Miles Colin G, Slight Joan, Spraggon Lee, O'Sullivan Maureen, Patek Charles, Hastie Nicholas D
Medical Research Council Human Genetics Unit, Western General Hospital, Edinburgh EH4 2XU, United Kingdom.
Mol Cell Biol. 2003 Apr;23(7):2608-13. doi: 10.1128/MCB.23.7.2608-2613.2003.
Mutations in the Wilms' tumor 1 gene, WT1, cause pediatric nephroblastoma and the severe genitourinary disorders of Frasier and Denys-Drash syndromes. High levels of WT1 expression are found in the developing kidney, uterus, and testis--consistent with this finding, the WT1 knockout mouse demonstrates that WT1 is essential for normal genitourinary development. The WT1 gene encodes multiple isoforms of a zinc finger-containing protein by a combination of alternative splicing and alternative translation initiation. The use of an upstream, alternative CUG translation initiation codon specific to mammals results in the production of WT1 protein isoforms with a 68-amino-acid N-terminal extension. To determine the function in vivo of mammal-specific WT1 isoforms containing this extension, gene targeting was employed to introduce a subtle mutation into the WT1 gene. Homozygous mutant mice show a specific absence of the CUG-initiated WT1 isoforms yet develop normally to adulthood and are fertile. Detailed histological analysis revealed normal development of the genitourinary system.
威尔姆斯瘤1基因(WT1)的突变会导致小儿肾母细胞瘤以及弗雷泽综合征和迪尼-德拉斯综合征的严重泌尿生殖系统疾病。在发育中的肾脏、子宫和睾丸中发现了高水平的WT1表达——与此发现一致,WT1基因敲除小鼠表明WT1对正常泌尿生殖系统发育至关重要。WT1基因通过可变剪接和可变翻译起始的组合编码多种含锌指蛋白的异构体。使用哺乳动物特有的上游可变CUG翻译起始密码子会产生具有68个氨基酸N端延伸的WT1蛋白异构体。为了确定含有这种延伸的哺乳动物特异性WT1异构体在体内的功能,采用基因靶向技术在WT1基因中引入一个微小突变。纯合突变小鼠表现出特定的CUG起始的WT1异构体缺失,但仍能正常发育至成年且具有生育能力。详细的组织学分析显示泌尿生殖系统发育正常。