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Theoretical Considerations on the Topological Organization of Receptor Mosaics

机译:受体镶嵌拓扑结构的理论考虑

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The concept of Receptor Mosaic (RM) is discussed; hence the integrative functions of the assemblage of G-protein coupled receptors physically interacting in the plane of the plasma membrane. The main focus is on a hetero-trimer of G-protein coupled receptors, namely the A2A-D2-CB1 receptor trimer. A bioinformatics analysis was carried out on the amino acid sequence of these receptors to indicate domains possibly involved in the receptor-receptor interactions. Such a bioinformatic analysis was also carried out on the RM formed by mGLU R5, D2 and A2A. The importance of topology, i.e., of the reciprocal localisation of the three interacting receptors in the plan of the membrane for the RM integrative functions is underlined. However, it is also pointed out that this fundamental aspect still waits techniques capable of an appropriate investigation. Finally, it is discussed how RM topology can give hints for a structural definition of the concept of hub receptor. Thus, just as in any network, the receptor operating as a hub is the one that in the molecular network formed by the receptors has the highest number of inputs.
机译:讨论了受体镶嵌(RM)的概念;因此,G蛋白偶联受体的集合的整合功能在质膜的平面中物理相互作用。主要关注于G蛋白偶联受体的异源三聚体,即A2A-D2-CB1受体三聚体。对这些受体的氨基酸序列进行了生物信息学分析,以表明可能参与受体-受体相互作用的结构域。还对mGLU R5,D2和A2A形成的RM进行了这种生物信息学分析。强调了拓扑的重要性,即,三个相互作用的受体在膜平面中对于RM整合功能的相互定位的重要性。但是,还应指出,这一基本方面仍在等待能够进行适当研究的技术。最后,讨论了RM拓扑如何为集线器受体概念的结构定义提供提示。因此,就像在任何网络中一样,充当枢纽的受体是在由受体形成的分子网络中输入数量最多的受体。

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