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Adenylate Kinase and AMP Signaling Networks: Metabolic Monitoring Signal Communication and Body Energy Sensing

机译:腺苷酸激酶和AMP信号网络:代谢监测信号通讯和人体能量感应

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摘要

Adenylate kinase and downstream AMP signaling is an integrated metabolic monitoring system which reads the cellular energy state in order to tune and report signals to metabolic sensors. A network of adenylate kinase isoforms (AK1-AK7) are distributed throughout intracellular compartments, interstitial space and body fluids to regulate energetic and metabolic signaling circuits, securing efficient cell energy economy, signal communication and stress response. The dynamics of adenylate kinase-catalyzed phosphotransfer regulates multiple intracellular and extracellular energy-dependent and nucleotide signaling processes, including excitation-contraction coupling, hormone secretion, cell and ciliary motility, nuclear transport, energetics of cell cycle, DNA synthesis and repair, and developmental programming. Metabolomic analyses indicate that cellular, interstitial and blood AMP levels are potential metabolic signals associated with vital functions including body energy sensing, sleep, hibernation and food intake. Either low or excess AMP signaling has been linked to human disease such as diabetes, obesity and hypertrophic cardiomyopathy. Recent studies indicate that derangements in adenylate kinase-mediated energetic signaling due to mutations in AK1, AK2 or AK7 isoforms are associated with hemolytic anemia, reticular dysgenesis and ciliary dyskinesia. Moreover, hormonal, food and antidiabetic drug actions are frequently coupled to alterations of cellular AMP levels and associated signaling. Thus, by monitoring energy state and generating and distributing AMP metabolic signals adenylate kinase represents a unique hub within the cellular homeostatic network.
机译:腺苷酸激酶和下游AMP信号传导是一个集成的代谢监测系统,可读取细胞的能量状态,以调谐信号并将其报告给代谢传感器。腺苷酸激酶同工型(AK1-AK7)网络分布在整个细胞内区室,间隙空间和体液中,以调节能量和代谢信号传导回路,从而确保有效的细胞能量经济,信号传递和应激反应。腺苷酸激酶催化的磷酸转移的动力学调节多个细胞内和细胞外能量依赖性和核苷酸信号传导过程,包括兴奋收缩耦合,激素分泌,细胞和纤毛运动,核转运,细胞周期能量,DNA合成和修复以及发育编程。代谢组学分析表明,细胞,间质和血液中的AMP水平是与重要功能相关的潜在代谢信号,这些功能包括身体能量感应,睡眠,冬眠和食物摄入。 AMP信号过低或过高均与人类疾病(例如糖尿病,肥胖症和肥厚型心肌病)有关。最近的研究表明,由于AK1,AK2或AK7亚型的突变,腺苷酸激酶介导的能量信号转导紊乱与溶血性贫血,网状细胞发育不全和睫状运动障碍有关。此外,激素,食物和抗糖尿病药的作用常常与细胞中AMP水平的改变和相关信号传导相关。因此,通过监测能量状态并产生和分配AMP代谢信号,腺苷酸激酶代表了细胞体内稳态网络中的独特枢纽。

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