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Using BAC transgenesis in zebrafish to identify regulatory sequences of the amyloid precursor protein gene in humans

机译:使用斑马鱼中的BAC转基因鉴定人类淀粉样前体蛋白基因的调控序列

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摘要

BackgroundNon-coding DNA in and around the human Amyloid Precursor Protein (APP) gene that is central to Alzheimer’s disease (AD) shares little sequence similarity with that of appb in zebrafish. Identifying DNA domains regulating expression of the gene in such situations becomes a challenge. Taking advantage of the zebrafish system that allows rapid functional analyses of gene regulatory sequences, we previously showed that two discontinuous DNA domains in zebrafish appb are important for expression of the gene in neurons: an enhancer in intron 1 and sequences 28–31 kb upstream of the gene. Here we identify the putative transcription factor binding sites responsible for this distal cis-acting regulation, and use that information to identify a regulatory region of the human APP gene.
机译:背景阿尔茨海默氏病(AD)中心的人类淀粉样前体蛋白(APP)基因及其周围的非编码DNA与斑马鱼的appb几乎没有序列相似性。在这种情况下,鉴定调节基因表达的DNA结构域成为挑战。利用斑马鱼系统可以对基因调控序列进行快速功能分析,我们先前表明,斑马鱼appb中的两个不连续DNA结构域对于神经元中的基因表达非常重要:内含子1的增强子和其上游28-31 kb的序列基因。在这里,我们确定负责此远端顺式作用调节的假定的转录因子结合位点,并使用该信息来识别人APP基因的调节区。

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