Fukuzawa R, Anaka M R, Weeks R J, Morison I M, Reeve A E
Cancer Genetics Laboratory, Department of Biochemistry, University of Otago, Dunedin, New Zealand.
Oncogene. 2009 Feb 26;28(8):1063-75. doi: 10.1038/onc.2008.455. Epub 2009 Jan 12.
Wilms tumours (WTs) have two distinct types of histology with or without ectopic mesenchymal elements, suggesting that WTs arise from either the mesenchymal or epithelial nephrogenic lineages. Regardless of the presence or absence of CTNNB1 mutations, nuclear accumulation of beta-catenin is often observed in WTs with ectopic mesenchymal elements. Here, we addressed the relationship between the WNT-signalling pathway and lineage in WTs by examining CTNNB1 and WT1 mutations, nuclear accumulation of beta-catenin, tumour histology and gene expression profiles. In addition, we screened for mutations in WTX, which has been proposed to be a negative regulator of the canonical WNT-signalling pathway. Unsupervised clustering analysis identified two classes of tumours: mesenchymal lineage WNT-dependent tumours, and epithelial lineage WNT-independent tumours. In contrast to the mesenchymal lineage specificity of CTNNB1 mutations, WTX mutations were surprisingly observed in both lineages. WTX-mutant WTs with ectopic mesenchymal elements had nuclear accumulation of beta-catenin, upregulation of WNT target genes and an association with CTNNB1 mutations in exon 7 or 8. However, epithelial lineage WTs with WTX mutations had no indications of active WNT signalling, suggesting that the involvement of WTX in the WNT-signalling pathway may be lineage dependent, and that WTX may have an alternative function to its role in the canonical WNT-signalling pathway.
肾母细胞瘤(WTs)有两种不同类型的组织学表现,伴有或不伴有异位间充质成分,这表明WTs起源于间充质或上皮性肾发生谱系。无论是否存在CTNNB1突变,在伴有异位间充质成分的WTs中常观察到β-连环蛋白的核内积聚。在此,我们通过检测CTNNB1和WT1突变、β-连环蛋白的核内积聚、肿瘤组织学和基因表达谱,探讨了WTs中WNT信号通路与谱系之间的关系。此外,我们筛查了WTX的突变,WTX被认为是经典WNT信号通路的负调节因子。无监督聚类分析确定了两类肿瘤:间充质谱系WNT依赖性肿瘤和上皮谱系WNT非依赖性肿瘤。与CTNNB1突变的间充质谱系特异性相反,WTX突变在两个谱系中均有惊人发现。伴有异位间充质成分的WTX突变型WTs有β-连环蛋白的核内积聚、WNT靶基因上调以及与外显子7或8中的CTNNB1突变相关。然而,具有WTX突变的上皮谱系WTs没有活跃WNT信号的迹象,这表明WTX参与WNT信号通路可能具有谱系依赖性,并且WTX在经典WNT信号通路中的作用可能具有替代功能。