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[腺苷及其在生理学中的作用]

[Adenosine and its role in physiology].

作者信息

Novotný J

出版信息

Cesk Fysiol. 2015;64(1):35-44.

Abstract

Adenosine is not just a major component of adenine nucleotides and ribonucleic acids, but also has its own signaling functions. ExtraceIlular level of adenosine in an organism is strictly maintained through the balance between its formation, degradation and transport. Adenosine is formed by enzymatic degradation of adenosine triphosphate and eliminated by phosphorylation to adenosine monophosphate or by deamination to inosine. Transport of adenosine across the cell membrane is ensured by equilibrative and concentrative nucleoside transporters. All these processes participate in maintenance of adenosine level under normal conditions, but a balanced equilibrium can be disrupted in some pathophysiological situations. Extracellular adenosine as a signaling molecule binds to adenosine receptors, which may trigger via their cognate trimeric G proteins different signaling pathways. In this way, adenosine regulates energy homeostasis and affects the function of various organs. Targeted pharmacological manipulations of specific adenosine receptor subtypes or enzymes involved in its metabolism can potentially be used for therapeutic purposes.

摘要

腺苷不仅是腺嘌呤核苷酸和核糖核酸的主要成分,还具有自身的信号传导功能。生物体中腺苷的细胞外水平通过其生成、降解和转运之间的平衡得以严格维持。腺苷由三磷酸腺苷的酶促降解形成,并通过磷酸化生成单磷酸腺苷或脱氨生成肌苷而被清除。腺苷通过平衡型和浓缩型核苷转运体跨细胞膜转运。在正常情况下,所有这些过程都参与维持腺苷水平,但在某些病理生理情况下,这种平衡可能会被打破。细胞外腺苷作为一种信号分子与腺苷受体结合,腺苷受体可能通过其同源三聚体G蛋白触发不同的信号通路。通过这种方式,腺苷调节能量稳态并影响各个器官的功能。对特定腺苷受体亚型或参与其代谢的酶进行有针对性的药理操作可能具有潜在的治疗用途。

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