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De novo NAD~+ synthesis enhances mitochondrial function and improves health

机译:从头NAD〜+合成增强线粒体功能并改善健康

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摘要

Nicotinamide adenine dinucleotide (NAD(+)) is a co-substrate for several enzymes, including the sirtuin family of NAD(+)-dependent protein deacylases. Beneficial effects of increased NAD(+) levels and sirtuin activation on mitochondrial homeostasis, organismal metabolism and lifespan have been established across species. Here we show that alpha-amino-beta-carboxymuconate-epsilon-semialdehyde decarboxylase (ACMSD), the enzyme that limits spontaneous cyclization of alpha-amino-beta-carboxymuconate-epsilon-semialdehyde in the de novo NAD(+) synthesis pathway, controls cellular NAD(+) levels via an evolutionarily conserved mechanism in Cuenorhabditis eleguns and mouse. Genetic and pharmacological inhibition of ACMSD boosts de novo NAD(+) synthesis and sirtuin 1 activity, ultimately enhancing mitochondrial function. We also characterize two potent and selective inhibitors of ACMSD. Because expression of ACMSD is largely restricted to kidney and liver, these inhibitors may have therapeutic potential for protection of these tissues from injury. In summary, we identify ACMSD as a key modulator of cellular NAD(+) levels, sirtuin activity and mitochondrial homeostasis in kidney and liver.
机译:烟酰胺腺嘌呤二核苷酸(NAD(+))是几种酶(包括sirtuin家族的NAD(+)依赖性蛋白脱酰基酶)的共同底物。 NAD(+)水平增加和瑟土因活化对线粒体稳态,生物代谢和寿命的有益影响已在物种间建立。在这里,我们显示了α-氨基-β-羧基粘康酸-ε-半醛脱羧酶(ACMSD),该酶限制了从头NAD(+)合成途径中α-氨基-β-羧基粘康酸-ε-半醛的自发环化线虫和小鼠中通过进化保守机制的细胞NAD(+)水平。遗传和药理学抑制ACMSD增强了从头NAD(+)合成和sirtuin 1的活性,最终增强了线粒体功能。我们还表征了ACMSD的两种有效和选择性抑制剂。由于ACMSD的表达主要限于肾脏和肝脏,因此这些抑制剂可能具有保护这些组织免受损伤的治疗潜力。总之,我们确定ACMSD是肾脏和肝脏中细胞NAD(+)水平,sirtuin活性和线粒体稳态的关键调节剂。

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