Suppr超能文献

特定灵长类味觉细胞群体中多跨膜蛋白编码基因的表达。

Expression of genes encoding multi-transmembrane proteins in specific primate taste cell populations.

机构信息

Senomyx, Inc, San Diego, California, United States of America.

出版信息

PLoS One. 2009 Dec 4;4(12):e7682. doi: 10.1371/journal.pone.0007682.

Abstract

BACKGROUND

Using fungiform (FG) and circumvallate (CV) taste buds isolated by laser capture microdissection and analyzed using gene arrays, we previously constructed a comprehensive database of gene expression in primates, which revealed over 2,300 taste bud-associated genes. Bioinformatics analyses identified hundreds of genes predicted to encode multi-transmembrane domain proteins with no previous association with taste function. A first step in elucidating the roles these gene products play in gustation is to identify the specific taste cell types in which they are expressed.

METHODOLOGY/PRINCIPAL FINDINGS: Using double label in situ hybridization analyses, we identified seven new genes expressed in specific taste cell types, including sweet, bitter, and umami cells (TRPM5-positive), sour cells (PKD2L1-positive), as well as other taste cell populations. Transmembrane protein 44 (TMEM44), a protein with seven predicted transmembrane domains with no homology to GPCRs, is expressed in a TRPM5-negative and PKD2L1-negative population that is enriched in the bottom portion of taste buds and may represent developmentally immature taste cells. Calcium homeostasis modulator 1 (CALHM1), a component of a novel calcium channel, along with family members CALHM2 and CALHM3; multiple C2 domains; transmembrane 1 (MCTP1), a calcium-binding transmembrane protein; and anoctamin 7 (ANO7), a member of the recently identified calcium-gated chloride channel family, are all expressed in TRPM5 cells. These proteins may modulate and effect calcium signalling stemming from sweet, bitter, and umami receptor activation. Synaptic vesicle glycoprotein 2B (SV2B), a regulator of synaptic vesicle exocytosis, is expressed in PKD2L1 cells, suggesting that this taste cell population transmits tastant information to gustatory afferent nerve fibers via exocytic neurotransmitter release.

CONCLUSIONS/SIGNIFICANCE: Identification of genes encoding multi-transmembrane domain proteins expressed in primate taste buds provides new insights into the processes of taste cell development, signal transduction, and information coding. Discrete taste cell populations exhibit highly specific gene expression patterns, supporting a model whereby each mature taste receptor cell is responsible for sensing, transmitting, and coding a specific taste quality.

摘要

背景

我们先前使用激光捕获显微切割分离的菌状(FG)和轮廓(CV)味蕾,并通过基因芯片进行分析,构建了灵长类动物味觉相关基因表达的综合数据库,该数据库揭示了超过 2300 个与味蕾相关的基因。生物信息学分析鉴定了数百个预测编码具有先前与味觉功能无关的多跨膜域蛋白的基因。阐明这些基因产物在味觉中的作用的第一步是确定它们表达的特定味蕾细胞类型。

方法/主要发现:我们使用双标记原位杂交分析鉴定了在特定味蕾细胞类型中表达的七个新基因,包括甜味、苦味和鲜味细胞(TRPM5 阳性)、酸味细胞(PKD2L1 阳性)以及其他味蕾细胞群体。跨膜蛋白 44(TMEM44)是一种具有七个预测跨膜域且与 GPCR 无同源性的蛋白,在 TRPM5 阴性和 PKD2L1 阴性群体中表达,该群体在味蕾的底部富集,可能代表发育不成熟的味蕾细胞。钙稳态调节剂 1(CALHM1)是一种新型钙通道的组成部分,以及家族成员 CALHM2 和 CALHM3;多个 C2 结构域;跨膜 1(MCTP1),一种钙结合跨膜蛋白;和 anoctamin 7(ANO7),是最近鉴定的钙门控氯离子通道家族的成员,均在 TRPM5 细胞中表达。这些蛋白质可能调节和影响源自甜味、苦味和鲜味受体激活的钙信号。突触小泡糖蛋白 2B(SV2B)是突触小泡胞吐的调节剂,在 PKD2L1 细胞中表达,表明该味蕾细胞群体通过兴奋性递质释放将味觉信息传递给味觉传入神经纤维。

结论/意义:鉴定在灵长类动物味蕾中表达的编码多跨膜域蛋白的基因提供了对味蕾细胞发育、信号转导和信息编码过程的新见解。离散的味蕾细胞群体表现出高度特异的基因表达模式,支持每个成熟味觉受体细胞负责感知、传递和编码特定味觉质量的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c47f/2780358/912ed09ebbd2/pone.0007682.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验