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BCR/ABL和TEL/PDGFRβ表达对蛋白质组和磷酸化蛋白质组的整体影响:鉴定Rho信号通路为BCR/ABL的一个靶点。

Global effects of BCR/ABL and TEL/PDGFRbeta expression on the proteome and phosphoproteome: identification of the Rho pathway as a target of BCR/ABL.

作者信息

Unwin Richard D, Sternberg David W, Lu Yuning, Pierce Andrew, Gilliland D Gary, Whetton Anthony D

机构信息

Faculty of Medical and Human Sciences, University of Manchester.

出版信息

J Biol Chem. 2005 Feb 25;280(8):6316-26. doi: 10.1074/jbc.M410598200. Epub 2004 Nov 29.

Abstract

Many leukemic oncogenes form as a consequence of gene fusions or mutation that result in the activation or overexpression of a tyrosine kinase. To identify commonalities and differences in the action of two such kinases, breakpoint cluster region (BCR)/ABL and TEL/PDGFRbeta, two-dimensional gel electrophoresis was employed to characterize their effects on the proteome. While both oncogenes affected expression of specific proteins, few common effects were observed. A number of proteins whose expression is altered by BCR/ABL, including gelsolin and stathmin, are related to cytoskeletal function whereas no such changes were seen in TEL/PDGFRbeta-transfected cells. Treatment of cells with the kinase inhibitor STI571 for 4-h reversed changes in expression of some of these cytoskeletal proteins. Correspondingly, BCR/ABL-transfected cells were less responsive to chemotactic and chemokinetic stimuli than non-transfected cells and TEL/PDGFRbeta-transfected Ba/F3 cells. Decreased motile response was reversed by a 16-h treatment with STI571. A phosphoprotein-specific gel stain was used to identify TEL/PDGFRbeta and BCR/ABL-mediated changes in the phosphoproteome. These included changes on Crkl, Ras-GAP-binding protein 1, and for BCR/ABL, cytoskeletal proteins such as tubulin, and Nedd5. Decreased phosphorylation of Rho-GTPase dissociation inhibitor (Rho GDI) was also observed in BCR/ABL-transfected cells. This results in the activation of the Rho pathway, and treatment of cells with Y27632, an inhibitor of Rho kinase, inhibited DNA synthesis in BCR/ABL-transfected Ba/F3 cells but not TEL/PDGFRbeta-expressing cells. Expression of a dominant-negative RhoA inhibited both DNA synthesis and transwell migration, demonstrating the significance of this pathway in BCR/ABL-mediated transformation.

摘要

许多白血病致癌基因是基因融合或突变的结果,这些基因融合或突变导致酪氨酸激酶激活或过表达。为了确定两种此类激酶,即断裂点簇集区(BCR)/ABL和TEL/PDGFRβ作用的共性和差异,采用二维凝胶电泳来表征它们对蛋白质组的影响。虽然这两种致癌基因都影响特定蛋白质的表达,但观察到的共同影响很少。一些其表达因BCR/ABL而改变的蛋白质,包括凝溶胶蛋白和微管蛋白,与细胞骨架功能有关,而在TEL/PDGFRβ转染的细胞中未观察到此类变化。用激酶抑制剂STI571处理细胞4小时可逆转其中一些细胞骨架蛋白表达的变化。相应地,与未转染细胞和TEL/PDGFRβ转染的Ba/F3细胞相比,BCR/ABL转染的细胞对趋化性和化学动力学刺激的反应较弱。用STI571处理16小时可逆转运动反应的降低。使用磷蛋白特异性凝胶染色来鉴定TEL/PDGFRβ和BCR/ABL介导的磷酸化蛋白质组变化。这些变化包括Crkl、Ras-GAP结合蛋白1的变化,对于BCR/ABL,还包括细胞骨架蛋白如微管蛋白和Nedd5的变化。在BCR/ABL转染的细胞中也观察到Rho-GTPase解离抑制剂(Rho GDI)的磷酸化降低。这导致Rho途径的激活,用Rho激酶抑制剂Y27632处理细胞可抑制BCR/ABL转染的Ba/F3细胞中的DNA合成,但不抑制表达TEL/PDGFRβ的细胞中的DNA合成。显性负性RhoA的表达抑制了DNA合成和Transwell迁移,证明了该途径在BCR/ABL介导的转化中的重要性。

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