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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Expression of a new RNA-splice isoform of WT1 in developing kidney-gonadal complexes of the turtle, Trachemys scripta
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Expression of a new RNA-splice isoform of WT1 in developing kidney-gonadal complexes of the turtle, Trachemys scripta

机译:WT1的新的RNA剪接同工型在龟的肾性腺复合体的发育过程中的表达

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WT1 is a tumor suppressor gene encoding a zinc finger DNA-binding protein required for normal vertebrate kidney and gonad development. Although the sequence and function of this gene has been studied mostly in mammals, comparative analysis in other vertebrates may suggest regions of conservation of function as well as evolution of function. We have initiated a study of this gene in the freshwater turtle, Trachemys scripta, a species that demonstrates temperature dependent sex determination. The turtle WT1 amino acid sequence (GenBank Accession No. AF019779) is over 85% identical to that of other species overall, but there are some major differences. The greatest differences are in the N-terminal portion of the peptide which is thought to mediate transcriptional repression by interaction with other proteins. Turtle WT1, like those of the alligator, chicken, and Xenopus lacks the proline- and glycine-rich stretches that are present in mammalian WT1. Exon 5, which is alternatively spliced in mammals, is altogether absent in the non-mammalian vertebrates. In addition, turtle WT1 is alternatively spliced so that exon 4 is either present or absent. These differences suggest that the interaction of reptilian WT1 with other factors required for mediation of activity may be different than the interaction of mammalian WT1. It also suggests that alternative splicing is a conserved regulatory mechanism of vertebrate WT1. Expression of WT1 in turtle embryonic kidney-gonadal complexes begins after the mesonephroi have formed and continues at least until the bipotential gonad begins to differentiate. Although the proportions of the different splice isoforms are relatively constant during these stages of kidney development, the level of steady state expression is increased in embryos incubated at 26 degrees C, the testis-producing temperature. (C) 1998 Elsevier Science Inc. All rights reserved. [References: 33]
机译:WT1是一种肿瘤抑制基因,编码正常脊椎动物肾脏和性腺发育所需的锌指DNA结合蛋白。尽管该基因的序列和功能主要在哺乳动物中进行了研究,但在其他脊椎动物中进行的比较分析可能提示功能保守和功能进化的区域。我们已经在淡水龟Trachemys scripta(一种证明温度依赖性性别决定的物种)中启动了对该基因的研究。总的来说,乌龟WT1氨基酸序列(GenBank登录号AF019779)与其他物种的同源性超过85%,但有一些主要差异。最大的差异在于该肽的N末端部分,该部分被认为通过与其他蛋白质的相互作用来介导转录抑制。像鳄鱼,鸡肉和非洲爪蟾一样,乌龟WT1缺乏哺乳动物WT1中富含脯氨酸和甘氨酸的伸展区。在非哺乳动物脊椎动物中完全不存在剪接在哺乳动物中的外显子5。另外,乌龟WT1被选择性地剪接,从而存在或不存在外显子4。这些差异表明,爬虫类动物WT1与其他介导活性的因子的相互作用可能不同于哺乳动物WT1。这也表明替代剪接是脊椎动物WT1的保守调节机制。 WT1在龟胚肾-性腺复合物中的表达在中肾形成后开始,并至少持续到双电位性腺开始分化。尽管在肾脏发育的这些阶段中,不同剪接同工型的比例相对恒定,但在26摄氏度(睾丸产生温度)下孵育的胚胎中,稳态表达水平有所提高。 (C)1998 Elsevier Science Inc.保留所有权利。 [参考:33]

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