Schnerwitzki Danny, Perner Birgit, Hoppe Beate, Pietsch Stefan, Mehringer Rebecca, Hänel Frank, Englert Christoph
Leibniz Institute for Age Research - Fritz Lipmann Institute, Beutenbergstrasse 11, 07745 Jena, Germany.
Leibniz Institute for Natural Product Research and Infection Biology - Hans Knöll Institute (HKI), Beutenbergstrasse 11a, 07745 Jena, Germany.
Dev Biol. 2014 Sep 1;393(1):24-32. doi: 10.1016/j.ydbio.2014.06.026. Epub 2014 Jul 8.
The Wilms tumor suppressor gene Wt1 encodes a zinc finger transcription factor that is essential for development of multiple organs including kidneys, gonads, spleen and heart. In mammals Wt1 comprises 10 exons with two characteristic splicing events: inclusion or skipping of exon 5 and alternative usage of two splice donor sites between exons 9 and 10. Most fish including zebrafish and medaka possess two wt1 paralogs, wt1a and wt1b, both lacking exon 5. Here we have characterized wt1 in guppy, platyfish and the short-lived African killifish Nothobranchius furzeri. All fish except zebrafish show alternative splicing of exon 4 of wt1a but not of wt1b with the wt1a(-exon 4) isoform being the predominant splice variant. With regard to function, Wt1a(+exon 4) showed less dimerization but stimulated transcription more effectively than the Wt1a(-exon 4) isoform. A specific knockdown of wt1a exon 4 in zebrafish was associated with anomalies in kidney development demonstrating a physiological function for Wt1a exon 4. Interestingly, alternative splicing of exon 4 seems to be an early evolutionary event as it is observed in the single wt1 gene of the sturgeon, a species that has not gone through teleost-specific genome duplication.
威尔姆斯肿瘤抑制基因Wt1编码一种锌指转录因子,该因子对于包括肾脏、性腺、脾脏和心脏在内的多个器官的发育至关重要。在哺乳动物中,Wt1由10个外显子组成,有两个特征性剪接事件:外显子5的包含或跳过,以及外显子9和10之间两个剪接供体位点的交替使用。包括斑马鱼和青鳉在内的大多数鱼类都有两个wt1旁系同源基因,wt1a和wt1b,两者都缺少外显子5。在这里,我们对孔雀鱼、新月鱼和短命的非洲鳉鱼弗氏假鳃鳉中的wt1进行了表征。除斑马鱼外,所有鱼类的wt1a外显子4都存在可变剪接,而wt1b则没有,wt1a(-外显子4)异构体是主要的剪接变体。在功能方面,Wt1a(+外显子4)的二聚化程度较低,但比Wt1a(-外显子4)异构体更有效地刺激转录。在斑马鱼中特异性敲低wt1a外显子4与肾脏发育异常有关,这证明了Wt1a外显子4的生理功能。有趣的是,外显子4的可变剪接似乎是一个早期进化事件,因为在鲟鱼的单个wt1基因中也观察到了这一现象,鲟鱼是一种尚未经历硬骨鱼特异性基因组复制的物种。