Multi-omics Analysis of Umbilical Cord Hematopoietic Stem Cells from a Multi-ethnic Cohort of Hawaii Reveals the Transgenerational Effect of Maternal Pre-Pregnancy Obesity

Y. Du, P. A. Benny, R. J. Schlueter, A. Gurary, A. Lum-Jones, C. B. Lassiter, F. M. AlAkwaa, M. Tiirikainen, D. Towner, W. S. Ward, L. X. Garmire
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Abstract

Maternal obesity is a health concern that may predispose newborns to a high risk of medical problems later in life. To understand the transgenerational effect of maternal obesity, we conducted a multi-omics study, using DNA methylation and gene expression in the CD34+/CD38-/Lin- umbilical cord blood hematopoietic stem cells (uHSCs) and metabolomics of the cord blood, all from a multi-ethnic cohort (n=72) from Kapiolani Medical Center for Women and Children in Honolulu, Hawaii (collected between 2016 and 2018). Differential methylation (DM) analysis unveiled a global hypermethylation pattern in the maternal pre-pregnancy obese group (BH adjusted p<0.05), after adjusting for major clinical confounders. Comprehensive functional analysis showed hypermethylation in promoters of genes involved in cell cycle, protein synthesis, immune signaling, and lipid metabolism. Utilizing Shannon entropy on uHSCs methylation, we discerned notably higher quiescence of uHSCs impacted by maternal obesity. Additionally, the integration of multi-omics data-including methylation, gene expression, and metabolomics-provided further evidence of dysfunctions in adipogenesis, erythropoietin production, cell differentiation, and DNA repair, aligning with the findings at the epigenetic level. This study reveals the significant correlation between pre-pregnancy maternal obesity and multi-omics level molecular changes in the uHSCs of offspring, particularly in DNA methylation.
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对夏威夷多种族队列中脐带造血干细胞的多组学分析揭示了母亲孕前肥胖的代际效应
孕产妇肥胖是一个健康问题,它可能使新生儿日后面临高风险的医疗问题。为了了解母体肥胖的跨代效应,我们进行了一项多组学研究,利用脐带血造血干细胞(uHSCs)的DNA甲基化和基因表达以及脐带血的代谢组学,所有这些数据均来自夏威夷檀香山卡皮奥拉尼妇女儿童医疗中心的多种族队列(n=72)(收集时间为2016年至2018年)。差异甲基化(DM)分析揭示了在调整主要临床混杂因素后,孕前肥胖母体组的全球高甲基化模式(BH调整后p<0.05)。综合功能分析显示,涉及细胞周期、蛋白质合成、免疫信号转导和脂质代谢的基因启动子存在高甲基化。通过对上皮细胞甲基化的香农熵(Shannon entropy)分析,我们发现受母体肥胖影响的上皮细胞的静止度明显更高。此外,多组学数据(包括甲基化、基因表达和代谢组学)的整合进一步证明了脂肪生成、促红细胞生成素生成、细胞分化和DNA修复等方面的功能障碍,这与表观遗传学层面的研究结果一致。这项研究揭示了孕前母体肥胖与后代尿造血干细胞中多组学水平分子变化(尤其是DNA甲基化)之间的显著相关性。
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