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Abnormally activated one-carbon metabolic pathway is associated with mtDNA hypermethylation and mitochondrial malfunction in the oocytes of polycystic gilt ovaries

机译:一碳代谢途径异常激活与多囊性后备卵巢卵巢卵母细胞中的mtDNA高甲基化和线粒体功能障碍相关

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摘要

Polycystic ovarian syndrome (PCOS) is associated with hyperhomocysteinemia and polycystic ovaries (PCO) usually produce oocytes of poor quality. However, the intracellular mechanism linking hyperhomocysteinemia and oocyte quality remains elusive. In this study, the quality of the oocytes isolated from healthy and polycystic gilt ovaries was evaluated in vitro in association with one-carbon metabolism, mitochondrial DNA (mtDNA) methylation, and mitochondrial function. PCO oocytes demonstrated impaired polar body extrusion, and significantly decreased cleavage and blastocyst rates. The mitochondrial distribution was disrupted in PCO oocytes, together with decreased mitochondrial membrane potential and deformed mitochondrial structure. The mtDNA copy number and the expression of mtDNA-encoded genes were significantly lower in PCO oocytes. Homocysteine concentration in follicular fluid was significantly higher in PCO group, which was associated with significantly up-regulated one-carbon metabolic enzymes betaine homocysteine methyltransferase (BHMT), glycine N-methyltransferase (GNMT) and the DNA methyltransferase DNMT1. Moreover, mtDNA sequences coding for 12S, 16S rRNA and ND4, as well as the D-loop region were significantly hypermethylated in PCO oocytes. These results indicate that an abnormal activation of one-carbon metabolism and hypermethylation of mtDNA may contribute, largely, to the mitochondrial malfunction and decreased quality of PCO-derived oocytes in gilts.
机译:多囊卵巢综合征(PCOS)与高同型半胱氨酸血症相关,多囊卵巢(PCO)通常会产生质量较差的卵母细胞。然而,连接高同型半胱氨酸血症和卵母细胞质量的细胞内机制仍然难以捉摸。在这项研究中,与一碳代谢,线粒体DNA(mtDNA)甲基化和线粒体功能相关的体外评估了从健康和多囊性后备卵巢中分离出的卵母细胞的质量。 PCO卵母细胞显示出极体挤压受损,并显着降低卵裂和囊胚率。 PCO卵母细胞中的线粒体分布被破坏,线粒体膜电位降低,线粒体结构变形。在PCO卵母细胞中,mtDNA的拷贝数和mtDNA编码基因的表达显着降低。 PCO组卵泡液中同型半胱氨酸浓度显着升高,这与一碳代谢酶甜菜碱高半胱氨酸甲基转移酶(BHMT),甘氨酸N-甲基转移酶(GNMT)和DNA甲基转移酶DNMT1显着上调有关。此外,在PCO卵母细胞中,编码12S,16S rRNA和ND4的mtDNA序列以及D环区域显着超甲基化。这些结果表明,一碳代谢的异常激活和mtDNA的甲基化过度可能在很大程度上导致了后备母猪的线粒体功能异常和PCO衍生卵母细胞质量下降。

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