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丝氨酸通过支持谷胱甘肽合成和蛋氨酸循环减轻小鼠的氧化应激。

Serine alleviates oxidative stress via supporting glutathione synthesis and methionine cycle in mice.

机构信息

Key Laboratory of Agro-ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha, China.

National Engineering Laboratory for Pollution Control and Waste Utilization in Livestock and Poultry Production, Changsha, China.

出版信息

Mol Nutr Food Res. 2017 Nov;61(11). doi: 10.1002/mnfr.201700262. Epub 2017 Sep 1.

Abstract

SCOPE

Serine lies at the central node linking biosynthetic flux from glycolysis to glutathione synthesis and one-carbon metabolic cycle which are closely related to antioxidant capacity. The present study was conducted to determine the effects of serine supplementation on oxidative stress and its relative mechanisms.

METHODS AND RESULTS

Diquat treatment was performed to induce oxidative stress in mice and primary hepatocytes. The results showed that hepatic glutathione anti-oxidant systems were impaired and reactive oxygen species and homocysteine were increased in diquat-induced mice and hepatocytes, while such disadvantageous changes were diminished by serine supplementation both in vivo and in vitro. However, when cystathionine β-synthase expression was inhibited by interference RNA in hepatocytes, the effects of serine supplementation on the improvement of glutathione synthesis and the alleviation of oxidative stress were diminished. Moreover, when hepatocytes were treated with cycloleucine, an inhibitor of methionine adenosyltransferase, the effects of serine supplementation on the improvement of methionine cycle and the alleviation of DNA hypomethylation and oxidative stress were also diminished.

CONCLUSION

Our results indicated that serine supplementation alleviated oxidative stress via supporting glutathione synthesis and methionine cycle, mostly by condensing with homocysteine to synthesize cysteine and providing one-carbon units for homocysteine remethylation.

摘要

范围

丝氨酸位于连接糖酵解和谷胱甘肽合成以及一碳代谢循环的生物合成通量的中心节点,这些与抗氧化能力密切相关。本研究旨在确定丝氨酸补充对氧化应激及其相关机制的影响。

方法和结果

用百草枯处理诱导小鼠和原代肝细胞发生氧化应激。结果表明,百草枯诱导的小鼠和肝细胞中肝谷胱甘肽抗氧化系统受损,活性氧和同型半胱氨酸增加,而丝氨酸补充可减轻体内和体外的这种不利变化。然而,当用干扰 RNA 抑制肝细胞中的胱硫醚β-合酶表达时,丝氨酸补充对改善谷胱甘肽合成和减轻氧化应激的作用减弱。此外,当用环亮氨酸(一种蛋氨酸腺苷转移酶抑制剂)处理肝细胞时,丝氨酸补充对改善蛋氨酸循环和减轻 DNA 低甲基化和氧化应激的作用也减弱。

结论

我们的结果表明,丝氨酸补充通过支持谷胱甘肽合成和蛋氨酸循环来减轻氧化应激,主要是通过与同型半胱氨酸缩合合成半胱氨酸,并为同型半胱氨酸再甲基化提供一碳单位。

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