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环磷酸腺苷(cAMP)与钙在心房纳米域中的相互作用的新证据:肌醇 1,4,5-三磷酸(IP)引发的钙释放刺激腺苷酸环化酶。

Emerging Evidence for cAMP-calcium Cross Talk in Heart Atrial Nanodomains Where IP-Evoked Calcium Release Stimulates Adenylyl Cyclases.

作者信息

Burton Rebecca-Ann B, Terrar Derek A

机构信息

Department of Pharmacology, University of Oxford, Oxford, UK.

出版信息

Contact (Thousand Oaks). 2021 Apr 25;4:25152564211008341. doi: 10.1177/25152564211008341. eCollection 2021 Jan-Dec.

Abstract

Calcium handling is vital to normal physiological function in the heart. Human atrial arrhythmias, eg. atrial fibrillation, are a major morbidity and mortality burden, yet major gaps remain in our understanding of how calcium signaling pathways function and interact. Inositol trisphosphate (IP) is a calcium-mobilizing second messenger and its agonist-induced effects have been observed in many tissue types. In the atria IP receptors (IRRs) residing on junctional sarcoplasmic reticulum augment cellular calcium transients and, when over-stimulated, lead to arrhythmogenesis. Recent studies have demonstrated that the predominant pathway for IP actions in atrial myocytes depends on stimulation of calcium-dependent forms of adenylyl cyclase (AC8 and AC1) by IP-evoked calcium release from the sarcoplasmic reticulum. AC8 shows co-localisation with IPRs and AC1 appears to be nearby. These observations support crosstalk between calcium and cAMP pathways in nanodomains in atria. Similar mechanisms also appear to operate in the pacemaker region of the sinoatrial node. Here we discuss these significant advances in our understanding of atrial physiology and pathology, together with implications for the identification of potential novel targets and modulators for the treatment of atrial arrhythmias.

摘要

钙处理对心脏的正常生理功能至关重要。人类房性心律失常,如心房颤动,是主要的发病和死亡负担,但我们对钙信号通路如何发挥功能以及相互作用的理解仍存在重大差距。肌醇三磷酸(IP)是一种可动员钙的第二信使,其激动剂诱导的效应已在多种组织类型中观察到。在心房中,位于连接肌浆网的IP受体(IPRs)会增强细胞钙瞬变,过度刺激时会导致心律失常的发生。最近的研究表明,心房肌细胞中IP作用的主要途径取决于肌浆网中IP诱发的钙释放对钙依赖性腺苷酸环化酶(AC8和AC1)的刺激。AC8与IPRs共定位,AC1似乎在附近。这些观察结果支持心房纳米域中钙和cAMP通路之间的相互作用。类似的机制似乎也在窦房结的起搏区域发挥作用。在此,我们讨论了在心房生理和病理理解方面的这些重大进展,以及对识别治疗房性心律失常潜在新靶点和调节剂的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1be2/10243587/8b6e0b6c2cbb/10.1177_25152564211008341-fig3.jpg

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