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Regulation of Mouse Lens Maturation and Gene Expression by Krüppel-Like Factor 4

机译:克虏伯样因子4对小鼠晶状体成熟和基因表达的调控

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摘要

Conditional disruption of Klf4 in the surface ectoderm-derived tissues of the eye results in defective cornea, conjunctiva and the lens. This report describes the effects of disruption of Klf4 in the lens in greater detail. Expression of Klf4, first detected in the embryonic day-12 (E12) mouse lens, peaked at E16 and was decreased in later stages. Early embryonic disruption of Klf4 resulted in a smaller lens with cortical vacuolation and nuclear opacity. Microarray comparison of Klf4CN and WT lens transcriptomes revealed fewer changes in the E16.5 (59 increases, 20 decreases of >1.5-fold) than the PN56 Klf4CN lens (239 increases, 182 decreases of >2-fold). Klf4-target genes in the lens were distinct from those previously identified in the cornea, suggesting disparate functions for Klf4 in these functionally related tissues. Transcripts encoding different crystallins were down-regulated in the Klf4CN lens. Shsp/αB-crystallin promoter activity was stimulated upon co-transfection with pCI-Klf4. Mitochondrial density was significantly higher in the Klf4CN lens epithelial cells, consistent with mitochondrial dysfunction being the most significantly affected pathway within the PN56 Klf4CN lens. The Klf4CN lens contained elevated levels of Alox12 and Alox15 transcripts, less reduced glutathione (GSH) and more oxidized glutathione (GSSG) than the WT, suggesting that it is oxidatively stressed. Although the expression of 2087 genes was modulated during WT lens maturation, transcripts encoding crystallins were abundant at E16.5 and remained stable at PN56. Among the 1065 genes whose expression increased during WT lens maturation, there were 104 Klf4-target genes (9.8%) with decreased expression in the PN56 Klf4CN lens. Taken together, these results demonstrate that Klf4 expression is developmentally regulated in the mouse lens, where it controls the expression of genes associated with lens maturation and redox homeostasis.
机译:眼睛表面外胚层来源的组织中Klf4的条件性破坏会导致角膜,结膜和晶状体缺损。该报告更详细地描述了晶状体中Klf4破坏的影响。首先在胚胎第12天(E12)小鼠晶状体中检测到的Klf4表达在E16达到峰值,并在以后的阶段降低。 Klf4的早期胚胎破坏导致较小的晶状体出现皮质空泡化和核不透明。 Klf4CN和WT晶状体转录组的微阵列比较显示,与PN56 Klf4CN晶状体相比,E16.5的变化较小(增加了59,减少了1.5倍,减少了20)(增加239,减少了> 2倍减少了182)。晶状体中的Klf4靶基因与角膜中先前鉴定的基因不同,这表明这些功能相关组织中Klf4的功能不同。编码不同晶状蛋白的转录本在Klf4CN晶状体中被下调。与pCI-Klf4共转染可刺激Shsp /αB-晶状蛋白启动子活性。 Klf4CN晶状体上皮细胞中的线粒体密度显着更高,与线粒体功能障碍是PN56 Klf4CN晶状体中受影响最大的途径一致。与WT相比,Klf4CN晶状体含有更高水平的Alox12和Alox15转录本,减少的谷胱甘肽(GSH)和氧化的谷胱甘肽(GSSG),表明它受到氧化应激。尽管2087基因的表达在WT晶状体成熟过程中受到调节,但编码结晶蛋白的转录本在E16.5处丰富,而在PN56处保持稳定。在野生型晶状体成熟期间表达增加的1065个基因中,有104个Klf4-靶基因(9.8%)在PN56 Klf4CN晶状体中表达降低。综上所述,这些结果表明,Klf4的表达在小鼠晶状体中受到发育调控,它控制着与晶状体成熟和氧化还原稳态相关的基因的表达。

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