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Inhibition of AMP deaminase as therapeutic target in cardiovascular pathology

机译:AMP脱氨酶作为心血管疾病治疗靶点的抑制作用

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AMP deaminase (AMPD; EC 3.5.4.6) catalyzes hydrolysis of the amino group from the adenine ring of AMP resulting in production of inosine 5'-monophosphate (IMP) and ammonia. This reaction helps to maintain healthy cellular energetics by removing excess AMP that accumulates in energy depleted cells. Furthermore, AMPD permits the synthesis of guanine nucleotides from the larger adenylate pool. This enzyme competes with cytosolic 5'-nucleotidases (c5NT) for AMP. Adenosine, a product of c5NT is a vasodilator, antagonizes inotropic effects of catecholamines and exerts anti-platelet, anti-inflammatory and immunosuppressive activities. The ratio of AMPD/c5NT defines the amount of adenosine produced in adenine nucleotide catabolic pathway. Inhibition of AMPD could alter this ratio resulting in increased adenosine production. Besides the potential effect on adenosine production, elevation of AMP due to inhibition of AMPD could also lead to activation of AMP regulated protein kinase (AMPK) with myriad of downstream events including enhanced energetic metabolism, mitochondrial biogenesis and cytoprotection. While the benefits of these processes are well appreciated in cells such as skeletal or cardiac myocytes its role in protection of endothelium could be even more important. Therapeutic use of AMPD inhibition has been limited due to difficulties with obtaining compounds with adequate characteristics. However, endothelium seems to be the easiest target as effective inhibition of AMPD could be achieved at much lower concentration than in the other types of cells. New generation of AMPD inhibitors has recently been established and its testing in context of endothelial and organ protection could provide important basic knowledge and potential therapeutic tools. (C) 2015 Institute of Pharmacology, Polish Academy of Sciences. Published by Elsevier Sp. z o.o. All rights reserved.
机译:AMP脱氨酶(AMPD; EC 3.5.4.6)催化AMP腺嘌呤环上的氨基水解,从而产生肌苷5'-单磷酸酯(IMP)和氨。该反应通过去除能量耗尽细胞中积累的过量AMP来帮助维持健康的细胞能量。此外,AMPD可以从更大的腺苷酸库中合成鸟嘌呤核苷酸。该酶与胞质5'-核苷酸酶(c5NT)竞争AMP。腺苷,c5NT的产物,是一种血管扩张药,拮抗儿茶酚胺的正性肌力作用,并发挥抗血小板,抗炎和免疫抑制的作用。 AMPD / c5NT的比率定义了腺嘌呤核苷酸分解代谢途径中产生的腺苷的量。抑制AMPD可以改变该比例,从而导致腺苷产量增加。除了对腺苷产生的潜在影响外,由于抑制AMPD引起的AMP升高还可能导致AMP调节的蛋白激酶(AMPK)活化,并伴随无数下游事件,包括增强的能量代谢,线粒体生物发生和细胞保护作用。尽管这些过程的益处在诸如骨骼或心肌细胞等细胞中得到了很好的理解,但其在保护内皮细胞中的作用可能更为重要。由于难以获得具有足够特性的化合物,因此限制了AMPD抑制物的治疗用途。但是,内皮似乎是最简单的靶标,因为与其他类型的细胞相比,在低得多的浓度下即可有效抑制AMPD。最近已经建立了新一代的AMPD抑制剂,其在内皮和器官保护方面的测试可以提供重要的基础知识和潜在的治疗工具。 (C)2015年,波兰科学院药理研究所。由Elsevier Sp。发行。动物园。版权所有。

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