAC TTGGGTGCCCCTTACCTCCACGTAAGCTGAAGCCCGGTAGATATTGGTATGACAAAGAATCTGGTCTTTGGGGAAAGGAA GGGGAAAAACCTGACAGACTCATAAGCTCGAACTTGAATTTCACGGGGAAACTCTGCTTTGACGCTAGTAATGGAAACAC TGAGGTTTACATCAATGGTCGAGAGATTACTAAACTTGAATTGAGGGTACTCAAGCTGGCAAACGTGCAGTGTCCGCGTG ATACACACTTTTGGGTTTATGATGATGGTCGTTATGAGGAGGAAGGTCAAAATAATATCAGAGGAAACATTTGGGGGAAG GCATCAACAAGATTTGTTTGTGCCCTGTTCTCTCTGCCCTTTCCCCACGGACAGCCTCATGGGACAAGAGATGAGATTAG TAATTATACCACAGTTCCTAATTATCTAGAAAAGAAAAAGATTCAGAAGCTTCTTCTTCTTGGAATTCAAGGGTCTGGAA CTAGCACAATATTTAAGCAGGCCAAGTTTTTGTATGGGGACAAGTTCACTACTGAAGAGCTGCAGGATGTCAAACTGATG ATCCAGAGTAACATGTACAAGTATCTTAGCATTTTGCTCGATGGAAGAGAGCGCTTTGAAGAGGAGGCTGTTTCTAGAAT GAATGAACAAGGTTCCCCTGGCCAAACTACAGAACCAGGTAGCAATGGTGAAGCAAGTAATACTAGTGAATGCATCTATT CCCTCAACCCAAGGCTAAAGCATTTCTCTGACTGGTTGTTGGACATTATAGCTACTGGGGATTTAGATGCATTCTTCCCT GCAGCCACACGTGAATATGCACCGTTAGTTGAAGAAGTGTGGAAGGATCCAGCAATACAAGAAACCTTCAAAAGAAAAGA TGAGCTTCACTTTCTTCCAGATGTTGCAGAGTACTTCTTAAGCCGGGCTGTTGAGATATCTAGCAATGAATACGAACCTT CTGAAAGGGACATACTTTATGCAGAAGGGGTTACACAGGGAAATGGCTTGGCTTTCATGGAATACTCCCTAGATGACCGT TTGCCAAGGTCGGAGACTTACACAGATAACCTGGATGGTCAGCTTCCACCTCTGACCAAGTACCAGCTCATAAGGGTGAA CGCCAAGGGCATGAGTGAGGGTTGCAAGTGGGTTGAAATGTTTGAAGATGTCCGAGCAGTGGTCTTTTGCGTTTCCCTCA GCGACTTCGACCAGTTGTGGCTTGCCCCAGACAGCAGCGGCAGCGGCACACTTCTTCAAAACAAGATGATACAAAGCAAG GAGCTTTTCGAGACCATGGTGAGGCACCCTTGCTTCAAAGACACCCCATTTGTCCTGGTCCTGAACAAATACGACATGTT TGAGGAAAAAATGAGTAGGGTGTCCTTAAATGCTTGTGAATGGTTCAGCGATTTTTGTCCCGTGCTCGCACACCAAAACA ACCAGTCACTGGCACATCAGGCTTACTTCTACGTCGCAATGAAATTCAAGGACCTCTATGCATCCCTCACGGGAAGGAAA CTTTTTGTGGCACAAGCAAGAGCGAGGGACCGAGTAACTGTTGATGAGGCATTTAAGTACATAAAAGAGGTTCTCAAGTG GGATGAGGAAAAGGACGAGAATTACTATGGTCCACCTGAGGATTCATTTTACAGCACAGACATAAGCTCCTCTCCCTATA TCAGACAAGAGTAA 

Protein sequence (LotjaGi2g1v0338700.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MDPNRGDSWRELVKKMLPPGASVPDDASDLDYSIALEYEGPPVSYEVPRVEPFDVNSREIPTAEPLSGSQRSSTHVIEPI PLPVSRIAGVTGSPNHSPRVSGSSESVVSVLQNPDLSSASPSASPASVHNPANNPPMPAANEAKRAPVVTFNTVDRSQTK EVEVVKPVYPEYVGVLKERKKKKIRVCYRCGKGKWETKESCIVCDAKYCSNCVLRAMGSMPEGRKCVTCIGQPIDESKRL KLGKYSRVLSRLLSPLEVKQIMKAEKECSANQLRPEQLIVNGLPLKPDEMADLLGCPLPPRKLKPGRYWYDKESGLWGKE GEKPDRLISSNLNFTGKLCFDASNGNTEVYINGREITKLELRVLKLANVQCPRDTHFWVYDDGRYEEEGQNNIRGNIWGK ASTRFVCALFSLPFPHGQPHGTRDEISNYTTVPNYLEKKKIQKLLLLGIQGSGTSTIFKQAKFLYGDKFTTEELQDVKLM IQSNMYKYLSILLDGRERFEEEAVSRMNEQGSPGQTTEPGSNGEASNTSECIYSLNPRLKHFSDWLLDIIATGDLDAFFP AATREYAPLVEEVWKDPAIQETFKRKDELHFLPDVAEYFLSRAVEISSNEYEPSERDILYAEGVTQGNGLAFMEYSLDDR LPRSETYTDNLDGQLPPLTKYQLIRVNAKGMSEGCKWVEMFEDVRAVVFCVSLSDFDQLWLAPDSSGSGTLLQNKMIQSK ELFETMVRHPCFKDTPFVLVLNKYDMFEEKMSRVSLNACEWFSDFCPVLAHQNNQSLAHQAYFYVAMKFKDLYASLTGRK LFVAQARARDRVTVDEAFKYIKEVLKWDEEKDENYYGPPEDSFYSTDISSSPYIRQE 

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
PANTHER 10 846 837 0.0
PANTHER 10 846 837 0.0
MobiDBLite 87 143 57 -
MobiDBLite 90 130 41 -
SUPERFAMILY 163 230 68 1.34E-5
SMART 430 814 385 2.0E-15
Pfam 437 824 388 2.0E-67
SUPERFAMILY 438 832 395 2.49E-23
ProSiteProfiles 440 836 397 58.258
Gene3D 443 811 369 2.2E-76
PRINTS 443 458 16 2.5E-10
CDD 448 828 381 4.39161E-80
SUPERFAMILY 469 621 153 2.49E-20
Gene3D 470 624 155 2.2E-76
MobiDBLite 502 528 27 -
MobiDBLite 508 528 21 -
PRINTS 611 633 23 2.5E-10
PRINTS 684 712 29 2.5E-10
PRINTS 737 746 10 2.5E-10
MobiDBLite 832 857 26 -
MobiDBLite 843 857 15 -

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 LotjaGi2g1v0338700.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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