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A Genetic Screen for Modifiers of the Delta1-Dependent Notch Signaling Function in the Mouse

机译:小鼠的Delta1依赖Notch信号功能的修饰符的遗传屏幕。

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摘要

The Notch signaling pathway is an evolutionarily conserved transduction pathway involved in embryonic patterning and regulation of cell fates during development. Recent studies have demonstrated that this pathway is integral to a complex system of interactions, which are also involved in distinct human diseases. Delta1 is one of the known ligands of the Notch receptors. Mice homozygous for a loss-of-function allele of the Delta1 gene Dll1lacZ/lacZ die during embryonic development. Here, we present the results of two phenotype-driven modifier screens. Heterozygous Dll1lacZ knockout animals were crossed with ENU-mutagenized mice and screened for dysmorphological, clinical chemical, and immunological variants that are dependent on the Delta1 loss-of-function allele. First, we show that mutagenized heterozygous Dll1lacZ offspring have reduced body weight and altered specific clinical chemical parameters, including changes in metabolites and electrolytes relevant for kidney function. In our mutagenesis screen we have successfully generated 35 new mutant lines. Of major interest are 7 mutant lines that exhibit a Dll1lacZ/+-dependent phenotype. These mutant mouse lines provide excellent in vivo tools for studying the role of Notch signaling in kidney and liver function, cholesterol and iron metabolism, cell-fate decisions, and during maturation of T cells in the immune system.
机译:Notch信号传导途径是一种进化保守的转导途径,参与发育过程中的胚胎模式和细胞命运的调控。最近的研究表明,这种途径是复杂的相互作用系统必不可少的,相互作用的系统也涉及不同的人类疾病。 Delta1是Notch受体的已知配体之一。 Delta1基因Dll1 lacZ / lacZ 的功能丧失等位基因纯合的小鼠在胚胎发育过程中死亡。在这里,我们介绍了两个由表型驱动的修饰语屏幕的结果。将杂合子Dll1 lacZ 基因敲除动物与经ENU诱变的小鼠杂交,并筛选依赖于Delta1功能丧失等位基因的形态,临床化学和免疫学变异。首先,我们证明了诱变的杂合Dll1 lacZ 后代具有减轻的体重并改变了特定的临床化学参数,包括与肾脏功能相关的代谢物和电解质的变化。在我们的诱变筛选中,我们成功地产生了35个新的突变株。主要感兴趣的是7个突变株,它们表现出Dll1 lacZ / + 依赖性表型。这些突变小鼠系为研究Notch信号在肾脏和肝脏功能,胆固醇和铁代谢,细胞命运决定以及免疫系统中T细胞成熟过程中的作用提供了出色的体内工具。

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