Lysosome dynamics during human endometrial stromal cells decidualization: effect of para-nonylphenol

蜕膜化 细胞生物学 溶酶体 间质细胞 TFEB 内分泌学 胞吐 滋养层 内科学 蜕膜 生物 组织蛋白酶D 化学 旁分泌信号 子宫内膜 胎盘 癌症研究 分泌物 生物化学 医学 胎儿 受体 怀孕 遗传学
作者
Sofia Passaponti,Camilla Manzan Martins,Laura Cresti,Roberta Romagnoli,Luana Paulesu,Francesca Ietta,Leonardo Ermini
出处
期刊:American Journal of Physiology-cell Physiology [American Physiological Society]
卷期号:327 (1): C113-C121
标识
DOI:10.1152/ajpcell.00604.2023
摘要

During the process of decidualization, the stromal cells of the endometrium change dynamically to create a favorable environment for embryo implantation. Lysosome activity has often been associated with physiological changes in the endometrium during the preimplantation period and early pregnancy. In this study, the effect of para-nonylphenol (p-NP), an endocrine disruptor, on human immortalized endometrial stromal cells (tHESCs) was investigated. After exposure to p-NP (1 nM and 1 pM), the cells were examined for the decidualization markers connexin-43, insulin like growth factor binding protein 1 (IGFBP1), and prolactin. In addition, the effect of p-NP on lysosome biogenesis and exocytosis was investigated by examining the expression and localization of the transcription factor EB (TFEB) and that of the lysosomal-associated membrane protein 1 (LAMP-1). Finally, we evaluated the effect of p-NP on extracellular matrix (ECM) remodeling using a fibronectin assay. Our results showed that p-NP reduced the expression of prolactin protein, increased the nuclear localization of TFEB, and induced the increase and translocation of the lysosomal protein LAMP-1 to the membrane of tHESCs. The data indicate an impairment of decidualization and suggest an increase in lysosomal biogenesis and exocytosis, which is supported by the higher release of active cathepsin D by tHESCs. Given the importance of cathepsins in the processing and degradation of the ECM during trophoblast invasiveness and migration into the decidua, our results appear to be clear evidence of the negative effects of p-NP on endometrial processes that are fundamental to reproductive success and the establishment of pregnancy.
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