» Articles » PMID: 33454563

Melatonin Protects Against Environmental Stress-induced Fetal Growth Restriction Via Suppressing ROS-mediated GCN2/ATF4/BNIP3-dependent Mitophagy in Placental Trophoblasts

Overview
Journal Redox Biol
Date 2021 Jan 17
PMID 33454563
Citations 25
Authors
Affiliations
Soon will be listed here.
Abstract

Gestational exposure to environmental stress induces fetal growth restriction (FGR), and thereby increasing the risk of infant death and chronic noncommunicable diseases in adults. However, the mechanism by which environmental stress induces FGR remains unclear. Based on case-control study, we found that the reduced level of melatonin (MT), a major secretory product from the pineal gland, was observed in placentae of FGR. This work was to investigate the protective effect of MT on environmental stress-caused FGR and its mechanisms. We used cadmium (Cd) as an environmental stressor to stimulate pregnant mice and thereby establishing a FGR model. The data showed that maternal Cd exposure lowered the P4 concentration in maternal sera, placentae and amniotic fluid, and caused FGR. Correspondingly, the expression of CYP11A1, a critical P4 synthase, was markedly downregulated in Cd-treated placentae. Simultaneously, Cd triggered BNIP3-dependent mitophagy in placental trophoblasts, as determined by the degradation of mitochondrial proteins, including HSP60 and COX IV, and the accumulation of puncta representing co-localization of TOM20 with LC3B or BNIP3 with LC3B. Based on our case-control study, we also found that activated BNIP3-dependent mitophagy and P4 synthesis inhibition occurred in SGA placentae. Most importantly, BNIP3 siRNA reversed Cd-induced P4 synthesis suppression in human placental trophoblasts. It is noteworthy that MT alleviated Cd-caused P4 synthesis suppression and FGR via antagonizing BNIP3-dependent mitophagy in placental trophoblasts. Further results confirmed that MT attenuated Cd-triggered BNIP3-dependent mitophagy via blocking GCN2/ATF4 signaling. Amusingly, Cd triggered oxidative stress and then activating GCN2/ATF4 signaling in placental trophoblasts. As expected, MT obviously suppressed Cd-caused reactive oxygen species (ROS) release. In the present study, we propose a neoteric mechanism by which MT protects against environmental stress-impaired P4 synthesis and fetal growth via suppressing ROS-mediated GCN2/ATF4/BNIP3-dependent mitophagy in placental trophoblasts. As above, MT is a potential therapeutic agent antagonizing environmental stress-induced developmental toxicity.

Citing Articles

Melatonin alleviates ferroptosis triggered by cadmium via regulating ferritinophagy and iron metabolism in spermatogonia.

Jia D, Huang W, Yin Q, Wang H, Wang Z, Zhang M Sci Rep. 2025; 15(1):8910.

PMID: 40087488 DOI: 10.1038/s41598-025-93822-8.


Melatonin attenuates inflammatory bone loss by alleviating mitophagy and lactate production.

Lin Z, Gu Y, Liu Y, Chen Z, Fang S, Wang Z Apoptosis. 2025; .

PMID: 40064756 DOI: 10.1007/s10495-025-02096-y.


Melatonin Attenuates PFOS-Induced Reproductive Toxicity of Pregnant Mice due to Placental Damage Via Antioxidant, Anti-Aging and Anti-Inflammatory Pathways.

Han J, Lu Z, Qi Y, Liu T, Li Y, Han H Birth Defects Res. 2024; 116(12):e2423.

PMID: 39665241 PMC: 11635750. DOI: 10.1002/bdr2.2423.


KPNB1-ATF4 induces BNIP3-dependent mitophagy to drive odontoblastic differentiation in dental pulp stem cells.

Zhang Z, Yang D, Yan X, Qiu Q, Guo J, Qiu L Cell Mol Biol Lett. 2024; 29(1):145.

PMID: 39604846 PMC: 11600598. DOI: 10.1186/s11658-024-00664-9.


Impacts of Maternal Preeclampsia Exposure on Offspring Neuronal Development: Recent Insights and Interventional Approaches.

Zhang H, Lin J, Zhao H Int J Mol Sci. 2024; 25(20).

PMID: 39456854 PMC: 11508320. DOI: 10.3390/ijms252011062.