CDB25:0003642 FLRT2 — ADGRL3

Experimentally validated in Human, Mouse; Orthology-inferred in Human, Rat, Frog, Zebrafish, Chicken, Macaque, Pig, Dog, Cow, Chimp, Horse, Sheep, Mouse

Title

Journal:; Year Published:

Abstract

FLRT proteins are endogenous latrophilin ligands and regulate excitatory synapse development.

Neuron, 2012; PubMed, Mus Musculus Flrt2 — Mus Musculus Adgrl3
ABSTRACT: Latrophilins (LPHNs) are a small family of G protein-coupled receptors known to mediate the massive synaptic exocytosis caused by the black widow spider venom α-latrotoxin, but their endogenous ligands and function remain unclear. Mutations in LPHN3 are strongly associated with attention deficit hyperactivity disorder, suggesting a role for latrophilins in human cognitive function. Using affinity chromatography and mass spectrometry, we identify the FLRT family of leucine-rich repeat transmembrane proteins as endogenous postsynaptic ligands for latrophilins. We demonstrate that the FLRT3 and LPHN3 ectodomains interact with high affinity in trans and that interference with this interaction using soluble recombinant LPHN3, LPHN3 shRNA, or FLRT3 shRNA reduces excitatory synapse density in cultured neurons. In addition, reducing FLRT3 levels with shRNA in vivo decreases afferent input strength and dendritic spine number in dentate granule cells. These observations indicate that LPHN3 and its ligand FLRT3 play an important role in glutamatergic synapse development.

Pooled extracellular receptor-ligand interaction screening using CRISPR activation.

Genome biology, 2018; PubMed, Homo sapiens FLRT2 — Homo sapiens ADGRL3
ABSTRACT: Extracellular interactions between cell surface receptors are necessary for signaling and adhesion but identifying them remains technically challenging. We describe a cell-based genome-wide approach employing CRISPR activation to identify receptors for a defined ligand. We show receptors for high-affinity antibodies and low-affinity ligands can be unambiguously identified when used in pools or as individual binding probes. We apply this technique to identify ligands for the adhesion G-protein-coupled receptors and show that the Nogo myelin-associated inhibitory proteins are ligands for ADGRB1. This method will enable extracellular receptor-ligand identification on a genome-wide scale.
Basic Information on FLRT2
Ligand Name: fibronectin leucine rich transmembrane protein 2
Other Symbols: N/A
Ligand Location: secreted based on uniprot, cell membrane based on perplexity, uniprot
HGNC Gene Symbol Report: FLRT2
GeneCards: FLRT2
Basic Information on ADGRL3
Receptor Name: adhesion G protein-coupled receptor L3
Other Symbols: LPHN3, KIAA0768, LEC3
Receptor Location: cell membrane based on perplexity, uniprot
HGNC Gene Symbol Report: ADGRL3
GeneCards: ADGRL3
Interactions with other Ligands for ADGRL3