Prothioconazole induces cell cycle arrest by up-regulation of EIF4EBP1 in extravillous trophoblast cells

被引:0
作者
Guangzhu Dong
Rui Zhang
Qi Hu
Elizabeth M. Martin
Yufeng Qin
Chuncheng Lu
Yankai Xia
Xinru Wang
Guizhen Du
机构
[1] Nanjing Medical University,State Key Laboratory of Reproductive Medicine, Center for Global Health, School of Public Health
[2] Nanjing Medical University,Key Laboratory of Modern Toxicology of Ministry of Education, School of Public Health
[3] Baijiahu Community Health Service Center,Center for Disease Control and Prevention
[4] Beilun District,Epigenetics and Stem Cell Biology Laboratory
[5] National Institute of Environmental Health Sciences,Department of Health and Human Services, Postdoctoral Research Associate Training Program
[6] National Institute of General Medical Sciences,Department of Microbes and Infection, School of Public Health
[7] National Institutes of Health,undefined
[8] Nanjing Medical University,undefined
来源
Archives of Toxicology | 2022年 / 96卷
关键词
Prothioconazole; Extravillous trophoblast cell; Cell cycle; 4E-BP1; Cyclin D1;
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中图分类号
学科分类号
摘要
Prothioconazole (PTC) is a new broad-spectrum triazole antibacterial agent that is being widely used in agriculture. PTC has been linked to a number of reproductive outcomes including embryo implantation disorder; however, the exact mechanism underlying this relationship has yet to be determined. Proper trophoblast proliferation and migration is a prerequisite for successful embryo implantation. To elucidate the underlying molecular perturbations, we detect the effect of PTC on extravillous trophoblast cells proliferation and migration, and investigate its potential mechanisms. Exposure to different concentrations of PTC (0–500 μM) significantly inhibited the cell viability and migration ability (5 μM PTC exposure), and also caused the cell cycle arrest at the lowest dose (1 μM PTC exposure). Transcriptome analysis revealed that PTC exposure disturbed multiple biological processes including cell cycle and apoptosis, consistent with cell phenotype. Specifically, eukaryotic translation initiation factor 4E binding protein 1 (EIF4EBP1, 4E-BP1) was identified as up-regulated in PTC exposure group and knockdown of EIF4EBP1, and attenuated the G1 phase arrest induced by PTC exposure. In summary, our data demonstrated that 4E-BP1 participated in PTC-induced cell cycle arrest in extravillous trophoblast cells by regulating cyclin D1. These findings shed light on the potential adverse effect of PTC exposure on the embryo implantation.
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页码:559 / 570
页数:11
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