生物
卵母细胞
表观遗传学
组蛋白
基因
细胞生物学
体外成熟
H3K4me3
胚泡
基因表达
表观遗传学
遗传学
胚胎发生
胚胎
DNA甲基化
发起人
作者
Juliano Rodrigues Sangalli,Ricardo Perecin Nociti,Maite del Collado,Rafael Vilar Sampaio,Juliano Coelho da Silveira,Felipe Perecin,Lawrence C. Smith,Pablo J. Ross,Flávio Vieira Meirelles
摘要
Abstract Besides their canonical roles as energy sources, short‐chain fatty acids act as metabolic regulators of gene expression through histone posttranslational modifications. Ketone body β‐hydroxybutyrate (BHB) causes a novel epigenetic modification, histone lysine β‐hydroxybutyrylation (Kbhb), which is associated with genes upregulated in starvation‐responsive metabolic pathways. Dairy cows increase BHB in early lactation, and the effects of this increase on cellular epigenomes are unknown. We searched for and identified that Kbhb is present in bovine tissues in vivo and confirmed that this epigenetic mark is responsive to BHB in bovine and human fibroblasts cultured in vitro in a dose‐dependent manner. Maturation of cumulus–oocyte complexes with high concentrations of BHB did not affect the competence to complete meiotic maturation or to develop until the blastocyst stage. BHB treatment strongly induced H3K9bhb in cumulus cells, but faintly in oocytes. RNA‐seq analysis in cumulus cells indicated that BHB treatment altered the expression of 345 genes. The downregulated genes were mainly involved in glycolysis and ribosome assembly pathways, while the upregulated genes were involved in mitochondrial metabolism and oocyte development. The genes and pathways altered by BHB will provide entry points to carry out functional experiments aiming to mitigate metabolic disorders and improve fertility in cattle.
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