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饮食诱导甲基供体缺乏大鼠淋巴细胞中的DNA损伤及核苷酸代谢改变。

Diet-induced DNA damage and altered nucleotide metabolism in lymphocytes from methyl-donor-deficient rats.

作者信息

James S J, Yin L

机构信息

Division of Nutritional Sciences, School of Public Health, University of California, Los Angeles, 90024.

出版信息

Carcinogenesis. 1989 Jul;10(7):1209-14. doi: 10.1093/carcin/10.7.1209.

Abstract

Tumor induction with chronic feeding of methyl-donor-deficient diets has been well established; however, the biochemical and molecular mechanisms which predipose to tumorigenesis in this model are still not well understood. The purpose of the present investigation was to assess DNA damage and altered nucleotide metabolism in lymphocytes from Fischer 344 rats fed one of four semi-purified diets: (i) deficient in methionine and choline; (ii) deficient in folic acid; (iii) deficient in methionine, choline and folic acid; or (iv) a supplemented control diet. The accumulation of DNA-strand breaks, as assessed by DNA unwinding in alkali, was increased in lymphocytes from both the methionine/choline-deficient and folate-deficient groups, but was most severe in the group deficient in all three methyl donors. Lymphocyte DNA damage was consistently associated with alterations in folate-dependent thymidylate synthesis, and a decrease in intracellular levels of the DNA-repair-associated pyridine nucleotide, nicotinamide adenine dinucleotide. In the liver, a synergistic lipotropic interaction between folate deficiency and methionine/choline deficiency was observed, confirming the metabolic inter-relationship between these nutrients. Taken together, the results suggest that folate deficiency interacts with methionine/choline deficiency to potentiate symptoms of methyl-donor deficiency and that alterations in folate-dependent thymidylate synthesis are related to DNA damage in lymphocytes. These metabolic aberrations may contribute to immune dysfunction with chronic feeding of methyl-donor-deficient diets.

摘要

长期喂食甲基供体缺乏的饮食可诱发肿瘤,这一点已得到充分证实;然而,该模型中易导致肿瘤发生的生化和分子机制仍未完全明确。本研究的目的是评估喂食四种半纯化饮食之一的Fischer 344大鼠淋巴细胞中的DNA损伤和核苷酸代谢改变:(i)蛋氨酸和胆碱缺乏;(ii)叶酸缺乏;(iii)蛋氨酸、胆碱和叶酸缺乏;或(iv)补充对照饮食。通过碱中DNA解旋评估的DNA链断裂积累在蛋氨酸/胆碱缺乏组和叶酸缺乏组的淋巴细胞中均增加,但在所有三种甲基供体均缺乏的组中最为严重。淋巴细胞DNA损伤始终与叶酸依赖性胸苷酸合成的改变以及与DNA修复相关的吡啶核苷酸烟酰胺腺嘌呤二核苷酸的细胞内水平降低有关。在肝脏中,观察到叶酸缺乏与蛋氨酸/胆碱缺乏之间的协同促脂相互作用,证实了这些营养素之间的代谢相互关系。综上所述,结果表明叶酸缺乏与蛋氨酸/胆碱缺乏相互作用,加剧甲基供体缺乏的症状,并且叶酸依赖性胸苷酸合成的改变与淋巴细胞中的DNA损伤有关。这些代谢异常可能导致长期喂食甲基供体缺乏饮食时的免疫功能障碍。

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