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Protective effects of sirtuins in cardiovascular diseases: from bench to bedside

机译:沉默调节蛋白在心血管疾病中的保护作用:从板凳到床边

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摘要

Sirtuins (Sirt1–Sirt7) comprise a family of nicotinamide adenine dinucleotide (NAD+)-dependent enzymes. While deacetylation reflects their main task, some of them have deacylase, adenosine diphosphate-ribosylase, demalonylase, glutarylase, and desuccinylase properties. Activated upon caloric restriction and exercise, they control critical cellular processes in the nucleus, cytoplasm, and mitochondria to maintain metabolic homeostasis, reduce cellular damage and dampen inflammation—all of which serve to protect against a variety of age-related diseases, including cardiovascular pathologies. This review focuses on the cardiovascular effects of Sirt1, Sirt3, Sirt6, and Sirt7. Most is known about Sirt1. This deacetylase protects from endothelial dysfunction, atherothrombosis, diet-induced obesity, type 2 diabetes, liver steatosis, and myocardial infarction. Sirt3 provides beneficial effects in the context of left ventricular hypertrophy, cardiomyopathy, oxidative stress, metabolic homeostasis, and dyslipidaemia. Sirt6 is implicated in ameliorating dyslipidaemia, cellular senescence, and left ventricular hypertrophy. Sirt7 plays a role in lipid metabolism and cardiomyopathies. Most of these data were derived from experimental findings in genetically modified mice, where NFκB, Pcsk9, low-density lipoprotein-receptor, PPARγ, superoxide dismutase 2, poly[adenosine diphosphate-ribose] polymerase 1, and endothelial nitric oxide synthase were identified among others as crucial molecular targets and/or partners of sirtuins. Of note, there is translational evidence for a role of sirtuins in patients with endothelial dysfunction, type 1 or type 2 diabetes and longevity. Given the availability of specific Sirt1 activators or pan-sirtuin activators that boost levels of the sirtuin cofactor NAD+, we anticipate that this field will move quickly from bench to bedside.
机译:Sirtuins(Sirt1-Sirt7)包含一个依赖烟酰胺腺嘌呤二核苷酸(NAD + )的酶。虽然脱乙酰反应反映了它们的主要任务,但其中一些具有脱酰基酶,腺苷二磷酸核糖酶,脱丙二酰酶,戊二酸酶和脱琥珀酰酶的性质。它们受热量限制和运动后被激活,它们控制着细胞核,细胞质和线粒体中的关键细胞过程,以维持代谢稳态,减少细胞损伤并减轻炎症-所有这些都有助于预防多种与年龄有关的疾病,包括心血管疾病。这篇综述着重于Sirt1,Sirt3,Sirt6和Sirt7的心血管作用。最了解Sirt1。该脱乙酰基酶可防止内皮功能障碍,动脉粥样硬化,饮食引起的肥胖,2型糖尿病,肝脂肪变性和心肌梗塞。 Sirt3在左心室肥大,心肌病,氧化应激,代谢稳态和血脂异常的情况下提供有益的作用。 Sirt6与血脂异常,细胞衰老和左心室肥大有关。 Sirt7在脂质代谢和心肌病中起作用。这些数据大多数来自转基因小鼠的实验结果,其中发现了NFκB,Pcsk9,低密度脂蛋白受体,PPARγ,超氧化物歧化酶2,聚[腺苷二磷酸核糖]聚合酶1和内皮型一氧化氮合酶。其他作为sirtuins的重要分子靶标和/或伴侣。值得注意的是,有翻译证据表明Sirtuins在具有内皮功能障碍,1型或2型糖尿病和长寿的患者中的作用。考虑到特定的Sirt1激活剂或泛瑟土因活化剂可以提高瑟土因辅因子NAD + 的水平,我们预计该领域将从长凳迅速转移到床旁。

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