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首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Cross-Talk between Receptor Tyrosine Kinases AXL and ERBB3 Regulates Invadopodia Formation in Melanoma Cells
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Cross-Talk between Receptor Tyrosine Kinases AXL and ERBB3 Regulates Invadopodia Formation in Melanoma Cells

机译:受体酪氨酸激酶AXL和ERBB3之间的串扰调节黑素瘤细胞中的invidopodia形成

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The invasive phenotype of metastatic cancer cells is accompanied by the formation of actin-rich invadopodia, which adhere to the extracellular matrix and degrade it. In this study, we explored the role of the tyrosine kinome in the formation of invadopodia in metastatic melanoma cells. Using a microscopy-based siRNA screen, we identified a series of regulators, the knockdown of which either suppresses (e.g., TYK2, IGFR1, ERBB3, TYRO3, FES, ALK, PTK7) or enhances (e.g., ABL2, AXL, CSK) invadopodia formation and function. Notably, the receptor tyrosine kinase AXL displayed a dual regulatory function, where both depletion or overexpression enhanced invadopodia formation and activity. This apparent contradiction was attributed to the capacity of AXL to directly stimulate invadopodia, yet its suppression upregulates the ERBB3 signaling pathway, which can also activate core invadopodia regulators and enhance invadopodia function. Bioinformatic analysis of multiple melanoma cell lines points to an inverse expression pattern of AXL and ERBB3. High expression of AXL in melanoma cells is associated with high expression of invadopodia components and an invasive phenotype. These results provide new insights into the complexity of metastasis-promoting mechanisms and suggest that targeting of multiple invadopodia signaling networks may serve as a potential anti-invasion therapy in melanoma.
机译:转移性癌细胞的侵入表型伴随着形成致动蛋白的侵入性的侵入性,其粘附于细胞外基质并降解它。在这项研究中,我们探讨了酪氨酸Kinome在转移性黑色素瘤细胞中侵袭性的作用中的作用。使用基于显微镜的siRNA屏幕,我们确定了一系列稳压器,其敲低抑制(例如,Tyk2,IgFR1,ErbB3,Tyro3,Fes,Alk,PtK7)或增强(例如,Abl2,AxL,CSK)invidopodia形成和功能。值得注意的是,受体酪氨酸激酶AXL显示出双重调节功能,其中耗尽或过表达增强的invidopodia形成和活性。这种明显的矛盾归因于AXL直接刺激invidopodia的能力,但其抑制性上调了ERBB3信号通路,其还可以激活核心invidopodia调节因子并增强Invidopodia功能。多黑色素瘤细胞系的生物信息分析指向AXL和ERBB3的逆表达模式。黑色素瘤细胞中AXL的高表达与高分子体成分的高表达和侵袭性表型相关。这些结果为转移促进机制的复杂性提供了新的见解,并表明多种invidopodia信号传导网络的靶向可以作为黑素瘤的潜在抗侵袭治疗。

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