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Rsu-1-PINCH1-ILK复合物在肿瘤细胞中受Ras激活调控。

The Rsu-1-PINCH1-ILK complex is regulated by Ras activation in tumor cells.

作者信息

Dougherty Gerard W, Jose Cynthia, Gimona Mario, Cutler Mary Lou

机构信息

Department of Cell Biology and Oncology, Consorzio Mario Negri Sud, Via Nazionale 8a, I-66030 Santa Maria Imbaro, Italy.

出版信息

Eur J Cell Biol. 2008 Sep;87(8-9):721-34. doi: 10.1016/j.ejcb.2008.02.011. Epub 2008 Apr 23.

Abstract

The link between Ras transformation and enhanced cell migration due to altered integrin signaling is well established in tumorigenesis, however there remain gaps in our understanding of its mechanism. The Ras suppressor, Rsu-1, has recently been linked to the IPP (integrin-linked kinase {ILK}, PINCH-1/LIMS1, parvin) focal adhesion complex based on its interaction with the LIM 5 domain of PINCH1. Defining the role of the Rsu1-PINCH1-ILK-parvin complex in tumorigenesis is important because both ILK and PINCH1 are elevated in certain tumors while ectopic expression of Rsu-1 blocks tumorigenesis. Our studies previously identified an alternatively spliced isoform of Rsu-1 in high-grade gliomas. We report here the detection of a truncated (p29) Rsu-1 protein, which correlates with the presence of the alternatively spliced Rsu-1 RNA. This RNA and the respective protein were detected in human tumor cell lines that contain high levels of activated Ras, and inhibitor studies demonstrate that the Mek-ERK pathway regulates expression of this truncated Rsu-1 product. We also show that Rsu-1 co-localizes with ILK at focal contacts and co-immunoprecipitates with the ILK-PINCH1 complex in non-transformed cells, but following Ras transformation the association of Rsu-1 with the PINCH1-ILK complex is greatly reduced. Using a human breast cancer cell line, our in vitro studies demonstrate that the depletion of Rsu-1 full-length protein enhances cell migration coincident with an increase in Rac-GTP while the depletion of the p29 Rsu-1 truncated protein inhibits migration. These findings indicate that Rsu-1 may inhibit cell migration by stabilizing the IPP adhesion complex and that Ras activation perturbs this inhibitory function by modulating both Rsu-1 splicing and association of full-length Rsu-1 with IPP. Hence, our findings demonstrate that Rsu-1 links the Ras pathway with the IPP complex and the perturbations of cell attachment-dependent signaling that occur in the malignant process.

摘要

在肿瘤发生过程中,Ras转化与因整合素信号改变导致的细胞迁移增强之间的联系已得到充分证实,然而我们对其机制的理解仍存在空白。Ras抑制因子Rsu-1最近因其与PINCH1的LIM 5结构域相互作用而与IPP(整合素连接激酶{ILK}、PINCH-1/LIMS1、桩蛋白)黏着斑复合物相关联。明确Rsu1-PINCH1-ILK-桩蛋白复合物在肿瘤发生中的作用很重要,因为在某些肿瘤中ILK和PINCH1均升高,而Rsu-1的异位表达会阻断肿瘤发生。我们之前的研究在高级别胶质瘤中鉴定出一种Rsu-1的可变剪接异构体。我们在此报告检测到一种截短的(p29)Rsu-1蛋白,其与可变剪接的Rsu-1 RNA的存在相关。在含有高水平活化Ras的人肿瘤细胞系中检测到了这种RNA和相应的蛋白,抑制剂研究表明Mek-ERK途径调节这种截短的Rsu-1产物的表达。我们还表明,在未转化的细胞中,Rsu-1与ILK在黏着斑处共定位,并与ILK-PINCH1复合物共免疫沉淀,但在Ras转化后,Rsu-1与PINCH1-ILK复合物的结合大大减少。利用人乳腺癌细胞系,我们的体外研究表明,Rsu-1全长蛋白的缺失会增强细胞迁移,同时Rac-GTP增加,而p29 Rsu-1截短蛋白的缺失则会抑制迁移。这些发现表明,Rsu-1可能通过稳定IPP黏附复合物来抑制细胞迁移,而Ras激活通过调节Rsu-1剪接以及全长Rsu-1与IPP的结合来扰乱这种抑制功能。因此,我们的发现表明,Rsu-1将Ras途径与IPP复合物以及恶性过程中发生的细胞附着依赖性信号传导的扰动联系起来。

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