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CLIC1 recruits PIP5K1A/C to induce cell-matrix adhesions for tumor metastasis

机译:CLIC1募集PIP5K1A / C诱导肿瘤转移的细胞基质粘连

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Membrane protrusion and adhesion to the extracellular matrix, which involves the extension of actin filaments and formation of adhesion complexes, are the fundamental processes for cell migration, tumor invasion, and metastasis. How cancer cells efficiently coordinate these processes remains unclear. Here, we showed that membrane-targeted chloride intracellular channel 1 (CLIC1) spatiotemporally regulates the formation of cell-matrix adhesions and membrane protrusions through the recruitment of PIP5Ks to the plasma membrane. Comparative proteomics identified CLIC1 upregulated in human hepatocellular carcinoma (HCC) and associated with tumor invasiveness, metastasis, and poor prognosis. In response to migration-related stimuli, CLIC1 recruited PIP5K1A and PIP5K1C from the cytoplasm to the leading edge of the plasma membrane, where PIP5Ks generate a phosphatidylinositol 4,5-bisphosphate–rich (PIP_(2)-rich) microdomain to induce the formation of integrin-mediated cell-matrix adhesions and the signaling for cytoskeleon extension. CLIC1 silencing inhibited the attachment of tumor cells to culture plates and the adherence and extravasation in the lung alveoli, resulting in suppressed lung metastasis in mice. This study reveals what we believe is an unrecognized mechanism that spatiotemporally coordinates the formation of both lamellipodium/invadopodia and nascent cell-matrix adhesions for directional migration and tumor invasion/metastasis. The unique traits of upregulation and membrane targeting of CLIC1 in cancer cells make it an excellent therapeutic target for tumor metastasis.
机译:膜突起和粘附于细胞外基质,其涉及肌动蛋白丝和形成粘附复合物的延伸,是用于细胞迁移,肿瘤侵袭和转移的基本过程。如何癌细胞有效地协调这些过程尚不清楚。在这里,我们表明,膜定位的氯离子通道1(CLIC1)时空调节细胞 - 基质粘连及膜的凸部通过PIP5Ks募集至质膜的形成。比较蛋白质组学鉴定CLIC1在人肝细胞癌(HCC)上调并与肿瘤侵袭,转移和预后不良相关联。响应于迁移相关的刺激,CLIC1招募PIP5K1A和PIP5K1C从细胞质到质膜,在那里PIP5Ks生成磷脂酰肌醇4,5-丰富二磷酸-的前缘(PIP_(2)富含)微区,以诱导形成的整合素介导的细胞 - 基质粘附和cytoskeleon扩展的信令。 CLIC1沉默抑制肿瘤细胞对培养板在肺泡的附着和粘附和外渗,从而导致在小鼠中抑制肺转移。这项研究揭示了我们认为什么是时空坐标两个板状伪足/侵袭伪足和定向迁移和肿瘤浸润/转移新生细胞基质粘连形成一个无法识别的机制。上调和膜在癌细胞CLIC1的靶向的独特性状使其成为肿瘤转移的优异的治疗靶标。

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