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一组广泛响应的 III 型味觉细胞亚群有助于检测苦味、甜味和鲜味刺激。

A subset of broadly responsive Type III taste cells contribute to the detection of bitter, sweet and umami stimuli.

机构信息

Department of Biological Sciences, University at Buffalo, Buffalo, New York, United States of America.

Department of Psychology, University at Buffalo, Buffalo, New York, United States of America.

出版信息

PLoS Genet. 2020 Aug 13;16(8):e1008925. doi: 10.1371/journal.pgen.1008925. eCollection 2020 Aug.

Abstract

Taste receptor cells use multiple signaling pathways to detect chemicals in potential food items. These cells are functionally grouped into different types: Type I cells act as support cells and have glial-like properties; Type II cells detect bitter, sweet, and umami taste stimuli; and Type III cells detect sour and salty stimuli. We have identified a new population of taste cells that are broadly tuned to multiple taste stimuli including bitter, sweet, sour, and umami. The goal of this study was to characterize these broadly responsive (BR) taste cells. We used an IP3R3-KO mouse (does not release calcium (Ca2+) from internal stores in Type II cells when stimulated with bitter, sweet, or umami stimuli) to characterize the BR cells without any potentially confounding input from Type II cells. Using live cell Ca2+ imaging in isolated taste cells from the IP3R3-KO mouse, we found that BR cells are a subset of Type III cells that respond to sour stimuli but also use a PLCβ signaling pathway to respond to bitter, sweet, and umami stimuli. Unlike Type II cells, individual BR cells are broadly tuned and respond to multiple stimuli across different taste modalities. Live cell imaging in a PLCβ3-KO mouse confirmed that BR cells use this signaling pathway to respond to bitter, sweet, and umami stimuli. Short term behavioral assays revealed that BR cells make significant contributions to taste driven behaviors and found that loss of either PLCβ3 in BR cells or IP3R3 in Type II cells caused similar behavioral deficits to bitter, sweet, and umami stimuli. Analysis of c-Fos activity in the nucleus of the solitary tract (NTS) also demonstrated that functional Type II and BR cells are required for normal stimulus induced expression.

摘要

味觉受体细胞使用多种信号通路来检测潜在食物中的化学物质。这些细胞在功能上分为不同的类型:I 型细胞作为支持细胞,具有神经胶质样特性;II 型细胞检测苦、甜、鲜味刺激;III 型细胞检测酸、咸刺激。我们已经鉴定出一种新型味觉细胞,它对多种味觉刺激物(包括苦、甜、酸和鲜味)具有广泛的调谐能力。本研究的目的是对这些广泛响应(BR)味觉细胞进行特征描述。我们使用 IP3R3-KO 小鼠(当受到苦、甜或鲜味刺激时,II 型细胞内源性储存的钙离子(Ca2+)不能释放)来描述 BR 细胞,而不受 II 型细胞的任何潜在干扰输入。使用来自 IP3R3-KO 小鼠的分离味觉细胞的活细胞 Ca2+成像,我们发现 BR 细胞是 III 型细胞的一个亚群,对酸刺激有反应,但也使用 PLCβ 信号通路对苦、甜、鲜味刺激有反应。与 II 型细胞不同,单个 BR 细胞具有广泛的调谐能力,并对不同味觉模态的多种刺激物做出反应。在 PLCβ3-KO 小鼠中的活细胞成像证实 BR 细胞使用该信号通路对苦、甜、鲜味刺激物做出反应。短期行为测定表明 BR 细胞对味觉驱动的行为做出了重大贡献,并发现 BR 细胞中 PLCβ3 的缺失或 II 型细胞中 IP3R3 的缺失都导致对苦、甜、鲜味刺激的类似行为缺陷。孤束核(NTS)中 c-Fos 活性的分析也表明,功能性 II 型和 BR 细胞是正常刺激诱导表达所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5203/7425866/5a2fdde4e797/pgen.1008925.g001.jpg

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