Valgeirsdóttir S, Claesson-Welsh L, Bongcam-Rudloff E, Hellman U, Westermark B, Heldin C H
Ludwig Institute for Cancer Research, Biomedical Center, Uppsala, Sweden.
J Cell Sci. 1998 Jul 30;111 ( Pt 14):1973-80. doi: 10.1242/jcs.111.14.1973.
In this study we demonstrate that stimulation with platelet-derived growth factor (PDGF) leads to a marked reorganization of the vimentin filaments in porcine aortic endothelial (PAE) cells ectopically expressing the PDGF beta-receptor. Within 20 minutes after stimulation, the well-spread fine fibrillar vimentin was reorganized as the filaments aggregated into a dense coil around the nucleus. The solubility of vimentin upon Nonidet-P40-extraction of cells decreased considerably after PDGF stimulation, indicating that PDGF caused a redistribution of vimentin to a less soluble compartment. In addition, an increased tyrosine phosphorylation of vimentin was observed. The redistribution of vimentin was not a direct consequence of its tyrosine phosphorylation, since treatment of cells with an inhibitor for the cytoplasmic tyrosine kinase Src, attenuated phosphorylation but not redistribution of vimentin. These changes in the distribution of vimentin occurred in conjunction with reorganization of actin filaments. In PAE cells expressing a Y740/751F mutant receptor that is unable to bind and activate phosphatidylinositol 3'-kinase (PI3-kinase), the distribution of vimentin was virtually unaffected by PDGF stimulation. Thus, PI3-kinase is important for vimentin reorganization, in addition to its previously demonstrated role in actin reorganization. The small GTPase Rac has previously been shown to be involved downstream of PI3-kinase in the reorganization of actin filaments. In PAE cells overexpressing dominant negative Rac1 (N17Rac1), no change in the fine fibrillar vimentin network was seen after PDGF-BB stimulation, whereas in PAE cells overexpressing constitutively active Rac1 (V12Rac1), there was a dramatic change in vimentin filament organization independent of PDGF stimulation. These data indicate that PDGF causes a reorganization of microfilaments as well as intermediate filaments in its target cells and suggest an important role for Rac downstream of PI3-kinase in the PDGF stimulated reorganization of both actin and vimentin filaments.
在本研究中,我们证明,用血小板衍生生长因子(PDGF)刺激可导致异位表达PDGFβ受体的猪主动脉内皮(PAE)细胞中波形蛋白丝发生显著重组。刺激后20分钟内,分布良好的细纤维状波形蛋白会发生重组,因为这些丝聚集在细胞核周围形成密集的线圈。用非离子去污剂NP-40提取细胞后,PDGF刺激使波形蛋白的溶解度显著降低,这表明PDGF导致波形蛋白重新分布到溶解度较低的区室。此外,还观察到波形蛋白的酪氨酸磷酸化增加。波形蛋白的重新分布不是其酪氨酸磷酸化的直接结果,因为用细胞质酪氨酸激酶Src抑制剂处理细胞可减弱磷酸化,但不会减弱波形蛋白的重新分布。波形蛋白分布的这些变化与肌动蛋白丝的重组同时发生。在表达无法结合并激活磷脂酰肌醇3'-激酶(PI3-激酶)的Y740/751F突变受体的PAE细胞中,波形蛋白的分布实际上不受PDGF刺激的影响。因此,PI3-激酶除了在肌动蛋白重组中发挥先前已证明的作用外,对波形蛋白重组也很重要。小GTP酶Rac先前已被证明在PI3-激酶下游参与肌动蛋白丝的重组。在过表达显性负性Rac1(N17Rac1)的PAE细胞中,PDGF-BB刺激后细纤维状波形蛋白网络未见变化,而在过表达组成型活性Rac1(V12Rac1)的PAE细胞中,波形蛋白丝组织发生了显著变化,且与PDGF刺激无关。这些数据表明,PDGF可导致其靶细胞中的微丝和中间丝发生重组,并提示PI3-激酶下游的Rac在PDGF刺激的肌动蛋白和波形蛋白丝重组中起重要作用。