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Genome-level analysis of genetic regulation of liver gene expression networks

机译:肝脏基因表达网络遗传调控的基因组水平分析

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摘要

Liver is the primary site for metabolism of nutrients, drugs and chemical agents. While metabolic pathways are complex and tightly regulated, genetic variation among individuals, reflected in variation in gene expression levels, introduces complexity into research on liver disease. This study aimed to dissect genetic networks that control liver gene expression by combining large-scale quantitative mRNA expression analysis with genetic mapping in a reference population of BXD recombinant inbred mouse strains for which extensive SNP, haplotype and phenotypic data is publicly available. We profiled gene expression in livers of naive mice of both sexes from C57BL/6J, DBA/2J, B6D2F1, and 37 BXD strains using Agilent oligonucleotide microarrays. This data was used to map quantitative trait loci (QTLs) responsible for variation in expression of about 19,000 transcripts. We identified polymorphic cis- and trans-acting loci, including several loci that control expression of large numbers of genes in liver, by comparing the physical transcript position with the location of the controlling QTL. The data is available through a public web-based resource () that allows custom data mining, identification of co-regulated transcripts and correlated phenotypes, cross-tissue and –species comparisons, as well as testing of a broad array of hypotheses.
机译:肝脏是营养物质,药物和化学物质代谢的主要场所。尽管代谢途径是复杂且受到严格调控的,但是个体之间的遗传变异反映在基因表达水平的变异中,将其引入了肝脏疾病研究的复杂性。这项研究旨在剖析通过将大规模定量mRNA表达分析与遗传作图相结合的BXD重组近交小鼠参考系参照种群中控制肝脏基因表达的遗传网络,该种群广泛公开了SNP,单倍型和表型数据。我们使用安捷伦寡核苷酸微阵列分析了来自C57BL / 6J,DBA / 2J,B6D2F1和37 BXD菌株的两性幼稚小鼠肝脏中的基因表达。该数据用于定位负责约19,000个转录本表达变化的定量性状基因座(QTL)。通过比较物理转录本位置和控制QTL的位置,我们确定了多态性顺式和反式基因座,包括几个控制肝脏中大量基因表达的基因座。可以通过基于Web的公共资源()获得数据,该资源允许自定义数据挖掘,共同调节的转录本和相关表型的标识,跨组织和物种比较以及多种假设的检验。

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