Mitochondrial reactive oxygen species regulate mitochondrial biogenesis in porcine embryos

TFAM公司 线粒体生物发生 胚泡 胚胎 线粒体DNA 线粒体 男科 生物 活性氧 线粒体ROS 细胞生物学 胚胎发生 分子生物学 遗传学 基因 医学
作者
Mio Kageyama,Jun Ito,Koumei Shirasuna,Takehito Kuwayama,Hisataka Iwata
出处
期刊:Journal of Reproduction and Development [Japanese Society of Animal Reproduction]
卷期号:67 (2): 141-147 被引量:5
标识
DOI:10.1262/jrd.2020-111
摘要

The number of mitochondria in blastocysts is a potential marker of embryo quality. However, the molecular mechanisms governing the mitochondrial number in embryos are unclear. This study was conducted to investigate the effect of reduced mitochondrial reactive oxygen species (ROS) levels on mitochondrial biogenesis in porcine embryos. Oocytes were collected from gilt ovaries and activated to generate over 4 cell-stage embryos at day 2 after activation. These embryos were cultured in media containing either 0.1 μM MitoTEMPOL (MitoT), 0.5 μM Mitoquinol (MitoQ), or vehicle (ethanol) for 5 days to determine the rate of development to the blastocyst stage. The mitochondrial number in blastocysts was evaluated by real-time polymerase chain reaction (PCR). Five days after activation, the embryos (early morula stage) were subjected to immunostaining to determine the expression levels of NRF2 in the nucleus. In addition, the expression levels of PGC1α and TFAM in the embryos were examined by reverse transcription PCR. One day of incubation with the antioxidants reduced the ROS content in the embryos but did not affect the rate of development to the blastocyst stage. Blastocysts developed in medium containing MitoT had lower mitochondrial DNA copy numbers and ATP content, whereas MitoQ showed similar but insignificantly trends. Treatment of embryos with either MitoT or MitoQ decreased the expression levels of NRF2 in the nucleus and levels of PGC1α and TFAM. These findings indicate that reductions in mitochondrial ROS levels are associated with low mitochondrial biogenesis in embryos.

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