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Shmt2 表达减少会损害线粒体叶酸的积累和呼吸,并导致小鼠线粒体 DNA 中尿嘧啶的积累。

Reduced Shmt2 Expression Impairs Mitochondrial Folate Accumulation and Respiration, and Leads to Uracil Accumulation in Mouse Mitochondrial DNA.

机构信息

Division of Nutritional Sciences, Cornell University, Ithaca, NY, USA.

Department of Biology, University of Moncton, Moncton, New Brunswick, Canada.

出版信息

J Nutr. 2021 Oct 1;151(10):2882-2893. doi: 10.1093/jn/nxab211.

Abstract

BACKGROUND

Adequate cellular thymidylate (dTMP) pools are essential for preservation of nuclear and mitochondrial genome stability. Previous studies have indicated that disruption in nuclear dTMP synthesis leads to increased uracil misincorporation into DNA, affecting genome stability. To date, the effects of impaired mitochondrial dTMP synthesis in nontransformed tissues have been understudied.

OBJECTIVES

This study aimed to determine the effects of decreased serine hydroxymethyltransferase 2 (Shmt2) expression and dietary folate deficiency on mitochondrial DNA (mtDNA) integrity and mitochondrial function in mouse tissues.

METHODS

Liver mtDNA content, and uracil content in liver mtDNA, were measured in Shmt2+/- and Shmt2+/+ mice weaned onto either a folate-sufficient control diet (2 mg/kg folic acid; C) or a modified diet lacking folic acid (0 mg/kg folic acid) for 7 wk. Shmt2+/- and Shmt2+/+ mouse embryonic fibroblast (MEF) cells were cultured in defined culture medium containing either 0 or 25 nM folate (6S-5-formyl-tetrahydrofolate, folinate) to assess proliferative capacity and mitochondrial function. Chi-square tests, linear mixed models, and 2-factor ANOVA with Tukey post hoc analyses were used to analyze data.

RESULTS

Shmt2 +/- mice exhibited a 48%-67% reduction in SHMT2 protein concentrations in tissues. Interestingly, Shmt2+/- mice consuming the folate-sufficient C diet exhibited a 25% reduction in total folate in liver mitochondria. There was also a >20-fold increase in uracil in liver mtDNA in Shmt2+/- mice consuming the C diet, and dietary folate deficiency also increased uracil content in mouse liver mtDNA from both Shmt2+/+ and Shmt2+/- mice. Furthermore, decreased Shmt2 expression in MEF cells reduced cell proliferation, mitochondrial membrane potential, and oxygen consumption rate.

CONCLUSIONS

This study demonstrates that Shmt2 heterozygosity and dietary folate deficiency impair mitochondrial dTMP synthesis in mice, as evidenced by the increased uracil in mtDNA. In addition, Shmt2 heterozygosity impairs mitochondrial function in MEF cells. These findings suggest that elevated uracil in mtDNA may impair mitochondrial function.

摘要

背景

足够的胸腺嘧啶(dTMP)池对于核和线粒体基因组稳定性的维持至关重要。先前的研究表明,核 dTMP 合成的破坏会导致尿嘧啶错误掺入 DNA,从而影响基因组稳定性。迄今为止,非转化组织中线粒体 dTMP 合成受损的影响尚未得到充分研究。

目的

本研究旨在确定 Shmt2 表达降低和膳食叶酸缺乏对小鼠组织中线粒体 DNA(mtDNA)完整性和线粒体功能的影响。

方法

在断奶后分别给予叶酸充足对照饮食(2mg/kg 叶酸;C)或缺乏叶酸的改良饮食(0mg/kg 叶酸)7 周的 Shmt2+/-和 Shmt2+/+小鼠中,测量肝脏 mtDNA 含量和肝脏 mtDNA 中的尿嘧啶含量。Shmt2+/-和 Shmt2+/+ 小鼠胚胎成纤维细胞(MEF)细胞在含有 0 或 25nM 叶酸(6S-5-甲酰基四氢叶酸,亚叶酸)的定义培养培养基中培养,以评估增殖能力和线粒体功能。使用卡方检验、线性混合模型和 2 因素方差分析(Tukey 事后分析)来分析数据。

结果

Shmt2 +/- 小鼠组织中的 SHMT2 蛋白浓度降低了 48%-67%。有趣的是,摄入叶酸充足的 C 饮食的 Shmt2+/- 小鼠肝脏线粒体中的总叶酸减少了 25%。Shmt2+/- 小鼠摄入 C 饮食时,肝脏 mtDNA 中的尿嘧啶含量增加了 20 多倍,而膳食叶酸缺乏也增加了 Shmt2+/+ 和 Shmt2+/- 小鼠的肝脏 mtDNA 中的尿嘧啶含量。此外,MEF 细胞中 Shmt2 表达的降低会降低细胞增殖、线粒体膜电位和耗氧量。

结论

本研究表明,Shmt2 杂合性和膳食叶酸缺乏会损害小鼠的线粒体 dTMP 合成,这表现在 mtDNA 中的尿嘧啶增加。此外,Shmt2 杂合性会损害 MEF 细胞中的线粒体功能。这些发现表明,mtDNA 中尿嘧啶的增加可能会损害线粒体功能。

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