Horvath A R, Elmore M A, Kellie S
Department of Biochemistry and Cell Biology, Hunterian Institute, Royal College of Surgeons of England, London, UK.
Oncogene. 1990 Sep;5(9):1349-57.
We have investigated the localization and phosphorylation of the fibronectin receptor in chick embryo fibroblasts transformed either by wild-type Prague C strain Rous sarcoma virus, which induces a rounded, less adhesive phenotype with a loss of surface fibronectin and gross cytoskeletal changes, or transformed by rASV2234.3, a variant which induces a flat, adhesive morphology with the retention of surface fibronectin and more normal cytoskeleton. Immunofluorescence showed co-distribution of pp60v-src with integrin and fibronectin fibrils in rASV2234.3-transformed cells. Total levels and surface expression of integrin were unchanged in both transformed cell types compared with untransformed cells. However, whereas integrin band 3 (beta 1 subunit) in Prague C-transformed cells was hyperphosphorylated on tyrosine, this was reduced virtually to normal in rASV2234.3-transformed cells. A similar differential phosphorylation of integrin band 3 could be found in membranes phosphorylated in vitro. rASV2234.3 pp60v-src was less efficient in phosphorylating a synthetic peptide containing the putative integrin tyrosine phosphorylation site, indicating that this variant pp60v-src has an altered substrate specificity compared to Prague C pp60v-src. The correlation between tyrosine-specific phosphorylation of integrin and loss of surface fibronectin suggests that this could play an important role in the induction of the transformed phenotype.
我们研究了纤连蛋白受体在分别由野生型布拉格C株劳氏肉瘤病毒(Rous sarcoma virus)或rASV2234.3转化的鸡胚成纤维细胞中的定位和磷酸化情况。野生型布拉格C株劳氏肉瘤病毒会诱导细胞呈现圆形、黏附性降低的表型,伴随表面纤连蛋白丢失和明显的细胞骨架变化;而rASV2234.3是一种变体,它诱导细胞呈现扁平、黏附的形态,同时保留表面纤连蛋白且细胞骨架更接近正常。免疫荧光显示,在rASV2234.3转化的细胞中,pp60v-src与整合素和纤连蛋白原纤维共分布。与未转化细胞相比,两种转化细胞类型中整合素的总水平和表面表达均未改变。然而,布拉格C株转化细胞中的整合素带3(β1亚基)在酪氨酸上发生了过度磷酸化,而在rASV2234.3转化的细胞中,这种磷酸化几乎恢复到正常水平。在体外磷酸化的膜中也能发现整合素带3的类似差异磷酸化。rASV2234.3的pp60v-src在磷酸化含有假定整合素酪氨酸磷酸化位点的合成肽方面效率较低,这表明与布拉格C株的pp60v-src相比,这种变体的pp60v-src具有改变的底物特异性。整合素酪氨酸特异性磷酸化与表面纤连蛋白丢失之间的相关性表明,这可能在转化表型的诱导中起重要作用。