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Altered beta-actin gene expression in phorbol myristate acetate-treated chondrocytes and fibroblasts.

机译:β-肌动蛋白基因表达在佛波醇肉豆蔻酸酯乙酸处理的软骨细胞和成纤维细胞中。

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摘要

Phorbol-12-myristate-13-acetate (PMA), a potent tumor promoter, was shown to have opposite effects on the cellular morphology and steady-state levels of beta-actin mRNA in embryonic chicken muscle fibroblasts and sternal chondrocytes. When fibroblasts were treated with PMA, they formed foci of densely packed cells, ceased to adhere to culture plates, and had significantly reduced levels of beta-actin mRNA and protein. Conversely, when treated with PMA, floating chondrocytes attached to culture dishes, spread out, and began to accumulate high levels of beta-actin mRNA and proteins. In the sternal chondrocytes the stimulation of the beta-actin mRNA production was accompanied by increased steady-state levels of fibronectin mRNAs and protein. These alterations were concomitant with a fivefold reduction in type II collagen mRNA and a cessation in its protein production. After fibronectin and actin mRNAs and proteins reached their maximal levels, type I collagen mRNA and protein synthesis were turned on. Removal of PMA resulted in reduced beta-actin mRNA levels in chondrocytes and in a further alteration in the cell morphology. These observed correlations between changes in cell adhesion and morphology and beta-actin expression suggest that the effect of PMA on cell shape and adhesion may result in changes in the microfilament organization of the cytoskeleton which ultimately lead to changes in the extracellular matrix produced by the cells.
机译:Phorbol-12-肉豆蔻酸酯-13-乙酸酯(PMA)是一种有效的肿瘤启动子,对胚胎鸡成肌纤维细胞和胸骨软骨细胞中β-肌动蛋白mRNA的细胞形态和稳态水平有相反的影响。当用PMA处理成纤维细胞时,它们会形成紧密堆积的细胞灶,不再粘附在培养板上,并且β-肌动蛋白的mRNA和蛋白质水平显着降低。相反,当用PMA处理时,附着在培养皿上的漂浮的软骨细胞会散布开来,并开始积累高水平的β-肌动蛋白mRNA和蛋白质。在胸骨软骨细胞中,β-肌动蛋白mRNA产生的刺激伴随着纤连蛋白mRNA和蛋白稳态水平的提高。这些改变伴随着II型胶原mRNA的五倍减少和其蛋白质生产的停止。在纤连蛋白和肌动蛋白的mRNA和蛋白质达到最大水平后,I型胶原mRNA和蛋白质合成被打开。去除PMA导致软骨细胞中β-肌动蛋白mRNA水平降低,并导致细胞形态进一步改变。这些在细胞粘附和形态变化以及β-肌动蛋白表达之间观察到的相关性表明,PMA对细胞形状和粘附的影响可能导致细胞骨架微丝组织的变化,最终导致细胞产生的细胞外基质发生变化。 。

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