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猪卵母细胞的线粒体合成褪黑素,这可改善其体外成熟和胚胎发育。

Mitochondria of Porcine Oocytes Synthesize Melatonin, Which Improves Their In Vitro Maturation and Embryonic Development.

作者信息

Zhu Tianqi, Yan Laiqing, Deng Shoulong, Ma Wenkui, Xia Fan, Wang Likai, Ma Xiao, Li Guangdong, Shen Zixia, Wang Yiwei, Fu Yao, Ji Pengyun, Wang Bingyuan, Zhang Lu, Liu Guoshi

机构信息

State Key Laboratory of Animal Biotech Breeding, Key Laboratory of Animal Genetics, Breeding and Reproduction of the Ministry of Agriculture, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.

National Center of Technology Innovation for Animal Model, National Health Commission of China (NHC) Key Laboratory of Comparative Medicine, Institute of Laboratory Animal Sciences, Chinese Academy of Medical Sciences and Comparative Medicine Center, Peking Union Medical College, Beijing 100021, China.

出版信息

Antioxidants (Basel). 2024 Jul 7;13(7):814. doi: 10.3390/antiox13070814.

Abstract

The in vitro maturation efficiency of porcine oocytes is relatively low, and this limits the production of in vitro porcine embryos. Since melatonin is involved in mammalian reproductive physiology, in this study, we have explored whether endogenously produced melatonin can help in porcine oocyte in vitro maturation. We have found, for the first time in the literature, that mitochondria are the major sites for melatonin biosynthesis in porcine oocytes. This mitochondrially originated melatonin reduces ROS production and increases the activity of the mitochondrial respiratory electron transport chain, mitochondrial biogenesis, mitochondrial membrane potential, and ATP production. Therefore, melatonin improves the quality of oocytes and their in vitro maturation. In contrast, the reduced melatonin level caused by siRNA to knockdown (siAANAT) is associated with the abnormal distribution of mitochondria, decreasing the ATP level of porcine oocytes and inhibiting their in vitro maturation. These abnormalities can be rescued by melatonin supplementation. In addition, we found that siAANAT switches the mitochondrial oxidative phosphorylation to glycolysis, a Warburg effect. This metabolic alteration can also be corrected by melatonin supplementation. All these activities of melatonin appear to be mediated by its membrane receptors since the non-selective melatonin receptor antagonist Luzindole can blunt the effects of melatonin. Taken together, the mitochondria of porcine oocytes can synthesize melatonin and improve the quality of oocyte maturation. These results provide an insight from a novel aspect to study oocyte maturation under in vitro conditions.

摘要

猪卵母细胞的体外成熟效率相对较低,这限制了体外猪胚胎的生产。由于褪黑素参与哺乳动物生殖生理过程,在本研究中,我们探究了内源性产生的褪黑素是否有助于猪卵母细胞的体外成熟。我们在文献中首次发现,线粒体是猪卵母细胞中褪黑素生物合成的主要场所。这种线粒体起源的褪黑素减少了活性氧的产生,并增加了线粒体呼吸电子传递链的活性、线粒体生物发生、线粒体膜电位和ATP的产生。因此,褪黑素提高了卵母细胞的质量及其体外成熟度。相反,通过siRNA敲低(siAANAT)导致的褪黑素水平降低与线粒体的异常分布有关,降低了猪卵母细胞的ATP水平并抑制了它们的体外成熟。补充褪黑素可以挽救这些异常情况。此外,我们发现siAANAT将线粒体氧化磷酸化转变为糖酵解,即瓦伯格效应。补充褪黑素也可以纠正这种代谢改变。褪黑素的所有这些作用似乎都是通过其膜受体介导的,因为非选择性褪黑素受体拮抗剂鲁辛朵可以减弱褪黑素的作用。综上所述,猪卵母细胞的线粒体可以合成褪黑素并提高卵母细胞成熟的质量。这些结果从一个新的角度为研究体外条件下的卵母细胞成熟提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9ff/11273374/5f0c472d14c6/antioxidants-13-00814-g0A1.jpg

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