Summary | |
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Symbol | RXFP2 |
Name | relaxin/insulin-like family peptide receptor 2 |
Aliases | GREAT; GPR106; INSL3R; RXFPR2; LGR8; leucine-rich repeat-containing G protein-coupled receptor 8; LGR8.1; G ...... |
Chromosomal Location | 13q12.3 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Basic function annotation. > Subcellular Location, Domain and Function > Gene Ontology > KEGG and Reactome Pathway |
Subcellular Location | Cell membrane; Multi-pass membrane protein. |
Domain |
PF00001 7 transmembrane receptor (rhodopsin family) PF00057 Low-density lipoprotein receptor domain class A PF13855 Leucine rich repeat |
Function |
Receptor for relaxin. The activity of this receptor is mediated by G proteins leading to stimulation of adenylate cyclase and an increase of cAMP. May also be a receptor for Leydig insulin-like peptide (INSL3). |
Biological Process |
GO:0001556 oocyte maturation GO:0006140 regulation of nucleotide metabolic process GO:0006164 purine nucleotide biosynthetic process GO:0006171 cAMP biosynthetic process GO:0007187 G-protein coupled receptor signaling pathway, coupled to cyclic nucleotide second messenger GO:0007188 adenylate cyclase-modulating G-protein coupled receptor signaling pathway GO:0007189 adenylate cyclase-activating G-protein coupled receptor signaling pathway GO:0007193 adenylate cyclase-inhibiting G-protein coupled receptor signaling pathway GO:0007281 germ cell development GO:0007292 female gamete generation GO:0007548 sex differentiation GO:0008406 gonad development GO:0008584 male gonad development GO:0009150 purine ribonucleotide metabolic process GO:0009152 purine ribonucleotide biosynthetic process GO:0009165 nucleotide biosynthetic process GO:0009187 cyclic nucleotide metabolic process GO:0009190 cyclic nucleotide biosynthetic process GO:0009260 ribonucleotide biosynthetic process GO:0009994 oocyte differentiation GO:0021700 developmental maturation GO:0022412 cellular process involved in reproduction in multicellular organism GO:0030799 regulation of cyclic nucleotide metabolic process GO:0030801 positive regulation of cyclic nucleotide metabolic process GO:0030802 regulation of cyclic nucleotide biosynthetic process GO:0030804 positive regulation of cyclic nucleotide biosynthetic process GO:0030808 regulation of nucleotide biosynthetic process GO:0030810 positive regulation of nucleotide biosynthetic process GO:0030814 regulation of cAMP metabolic process GO:0030816 positive regulation of cAMP metabolic process GO:0030817 regulation of cAMP biosynthetic process GO:0030819 positive regulation of cAMP biosynthetic process GO:0045137 development of primary sexual characteristics GO:0045981 positive regulation of nucleotide metabolic process GO:0046058 cAMP metabolic process GO:0046390 ribose phosphate biosynthetic process GO:0046546 development of primary male sexual characteristics GO:0046661 male sex differentiation GO:0048469 cell maturation GO:0048477 oogenesis GO:0048599 oocyte development GO:0048608 reproductive structure development GO:0052652 cyclic purine nucleotide metabolic process GO:0061458 reproductive system development GO:0072522 purine-containing compound biosynthetic process GO:1900371 regulation of purine nucleotide biosynthetic process GO:1900373 positive regulation of purine nucleotide biosynthetic process GO:1900542 regulation of purine nucleotide metabolic process GO:1900544 positive regulation of purine nucleotide metabolic process GO:1901293 nucleoside phosphate biosynthetic process |
Molecular Function |
GO:0016500 protein-hormone receptor activity GO:0017046 peptide hormone binding GO:0033218 amide binding GO:0042277 peptide binding GO:0042562 hormone binding |
Cellular Component | - |
KEGG |
hsa04080 Neuroactive ligand-receptor interaction |
Reactome |
R-HSA-373076: Class A/1 (Rhodopsin-like receptors) R-HSA-418555: G alpha (s) signalling events R-HSA-388396: GPCR downstream signaling R-HSA-500792: GPCR ligand binding R-HSA-375276: Peptide ligand-binding receptors R-HSA-444821: Relaxin receptors R-HSA-162582: Signal Transduction R-HSA-372790: Signaling by GPCR |
Summary | |
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Symbol | RXFP2 |
Name | relaxin/insulin-like family peptide receptor 2 |
Aliases | GREAT; GPR106; INSL3R; RXFPR2; LGR8; leucine-rich repeat-containing G protein-coupled receptor 8; LGR8.1; G ...... |
Chromosomal Location | 13q12.3 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content | Literatures that report relations between RXFP2 and anti-tumor immunity. The specific mechanism were also collected if the literature reports that a gene specifically promotes or inhibits the infiltration or function of T/NK cells. |
There is no record. |
Summary | |
---|---|
Symbol | RXFP2 |
Name | relaxin/insulin-like family peptide receptor 2 |
Aliases | GREAT; GPR106; INSL3R; RXFPR2; LGR8; leucine-rich repeat-containing G protein-coupled receptor 8; LGR8.1; G ...... |
Chromosomal Location | 13q12.3 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content | High-throughput screening data (e.g. CRISPR-Cas9, shRNA and RNAi) for T cell-mediated killing. Genetic screen techniques can identify mechanisms of tumor cell resistance (e.g., PTPN2) and sensitivity (e.g., APLNR) to killing by cytotoxic T cells, the central effectors of anti-tumor immunity. After comprehensively searching, eight groups of screening data sets were collected in the current database. In this tab, users can check whether their selected genes cause resistance or increase sensitivity to T cell-mediated killing in various data sets. |
> High-throughput Screening
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Statistical results of RXFP2 in screening data sets for detecting immune reponses.
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Summary | |
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Symbol | RXFP2 |
Name | relaxin/insulin-like family peptide receptor 2 |
Aliases | GREAT; GPR106; INSL3R; RXFPR2; LGR8; leucine-rich repeat-containing G protein-coupled receptor 8; LGR8.1; G ...... |
Chromosomal Location | 13q12.3 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Transcriptomic and genomic profiling of pre-treated tumor biopsies from responders and non-responders to immunotherapy. These data were used to identify signatures and mechanisms of response to checkpoint blockade (e.g., anti-PDL1 and anti-PD1). One example is that mutations in the gene PBRM1 benefit clinical survival of patients with clear cell renal cell carcinoma. After comprehensively searching, we collected 5 and 6 of transcriptomic and genomic data sets, respectively. In this tab, users can check whether their selected genes have significant difference of expression or mutation between responders and non-responders in various data sets. > Expression difference between responders and non-responders > Mutation difference between responders and non-responders |
Points in the above scatter plot represent the expression difference of RXFP2 in various data sets.
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Points in the above scatter plot represent the mutation difference of RXFP2 in various data sets.
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Summary | |
---|---|
Symbol | RXFP2 |
Name | relaxin/insulin-like family peptide receptor 2 |
Aliases | GREAT; GPR106; INSL3R; RXFPR2; LGR8; leucine-rich repeat-containing G protein-coupled receptor 8; LGR8.1; G ...... |
Chromosomal Location | 13q12.3 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Relations between abundance of tumor-infiltrating lymphocytes (TILs) and expression, copy number, methylation, or mutation of RXFP2. The immune-related signatures of 28 TIL types from Charoentong's study, which can be viewed in the download page. For each cancer type, the relative abundance of TILs were inferred by using gene set variation analysis (GSVA) based on gene expression profile. In this tab, users can examine which kinds of TILs might be regulated by the current gene. |
Summary | |
---|---|
Symbol | RXFP2 |
Name | relaxin/insulin-like family peptide receptor 2 |
Aliases | GREAT; GPR106; INSL3R; RXFPR2; LGR8; leucine-rich repeat-containing G protein-coupled receptor 8; LGR8.1; G ...... |
Chromosomal Location | 13q12.3 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Relations between three kinds of immunomodulators and expression, copy number, methylation, or mutation of RXFP2. These immunomo-dulators were collected from Charoentong's study. In this tab, users can examine which immunomodulators might be regulated by RXFP2. > Immunoinhibitor > Immunostimulator > MHC molecule |
Summary | |
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Symbol | RXFP2 |
Name | relaxin/insulin-like family peptide receptor 2 |
Aliases | GREAT; GPR106; INSL3R; RXFPR2; LGR8; leucine-rich repeat-containing G protein-coupled receptor 8; LGR8.1; G ...... |
Chromosomal Location | 13q12.3 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Relations between chemokines (or receptors) and expression, copy number, methylation, or mutation of RXFP2. In this tab, users can examine which chemokines (or receptors) might be regulated by the current gene. > Chemokine > Receptor |
Summary | |
---|---|
Symbol | RXFP2 |
Name | relaxin/insulin-like family peptide receptor 2 |
Aliases | GREAT; GPR106; INSL3R; RXFPR2; LGR8; leucine-rich repeat-containing G protein-coupled receptor 8; LGR8.1; G ...... |
Chromosomal Location | 13q12.3 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Distribution of RXFP2 expression across immune and molecular subtypes. > Immune subtype > Molecular subtype |
Summary | |
---|---|
Symbol | RXFP2 |
Name | relaxin/insulin-like family peptide receptor 2 |
Aliases | GREAT; GPR106; INSL3R; RXFPR2; LGR8; leucine-rich repeat-containing G protein-coupled receptor 8; LGR8.1; G ...... |
Chromosomal Location | 13q12.3 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Associations between RXFP2 and clinical features. > Overall survival analysis > Cancer stage > Tumor grade |
Summary | |
---|---|
Symbol | RXFP2 |
Name | relaxin/insulin-like family peptide receptor 2 |
Aliases | GREAT; GPR106; INSL3R; RXFPR2; LGR8; leucine-rich repeat-containing G protein-coupled receptor 8; LGR8.1; G ...... |
Chromosomal Location | 13q12.3 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content | Drugs targeting RXFP2 collected from DrugBank database. |
There is no record. |