Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Taste Receptor Cells Generate Oscillating Receptor Potentials by Activating G Protein-Coupled Taste Receptors

View through CrossRef
The receptor potentials of taste receptor cells remain unclear. Here, we demonstrate that taste receptor cells generate oscillating depolarization ( n = 7) with action potentials in response to sweet, bitter, umami, and salty taste substances. At a lower concentration of taste substances, taste receptor cells exhibited oscillations in membrane potentials with a low frequency and small magnitude of depolarization. Although the respective waves contained no or 1–2 action potentials, the taste receptor cells generated action potentials continuously in the presence of taste stimuli. Both the frequency and magnitude of oscillations increased when the concentration was increased, to 0.67–1.43 Hz ( n = 3) and Δ39–53 mV ( n = 3) in magnitude from −64.7 ± 4.2 to −18.7 ± 5.9 mV, which may activate the ATP-permeable ion channels. In contrast, a sour tastant (10-mM HCl) induced membrane depolarization (Δ19.4 ± 9.5 mV, n = 4) with action potentials in type III taste receptor cells. Interestingly, NaCl (1 M) taste stimuli induced oscillation ( n = 2) or depolarization (Δ10.5 ± 5.7 mV at the tonic component, n = 9). Our results indicate that the frequency and magnitude of oscillations increased with increasing taste substance concentrations. These parameters may contribute to the expression of taste “thickness.”
Title: Taste Receptor Cells Generate Oscillating Receptor Potentials by Activating G Protein-Coupled Taste Receptors
Description:
The receptor potentials of taste receptor cells remain unclear.
Here, we demonstrate that taste receptor cells generate oscillating depolarization ( n = 7) with action potentials in response to sweet, bitter, umami, and salty taste substances.
At a lower concentration of taste substances, taste receptor cells exhibited oscillations in membrane potentials with a low frequency and small magnitude of depolarization.
Although the respective waves contained no or 1–2 action potentials, the taste receptor cells generated action potentials continuously in the presence of taste stimuli.
Both the frequency and magnitude of oscillations increased when the concentration was increased, to 0.
67–1.
43 Hz ( n = 3) and Δ39–53 mV ( n = 3) in magnitude from −64.
7 ± 4.
2 to −18.
7 ± 5.
9 mV, which may activate the ATP-permeable ion channels.
In contrast, a sour tastant (10-mM HCl) induced membrane depolarization (Δ19.
4 ± 9.
5 mV, n = 4) with action potentials in type III taste receptor cells.
Interestingly, NaCl (1 M) taste stimuli induced oscillation ( n = 2) or depolarization (Δ10.
5 ± 5.
7 mV at the tonic component, n = 9).
Our results indicate that the frequency and magnitude of oscillations increased with increasing taste substance concentrations.
These parameters may contribute to the expression of taste “thickness.
”.

Related Results

7 th International Symposium on Enabling Technologies for Life Sciences (ETP)
7 th International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see Rapid Communications in Mass Spectrometry 2012, 26 , ...
Age‐related electrophysiological changes in mouse taste receptor cells
Age‐related electrophysiological changes in mouse taste receptor cells
New Findings What is the central question of this study? Loss of taste or inability to distinguish between different tastes progresses with age. The purpose was to evaluate the ag...
EPD Electronic Pathogen Detection v1
EPD Electronic Pathogen Detection v1
Electronic pathogen detection (EPD) is a non - invasive, rapid, affordable, point- of- care test, for Covid 19 resulting from infection with SARS-CoV-2 virus. EPD scanning techno...
Quantitative Analysis of Taste Bud Cell Numbers in the Circumvallate and Foliate Taste Buds of Mice
Quantitative Analysis of Taste Bud Cell Numbers in the Circumvallate and Foliate Taste Buds of Mice
Abstract A mouse single taste bud contains 10–100 taste bud cells (TBCs) in which the elongated TBCs are classified into 3 cell types (types I–III) equipped with dif...
Endothelial Protein C Receptor
Endothelial Protein C Receptor
IntroductionThe protein C anticoagulant pathway plays a critical role in the negative regulation of the blood clotting response. The pathway is triggered by thrombin, which allows ...
Sequence, characterization and pharmacological analyses of the adipokinetic hormone receptor in the stick insect, Carausius morosus
Sequence, characterization and pharmacological analyses of the adipokinetic hormone receptor in the stick insect, Carausius morosus
BackgroundAdipokinetic/hypertrehalosaemic hormone (AKH/HrTH), corazonin (Crz) and the AKH/Crz-related peptide (ACP) are neuropeptides considered homologous to the vertebrate gonado...
The Dopamine Receptors
The Dopamine Receptors
Abstract Dopamine receptors have a prominent place in our understanding of brain function. Drugs blocking dopamine receptors are used as antipsy...
Endothelin stimulates platelet-activating factor synthesis by cultured rat Kupffer cells
Endothelin stimulates platelet-activating factor synthesis by cultured rat Kupffer cells
Endothelins are potent peptide mediators that elicit glycogenolytic and vasoconstrictor actions in the liver. Endothelins were found to stimulate the synthesis and release of the l...

Back to Top