Zhang Pingyu, Yang Yanwen, Zweidler-McKay Patrick A, Hughes Dennis P M
Department of Pediatrics Research, Children's Cancer Hospital, University of Texas M. D. Anderson Cancer Center, Houston, Texas, USA.
Clin Cancer Res. 2008 May 15;14(10):2962-9. doi: 10.1158/1078-0432.CCR-07-1992.
Notch signaling is an important mediator of growth and survival in several cancer types, with Notch pathway genes functioning as oncogenes or tumor suppressors in different cancers. However, the role of Notch in osteosarcoma is unknown.
We assessed the expression of Notch pathway genes in human osteosarcoma cell lines and patient samples. We then used pharmacologic and retroviral manipulation of the Notch pathway and studied the effect on osteosarcoma cell proliferation, survival, anchorage-independent growth, invasion, and metastasis in vitro and in vivo.
Notch pathway genes, including Notch ligand DLL1, Notch1 and Notch2, and the Notch target gene HES1, were expressed in osteosarcoma cells, and expression of HES1 was associated with invasive and metastatic potential. Blockade of Notch pathway signaling with a small molecule inhibitor of gamma secretase eliminated invasion in Matrigel without affecting cell proliferation, survival, or anchorage-independent growth. Manipulation of Notch and HES1 signaling showed a crucial role for HES1 in osteosarcoma invasiveness and metastasis in vivo.
These studies identify a new invasion and metastasis-regulating pathway in osteosarcoma and define a novel function for the Notch pathway: regulation of metastasis. Because the Notch pathway can be inhibited pharmacologically, these findings point toward possible new treatments to reduce invasion and metastasis in osteosarcoma.
Notch信号通路是多种癌症类型中生长和存活的重要调节因子,Notch通路基因在不同癌症中发挥癌基因或肿瘤抑制基因的作用。然而,Notch在骨肉瘤中的作用尚不清楚。
我们评估了Notch通路基因在人骨肉瘤细胞系和患者样本中的表达。然后,我们对Notch通路进行了药理学和逆转录病毒操作,并研究了其对骨肉瘤细胞增殖、存活、非锚定依赖性生长、侵袭和转移的体内外影响。
Notch通路基因,包括Notch配体DLL1、Notch1和Notch2,以及Notch靶基因HES1,在骨肉瘤细胞中表达,且HES1的表达与侵袭和转移潜能相关。用γ-分泌酶小分子抑制剂阻断Notch通路信号可消除基质胶中的侵袭,而不影响细胞增殖、存活或非锚定依赖性生长。对Notch和HES1信号的操作表明,HES1在骨肉瘤体内侵袭和转移中起关键作用。
这些研究确定了骨肉瘤中一种新的侵袭和转移调节通路,并定义了Notch通路的一种新功能:转移调节。由于Notch通路可以通过药物抑制,这些发现为减少骨肉瘤侵袭和转移的可能新治疗方法指明了方向。