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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Nicotinamide phosphoribosyltransferase regulates cell survival through NAD+ synthesis in cardiac myocytes.
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Nicotinamide phosphoribosyltransferase regulates cell survival through NAD+ synthesis in cardiac myocytes.

机译:烟酰胺磷酸核糖基转移酶通过心肌细胞中NAD +的合成来调节细胞存活。

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RATIONALE: NAD+ acts not only as a cofactor for cellular respiration but also as a substrate for NAD(+)-dependent enzymes, such as Sirt1. The cellular NAD+ synthesis is regulated by both the de novo and the salvage pathways. Nicotinamide phosphoribosyltransferase (Nampt) is a rate-limiting enzyme in the salvage pathway. OBJECTIVE: Here we investigated the role of Nampt in mediating NAD+ synthesis in cardiac myocytes and the function of Nampt in the heart in vivo. METHODS AND RESULTS: Expression of Nampt in the heart was significantly decreased by ischemia, ischemia/reperfusion and pressure overload. Upregulation of Nampt significantly increased NAD+ and ATP concentrations, whereas downregulation of Nampt significantly decreased them. Downregulation of Nampt increased caspase 3 cleavage, cytochrome c release, and TUNEL-positive cells, which were inhibited in the presence of Bcl-xL, but did not increase hairpin 2-positive cells, suggesting that endogenous Nampt negatively regulates apoptosis but not necrosis. Downregulation of Nampt also impaired autophagic flux, suggesting that endogenous Nampt positively regulates autophagy. Cardiac-specific overexpression of Nampt in transgenic mice increased NAD+ content in the heart, prevented downregulation of Nampt, and reduced the size of myocardial infarction and apoptosis in response to prolonged ischemia and ischemia/reperfusion. CONCLUSIONS: Nampt critically regulates NAD+ and ATP contents, thereby playing an essential role in mediating cell survival by inhibiting apoptosis and stimulating autophagic flux in cardiac myocytes. Preventing downregulation of Nampt inhibits myocardial injury in response to myocardial ischemia and reperfusion. These results suggest that Nampt is an essential gatekeeper of energy status and survival in cardiac myocytes.
机译:理由:NAD +不仅充当细胞呼吸的辅助因子,而且还充当NAD(+)依赖性酶(如Sirt1)的底物。细胞的NAD +合成受到新生途径和挽救途径的调节。烟酰胺磷酸核糖基转移酶(Nampt)是补救途径中的限速酶。目的:在这里我们研究了Nampt在介导心肌细胞中NAD +合成中的作用以及Nampt在体内心脏中的功能。方法和结果:缺血,缺血/再灌注和压力超负荷使心脏中Nampt的表达明显降低。 Nampt的上调显着增加了NAD +和ATP的浓度,而Nampt的下调显着降低了它们的浓度。 Nampt的下调增加了caspase 3的裂解,细胞色素C的释放和TUNEL阳性细胞,在Bcl-xL的存在下它们被抑制,但没有增加发夹2阳性细胞,表明内源性Nampt负调控细胞凋亡但不坏死。 Nampt的下调也损害自噬通量,表明内源性Nampt积极调节自噬。转基因小鼠中心脏特异性Nampt的过表达增加了心脏中NAD +的含量,防止了Nampt的下调,并减少了对长时间缺血和局部缺血/再灌注的心肌梗塞和细胞凋亡的大小。结论:Nampt可以严格调节NAD +和ATP含量,从而通过抑制心肌细胞凋亡和刺激自噬通量在介导细胞存活中发挥重要作用。防止Nampt的下调会抑制对心肌缺血和再灌注的心肌损伤。这些结果表明,Nampt是心肌细胞能量状态和生存的重要守门人。

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