MEIS3 is repressed in A549 lung epithelial cells by deoxynivalenol and the repression contributes to the deleterious effect.

Takahito Toyotome, Hiroki Takahashi, K. Kamei
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引用次数: 2

Abstract

Deoxynivalenol (DON) is an important Fusarium toxin of concern for food safety. The inhalation of powder contaminated with DON is possible and may cause lung toxicity. In this study, we analyzed the gene expression profile of A549 cells treated for 24 hr with 0.2 µg/mL DON by microarray analysis. In total, 16 genes and 5 noncoding RNAs were significantly affected by DON treatment. The repression of B3GALT4, MEIS3, AK7, SEMA3A, KCNMB4, and SCARA5 was confirmed by quantitative PCR. We investigated the DON toxicity on A549 cells that exogenously expressed these 6 genes. The result indicated that A549 cells that transiently expressed MEIS3 were tolerant to the deleterious effects of DON. Our data show that DON affected the expression of genes with various functions, and suggest that the repression of MEIS3 plays roles in the deleterious effect of DON in A549 lung epithelial cells.
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MEIS3在A549肺上皮细胞中被脱氧雪腐烯醇抑制,这种抑制有助于产生有害作用。
脱氧雪腐镰刀菌醇(DON)是一种影响食品安全的重要镰刀菌毒素。吸入被DON污染的粉末是可能的,并可能导致肺毒性。在本研究中,我们通过芯片分析0.2µg/mL DON处理A549细胞24小时的基因表达谱。共有16个基因和5个非编码rna受到DON处理的显著影响。通过定量PCR证实了B3GALT4、MEIS3、AK7、SEMA3A、KCNMB4和SCARA5的抑制作用。我们研究了DON对外源表达这6个基因的A549细胞的毒性。结果表明,瞬时表达MEIS3的A549细胞对DON的有害作用具有耐受性。我们的数据显示,DON影响了多种功能基因的表达,提示MEIS3的抑制在DON对A549肺上皮细胞的有害作用中发挥了作用。
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