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Enhanced Expression of Type IV Collagen‐binding Protein (p29) in Fyn‐transfected Murine Fibrosarcoma Cells

机译:Fyn转染的小鼠纤维肉瘤细胞中IV型胶原结合蛋白(p29)的增强表达

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摘要

We investigated the mechanism of the enhancement of metastatic potential induced by transfection of the fyn gene, a member of the src family. We employed two murine fyn cDNA‐transfected clones, ML‐SN1 and ML‐SN2, which were previously established from an ML‐01 low‐metastatic clone of Meth A sarcoma of BALB/c mice and were proven to have higher metastatic ability than ML‐01 and the mock‐transfected clone ML‐MT‐neo (Takayama et al., 1993). Our present investigation revealed that the two transfectants showed higher metastatic ability and higher rates of adherence to type IV collagen than ML‐MT‐neo. However, no difference was found in in vitro or in vivo growth rates, attachment to laminin or endothelial cells or cell motility through a reconstituted basement membrane. Analysis of surface membrane proteins labeled with 125I on SDS‐PAGE showed that a 29 kD band specifically bound to type IV collagen‐coupled beads was more intense in ML‐SN2 than in ML‐MT‐neo. Genistein, a protein tyrosine kinase inhibitor, dramatically reduced protein tyrosine kinase (PTK) activity of ML‐SN2 in a dose‐dependent fashion, corresponding to the reduction of adhesiveness to type IV collagen. The expression of the type IV collagen‐binding protein (p29) of ML‐SN2 was also reduced significantly by genistein treatment. These results suggested that the fyn product in Meth A cells augments the expression of a type IV collagen‐binding protein through elevation of the PTK activity of the membrane fraction and thus facilitates the metastasis of Meth A.
机译:我们研究了转染fyn基因(src家族成员)引起的转移潜力增强的机制。我们使用了两个经过鼠fyn cDNA转染的克隆ML-SN1和ML-SN2,它们先前是从BALB / c小鼠Meth A肉瘤的ML-01低转移克隆中建立的,并被证明比ML具有更高的转移能力-01和模拟转染的克隆ML-MT-neo(Takayama et al。,1993)。我们目前的研究表明,这两种转染子比ML-MT-neo表现出更高的转移能力和对IV型胶原的粘附率。然而,在体外或体内生长速率,层粘连蛋白或内皮细胞的附着或通过重组基底膜的细胞运动性方面均未发现差异。在SDS-PAGE上用 125 I标记的表面膜蛋白的分析表明,与IV型胶原蛋白偶联的磁珠特异性结合的29 kD条带在ML-SN2中比在ML-MT-neo中更强。 Genistein是一种蛋白酪氨酸激酶抑制剂,它以剂量依赖的方式显着降低了ML-SN2的蛋白酪氨酸激酶(PTK)活性,这与IV型胶原的粘附性降低有关。金雀异黄素处理还可以显着降低ML-SN2的IV型胶原结合蛋白(p29)的表达。这些结果表明,甲硫氨酸A细胞中的FYN产物通过提高膜部分的PTK活性来增强IV型胶原结合蛋白的表达,从而促进甲硫氨酸的转移。

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