University of South Alabama, 307 North University Blvd, Mobile, AL, 36688, USA.
Adv Biol (Weinh). 2021 Dec;5(12):e2101064. doi: 10.1002/adbi.202101064. Epub 2021 Oct 28.
It is recently discovered that the cyclic nucleotide, cyclic adenosine monophosphate (cAMP) can be enriched in the extracellular vesicles (EVs) isolated from endothelial cells. In the current perspective a historical context for the discovery of the extracellular cAMP is provided. The story of extracellular cAMP through investigations addressing the molecule's role in the adenosine pathway is followed, which is widespread in mammalian physiology. The adenosine pathway mediates normal physiological conditions such as renin release, phosphate transport, etc., and participates in pathological conditions such as bronchoconstriction of the airways. Furthermore, adenosine mediated biological pathways are regulated via the receptor mediated intracellular cAMP pathway in mammalian cells. It then speculates on the question of whether cAMP enriched EVs could bypass typical receptor mediated cell signaling and directly activate cAMP signaling cascade in target cells. Preliminary studies to suggest cAMP enriched EVs are provided, added to naïve endothelial cells, results in an increase in intracellular cAMP. An alternate mechanism is proposed, apart from the traditional adenosine pathway, that extracellular cAMP may exert its effects and put into perspective how it might consider circulating cAMP moving forward.
最近发现,从内皮细胞分离的细胞外囊泡(EVs)中可以富集环核苷酸,环腺苷酸单磷酸(cAMP)。在当前的视角下,提供了细胞外 cAMP 发现的历史背景。通过研究腺苷途径中该分子的作用,追踪了细胞外 cAMP 的故事,该途径在哺乳动物生理学中广泛存在。腺苷途径介导正常的生理条件,如肾素释放、磷酸盐转运等,并参与病理条件,如气道的支气管收缩。此外,在哺乳动物细胞中,通过受体介导的细胞内 cAMP 途径调节腺苷介导的生物学途径。然后推测 cAMP 富集的 EVs 是否可以绕过典型的受体介导的细胞信号转导,并直接激活靶细胞中的 cAMP 信号级联。提供了初步研究结果表明,添加到幼稚内皮细胞中的 cAMP 富集 EVs 会导致细胞内 cAMP 增加。提出了一种除传统腺苷途径之外的替代机制,即细胞外 cAMP 可能发挥其作用,并从如何考虑循环 cAMP 向前发展的角度来看待它。