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Effects of Ethylene Glycol Monomethyl Ether and Its Metabolite 2-Methoxyacetic Acid on Organogenesis Stage Mouse Limbs In Vitro

机译:乙二醇单甲醚及其代谢产物2-甲氧基乙酸对器官形成阶段小鼠肢体的体外影响

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摘要

Exposure to ethylene glycol monomethyl ether (EGME), a glycol ether compound found in numerous industrial products, or to its active metabolite, 2-methoxyacetic acid (2-MAA), increases the incidence of developmental defects. Using an in vitro limb bud culture system, we tested the hypothesis that the effects of EGME on limb development are mediated by 2-MAA-induced alterations in acetylation programming. Murine gestation day 12 embryonic forelimbs were exposed to 3, 10, or 30 mM EGME or 2-MAA in culture for 6 days to examine effects on limb morphology; limbs were cultured for 1 to 24 hr to monitor effects on the acetylation of histones (H3K9 and H4K12), a nonhistone protein, p53 (p53K379), and markers for cell cycle arrest (p21) and apoptosis (cleaved caspase-3). EGME had little effect on limb morphology and no significant effects on the acetylation of histones or p53 or on biomarkers for cell cycle arrest or apoptosis. In contrast, 2-MAA exposure resulted in a significant concentration-dependent increase in limb abnormalities. 2-MAA induced the hyperacetylation of histones H3K9Ac and H4K12Ac at all concentrations tested (3, 10, and 30 mM). Exposure to 10 or 30 mM 2-MAA significantly increased acetylation of p53 at K379, p21 expression, and caspase-3 cleavage. Thus, 2-MAA, the proximate metabolite of EGME, disrupts limb development in vitro, modifies acetylation programming, and induces biomarkers of cell cycle arrest and apoptosis
机译:暴露于许多工业产品中发现的乙二醇醚化合物乙二醇单甲醚(EGME)或其活性代谢物2-甲氧基乙酸(2-MAA),会增加发育缺陷的发生率。使用体外肢芽培养系统,我们测试了以下假设:EGME对肢体发育的影响是由2-MAA诱导的乙酰化程序改变介导的。小鼠妊娠第12天,将其胚胎前肢暴露于3、10或30 mM EGME或2-MAA培养6天,以检查其对肢体形态的影响。将肢体培养1至24小时,以监测对组蛋白(H3K9和H4K12),非组蛋白p53(p53K379),细胞周期停滞(p21)和细胞凋亡标记物(裂解的caspase-3)的乙酰化作用。 EGME对肢体形态影响很小,对组蛋白或p53的乙酰化作用或对细胞周期停滞或凋亡的生物标志物没有明显影响。相反,2-MAA暴露导致肢体畸形的浓度依赖性显着增加。 2-MAA在所有测试浓度(3、10和30 mM)下诱导组蛋白H3K9Ac和H4K12Ac的过度乙酰化。暴露于10或30 mM 2-MAA会显着增加K379,p21表达和caspase-3裂解时p53的乙酰化程度。因此,2-MAA是EGME的近代代谢物,在体外破坏肢体发育,改变乙酰化程序,并诱导细胞周期停滞和凋亡的生物标志物

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