Cowell J K, Groves N, Baird P
ICRF Oncology Group, Institute of Child Health, London, UK.
Br J Cancer. 1993 Jun;67(6):1259-61. doi: 10.1038/bjc.1993.235.
Loss of heterozygosity (LOH) in tumour cells is generally accepted as 'exposing' recessive cancer genes. The short arm of chromosome 11 shows consistent LOH in Wilms' tumours along its entire length. Occasionally, however, only the 11p13 and/or the 11p15 regions are involved. Deletions of the 11p13 region consistently predisposes to Wilms' tumorigenesis. We have analysed the recently cloned WT1 gene from the 11p13 region exon-by-exon in five tumours previously shown to have undergone LOH for the 11p13 region, using single strand conformation polymorphism analysis (SSCP) and PCR sequencing. Our analysis using SSCP failed to identify any band shifts in the WT1 gene from these tumours. In addition we also sequenced the zinc finger region of WT1, which is the part of the gene most frequently showing mutations. Only the normal sequence was found in all of these tumours. These results demonstrate that LOH in Wilms' tumours is not always related to mutations in the WT1 genes and argues strongly that another gene, probably in the 11p15 region, may be more important in Wilms' tumorigenesis.
肿瘤细胞中的杂合性缺失(LOH)通常被认为是“暴露”了隐性癌症基因。11号染色体短臂在肾母细胞瘤中沿其全长均显示出一致的杂合性缺失。然而,偶尔只有11p13和/或11p15区域会受累。11p13区域的缺失一直与肾母细胞瘤的发生相关。我们使用单链构象多态性分析(SSCP)和PCR测序,对之前显示11p13区域发生杂合性缺失的五个肿瘤中11p13区域的WT1基因进行了逐外显子分析。我们使用SSCP进行的分析未能在这些肿瘤的WT1基因中识别出任何条带移位。此外,我们还对WT1的锌指区域进行了测序,该区域是该基因最常出现突变的部分。在所有这些肿瘤中仅发现了正常序列。这些结果表明,肾母细胞瘤中的杂合性缺失并不总是与WT1基因的突变相关,并且有力地表明,另一个基因,可能在11p15区域,在肾母细胞瘤的发生中可能更重要。