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DLC1 Interaction with α-Catenin Stabilizes Adherens Junctions and Enhances DLC1 Antioncogenic Activity

机译:DLC1与α-连环蛋白的相互作用可稳定粘附连接并增强DLC1的抗癌活性

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摘要

The DLC1 (for deleted in liver cancer 1) tumor suppressor gene encodes a RhoGAP protein that inactivates Rho GTPases, which are implicated in regulation of the cytoskeleton and adherens junctions (AJs), a cell-cell adhesion protein complex associated with the actin cytoskeleton. Malignant transformation and tumor progression to metastasis are often associated with changes in cytoskeletal organization and cell-cell adhesion. Here we have established in human cells that the AJ-associated protein α-catenin is a new binding partner of DLC1. Their binding was mediated by the N-terminal amino acids 340 to 435 of DLC1 and the N-terminal amino acids 117 to 161 of α-catenin. These proteins colocalized in the cytosol and in the plasma membrane, where together they associated with E-cadherin and β-catenin, constitutive AJ proteins. Binding of DLC1 to α-catenin led to their accumulation at the plasma membrane and required DLC1 GAP activity. Knocking down α-catenin in DLC1-positive cells diminished DLC1 localization at the membrane. The DLC1–α-catenin complex reduced the Rho GTP level at the plasma membrane, increased E-cadherin's mobility, affected actin organization, and stabilized AJs. This process eventually contributed to a robust oncosuppressive effect of DLC1 in metastatic prostate carcinoma cells. Together, these results unravel a new mechanism through which DLC1 exerts its strong oncosuppressive function by positively influencing AJ stability.
机译:DLC1(在肝癌1中已缺失)肿瘤抑制基因编码使Rho GTPases失活的RhoGAP蛋白,其参与细胞骨架和粘附连接(AJs)的调节,AJs是与肌动蛋白细胞骨架相关的细胞间粘附蛋白复合物。恶性转化和肿瘤向转移的进展通常与细胞骨架组织和细胞粘附的变化有关。在这里,我们已经在人细胞中确定了AJ相关蛋白α-catenin是DLC1的新结合伴侣。它们的结合由DLC1的N末端氨基酸340至435和​​α-连环蛋白的N末端氨基酸117至161介导。这些蛋白质共定位在胞质溶胶和质膜中,它们一起与组成型AJ蛋白E-钙粘蛋白和β-连环蛋白结合。 DLC1与α-catenin的结合导致它们在质膜上积累,并需要DLC1 GAP活性。在DLC1阳性细胞中敲除α-catenin可减少DLC1在膜上的定位。 DLC1-α-catenin复合物降低了质膜的Rho GTP水平,增加了E-cadherin的活动性,影响了肌动蛋白的组织,并稳定了AJs。这个过程最终有助于DLC1在转移性前列腺癌细胞中的强大的抑癌作用。总之,这些结果揭示了一种新的机制,通过该机制,DLC1通过积极影响AJ稳定性发挥其强大的抑癌功能。

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