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维生素 C 缺乏会激活斑马鱼中的嘌呤核苷酸循环。

Vitamin C deficiency activates the purine nucleotide cycle in zebrafish.

机构信息

Linus Pauling Institute, Oregon State University, Corvallis, Oregon 97331, USA.

出版信息

J Biol Chem. 2012 Feb 3;287(6):3833-41. doi: 10.1074/jbc.M111.316018. Epub 2011 Dec 13.

Abstract

Vitamin C (ascorbic acid, AA) is a cofactor for many important enzymatic reactions and a powerful antioxidant. AA provides protection against oxidative stress by acting as a scavenger of reactive oxygen species, either directly or indirectly by recycling of the lipid-soluble antioxidant, α-tocopherol (vitamin E). Only a few species, including humans, guinea pigs, and zebrafish, cannot synthesize AA. Using an untargeted metabolomics approach, we examined the effects of α-tocopherol and AA deficiency on the metabolic profiles of adult zebrafish. We found that AA deficiency, compared with subsequent AA repletion, led to oxidative stress (using malondialdehyde production as an index) and to major increases in the metabolites of the purine nucleotide cycle (PNC): IMP, adenylosuccinate, and AMP. The PNC acts as a temporary purine nucleotide reservoir to keep AMP levels low during times of high ATP utilization or impaired oxidative phosphorylation. The PNC promotes ATP regeneration by converting excess AMP into IMP, thereby driving forward the myokinase reaction (2ADP → AMP + ATP). On the basis of this finding, we investigated the activity of AMP deaminase, the enzyme that irreversibly deaminates AMP to form IMP. We found a 47% increase in AMP deaminase activity in the AA-deficient zebrafish, complementary to the 44-fold increase in IMP concentration. These results suggest that vitamin C is crucial for the maintenance of cellular energy metabolism.

摘要

维生素 C(抗坏血酸,AA)是许多重要酶促反应的辅助因子,也是一种强大的抗氧化剂。AA 通过充当活性氧物种的清除剂,直接或间接地通过回收脂溶性抗氧化剂α-生育酚(维生素 E),提供对氧化应激的保护。只有少数几种物种,包括人类、豚鼠和斑马鱼,不能合成 AA。我们使用非靶向代谢组学方法研究了α-生育酚和 AA 缺乏对成年斑马鱼代谢谱的影响。我们发现,与随后的 AA 补充相比,AA 缺乏导致氧化应激(以丙二醛产生为指标)和嘌呤核苷酸循环(PNC)代谢物的主要增加:IMP、腺嘌呤琥珀酸和 AMP。PNC 作为一种临时嘌呤核苷酸库,在高 ATP 利用或氧化磷酸化受损时保持 AMP 水平低。PNC 通过将过量的 AMP 转化为 IMP 来促进 ATP 的再生,从而推动肌激酶反应(2ADP → AMP + ATP)。基于这一发现,我们研究了 AMP 脱氨酶的活性,该酶不可逆地将 AMP 脱氨形成 IMP。我们发现 AA 缺乏的斑马鱼中 AMP 脱氨酶活性增加了 47%,与 IMP 浓度增加了 44 倍相补充。这些结果表明,维生素 C 对维持细胞能量代谢至关重要。

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