| Literature DB >> 26950109 |
Ute Wölfle1, Floriana A Elsholz2, Astrid Kersten3, Birgit Haarhaus4, Udo Schumacher5, Christoph M Schempp6.
Abstract
Bitter taste receptors (TAS2Rs) are expressed in mucous epithelial cells of the tongue but also outside the gustatory system in epithelial cells of the colon, stomach and bladder, in the upper respiratory tract, in the cornified squamous epithelium of the skin as well as in airway smooth muscle cells, in the testis and in the brain. In the present work we addressed the question if bitter taste receptors might also be expressed in other epithelial tissues as well. By staining a tissue microarray with 45 tissue spots from healthy human donors with an antibody directed against the best characterized bitter taste receptor TAS2R38, we observed an unexpected strong TAS2R38 expression in the amniotic epithelium, syncytiotrophoblast and decidua cells of the human placenta. To analyze the functionality we first determined the TAS2R38 expression in the placental cell line JEG-3. Stimulation of these cells with diphenidol, a clinically used antiemetic agent that binds TAS2Rs including TAS2R38, demonstrated the functionality of the TAS2Rs by inducing calcium influx. Restriction enzyme based detection of the TAS2R38 gene allele identified JEG-3 cells as PTC (phenylthiocarbamide)-taster cell line. Calcium influx induced by PTC in JEG-3 cells could be inhibited with the recently described TAS2R38 inhibitor probenecid and proved the specificity of the TAS2R38 activation. The expression of TAS2R38 in human placental tissues points to further new functions and hitherto unknown endogenous ligands of TAS2Rs far beyond bitter tasting.Entities:
Keywords: bitter taste receptor; calcium influx; placental tissue
Mesh:
Substances:
Year: 2016 PMID: 26950109 PMCID: PMC6273027 DOI: 10.3390/molecules21030306
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Staining of human tissues of the human tissue microarray against TAS2R38. Parotid gland (A); heart (B); human placenta (chorionic plate) (C) and endocervix (D) were stained with an isotype control antibody or an antibody against TAS2R38 and S100 (only the endocervix). Arrows in bold indicate positively and dashed arrows negatively stained cells; the bars correspond to 50 µm.
Summary of TAS2R38-positive and -negative human tissues.
| Blastodermic Layer | Organ System | Cells/Tissues | TAS2R38 Expression |
|---|---|---|---|
| ectodermal | central nervous system | Purkinje cells (Golgi apparatus like staining pattern) in cerebellum | + |
| neurons/glial cells in the spinal cord | - | ||
| ectodermal | skin | keratinocytes, fibroblasts | + |
| mucous membrane (tongue, palate) | + | ||
| ectodermal | placenta | amnion epithelium, | + |
| syncytiotrophoblast, decidua cells | + | ||
| ectodermal | gastrointestinal mucosa and ducts | mucous epithelial cells and gland ductus of: | + |
| ileum, cecum, colon, rectum, parotid gland, kidney, esophagus, stomach, pancreas | + | ||
| breast | - | ||
| endodermal | urogenital system | prostate, exocervix, endocervix | + |
| pro-endometrium (apical) | + (single cells) | ||
| sec-endometrium | - | ||
| myometrium, ovary, liver | - | ||
| endodermal | respiratory ducts | lung | - |
| mesodermal | mesenchymal structures | skeletal muscles, fat tissue, soft tissue, heart | - |
| mesodermal | lymphatic tissue | lymph node, spleen, tonsils, thymus | - |
+, positive staining; -, negative staining.
Figure 2Staining of the human cell line JEG-3 against TAS2R38. The rabbit anti-TAS2R38 antibody was visualized by a secondary FITC-coupled antibody in the FITC channel. The isotype control showed no fluorescence signal in this cell line. The pictures were photographed at magnification of 400×. The bar corresponds to 50 µm.
Figure 3DPH and PTC induce calcium influx in JEG-3 cells. (A) JEG-3 cells are stimulated after 60 s with DPH (100 µM) or DMSO (0.1%) as indicated with the arrow and calcium currents are analyzed by calcium imaging. Calcium influx is expressed as the difference of the fura-2 ratio before and after stimulation; (B) JEG-3 cells are stimulated after 60 s with PTC (100 µM) or DMSO (0.1%) as indicated with the arrow. Calcium currents are analyzed by calcium imaging. Calcium influx is expressed as the difference of the fura-2 ratio before and after stimulation. 1 h pre-incubation with probenecid (1 mM) reduces PTC-induced calcium currents to solvent level. Data + SEM. n = 5. t-test, unpaired, two-tailed. ** p < 0.01, *** p < 0.001.
Figure 4TAS2R38 expressing human tissues. The cartoon highlights organs that express TAS2R38 in the human organism in bold on the right site, and organs that are negative for TAS2R38 on the left site.
Figure 5Determination of the TAS2R38 gene allele in the cell line JEG-3. (A) Scheme to demonstrate the cleaving products by a restriction enzyme-based analysis of PTC taster and non-taster. PTC tasters have the haplotype PAV and non-tasters have the haplotype AVI (A = Ala, V = Val, I = Ile) at the protein positions 49, 262 and 296; (B) Cleaving pattern of the JEG-3 cell line. (C) Gene sequence of JEG-3 DNA. Both methods identified JEG-3 as taster cell line according to data from the literature [8].