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首页> 外文期刊>Breast cancer research and treatment. >Expression of FGF-2 alters focal adhesion dynamics in migration-restricted.
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Expression of FGF-2 alters focal adhesion dynamics in migration-restricted.

机译:FGF-2的表达改变了迁移受限的粘着动力学。

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Basic fibroblast growth factor (FGF-2) expression takes place during morphogenic differentiation of mammary ducts and is lost in breast cancer. Forced re-expression of FGF-2 in breast cancer cell lines induces a more differentiated phenotype and inhibits motility by unknown mechanisms. Here we demonstrate that MDA-MB-231 cells with encumbered motility due to forced re-expression of FGF-2 have activated focal complexes as determined by immunoprecipitation/western blotting and immunofluorescence staining with antibodies to FAK, p130(Cas), paxillin, vinculin and phosphotyrosine. The activation of the focal adhesion complexes results in loss of stress fibers associated with malignant transformation of mammary epithelial cells and the formation of circumferentially-distributed actin bundles associated with non-transformed mammary epithelial cells. These effects require continuous FGF-2 expression, as the effects of exogenous recombinant FGF-2 are only small and transient. FGF-2 expression results in an increase in integrin alpha 3 expression and decreases in integrin beta 1 and beta 4 expression. These changes, however, induce only a small decrease in adhesion to uncoated and fibronectin-coated tissue culture dishes suggesting that the primary cause of impaired motility is due to intrinsic signaling. These data suggest that FGF-2-inhibits motility in breast cancer cells by stabilization of focal complexes and induction of a more differentiated phenotype with disruption of stress fiber formation and a characteristic cortical actin distribution.
机译:基本的成纤维细胞生长因子(FGF-2)表达发生在乳腺导管的形态分化过程中,在乳腺癌中丢失。在乳腺癌细胞系中强制重新表达FGF-2会诱导分化程度更高的表型,并通过未知的机制抑制运动性。在这里,我们证明了由于强迫重新表达FGF-2而具有活动能力的MDA-MB-231细胞具有活化的焦点复合物,这是通过免疫沉淀/ western印迹和FAK,p130(Cas),paxillin,纽西林抗体的免疫荧光染色确定的和磷酸酪氨酸。粘着斑复合物的活化导致与乳腺上皮细胞恶性转化相关的应力纤维的损失以及与未转化的乳腺上皮细胞相关的周向分布的肌动蛋白束的形成。这些作用需要连续的FGF-2表达,因为外源重组FGF-2的作用很小且短暂。 FGF-2表达导致整联蛋白alpha 3表达增加,而整联蛋白beta 1和beta 4表达减少。然而,这些变化仅引起与未包被的和纤连蛋白包被的组织培养皿的粘附力的小幅下降,表明运动能力受损的主要原因是内在信号传导。这些数据表明,FGF-2可通过稳定局灶复合物并诱导更分化的表型(破坏应力纤维形成和特征性皮质肌动蛋白分布)来抑制乳腺癌细胞的运动。

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