• 제목/요약/키워드: taste receptor

검색결과 44건 처리시간 0.025초

Ionotropic Receptor 76b Is Required for Gustatory Aversion to Excessive Na+ in Drosophila

  • Lee, Min Jung;Sung, Ha Yeon;Jo, HyunJi;Kim, Hyung-Wook;Choi, Min Sung;Kwon, Jae Young;Kang, KyeongJin
    • Molecules and Cells
    • /
    • 제40권10호
    • /
    • pp.787-795
    • /
    • 2017
  • Avoiding ingestion of excessively salty food is essential for cation homeostasis that underlies various physiological processes in organisms. The molecular and cellular basis of the aversive salt taste, however, remains elusive. Through a behavioral reverse genetic screening, we discover that feeding suppression by $Na^+$-rich food requires Ionotropic Receptor 76b (Ir76b) in Drosophila labellar gustatory receptor neurons (GRNs). Concentrated sodium solutions with various anions caused feeding suppression dependent on Ir76b. Feeding aversion to caffeine and high concentrations of divalent cations and sorbitol was unimpaired in Ir76b-deficient animals, indicating sensory specificity of Ir76b-dependent $Na^+$ detection and the irrelevance of hyperosmolarity-driven mechanosensation to Ir76b-mediated feeding aversion. Ir76b-dependent $Na^+$-sensing GRNs in both L- and s-bristles are required for repulsion as opposed to the previous report where the L-bristle GRNs direct only low-$Na^+$ attraction. Our work extends the physiological implications of Ir76b from low-$Na^+$ attraction to high-$Na^+$ aversion, prompting further investigation of the physiological mechanisms that modulate two competing components of $Na^+$-evoked gustation coded in heterogeneous Ir76b-positive GRNs.

Effect $\beta$-Cyclodextrin on the Taste Quality of Neohesperidin Dihydrochalcone

  • Chung, Hai-Jung
    • Preventive Nutrition and Food Science
    • /
    • 제1권2호
    • /
    • pp.186-189
    • /
    • 1996
  • Neohesperidin dihydrochalcone(NHDC) is an intense sweetener with lingering aftertaste, which limits NHDC to use as a sweetener in food products. This study was conducted to examine the changes of teste quality of NHDC when using $\beta$-cyclodextrin($\beta$-CD) as a taste modifier. A series of $\beta$-CD(0.01%, 0.03%, 0.1%, 0.176%) was added to NHDC solution (100ppm) and the taste quality was evaluated by magnitude estimation. It was found that $\beta$-CD produced a significant effect in the reduction of aftertaste of NHDC(p<0.01) and sweetness as well.(p<0.001). Linear regression(log mean magnitude estimate versus $\beta$-CD concentration) analysis showed that the intensity of sweetness(n=-0.31) decreased more rapidly than that of aftertaste(m=-0.17). This result suggests the possibility that $\beta$-CD may form inclusion complex with NHDC, so that the hydrophobic portion is encapsulated in the cavity of $\beta$-CD and the carbohydrate moiety is oriented to the outside of the cavity. Or it may be that $\beta$-CD competes with the NHDC molecule for binding to the taste receptor, resulting in reduced perceived intensity.

  • PDF

한국어의 '맛 어휘' 분류 체계 (A proposal for the classification of Korean taste terms)

  • 김형민
    • 기호학연구
    • /
    • 제56호
    • /
    • pp.7-44
    • /
    • 2018
  • 본 연구의 목적은 인지과학의 관점에 근거하여 한국어 맛 어휘, 특히 한국어 맛 형용사의 분류 체계를 제안하는데 있다. 이때 한국어 맛 형용사의 분류는 인지과학의 분과 학문들이 수용하는 '미각'과 '향미'와 '맛'의 정의에 근거하여 이루어진다. 국내에서는 맛 어휘와 관련하여 많은 연구가 이루어져 왔다. 그래서 맛 어휘의 분류와 관련된 연구 결과물들이 꾸준히 발표되었으나, 연구자에 따라 크고 작은 차이를 보인다. 이는 연구자들이 맛 어휘를 범주화하는데 있어 객관적이고 보편적인 기준보다는 주관적이고 직관적인 기준을 적용했기 때문이다. 우리가 일상생활에서 흔히 말하는 '맛'은 미각 수용기 세포가 지각하는 감각 이상의 것을 포괄한다. 게다가 우리 인간이 지각하는 맛의 80~90%는 냄새에 좌우되어, 맛의 지각에 있어 후각의 중요성이 강조된다. 한편 음식의 식감과 색상과 온도, 음식을 먹는 주변 환경, 음식을 먹는 사람의 개인적 사회문화적 기호척도 등이 맛 지각에 큰 영향을 미친다. 먹는 것과 맛을 보는 것은 우리의 일상생활에서 중요한 부분을 차지한다. 그래서 맛 지각에 대한 언어학적 접근은 결코 간과할 수 없는 연구 영역이다. 본 연구자는 인지과학의 관점에 따른 맛 어휘의 분류가 맛 지각의 인지 메커니즘을 이해하는데 도움을 줄 수 있다는 가정에서 출발한다. 본 연구는 우리 인간의 심상어휘집에 '존재할 혹은 존재할지 모르는' 맛 어휘 낱말밭의 모습을 기하학적 모델로 형상화하고자 하는 후속 연구의 사전 작업임을 이 자리를 빌려 밝혀둔다.

Bitter taste receptors protect against skin aging by inhibiting cellular senescence and enhancing wound healing

  • Chung, Min Gi;Kim, Yerin;Cha, Yeon Kyung;Park, Tai Hyun;Kim, Yuri
    • Nutrition Research and Practice
    • /
    • 제16권1호
    • /
    • pp.1-13
    • /
    • 2022
  • BACKGROUND/OBJECTIVES: Bitter taste receptors are taste signaling pathway mediators, and are also expressed and function in extra-gustatory organs. Skin aging affects the quality of life and may lead to medical issues. The purpose of this study was to better understand the anti-skin aging effects of bitter taste receptors in D-galactose (D-gal)-induced aged human keratinocytes, HaCaT cells. MATERIALS/METHODS: Expressions of bitter taste receptors in HaCaT cells and mouse skin tissues were examined by polymerase chain reaction assay. Bitter taste receptor was overexpressed in HaCaT cells, and D-gal was treated to induce aging. We examined the effects of bitter taste receptors on aging by using β-galactosidase assay, wound healing assay, and Western blot assay. RESULTS: TAS2R16 and TAS2R10 were expressed in HaCaT cells and were upregulated by D-gal treatment. TAS2R16 exerted protective effects against skin aging by regulating p53 and p21, antioxidant enzymes, the SIRT1/mechanistic target of rapamycin pathway, cell migration, and epithelial-mesenchymal transition markers. TAS2R10 was further examined to confirm a role of TAS2R16 in cellular senescence and wound healing in D-gal-induced aged HaCaT cells. CONCLUSIONS: Our results suggest a novel potential preventive role of these receptors on skin aging by regulating cellular senescence and wound healing in human keratinocyte, HaCaT.

Type II and III Taste Bud Cells Preferentially Expressed Kainate Glutamate Receptors in Rats

  • Lee, Sang-Bok;Lee, Cil-Han;Kim, Se-Nyun;Chung, Ki-Myung;Cho, Young-Kyung;Kim, Kyung-Nyun
    • The Korean Journal of Physiology and Pharmacology
    • /
    • 제13권6호
    • /
    • pp.455-460
    • /
    • 2009
  • Glutamate-induced cobalt uptake reveals that non-NMDA glutamate receptors (GluRs) are present in rat taste bud cells. Previous studies involving glutamate induced cobalt staining suggest this uptake mainly occurs via kainate type GluRs. It is not known which of the 4 types of taste bud cells express subunits of kainate GluR. Circumvallate and foliate papillae of Sprague-Dawley rats (45~60 days old) were used to search for the mRNAs of subunits of non-NMDA GluRs using RT-PCR with specific primers for GluR1-7, KA1 and KA2. We also performed RT-PCR for GluR5, KA1, $PLC\beta2$, and NCAM/SNAP 25 in isolated single cells from taste buds. Taste epithelium, including circumvallate or foliate papilla, express mRNAs of GluR5 and KA1. However, non-taste tongue epithelium expresses no subunits of non-NMDA GluRs. Isolated single cell RT-PCR reveals that the mRNAs of GluR5 and KA1 are preferentially expressed in Type II and Type III cells over Type I cells.

Expression of Bitter Taste Receptors in Human Nasal Respiratory Epithelium

  • An, Jeong-Mi;Wu, Hee-Won;Kim, Hyun-Jun;Kim, Chang-Hoon;Moon, Seok-Jun
    • International Journal of Oral Biology
    • /
    • 제37권2호
    • /
    • pp.57-62
    • /
    • 2012
  • The nasal cavity encounters various irritants during inhalation such as dust and pathogens. To detect and remove these irritants, it has been postulated that the nasal mucosa epithelium has a specialized sensing system. The oral cavity, on the other hand, is known to have bitter taste receptors (T2Rs) that can detect harmful substances to prevent ingestion. Recently, solitary chemosensory cells expressing T2R subtypes have been found in the respiratory epithelium of rodents. In addition, T2Rs have been identified in the human airway epithelia. However, it is not clear which T2Rs are expressed in the human nasal mucosa epithelium and whether they mediate the removal of foreign materials through increased cilia movement. In our current study, we show that human T2R receptors indeed function also in the nasal mucosa epithelium. Our RT-PCR data indicate that the T2R subtypes (T2R3, T2R4, T2R5, T2R10, T2R13, T2R14, T2R39, T2R43, T2R44, T2R 45, T2R46, T2R47, T2R48, T2R49, and T2R50) are expressed in human nasal mucosa. Furthermore, we have found that T2R receptor activators such as bitter chemicals augments the ciliary beating frequency. Our results thus demonstrate that T2Rs are likely to function in the cleanup of inhaled dust and pathogens by increasing ciliary movement. This would suggest that T2Rs are feasible molecular targets for the development of novel treatment strategies for nasal infection and inflammation.

Characteristics of New Estrogen Biosensor Employing Taste Principles

  • Kwon, Soon-Bae;Lee, Cil-Han;Kim, Kyung-Nyun
    • International Journal of Oral Biology
    • /
    • 제36권2호
    • /
    • pp.103-108
    • /
    • 2011
  • Measurement of estrogen concentration in bio-samples are very important for differential diagnosis of various disease or evaluation of health status. However, it is difficult to collect immediate data of estrogen concentration because they are measured by radioimmunoassay or chromatography which need time- and cost-consuming sample pre-treatment. This study was performed for development of new estrogen biosensor employing taste principles, and for evaluation of cross reactivity between various steroid hormones. Gene sequence of ligand binding domain of ${\alpha}$-human estrogen receptor (amino acid 302-553; hER-LBD) was cloned from human breast cancer cell line. The proteins of hER-LBD were produced by T7-E.coli expression system, and isolated by chromatography. hER-LBD were coated on the gold plated quartz crystal (AT-cut 9MHz), and resonance frequencies were measured by universal frequency counter. Estradiol, progesterone, testosterone, and aldosterone were used for cross reactivity of the hER-LBD. We also monitored influences of pH change in resonance frequency. The resonance frequencies of hER-LBD coated quartz crystal were decreased during increase of estrogen concentration from $15 \;{\mu}g/mL$ to $50\;{\mu}g/mL$. However, similar steroid hormones, progesterone and aldosterone, did not elicit the change in resonance frequency. Testosterone evoke weak change in resonance frequency. The new estrogen biosensor was more sensitive in pH 7.2 than in pH 7.6. These results suggest that hER-LBD coated quartz crystal biosensor is a probable estrogen biosensor.

Involvement of a Gr2a-Expressing Drosophila Pharyngeal Gustatory Receptor Neuron in Regulation of Aversion to High-Salt Foods

  • Kim, Haein;Jeong, Yong Taek;Choi, Min Sung;Choi, Jaekyun;Moon, Seok Jun;Kwon, Jae Young
    • Molecules and Cells
    • /
    • 제40권5호
    • /
    • pp.331-338
    • /
    • 2017
  • Regulation of feeding is essential for animal survival. The pharyngeal sense organs can act as a second checkpoint of food quality, due to their position between external taste organs such as the labellum which initially assess food quality, and the digestive tract. Growing evidence provides support that the pharyngeal sensory neurons regulate feeding, but much is still unknown. We found that a pair of gustatory receptor neurons in the LSO, a Drosophila adult pharyngeal organ which expresses four gustatory receptors, is involved in feeding inhibition in response to high concentrations of sodium ions. RNAi experiments and mutant analysis showed that the gustatory receptor Gr2a is necessary for this process. This feeding preference determined by whether a food source is perceived as appetizing or not is influenced by nutritional conditions, such that when the animal is hungry, the need for energy dominates over how appealing the food source is. Our results provide experimental evidence that factors involved in feeding function in a context-dependent manner.

Molecular Basis of Hexanoic Acid Taste in Drosophila melanogaster

  • Roshani Nhuchhen Pradhan;Bhanu Shrestha;Youngseok Lee
    • Molecules and Cells
    • /
    • 제46권7호
    • /
    • pp.451-460
    • /
    • 2023
  • Animals generally prefer nutrients and avoid toxic and harmful chemicals. Recent behavioral and physiological studies have identified that sweet-sensing gustatory receptor neurons (GRNs) in Drosophila melanogaster mediate appetitive behaviors toward fatty acids. Sweet-sensing GRN activation requires the function of the ionotropic receptors IR25a, IR56d, and IR76b, as well as the gustatory receptor GR64e. However, we reveal that hexanoic acid (HA) is toxic rather than nutritious to D. melanogaster. HA is one of the major components of the fruit Morinda citrifolia (noni). Thus, we analyzed the gustatory responses to one of major noni fatty acids, HA, via electrophysiology and proboscis extension response (PER) assay. Electrophysiological tests show this is reminiscent of arginine-mediated neuronal responses. Here, we determined that a low concentration of HA induced attraction, which was mediated by sweet-sensing GRNs, and a high concentration of HA induced aversion, which was mediated by bitter-sensing GRNs. We also demonstrated that a low concentration of HA elicits attraction mainly mediated by GR64d and IR56d expressed by sweet-sensing GRNs, but a high concentration of HA activates three gustatory receptors (GR32a, GR33a, and GR66a) expressed by bitter-sensing GRNs. The mechanism of sensing HA is biphasic in a dose dependent manner. Furthermore, HA inhibit sugar-mediated activation like other bitter compounds. Taken together, we discovered a binary HA-sensing mechanism that may be evolutionarily meaningful in the foraging niche of insects.

백서 편측 설신경 손상 후 미각 및 설유두의 변화에 대한 연구 (CHANGE OF TASTE PREFERENCE AND TASTE BUD AFTER UNILATERAL LINGUAL NERVE TRANSECTION IN RAT)

  • 김윤태;전승호;염학렬;강진한;안강민;김성민;장정원;박경표;이종호
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
    • /
    • 제31권6호
    • /
    • pp.515-525
    • /
    • 2005
  • Purpose of study: Lingual nerve damage can be caused by surgery or trauma such as physical irriatation, radiation, chemotherapy, infection and viral infection. Once nerve damage occurred, patients sometimes complain taste change and loss of taste along with serious disturbance of tongue. The purpose of this study was to evaluate the effects of unilateral lingual nerve transection on taste as well as on the maintenance of taste buds. Materials & Methods: Male Sprague-Dawley rats weighing 220-250g received unilateral transection of lingual nerve, subjected to the preference test for various taste solutions (0.1M NaCl, 0.1M sucrose, 0.01M QHCl, or 0.01M HCl) with two bottle test paradigm at 2, 4, 6, or 8 weeks after the operation. Tongue was fixed with 8% paraformaldehyde. After fixation, they were observed with scanning electron microscope(JSM-$840A^{(R)}$, JEOL, JAPAN) and counted the number of the dorsal surface of the fungiform papilla for changes of fungiform papilla. And, Fungiform papilla were obtained from coronal sections of the anterior tongue(cryosection). After cryosection, immunostaining with $G{\alpha}gust$(I-20)(Santa Cruz Biotechnology, USA), $PLC{\beta}2$(Q-15)(Santa Cruz Biotechnology, USA), and $T_1R_1$(Alpha Diagnostic International, USA) were done. Immunofluorescence of labeled taste bud cells was examined by confocal microscopy(F92-$300^{(R)}$, Olympus, JAPAN). Results: The preference score for salty and sweet tended to be higher in the operated rats with statistical significance, compared to the sham rats. Fungiform papilla counting were decreased after lingual nerve transaction. In 2 weeks, maximum differences occurred. Gustducin and $T_1R_1$ expressions of taste receptor in 2 and 4 weeks were decreased. $PLC{\beta}2$ were not expressed in both experimental and control group. Conclusion: This study demonstrated that the taste recognition for sweet and salty taste changed by week 2 and 4 after unilateral lingual nerve transection. However, regeneration related taste was occurred in the presence of preserving mesoneurial tissue and the time was 6 weeks. Our results demonstrated that unilateral lingual nerve damage caused morphological and numerical change of fungiform papilla. It should be noted in our study that lingual nerve transection resulted in not only morphological and numerical change but also functional change of fungiform papillae.