Tian Yu, Zhang Ming-Yu, Li Na, Wang Jun-Jie, Ge Wei, Tan Shao-Jing, Shen Wei, Li Lan
College of Life Sciences, Institute of Reproductive Sciences, Qingdao Agricultural University, Qingdao, 266109, China.
College of Animal Science and Technology, Qingdao Agricultural University, Qingdao, 266109, China.
Toxicol Lett. 2020 May 19;330:80-89. doi: 10.1016/j.toxlet.2020.05.009.
Zearalenone (ZEA), a metabolite of Fusarium, which is commonly found in moldy feed crops, is a well-known exogenous endocrine disruptor and has serious negative effects on animal reproduction. In order to understand the toxic effects of ZEA exposure on porcine granulosa cells (pGCs), which were exposed to 10 μM and 30 μM ZEA for 48 h in vitro, several methods were used for analysis. Flow cytometry and TUNEL analysis showed that the apoptosis of pGCs significantly increased in a dose-dependent manner after ZEA exposure compared with that of the control group. Whole transcriptome RNA-seq analysis was performed to reveal the mRNAs and miRNAs expression changes of pGCs after ZEA exposure and it was found that the expression of apoptosis-related genes was altered after ZEA exposure, and miRNAs were also significantly different among the experimental groups. In particular, ZEA exposure affected the expression of miRNAs associated with apoptosis-related pathways, such as miR-744, miR-1343 and miR-331-3p, as well as focal adhesion pathways related genes, Pak4 and Elk1, which were also involved in the apoptosis-related pathways. Moreover, the regulation networks between apoptosis-related mRNA and miRNAs were confirmed with the results of RT-qPCR and immunofluorescence. In conclusion, our results here demonstrated that ZEA exposure impaired pGCs growth and apoptosis via miRNAs-mediated focal adhesion pathway.
玉米赤霉烯酮(ZEA)是镰刀菌的一种代谢产物,常见于发霉的饲料作物中,是一种著名的外源性内分泌干扰物,对动物繁殖有严重负面影响。为了了解ZEA暴露对猪颗粒细胞(pGCs)的毒性作用,将pGCs在体外分别暴露于10μM和30μM的ZEA中48小时,采用了几种方法进行分析。流式细胞术和TUNEL分析表明,与对照组相比,ZEA暴露后pGCs的凋亡呈剂量依赖性显著增加。进行全转录组RNA测序分析以揭示ZEA暴露后pGCs的mRNA和miRNA表达变化,发现ZEA暴露后凋亡相关基因的表达发生改变,且各实验组之间的miRNA也存在显著差异。特别是,ZEA暴露影响了与凋亡相关途径相关的miRNA的表达,如miR-744、miR-1343和miR-331-3p,以及与粘着斑途径相关的基因Pak4和Elk1,它们也参与了凋亡相关途径。此外,通过RT-qPCR和免疫荧光结果证实了凋亡相关mRNA与miRNA之间的调控网络。总之,我们的研究结果表明,ZEA暴露通过miRNA介导的粘着斑途径损害了pGCs的生长和凋亡。