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内部翻译起始产生具有不同生物学特性的新型WT1蛋白异构体。

Internal translation initiation generates novel WT1 protein isoforms with distinct biological properties.

作者信息

Scharnhorst V, Dekker P, van der Eb A J, Jochemsen A G

机构信息

Laboratory of Molecular Carcinogenesis and Centre for Biomedical Genetics, Leiden University Medical Center, P.O. Box 9503, 2300 RA Leiden, The Netherlands.

出版信息

J Biol Chem. 1999 Aug 13;274(33):23456-62. doi: 10.1074/jbc.274.33.23456.

Abstract

The Wilms' tumor 1 gene, WT1, is homozygously mutated in a subset of Wilms' tumors. Heterozygous mutations in WT1 give rise to congenital anomalies. During embryogenesis, WT1 is expressed mainly in the kidneys, uterus, and testes. Alternative splicing of the WT1 mRNA results in synthesis of four main WT1 protein isoforms with molecular masses of 52-54 kDa. In addition, translation initiation at a CUG upstream of the initiator AUG generates four larger WT1 proteins of 60-62 kDa. We describe here the existence of novel WT1 isoforms and demonstrate that they are derived from translation initiation at the second in-frame AUG of the WT1 mRNA. These N-terminally truncated WT1 proteins of 36-38 kDa can be detected in several cell lines, mouse testes, and Wilms' tumor specimens. They can bind to DNA and direct transcription from reporter constructs. The shorter WT1 protein lacking the two splice inserts has a greater transcription activation potential than the corresponding main WT1 protein isoform but shows no transcription repression potential. Overexpression of full-length or N-terminally truncated WT1 efficiently induces apoptosis. These data show that additional WT1 isoforms with distinct transcription-regulatory properties exist, which further increases the complexity of WT1 expression and activity.

摘要

肾母细胞瘤1基因(WT1)在部分肾母细胞瘤中发生纯合突变。WT1的杂合突变会导致先天性异常。在胚胎发育过程中,WT1主要在肾脏、子宫和睾丸中表达。WT1 mRNA的可变剪接导致合成四种主要的WT1蛋白异构体,分子量为52 - 54 kDa。此外,在起始AUG上游的CUG处起始翻译会产生四种分子量为60 - 62 kDa的更大的WT1蛋白。我们在此描述了新型WT1异构体的存在,并证明它们源自WT1 mRNA第二个符合读框的AUG处的翻译起始。这些N端截短的36 - 38 kDa的WT1蛋白可在多种细胞系、小鼠睾丸和肾母细胞瘤标本中检测到。它们能与DNA结合并指导报告基因构建体的转录。缺少两个剪接插入片段的较短WT1蛋白比相应的主要WT1蛋白异构体具有更大的转录激活潜力,但没有转录抑制潜力。全长或N端截短的WT1的过表达能有效诱导细胞凋亡。这些数据表明存在具有不同转录调控特性的其他WT1异构体,这进一步增加了WT1表达和活性的复杂性。

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