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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Adenosine receptors interacting proteins (ARIPs): Behind the biology of adenosine signaling.
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Adenosine receptors interacting proteins (ARIPs): Behind the biology of adenosine signaling.

机译:腺苷受体相互作用蛋白(ARIPs):腺苷信号传导生物学的背后。

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摘要

Adenosine is a well known neuromodulator in the central nervous system. As a consequence, adenosine can be beneficial in certain disorders and adenosine receptors will be potential targets for therapy in a variety of diseases. Adenosine receptors are G protein-coupled receptors, and are also expressed in a large variety of cells and tissues. Using these receptors as a paradigm of G protein-coupled receptors, the present review focus on how protein-protein interactions might contribute to neurotransmittereuromodulator regulation, based on the fact that accessory proteins impinge on the receptor/G protein interaction and therefore modulate receptor functioning. Besides affecting receptor signaling, these accessory components also play a key role in receptor trafficking, internalization and desensitization, as it will be reviewed here. In conclusion, the finding of an increasing number of adenosine receptors interacting proteins, and specially the molecular and functional integration of these accessory proteins into receptorsomes, will open new perspectives in the understanding of particular disorders where these receptors have been proved to be involved.
机译:腺苷是中枢神经系统中众所周知的神经调节剂。结果,腺苷在某些疾病中可能是有益的,并且腺苷受体将成为治疗多种疾病的潜在靶标。腺苷受体是G蛋白偶联的受体,并在多种细胞和组织中表达。使用这些受体作为G蛋白偶联受体的范例,本综述基于辅助蛋白影响受体/ G蛋白相互作用从而调节受体的事实,着重于蛋白-蛋白相互作用如何促进神经递质/神经调节剂的调节。运作。除了影响受体信号传导外,这些辅助成分还在受体运输,内在化和脱敏中起关键作用,这将在这里进行综述。总之,发现越来越多的与蛋白质相互作用的腺苷受体,特别是这些辅助蛋白在分子和功能上整合到受体体中的发现,将为了解已证实涉及这些受体的特定疾病开辟新的视野。

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