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Nck adapter proteins promote podosome biogenesis facilitating extracellular matrix degradation and cancer invasion

机译:NCK衔接蛋白促进摩托车体生物生成,促进细胞外基质降解和癌症侵袭

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摘要

Abstract Background Podosomes are membrane‐bound adhesive structures formed by actin remodeling. They are capable of extracellular matrix (ECM) degradation, which is a prerequisite for cancer cell invasion and metastasis. The signaling mechanism of podosome formation is still unknown in cancer. We previously reported that Nck adaptors regulate directional cell migration and endothelial lumen formation by actin remodeling, while deficiency of Nck reduces cancer metastasis. This study evaluated the role of Nck adaptors in podosome biogenesis and cancer invasion. Methods This study was conducted in vitro using both healthy cells (Human Umbilical Vein Endothelial Cell, 3T3 fibroblasts) and cancer cells (prostate cancer cell line; PC3, breast cancer cell line; MDA‐MB‐231). Confocal and TIRF imaging of cells expressing Green Fluorescence Protein (GFP)  mutant under altered levels of Nck or downstream of kinase 1 (Dok1) was used to evaluate the podosome formation and fluorescent gelatin matrix degradation. Levels of Nck in human breast carcinoma tissue sections were detected by immune histochemistry using Nck polyclonal antibody. Biochemical interaction of Nck/Dok1 was detected in podosome forming cells using immune precipitation and far‐western blotting. Results This study demonstrates that ectopic expression of Nck1 and Nck2 can induce the endothelial podosome formation in vitro. Nck silencing by short‐hairpin RNA blocked podosome biogenesis and ECM degradation in cSrc‐Y530F transformed endothelial cells in this study. Immunohistochemical analysis revealed the Nck overexpression in human breast carcinoma tissue sections. Immunoprecipitation and far‐western blotting revealed the biochemical interaction of Nck/p62Dok in podosome forming cells. Conclusions Nck adaptors in interaction with Dok1 induce podosome biogenesis and ECM degradation facilitating cancer cell invasion, and therefore a bona fide target of cancer therapy.
机译:摘要背景波纹组体是由肌动蛋白重塑形成的膜结合粘合结构。它们能够细胞外基质(ECM)降解,这是癌细胞侵袭和转移的先决条件。甲孔组形成的信号机制在癌症中仍然是未知的。我们以前报道,NCK适配器通过肌动蛋白重塑调节定向细胞迁移和内皮内腔形成,而NCK的缺乏减少了癌症转移。本研究评估了NCK适配器在甲博体组生物发生和癌症入侵中的作用。方法使用健康细胞(人脐静脉内皮细胞,3T3成纤维细胞)和癌细胞(前列腺癌细胞系; PC3,乳腺癌细胞系; MDA-MB-231)进行本研究。在改变NCK或激酶1(DOK1)的改变水平下表达绿色荧光蛋白(GFP)突变体的细胞的共焦和TIRF成像用于评价摩托车形成和荧光明胶基质降解。通过免疫组织化学使用NCK多克隆抗体检测人乳腺癌组织切片中的NCK水平。在使用免疫沉淀和远西部印迹中,在摩托车体形成细胞中检测到NCK / DoK1的生化相互作用。结果本研究表明NCK1和NCK2的异位表达可以在体外引起内皮摩托车组形成。 NCK沉默于短发素RNA阻断摩托车体生物发生和CSRC-Y530F中的ECM降解在本研究中转化的内皮细胞。免疫组织化学分析显示人乳腺癌组织切片中的NCK过度表达。免疫沉淀和远期印迹显示了NCK / P62DOK在球孔体形成细胞中的生化相互作用。结论NCK适配器与DOK1的相互作用诱导致疣体生物发生和ECM降解促进癌细胞侵袭,因此是癌症治疗的真正诉讼。

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