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The role of Tks adaptor proteins in invadopodia formation growth and metastasis of melanoma

机译:Tks衔接蛋白在黑色素瘤侵袭性足膜形成生长和转移中的作用

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摘要

Metastatic cancer cells are characterized by their ability to degrade and invade through extracellular matrix. We previously showed that the Tks adaptor proteins, Tks4 and Tks5, are required for invadopodia formation and/or function in Src-transformed fibroblasts and a number of human cancer cell types. In this study, we investigated the role of Tks adaptor proteins in melanoma cell invasion and metastasis. Knockdown of either Tks4 or Tks5 in both mouse and human melanoma cell lines resulted in a decreased ability to form invadopodia and degrade extracellular matrix. In addition, Tks-knockdown melanoma cells had decreased proliferation in a 3-dimensional type l collagen matrix, but not in 2-dimensional culture conditions. We also investigated the role of Tks proteins in melanoma progression in vivo using xenografts and experimental metastasis assays. Consistent with our in vitro results, reduction of Tks proteins markedly reduced subcutaneous melanoma growth as well as metastatic growth in the lung. We explored the clinical relevance of Tks protein expression in human melanoma specimens using a tissue microarray. Compared to non-malignant nevi, both Tks proteins were highly expressed in melanoma tissues. Moreover, metastatic melanoma cases showed higher expression of Tks5 than primary melanoma cases. Taken together, these findings suggest the importance of Tks adaptor proteins in melanoma growth and metastasis in vivo, likely via functional invadopodia formation.
机译:转移性癌细胞的特征在于它们具有降解和侵袭细胞外基质的能力。我们以前表明,Tks衔接蛋白Tks4和Tks5是Spo转化成纤维细胞和许多人类癌细胞类型中侵袭伪足形成和/或功能所必需的。在这项研究中,我们调查了Tks衔接蛋白在黑色素瘤细胞侵袭和转移中的作用。敲除小鼠和人类黑色素瘤细胞系中的Tks4或Tks5导致形成侵染足和降解细胞外基质的能力降低。此外,Tks-knockdown黑色素瘤细胞在3维1型胶原基质中的增殖减少,但在2维培养条件下则没有。我们还使用异种移植和实验性转移试验研究了Tks蛋白在体内黑色素瘤进展中的作用。与我们的体外结果一致,Tks蛋白的减少显着减少了皮下黑色素瘤的生长以及肺中的转移性生长。我们探索了使用组织芯片在人类黑素瘤标本中Tks蛋白表达的临床意义。与非恶性痣相比,两种Tks蛋白均在黑色素瘤组织中高表达。此外,转移性黑素瘤病例显示出比原发性黑素瘤病例更高的Tks5表达。综上所述,这些发现表明Tks衔接蛋白在体内黑素瘤生长和转移中的重要性,很可能是通过功能性侵染性伪足的形成。

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