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首页> 外文期刊>Oncogene >Resensitization of breast cancer cells to anoikis by Tropomyosin-1: role of Rho kinase-dependent cytoskeleton and adhesion
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Resensitization of breast cancer cells to anoikis by Tropomyosin-1: role of Rho kinase-dependent cytoskeleton and adhesion

机译:radomyosin-1的乳腺癌细胞对乳腺癌细胞的恢复:rho激酶依赖性细胞骨架和粘附的作用

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Two most common properties of malignant cells are the presence of aberrant actin cytoskeleton and resistance to anoikis. Suppression of several key cytoskeletal proteins, including tropomyosin-1 (TM1), during neoplastic transformation is hypothesized to contribute to the altered cytoskeleton and neoplastic phenotype. Using TM1 as a paradigm, we have shown that cytoskeletal proteins induce anoikis in breast cancer (MCF-7 and MDA MB 231) cells. Here, we have tested the hypothesis that TM1-mediated cytoskeletal changes regulate integrin activity and the sensitivity to anoikis. TM1 expression in MDA MB 231 cells promotes the assembly of stress fibers, induces rapid anoikis via caspase-dependent pathways involving the release of cytochrome c. Further, TM1 inhibits binding of MDA MB 231 cells to collagen I, but promotes adhesion to laminin. Inhibition of Rho kinase disrupts TM1-mediated cytoskeletal reorganization and adhesion to the extracellular matrix components, whereas the parental cells attach to collagen I, spread and form extensive actin meshwork in the presence of Rho kinase inhibitor, underscoring the differences in parental and TM1-transduced breast cancer cells. Further, treatment with the cytoskeletal disrupting drugs rescues the cells from TM1-induced anoikis. These new findings demonstrate that the aberrant cytoskeleton contributes to neoplastic transformation by conferring resistance to anoikis. Restoration of stress fiber network through enhanced expression of key cytoskeletal proteins may modulate the activity of focal adhesions and sensitize the neoplastic cells to anoikis.
机译:恶性细胞的两个最常见的性质是异常肌动蛋白细胞骨架和抗性的抗性。在肿瘤转化期间抑制包括肌瘤转化的若干关键细胞骨架蛋白,包括肌瘤转化期间,以有助于改变的细胞骨架和肿瘤表型。使用TM1作为范式,我们已经表明细胞骨架蛋白在乳腺癌(MCF-7和MDA 231)细胞中诱导Anoikis。在这里,我们已经测试了TM1介导的细胞骨骼变化调节整联蛋白活性和对Anoikis的敏感性的假设。 MDA MB 231细胞中的TM1表达促进了应力纤维的组装,通过涉及细胞色素C的释放的Caspase依赖性途径诱导快速Anoikis。此外,TM1抑制MDA MB 231细胞与胶原I的结合,但促进与层粘连蛋白的粘附性。 Rho激酶的抑制破坏了TM1介导的细胞骨架重组和对细胞外基质组分的粘附性,而亲本细胞在rhO激酶抑制剂存在下,扩散和形成广泛的肌动蛋白网状作品,强调父母和TM1转导的差异乳腺癌细胞。此外,用细胞骨架破坏药物治疗从TM1诱导的Anoikis中拯救细胞。这些新发现表明,异常的细胞骨架通过赋予Anoikis的抗性而有助于肿瘤转化。通过增强关键细胞骨骼蛋白的增强表达恢复应激纤维网络可以调节局部粘连的活性并使肿瘤细胞敏化至耳窦。

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