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Impaired homeostasis and phenotypic abnormalities in Prdx6-/-mice lens epithelial cells by reactive oxygen species: increased expression and activation of TGFbeta.

机译:反应性氧对Prdx6-/-小鼠晶状体上皮细胞体内稳态和表型异常的损害:TGFbeta的表达和激活增加。

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摘要

PRDX6, a member of the peroxiredoxins (PRDXs) family, is a key player in the removal of reactive oxygen species (ROS). Using targeted inactivation of the Prdx6 gene, we present evidence that the corresponding protein offsets the deleterious effects of ROS on lens epithelial cells (LECs) and regulates gene expression by limiting its levels. PRDX6-depleted LECs displayed phenotypic alterations and elevated alpha-smooth muscle actin and betaig-h3 expression (markers for cataractogenesis), indistinguishable from transforming growth factor beta (TGFbeta)-induced changes. Biochemical assays disclosed enhanced levels of ROS, as well as high expression and activation of TGFbeta1 in Prdx6-/- LECs. A CAT assay revealed transcriptional repression of lens epithelium-derived growth factor (LEDGF), HSP27, and alphaB-crystallin promoter activities in these cells. A gel mobility shift assay demonstrated the attenuation of LEDGF binding to heat shock or stress response elements present in these genes. A supply of PRDX6toPrdx6-/- LECs reversed these changes. Based on the above data, we propose a rheostat role for PRDX6 in regulating gene expression by controlling the ROS level to maintain cellular homeostasis.
机译:PRDX6是过氧化物酶(PRDX)家族的成员,是去除活性氧(ROS)的关键因素。使用靶向失活的Prdx6基因,我们提供证据证明相应的蛋白质可以抵消ROS对晶状体上皮细胞(LECs)的有害作用,并通过限制其水平来调节基因表达。 PRDX6耗竭的LECs表现出表型改变和高水平的α平滑肌肌动蛋白和betaig-h3表达(白内障发生的标志物),与转化生长因子β(TGFbeta)诱导的变化没有区别。生化测定揭示了Prdx6-/-LEC中ROS的水平提高以及TGFbeta1的高表达和活化。 CAT分析揭示了这些细胞中晶状体上皮来源的生长因子(LEDGF),HSP27和alphaB-crystallin启动子活性的转录抑制。凝胶迁移率迁移分析证明了LEDGF与这些基因中存在的热休克或应激反应元件的结合减弱。 PRDX6toPrdx6-/-LEC的供应逆转了这些变化。基于以上数据,我们提出了PRDX6的变阻器作用,其通过控制ROS的水平来维持细胞稳态来调节基因表达。

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