The Children's Hospital at Westmead, Locked Bag 4001, Westmead, NSW 2145, Australia.
Mol Cancer Res. 2014 Feb;12(2):264-73. doi: 10.1158/1541-7786.MCR-13-0513. Epub 2013 Dec 13.
Metastasizing tumor cells must transmigrate the dense extracellular matrix that surrounds most organs. The use of three-dimensional (3D) collagen gels has revealed that many cancer cells can switch between different modes of invasion that are characterized by distinct morphologies (e.g., rounded vs. elongated). The adhesion protein NEDD9 has the potential to regulate the switch between elongated and rounded morphologies; therefore, its role was interrogated in the invasion switch of glioblastoma and neuroblastoma tumors that similarly derive from populations of neural crest cells. Interestingly, siRNA-mediated depletion of NEDD9 failed to induce cell rounding in glioma or neuroblastoma cells, contrasting the effects that have been described in other tumor model systems. Given that Rac1 GTPase has been suggested to mediate the switch between elongated and rounded invasion, the functionality of the Rac1 morphology switch was evaluated in the glioma and neuroblastoma cells. Using both dominant-negative Rac1 and Rac1-specific siRNA, the presence of this morphologic switch was confirmed in the neuroblastoma, but not in the glioma cells. However, in the absence of a morphologic change following NEDD9 depletion, a significant decrease in the cellular migration rate was observed. Thus, the data reveal that NEDD9 can regulate 3D migration speed independent of the Rac1 morphology switch.
NEDD9 targeting is therapeutically viable as it does not stimulate adaptive changes in glioma and neuroblastoma invasion.
转移的肿瘤细胞必须穿过包围大多数器官的致密细胞外基质。使用三维(3D)胶原凝胶已经揭示,许多癌细胞可以在不同的侵袭模式之间切换,这些模式的特征是不同的形态(例如,圆形与细长形)。黏附蛋白 NEDD9 有可能调节细长形和圆形形态之间的转换;因此,研究了其在同样源自神经嵴细胞群体的神经母细胞瘤和神经胶质瘤肿瘤侵袭转换中的作用。有趣的是,siRNA 介导的 NEDD9 耗竭未能诱导神经胶质瘤或神经母细胞瘤细胞变圆,与在其他肿瘤模型系统中描述的作用相反。鉴于 Rac1 GTPase 已被提议介导细长形和圆形侵袭之间的转换,因此评估了 Rac1 形态转换在神经母细胞瘤和神经胶质瘤细胞中的功能。使用显性负 Rac1 和 Rac1 特异性 siRNA,在神经母细胞瘤中证实了这种形态转换的存在,但在神经胶质瘤细胞中没有。然而,在 NEDD9 耗竭后没有形态变化的情况下,观察到细胞迁移率显著降低。因此,数据表明 NEDD9 可以调节 3D 迁移速度,而不依赖于 Rac1 形态转换。
针对 NEDD9 是可行的治疗方法,因为它不会刺激神经胶质瘤和神经母细胞瘤侵袭的适应性变化。