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Novel Targets and Functions for Xenopus pitx3 during Embryonic Development

机译:Xenopus pitx3在胚胎发育过程中的新目标和功能。

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摘要

Pitx3 is a homeodomain transcription factor with an expression pattern conserved across phyla: in the dopaminergic neurons of the midbrain, in the lens during all stages of lens development and in the forming somites. In Xenopus laevis, this gene shows novel expression areas, such as the pituitary gland, the heart and the gut. Morpholino-based knockdown of pitx3 results in phenotypes characterized by small or absent lens, bent dorsal axis and randomized coiling of the heart and gut. Comparing gene expression changes in wild-type versus knockdown embryos by microarray, we generated a vast list of genes possible downstream targets for pitx3. Confirming a number of those genes as affected by the absence of pitx3 allowed for positioning pitx3 in a variety of pathways. Given that a significant number of these genes were known as major players during somitogenesis, corroborated with the bent dorsal axis phenotype initiated the further discovery for the role of pitx3 in this developmental process. To determine direct targets for pitx3 we needed a reporter assay to test the protein-promoter interaction. Since the existing assays were deemed unsatisfactory in terms of accuracy and sensitivity we developed a new technique which permits precise detection of the reporter gene in a homogenous population of cells containing both the transcription factor and the reporter. This also enables the assessment of cooperativity for the tested transcription factors. Lastly, this new technique was employed to examine the promoters of some of the microarray candidate genes and to determine new direct targets for pitx3, thus redesigning existing pathways to incorporate the new interactions.
机译:Pitx3是一个同源结构域转录因子,其表达模式在整个门上均是保守的:在中脑的多巴胺能神经元中,在晶状体发育的所有阶段在晶状体中以及在形成的节段中。在非洲爪蟾中,该基因显示出新颖的表达区域,例如垂体,心脏和肠。 pitx3的基于吗啉基敲除导致的表型特征是晶状体小或缺失,背轴弯曲以及心脏和肠道的随机盘绕。通过微阵列比较野生型和敲低型胚胎中的基因表达变化,我们生成了可能是pitx3下游靶标的基因清单。证实这些基因受pitx3缺失的影响使得可以在各种途径中定位pitx3。鉴于这些基因中有相当多的基因被认为是在体细胞发生过程中的主要参与者,与弯曲的背轴表型相佐证的是对pitx3在这一发育过程中的作用的进一步发现。为了确定pitx3的直接靶标,我们需要一种报告基因检测法来测试蛋白-启动子的相互作用。由于现有的检测方法在准确性和敏感性方面均不能令人满意,因此我们开发了一种新技术,该技术可在含有转录因子和报告基因的同质细胞群体中精确检测报告基因。这也使得能够评估所测试的转录因子的协同性。最后,这项新技术被用于检查一些微阵列候选基因的启动子,并确定pitx3的新直接靶标,从而重新设计了整合新相互作用的现有途径。

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    Smoczer Cristine;

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