...
首页> 外文期刊>Development >Identification of an evolutionarily conserved 110 base-pair cis-acting regulatory sequence that governs Wnt-1 expression in the murine neural plate.
【24h】

Identification of an evolutionarily conserved 110 base-pair cis-acting regulatory sequence that governs Wnt-1 expression in the murine neural plate.

机译:确定了进化保守的110个碱基对顺式调控序列,该序列控制鼠神经板中的Wnt-1表达。

获取原文
获取原文并翻译 | 示例
           

摘要

The generation of anterior-posterior polarity in the vertebrate brain requires the establishment of regional domains of gene expression at early somite stages. Wnt-1 encodes a signal that is expressed in the developing midbrain and is essential for midbrain and anterior hindbrain development. Previous work identified a 5.5 kilobase region located downstream of the Wnt-1 coding sequence which is necessary and sufficient for Wnt-1 expression in vivo. Using a transgenic mouse reporter assay, we have now identified a 110 base pair regulatory sequence within the 5.5 kilobase enhancer, which is sufficient for expression of a lacZ reporter in the approximate Wnt-1 pattern at neural plate stages. Multimers of this element driving Wnt-1 expression can partially rescue the midbrain-hindbrain phenotype of Wnt-1(-/-) embryos. The possibility that this region represents an evolutionarily conserved regulatory module is suggested by the identification of a highly homologous region located downstream of the wnt-1 gene in the pufferfish (Fugu rubripes). These sequences are capable of appropriate temporal and spatial activation of a reporter gene in the embryonic mouse midbrain; although, later aspects of the Wnt-1 expression pattern are absent. Genetic evidence has implicated Pax transcription factors in the regulation of Wnt-1. Although Pax-2 binds to the 110 base pair murine regulatory element in vitro, the location of the binding sites could not be precisely established and mutation of two putative low affinity sites did not abolish activation of a Wnt-1 reporter transgene in vivo. Thus, it is unlikely that Pax proteins regulate Wnt-1 by direct interactions with this cis-acting regulatory region. Our analysis of the 110 base pair minimal regulatory element suggests that Wnt-1 regulation is complex, involving different regulatory interactions for activation and the later maintenance of transgene expression in the dorsal midbrain and ventral diencephalon, and at the midbrain-hindbrain junction.
机译:脊椎动物大脑中前后极性的产生需要在早期体节阶段建立基因表达的区域结构域。 Wnt-1编码在发育中脑中表达的信号,对于中脑和后脑前部发育至关重要。先前的工作确定了位于Wnt-1编码序列下游的5.5 kb区域,这对于体内Wnt-1表达是必要和充分的。使用转基因小鼠报道基因检测,我们现在已经确定了5.5 kb增强子内的110个碱基对的调控序列,该序列足以在神经板阶段以近似Wnt-1模式表达lacZ报告基因。驱动Wnt-1表达的该元件的多聚体可以部分拯救Wnt-1(-/-)胚胎的中脑-后脑表型。通过在河豚(河豚鼠)的wnt-1基因下游鉴定出高度同源的区域,表明了该区域代表进化上保守的调控模块的可能性。这些序列能够适当地在时间和空间上激活胚胎小鼠中脑中的报告基因。虽然,Wnt-1表达模式的后期方面不存在。遗传学证据表明Pax转录因子参与Wnt-1的调控。尽管Pax-2在体外与110个碱基对的鼠调控元件结合,但结合位点的位置无法精确建立,并且两个假定的低亲和力位点的突变也不能消除体内Wnt-1报告基因转基因的激活。因此,Pax蛋白不太可能通过与该顺式作用调控区的直接相互作用来调控Wnt-1。我们对110个碱基对的最小调控元件的分析表明,Wnt-1调控很复杂,涉及在中脑背侧和腹侧脑中脑以及中脑-后脑交界处激活和后来维持转基因表达的不同调控相互作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号