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A novel mouse model for Down syndrome that harbor a single copy of human artificial chromosome (HAC) carrying a limited number of genes from human chromosome 21

机译:一种新型的唐氏综合症小鼠模型,该模型包含单个副本的人类人工染色体(HAC),其中携带来自人类21号染色体的有限数量的基因

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摘要

Down syndrome (DS), also known as Trisomy 21, is the most common chromosome aneuploidy in live-born children and displays a complicated symptom. To date, several kinds of mouse models have been generated to understand the molecular pathology of DS, yet the gene dosage effects and gene(s)-phenotype(s) correlation are not well understood. In this study, we established a novel method to generate a partial trisomy mice using the mouse ES cells that harbor a single copy of human artificial chromosome (HAC), into which a small human DNA segment containing human chromosome 21 genes cloned in a bacterial artificial chromosome (BAC) was recombined. The produced mice were found to maintain the HAC carrying human genes as a mini-chromosome, hence termed as a Trans-Mini-Chromosomal (TMC) mouse, and HAC was transmitted for more than twenty generations independent from endogenous mouse chromosomes. The three human transgenes including cystathionine beta-synthase, U2 auxiliary factor and crystalline alpha A were expressed in several mouse tissues with various expression levels relative to mouse endogenous genes. The novel system is applicable to any of human and/or mouse BAC clones. Thus, the TMC mouse carrying a HAC with a limited number of genes would provide a novel tool for studying gene dosage effects involved in the DS molecular pathogenesis and the gene(s)-phenotype(s) correlation.
机译:唐氏综合症(DS),也称为21三体综合征,是活产儿中最常见的染色体非整倍性,表现出复杂的症状。迄今为止,已经产生了几种小鼠模型来理解DS的分子病理学,但是基因剂量效应和基因-表型相关性还没有被很好地理解。在这项研究中,我们建立了一种新颖的方法,可使用带有人类人工染色体(HAC)单拷贝的小鼠ES细胞生成部分三体性小鼠,其中将包含人类21号染色体基因的小人类DNA片段克隆到细菌人工染色体(BAC)重组。发现产生的小鼠将携带人类基因的HAC维持为微型染色体,因此被称为反微型染色体(TMC)小鼠,并且HAC的传播独立于内源小鼠染色体已有20多个世代。相对于小鼠内源基因,包括胱硫醚β合酶,U2辅助因子和结晶αA的三种人类转基因在几种小鼠组织中表达,表达水平各异。该新颖系统适用于任何人和/或小鼠BAC克隆。因此,携带带有有限数量基因的HAC的TMC小鼠将为研究与DS分子发病机理和基因-表型相关性相关的基因剂量效应提供一种新颖的工具。

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