Cytoskeletal dynamics in rabbit synovial fibroblasts: I. Effects of acrylamide on intermediate filaments and microfilaments.

J Aggeler, K Seely
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引用次数: 31

Abstract

Rabbit synovial fibroblasts respond to changes in cell shape and cytoskeletal architecture by altering specific gene expression. We have tested the ability of acrylamide, a neurotoxin that alters the distribution of intermediate filaments in cultured PtK1 cells, to induce metalloprotease expression in synovial fibroblasts. Cells treated with 2-20 mM acrylamide for 5 to 24 h underwent shape changes similar to cells treated with the tumor promoter phorbol myristate acetate. Intermediate filaments visualized with anti-vimentin antibodies did not collapse into a perinuclear cap in these rounded cells, but were still present in the extended cell processes. Unexpectedly, when actin was visualized in acrylamide-treated cells, extensive dissociation and clumping of microfilaments was observed. Concentrations of acrylamide greater than 10 mM were cytotoxic, but cells recovered completely after 24 h incubation with 5 mM acrylamide. Like other agents that alter cell shape and actin distribution in synovial fibroblasts, acrylamide also induced expression of the secreted metalloprotease collagenase. Although some recent evidence suggests that acrylamide may be able to exert its collagenase-inducing effects extracellularly, perhaps through transmembrane matrix receptors, our observation that this neurotoxin dramatically alters protein synthesis in synovial fibroblasts suggests that direct effects on cell metabolism may also play a role in acute acrylamide intoxication.

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兔滑膜成纤维细胞的细胞骨架动力学:1 .丙烯酰胺对中间丝和微丝的影响。
兔滑膜成纤维细胞通过改变特定基因表达来响应细胞形状和细胞骨架结构的变化。我们已经测试了丙烯酰胺的能力,丙烯酰胺是一种神经毒素,可以改变培养的PtK1细胞中中间纤维的分布,从而诱导滑膜成纤维细胞中金属蛋白酶的表达。2-20 mM丙烯酰胺处理5 - 24小时后,细胞的形状变化与肿瘤启动剂肉豆蔻酸酯处理后的细胞相似。在这些圆形细胞中,抗vimentin抗体显示的中间丝没有塌陷成核周帽,但在扩展的细胞过程中仍然存在。出乎意料的是,当肌动蛋白在丙烯酰胺处理的细胞中可视化时,观察到微丝的广泛解离和结块。浓度大于10 mM的丙烯酰胺具有细胞毒性,但5 mM丙烯酰胺孵育24 h后细胞完全恢复。像其他改变滑膜成纤维细胞形状和肌动蛋白分布的药物一样,丙烯酰胺也诱导分泌的金属蛋白酶胶原酶的表达。虽然最近的一些证据表明丙烯酰胺可能能够在细胞外发挥其胶原酶诱导作用,可能是通过跨膜基质受体,但我们观察到这种神经毒素显著改变滑膜成纤维细胞中的蛋白质合成,这表明对细胞代谢的直接影响也可能在急性丙烯酰胺中毒中发挥作用。
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