Department of Neurological Surgery, Dardinger Center for Neuro-Oncology and Neurosciences, Ohio State University Wexner Medical Center, Columbus, OH 43210, USA.
Cancer Res. 2012 Aug 1;72(15):3873-85. doi: 10.1158/0008-5472.CAN-12-1060. Epub 2012 Jun 4.
Malignant gliomas are highly invasive and chemoresistant brain tumors with extremely poor prognosis. Targeting of the soluble factors that trigger invasion and resistance, therefore, could have a significant impact against the infiltrative glioma cells that are a major source of recurrence. Fibulin-3 is a matrix protein that is absent in normal brain but upregulated in gliomas and promotes tumor invasion by unknown mechanisms. Here, we show that fibulin-3 is a novel soluble activator of Notch signaling that antagonizes DLL3, an autocrine inhibitor or Notch, and promotes tumor cell survival and invasion in a Notch-dependent manner. Using a strategy for inducible knockdown, we found that controlled downregulation of fibulin-3 reduced Notch signaling and led to increased apoptosis, reduced self-renewal of glioblastoma-initiating cells, and impaired growth and dispersion of intracranial tumors. In addition, fibulin-3 expression correlated with expression levels of Notch-dependent genes and was a marker of Notch activation in patient-derived glioma samples. These findings underscore a major role for the tumor extracellular matrix in regulating glioma invasion and resistance to apoptosis via activation of the key Notch pathway. More importantly, this work describes a noncanonical, soluble activator of Notch in a cancer model and shows how Notch signaling can be reduced by targeting tumor-specific accessible molecules in the tumor microenvironment.
恶性神经胶质瘤是高度侵袭性和耐药性的脑肿瘤,预后极差。因此,针对引发侵袭和耐药的可溶性因子进行靶向治疗,可能会对浸润性神经胶质瘤细胞产生重大影响,这些细胞是复发的主要来源。纤连蛋白-3 是一种基质蛋白,在正常大脑中不存在,但在神经胶质瘤中上调,并通过未知机制促进肿瘤侵袭。在这里,我们表明纤连蛋白-3 是 Notch 信号的一种新型可溶性激活剂,可拮抗 DLL3,DLL3 是 Notch 的一种自分泌抑制剂,并以 Notch 依赖性方式促进肿瘤细胞存活和侵袭。使用可诱导敲低的策略,我们发现纤连蛋白-3 的受控下调降低了 Notch 信号,导致细胞凋亡增加、神经胶质瘤起始细胞自我更新减少以及颅内肿瘤的生长和扩散受损。此外,纤连蛋白-3 的表达与 Notch 依赖性基因的表达水平相关,并且是患者来源的神经胶质瘤样本中 Notch 激活的标志物。这些发现强调了肿瘤细胞外基质在通过激活关键 Notch 通路调节神经胶质瘤侵袭和抗细胞凋亡方面的重要作用。更重要的是,这项工作描述了癌症模型中 Notch 的一种非典型可溶性激活剂,并展示了如何通过靶向肿瘤微环境中肿瘤特异性可及分子来降低 Notch 信号。