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Gene and Protein Information ![]() |
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class A G protein-coupled receptor | ||||||
Species | TM | AA | Chromosomal Location | Gene Symbol | Gene Name | Reference |
Human | 7 | 907 | 12q21.1 | LGR5 | leucine rich repeat containing G protein-coupled receptor 5 | |
Mouse | 7 | 907 | 10 D2 | Lgr5 | leucine rich repeat containing G protein coupled receptor 5 | |
Rat | 7 | 907 | 7q22 | Lgr5 | leucine rich repeat containing G protein coupled receptor 5 |
Database Links ![]() |
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Specialist databases | |
GPCRdb | lgr5_human (Hs), lgr5_mouse (Mm) |
Other databases | |
Alphafold | O75473 (Hs), Q9Z1P4 (Mm) |
CATH/Gene3D | 3.80.10.10 |
Ensembl Gene | ENSG00000139292 (Hs), ENSMUSG00000020140 (Mm), ENSRNOG00000004221 (Rn) |
Entrez Gene | 8549 (Hs), 14160 (Mm), 299802 (Rn) |
Human Protein Atlas | ENSG00000139292 (Hs) |
KEGG Gene | hsa:8549 (Hs), mmu:14160 (Mm), rno:299802 (Rn) |
OMIM | 606667 (Hs) |
Pharos | O75473 (Hs) |
RefSeq Nucleotide | NM_003667 (Hs), NM_010195 (Mm), NM_001106784 (Rn) |
RefSeq Protein | NP_003658 (Hs), NP_034325 (Mm), NP_001100254 (Rn) |
UniProtKB | O75473 (Hs), Q9Z1P4 (Mm) |
Wikipedia | LGR5 (Hs) |
Selected 3D Structures ![]() |
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Natural/Endogenous Ligands ![]() |
R-spondin-1 {Sp: Human} |
R-spondin-2 {Sp: Human} |
R-spondin-3 {Sp: Human} |
R-spondin-4 {Sp: Human} |
Download all structure-activity data for this target as a CSV file
Agonists | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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The four R-spondins can bind to LGR4, LGR5, and LGR6, which specifically associate with Frizzled and LRPs—proteins that are activated by extracellular Wnt molecules- and then trigger canonical Wnt signalling to increase gene expression [3]. |
Tissue Distribution ![]() |
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Expression Datasets ![]() |
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Phenotypes, Alleles and Disease Models ![]() |
Mouse data from MGI | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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Biologically Significant Variants ![]() |
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1. Carmon KS, Gong X, Lin Q, Thomas A, Liu Q. (2011) R-spondins function as ligands of the orphan receptors LGR4 and LGR5 to regulate Wnt/beta-catenin signaling. Proc Natl Acad Sci USA, 108 (28): 11452-7. [PMID:21693646]
2. Chen PH, Chen X, Lin Z, Fang D, He X. (2013) The structural basis of R-spondin recognition by LGR5 and RNF43. Genes Dev, 27 (12): 1345-50. [PMID:23756651]
3. de Lau W, Barker N, Low TY, Koo BK, Li VS, Teunissen H, Kujala P, Haegebarth A, Peters PJ, van de Wetering M et al.. (2011) Lgr5 homologues associate with Wnt receptors and mediate R-spondin signalling. Nature, 476 (7360): 293-7. [PMID:21727895]
4. Gerhard DS, Wagner L, Feingold EA, Shenmen CM, Grouse LH, Schuler G, Klein SL, Old S, Rasooly R, Good P et al.. (2004) The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC). Genome Res, 14 (10B): 2121-7. [PMID:15489334]
5. Jaks V, Barker N, Kasper M, van Es JH, Snippert HJ, Clevers H, Toftgård R. (2008) Lgr5 marks cycling, yet long-lived, hair follicle stem cells. Nat Genet, 40 (11): 1291-9. [PMID:18849992]
6. Yee KK, Li Y, Redding KM, Iwatsuki K, Margolskee RF, Jiang P. (2013) Lgr5-EGFP marks taste bud stem/progenitor cells in posterior tongue. Stem Cells, 31 (5): 992-1000. [PMID:23377989]