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首页> 外文期刊>Theranostics >CXCR4 mediates matrix stiffness-induced downregulation of UBTD1 driving hepatocellular carcinoma progression via YAP signaling pathway
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CXCR4 mediates matrix stiffness-induced downregulation of UBTD1 driving hepatocellular carcinoma progression via YAP signaling pathway

机译:CXCR4介导的基质刚度诱导UBTD1的下调通过YAP信号通路驱动肝细胞癌进展

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Rational: Increasing evidence indicates that the physical environment is a critical mediator of tumor behavior. Hepatocellular carcinoma (HCC) develops in an altered biomechanical environment, and increased matrix stiffness is a strong predictor of HCC development. C-X-C chemokine receptor type 4 (CXCR4) is known to trigger HCC progression. However, CXCR4 as a mediator of mechanical cues in HCC is not well characterized. Methods: qRT-PCR, Western blot and IHC were used to detect the CXCR4 expression in different matrix stiffness gels. MTT was used to measure the cell proliferation of HCC cells. Immunoblotting was used for detection of epithelial-to-mesenchymal transition (EMT) and stemness on the matrix stiffness. Immunofluorescence (IF) was used to detect the nuclear location in HCC cells. IP was used to show the interaction between YAP, UbcH5c and β-TrCP. Results: We identified CXCR4 as a critical intracellular signal transducer that relays matrix stiffness signals to control mechano-sensitive cellular activities through ubiquitin domain-containing protein 1 (UBTD1)-mediated YAP signaling pathway. We found that CXCR4 expression was remarkably up-regulated in HCC cells with increasing matrix stiffness and mediated proliferation, epithelial to mesenchymal transition, and stemness. Mechanistically, matrix stiffness acts through CXCR4 to decrease the levels of UBTD1, which is involved in the proteasome-dependent degradation of YAP, a major cell mechano-transducer. UBTD1 interacted with components of the YAP degradation complex and promoted the interaction between YAP and its E3 ubiquitin ligase β-TrCP. UBTD1 knockdown decreased YAP ubiquitylation and resulted in the activation of YAP-targeted genes and YAP downstream signaling. Downregulation of UBTD1 in HCC tissues correlated with malignant prognostic features and overall survival. Finally, luteolin, a natural product, suppressed matrix stiffness-induced biological effects and CXCR4-mediated YAP signaling pathway in HCC cells. Conclusion: Our findings reveal CXCR4 as a molecular switch in mechano-transduction, thereby defining a mechano-signaling pathway from matrix stiffness to the nucleus.? The author(s).
机译:理性的:越来越多的证据表明物理环境是肿瘤行为的关键介质。肝细胞癌(HCC)在改变的生物力学环境中发展,并且增加的基质僵硬是HCC开发的强烈预测因子。已知C-X-C趋化因子受体类型4(CXCR4)触发HCC进展。但是,CXCR4作为HCC机械线索的介质并不具备很好的表征。方法:QRT-PCR,Western印迹和IHC用于检测不同基质刚度凝胶中的CXCR4表达。 MTT用于测量HCC细胞的细胞增殖。免疫印迹用于检测上皮 - 间充质转变(EMT)和基质刚度的茎。免疫荧光(IF)用于检测HCC细胞中的核位置。 IP用于显示YAP,UBCH5C和β-TRCP之间的相互作用。结果:我们将CXCR4鉴定为临界细胞内信号换能器,其通过遍占蛋白域的蛋白质1(UBTD1)介导的YAP信号传导通路来控制基质刚度信号以控制机械敏感细胞活性。我们发现CXCR4表达在HCC细胞中具有显着上调,随着基质刚度和介导的增殖,上皮对间充质转变和茎。机械地,基质刚度作用于CXCR4以降低UBTD1的水平,该水平涉及YAP的蛋白酶体依赖性降解,这是一种主要的电池机械换能器。 UBTD1与YAP降解复合物的组分相互作用,并促进YAP与其E3泛素连接酶β-TRCP之间的相互作用。 UBTD1敲低下降yap ubiquitylation,导致yap靶向基因和yap下游信号传导的激活。 HCC组织中UBTD1的下调与恶性预后特征和整体存活相关。最后,叶黄素,天然产物,抑制基质刚度诱导的生物效应和HCC细胞中的CXCR4介导的YAP信号传导途径。结论:我们的研究结果揭示了CXCR4作为机械转导的分子开关,从而定义了从基质刚度到核的机械信号通路。作者。

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