Wang Yuxing, Wu Jingwei, Wang Dayong
Key Laboratory of Environmental Medicine Engineering of Ministry of Education, Medical School, Southeast University, Nanjing, China.
Key Laboratory of Environmental Medicine Engineering of Ministry of Education, Medical School, Southeast University, Nanjing, China; Shenzhen Ruipuxun Academy for Stem Cell & Regenerative Medicine, Shenzhen, China.
Environ Pollut. 2025 Feb 1;366:125539. doi: 10.1016/j.envpol.2024.125539. Epub 2024 Dec 15.
The toxicity of 6-PPD quinone (6-PPDQ) has been frequently detected. However, the possible transgenerational effects of 6-PPDQ remain largely unclear. Due to short life cycle and high sensitivity to environmental exposure, Caenorhabditis elegans is useful for study of transgenerational toxicology. In C. elegans, we observed the transgenerational increase in lipid accumulation after parental generation (P0-G) exposure to 6-PPDQ at 0.1-10 μg/L. Accompanied with this, transgenerational increase in expressions of genes governing fatty acid synthesis and monounsaturated fatty acyl-CoAs synthesis and decrease in genes governing fatty acid β-oxidation were induced by 6-PPDQ exposure. Moreover, 6-PPDQ exposure at P0-G caused transgenerational activation of mdt-15 and sbp-1 encoding lipid metabolic sensors. Meanwhile, exposure to 6-PPDQ induced transgenerational activation of set-2 and inhibition in rbr-2, two genes encoding components of COMPASS complex. The 6-PPDQ induced transgenerational lipid accumulation could be strengthened by RNAi of set-2 and suppressed by RNAi of rbr-2. Additionally, 6-PPDQ induced transgenerational neurotoxicity could be increased by RNAi of mdt-15, sbp-1, and rbr-2, and inhibited by RNAi of set-2. Therefore, our results demonstrated the possibility in resulting in transgenerational lipid accumulation by exposure to 6-PPDQ.
6-氨基-6-苯基-2,4-二硫代己内酰胺醌(6-PPDQ)的毒性已被频繁检测到。然而,6-PPDQ可能的跨代效应在很大程度上仍不清楚。由于生命周期短且对环境暴露敏感,秀丽隐杆线虫对于跨代毒理学研究很有用。在秀丽隐杆线虫中,我们观察到亲代(P0-G)暴露于0.1-10μg/L的6-PPDQ后,跨代脂质积累增加。与此同时,6-PPDQ暴露诱导了脂肪酸合成和单不饱和脂肪酰辅酶A合成相关基因表达的跨代增加,以及脂肪酸β-氧化相关基因表达的减少。此外,P0-G期的6-PPDQ暴露导致了编码脂质代谢传感器的mdt-15和sbp-1的跨代激活。同时,暴露于6-PPDQ诱导了编码COMPASS复合物组分的两个基因set-2的跨代激活和rbr-2的抑制。6-PPDQ诱导的跨代脂质积累可通过set-2的RNA干扰得到增强,而被rbr-2的RNA干扰所抑制。此外,6-PPDQ诱导的跨代神经毒性可通过mdt-15、sbp-1和rbr-2的RNA干扰而增加,并被set-2的RNA干扰所抑制。因此,我们的结果证明了暴露于6-PPDQ导致跨代脂质积累的可能性。