Pediatric Stem Cell Research Institute, Safra Children's Hospital and Sheba Center for Regenerative Medicine, Sheba Medical Center, Tel Hashomer, Israel.
Oncogene. 2011 Apr 7;30(14):1664-80. doi: 10.1038/onc.2010.549. Epub 2011 Jan 17.
Wilms' tumor (WT), the most frequent renal solid tumor in children, has been linked to aberrant Wnt signaling. Herein, we demonstrate that different WTs can be grouped according to either sensitivity or resistance to an antibody (Ab) specific to frizzled7 (FZD7), a Wnt receptor. In the FZD7-sensitive WT phenotype, the Ab induced cell death of the FZD7(+) fraction, which in turn depleted primary WT cultures of their clonogenic and sphere-forming cells and decreased in vivo proliferation and survival on xenografting to the chick chorio-allantoic-membrane. In contrast, FZD7-resistant WT in which no cell death was induced showed a different intra-cellular route of the Ab-FZD7 complex compared with sensitive tumors and accumulation of β-catenin. This coincided with a low sFRP1 and DKK1 (Wnt inhibitors) expression pattern, restored epigenetically with de-methylating agents, and lack of β-catenin or WTX mutations. The addition of exogenous DKK1 and sFRP1 to the tumor cells enabled the sensitization of FZD7-resistant WT to the FZD7 Ab. Finally, although extremely difficult to achieve because of dynamic cellular localization of FZD7, sorting of FZD7(+) cells from resistant WT, showed them to be highly clonogenic/proliferative, overexpressing WT 'stemness' genes, emphasizing the importance of targeting this fraction. FZD7 Ab therapy alone or in combination with Wnt pathway antagonists may have a significant role in the treatment of WT via targeting of a tumor progenitor population.
威尔姆斯瘤(WT)是儿童最常见的肾脏实体瘤,与异常的 Wnt 信号有关。在此,我们证明,不同的 WT 可以根据其对一种针对卷曲蛋白 7(FZD7)的抗体的敏感性或耐药性进行分组,FZD7 是一种 Wnt 受体。在 FZD7 敏感的 WT 表型中,抗体诱导 FZD7(+) 部分的细胞死亡,进而耗尽原代 WT 培养物的克隆形成和球体形成细胞,并减少体内异种移植到鸡绒毛尿囊膜上的增殖和存活。相比之下,没有诱导细胞死亡的 FZD7 耐药 WT 与敏感肿瘤相比,其抗体-FZD7 复合物的细胞内途径不同,β-连环蛋白积累。这与低 sFRP1 和 DKK1(Wnt 抑制剂)表达模式相吻合,用去甲基化剂在表观遗传学上恢复,并缺乏β-连环蛋白或 WTX 突变。向肿瘤细胞中添加外源性 DKK1 和 sFRP1 能够使 FZD7 耐药 WT 对 FZD7 抗体敏感。最后,尽管由于 FZD7 的动态细胞定位而极难实现,但从耐药 WT 中分选 FZD7(+)细胞表明它们具有高度的克隆形成/增殖能力,过度表达 WT“干性”基因,强调了靶向该部分的重要性。FZD7 抗体单独或与 Wnt 通路拮抗剂联合使用,可能通过靶向肿瘤祖细胞群,在 WT 的治疗中发挥重要作用。
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