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关于家蚕醇受体自组装和 G 蛋白细胞信号放大系统通用性的研究。

Study on Bombykol Receptor Self-Assembly and Universality of G Protein Cellular Signal Amplification System.

机构信息

College of Biotechnology & Food Science , Tianjin University of Commerce , Tianjin 300134 , China.

Tianjin Key Laboratory of Food Biotechnology , Tianjin 300134 , China.

出版信息

ACS Sens. 2019 Jan 25;4(1):257-264. doi: 10.1021/acssensors.8b01446. Epub 2019 Jan 15.

Abstract

The G protein cascade amplification system couples with several receptors to sense/amplify the cellular signal, implying universal application. In order to explore whether GPCRs can trigger G protein signal amplification in tissues/cells from different species, bombykol receptor was isolated and purified from antennas of male Bombyx mori, which subsequently self-assembled on the cell membrane in rat taste buds/rat vomeronasa/catfish tentacles/taste bud tissues of rabbits/pig/cattle in those lacking endogenous bombykol receptor, followed by immobilization between two sheets of nucleopore membranes fixed by sodium alginate-starch gel, forming the sandwich-type sensing membrane, which in turn was immobilized on the glass-carbon electrode. Thus, bombykol receptor sensors were established with different tissues. The response current of bombykol receptor sensor toward bombykol was measured with an electrochemical workstation. Every bombykol receptor sensor could sense bombykol based on enzyme-substrate kinetics. The double reciprocal plot and the activation constant values of bombykol receptor sensors assembled with rat taste buds, rat vomeronasa, catfish tentacles, rabbit taste buds, pig taste buds, and cattle taste buds were calculated. Approximately 2-3 receptors could trigger the G protein cascade amplification system and achieve the maximum signal output. Moreover, the detection lower limit indicated that the bombykol receptor self-assembled on the cell membranes of different tissues that transmitted and amplified the bombykol signal with hypersensitivity. Also, cattle taste bud tissues served as an ideal system for heterogeneous GPCRs self-assembly and signal sensing/amplification. This sensing technique and method had promising potential in studies of biological pest control, sex pheromone detection, and receptor structure and function.

摘要

G 蛋白级联放大系统与多种受体偶联,以感知/放大细胞信号,这意味着其具有普遍适用性。为了探索 GPCR 能否在不同物种的组织/细胞中触发 G 蛋白信号放大,我们从雄性家蚕的触角中分离和纯化了 bombykol 受体,随后该受体在缺乏内源性 bombykol 受体的大鼠味蕾/大鼠犁鼻器/鲶鱼触须/兔味蕾/猪味蕾/牛味蕾的细胞膜上自组装,然后在由海藻酸钠-淀粉凝胶固定的两张核孔膜之间固定,形成三明治式感应膜,进而将其固定在玻璃碳电极上。因此,我们使用不同的组织建立了 bombykol 受体传感器。使用电化学工作站测量 bombykol 受体传感器对 bombykol 的响应电流。每个 bombykol 受体传感器都可以基于酶底物动力学来感知 bombykol。计算了与大鼠味蕾、大鼠犁鼻器、鲶鱼触须、兔味蕾、猪味蕾和牛味蕾组装的 bombykol 受体传感器的双倒数图和激活常数值。大约 2-3 个受体可以触发 G 蛋白级联放大系统,并实现最大信号输出。此外,检测下限表明,bombykol 受体在不同组织的细胞膜上自组装,以超敏度传递和放大 bombykol 信号。此外,牛味蕾组织是异源 GPCR 自组装和信号感知/放大的理想系统。这种传感技术和方法在生物防治、性信息素检测以及受体结构和功能研究方面具有广阔的应用前景。

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