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封面:代谢组学揭示了甜菜碱在产前二溴氯丙烷暴露导致的大鼠精子发生表观遗传跨代衰竭中的作用。

From the Cover: Metabolomics Reveals a Role of Betaine in Prenatal DBP Exposure-Induced Epigenetic Transgenerational Failure of Spermatogenesis in Rats.

机构信息

State Key Laboratory of Reproductive Medicine, Institute of Toxicology.

Key Laboratory of Modern Toxicology of Ministry of Education, School of Public Health, Nanjing Medical University, Nanjing 211166, China.

出版信息

Toxicol Sci. 2017 Aug 1;158(2):356-366. doi: 10.1093/toxsci/kfx092.

Abstract

There is increasing concern that early-life exposure to endocrine disruptors affects male offspring reproduction. However, whether di-n-butyl phthalate (DBP), a widely used endocrine disruptor, has transgenerational effects and, if so, the exact underlying molecular mechanisms involved remain unknown. In our study, 5 of time-mated pregnant SD rats were exposed to 0 and 500 mg/kg DBP with corn oil as the vehicle via oral gavage from embryonic days (E8-E14). Epigenetic and metabolomic of testis were analyzed after post-natal 60 days. Sperm and testicular cell functions were examined to confirm the transgenerational effects. DBP exposure significantly decreased the sperm counts in F1 through F3 generation. We found distinct metabolic changes in the testis of both F1 and F3 generation offspring, specifically, a significantly increased level of betaine, which is an important methyl donor. In contrast, the expression of betaine homocysteine S-methyltransferase (BHMT), which catalyzes the transfer of methyl moiety from betaine to homocysteine, significantly decreased. There was accompanying global DNA hypomethylation, along with a reduction in follistatin-like 3 (Fstl3) promoter hypomethylation, which is a known modulator of Sertoli cell number and spermatogenesis. In summary, we conclude that metabolomic and epigenetic changes induced by the aberrant expression of BHMT represent a novel mechanism linking in utero DBP exposure to transgenerational spermatogenesis failure.

摘要

越来越多的人担心,生命早期接触内分泌干扰物会影响雄性后代的生殖能力。然而,是否邻苯二甲酸二丁酯(DBP)这种广泛使用的内分泌干扰物具有跨代效应,如果有,其涉及的确切潜在分子机制仍不清楚。在我们的研究中,5 只时间交配的怀孕 SD 大鼠从胚胎第 8 天(E8)到第 14 天(E14),通过口服灌胃用玉米油作为载体暴露于 0 和 500mg/kg 的 DBP 下。在产后 60 天后分析睾丸的表观遗传和代谢组学。检查精子和睾丸细胞功能以确认跨代效应。DBP 暴露显著降低了 F1 至 F3 代的精子数量。我们发现 F1 和 F3 代后代睾丸中的代谢物发生了明显变化,特别是甜菜碱水平显著增加,甜菜碱是一种重要的甲基供体。相比之下,催化甜菜碱向同型半胱氨酸转移甲基的甜菜碱同型半胱氨酸 S-甲基转移酶(BHMT)的表达显著降低。同时伴随着全基因组 DNA 低甲基化,以及卵泡抑素样 3(Fstl3)启动子低甲基化的减少,Fstl3 是已知调节支持细胞数量和精子发生的调节剂。总之,我们得出结论,由 BHMT 异常表达引起的代谢组学和表观遗传变化代表了将宫内 DBP 暴露与跨代精子发生失败联系起来的一种新机制。

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