Melatonin Alleviates the Suppressive Effect of Hypoxanthine on Oocyte Nuclear Maturation and Restores Meiosis via the Melatonin Receptor 1 (MT1)-Mediated Pathway.

Front Cell Dev Biol

Beijing Key Laboratory of Animal Genetic Improvement, Key Laboratory of Animal Genetics and Breeding of the Ministry of Agriculture, National Engineering Laboratory for Animal Breeding, College of Animal Science and Technology, China Agricultural University, Beijing, China.

Published: April 2021

AI Article Synopsis

  • Hypoxanthine (HX) inhibits oocyte maturation by raising cAMP levels, while melatonin (MT) counteracts this effect by lowering cAMP, potentially restoring meiosis.
  • In experiments, MT at concentrations of 10 M enhanced the inhibitory effect of HX on mouse oocyte maturation, but at higher doses, it alleviated the nuclear suppression and revived meiosis in young oocytes.
  • The study found that the melatonin receptor MT1 plays a crucial role in this process, as blocking it diminished the recovery of oocyte maturation, indicating that melatonin's protective effects against HX-induced inhibition occur through this receptor.

Article Abstract

It is well known that hypoxanthine (HX) inhibits nuclear maturation of oocytes by elevating the intracellular cAMP level, while melatonin (MT) is a molecule that reduces cAMP production, which may physiologically antagonize this inhibition and restore the meiosis process. We conducted and studies to examine this hypothesis. The results showed that 10 M MT potentiated the inhibitory effect of HX on mouse oocyte meiosis by lowering the rate of germinal vesicle breakdown (GVBD) and the first polar body (PB1). However, 10 M and 10 M MT significantly alleviated the nuclear suppression induced by HX and restored meiosis in 3- and 6-week-old mouse oocytes, respectively. We identified that the rate-limiting melatonin synthetic enzyme AANAT and melatonin membrane receptor MT1 were both expressed in oocytes and cumulus cells at the GV and MII stages. Luzindole, a non-selective melatonin membrane receptor antagonist, blocked the activity of MT on oocyte meiotic recovery ( < 0.05). This observation indicated that the activity of melatonin was mediated by the MT1 receptor. To understand the molecular mechanism further, MT1 knockout (KO) mice were constructed. In this MT1 KO animal model, the PB1 rate was significantly reduced with the excessive expression of cAPM synthases (, , , and ) in the ovaries of these animals. The mRNA levels of and were upregulated while the genes related to progesterone synthesis (), cholesterol biosynthesis (), and feedback (, , and ) were downregulated in the granulosa cells of MT1 KO mice ( < 0.05). The altered gene expression may be attributed to the suppression of oocyte maturation. In summary, melatonin protects against nuclear inhibition caused by HX and restores oocyte meiosis via MT1 by reducing the intracellular concentration of cAMP.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8083900PMC
http://dx.doi.org/10.3389/fcell.2021.648148DOI Listing

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