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父代肥胖会使两代小鼠出现代谢紊乱,但这种情况在 F2 代不完全显现,并改变了睾丸的转录谱和精子 microRNA 含量。

Paternal obesity initiates metabolic disturbances in two generations of mice with incomplete penetrance to the F2 generation and alters the transcriptional profile of testis and sperm microRNA content.

机构信息

1Level 3 Medical School South, University of Adelaide, Adelaide, SA, Australia 5005.

出版信息

FASEB J. 2013 Oct;27(10):4226-43. doi: 10.1096/fj.12-224048. Epub 2013 Jul 11.

Abstract

Obesity is highly prevalent, and its incidence is increasing. The previous study showing a major effect of paternal obesity on metabolic health of offspring is confounded by comorbidity with diabetes. Therefore, we investigated the effect of diet-induced paternal obesity, in the absence of diabetes, on the metabolic health of two resultant generations and the molecular profiles of the testes and sperm. Founder (F0) male C57BL6 mice were fed either a high-fat diet (HFD) or a control diet (CD); n = 10/diet for a period of 10 wk. Testis expression of mRNA/microRNAs was analyzed by microarray and qPCR and sperm microRNA abundance by qPCR. Two subsequent generations were generated by mating F0 and then F1 mice to CD mice, and their metabolic health was investigated. All mice, other than F0 males, were maintained on a CD. HFD feeding induced paternal obesity with a 21% increase in adiposity, but not overt diabetes, and initiated intergenerational transmission of obesity and insulin resistance in two generations of offspring. This distinct phenotypic constellation is either partially or fully transmitted to both female and male F1 offspring and further transmitted through both parental lineages to the F2 generation, with a heightened effect on female F1 offspring (+67% in adiposity) and their F2 sons (+24% in adiposity). Founder male obesity altered the testes expression of 414 mRNAs by microarray and 11 microRNAs by qPCR, concomitant with alterations in sperm microRNA content and a 25% reduction in global methylation of germ cell DNA. Diet-induced paternal obesity modulates sperm microRNA content and germ cell methylation status, which are potential signals that program offspring health and initiate the transmission of obesity and impaired metabolic health to future generations. This study implicates paternal obesity in the transgenerational amplification of obesity and type 2 diabetes in humans.

摘要

肥胖症的发病率很高,且呈上升趋势。之前的研究表明,父亲肥胖对后代代谢健康有重大影响,但这一研究结果受到与糖尿病共病的影响。因此,我们研究了在不伴糖尿病的情况下,饮食诱导的父亲肥胖对两代后代代谢健康以及睾丸和精子分子谱的影响。创始人(F0)雄性 C57BL6 小鼠分别用高脂肪饮食(HFD)或对照饮食(CD)喂养;n = 10/饮食组,喂养 10 周。通过微阵列和 qPCR 分析睾丸 mRNA/ microRNAs 的表达,并通过 qPCR 分析精子 microRNA 的丰度。通过将 F0 和 F1 雄性小鼠与 CD 小鼠交配产生两代后续世代,并研究其代谢健康状况。除 F0 雄性外,所有小鼠均维持在 CD 饮食。HFD 喂养诱导父亲肥胖,体脂增加 21%,但没有明显的糖尿病,并在两代后代中引发肥胖和胰岛素抵抗的代际传递。这种明显的表型特征部分或完全传递给 F1 代的雌性和雄性后代,并通过双亲系进一步传递到 F2 代,对 F1 代雌性后代的影响更为明显(肥胖增加 67%)及其 F2 代儿子(肥胖增加 24%)。创始人雄性肥胖通过微阵列改变了 414 个 mRNA 的睾丸表达,通过 qPCR 改变了 11 个 microRNAs 的表达,同时改变了精子 microRNA 的含量,并使生殖细胞 DNA 的整体甲基化减少了 25%。饮食诱导的父亲肥胖改变了精子 microRNA 的含量和生殖细胞甲基化状态,这可能是影响后代健康并启动肥胖和代谢健康受损向后代传递的潜在信号。这项研究表明,父亲肥胖在人类肥胖和 2 型糖尿病的跨代放大中起作用。

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