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首页> 外文期刊>Genes and immunity. >Overlapping BXSB congenic intervals, in combination with microarray gene expression, reveal novel lupus candidate genes.
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Overlapping BXSB congenic intervals, in combination with microarray gene expression, reveal novel lupus candidate genes.

机译:重叠的BXSB同基因间隔,结合微阵列基因表达,揭示了新的狼疮候选基因。

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The BXSB mouse strain is an important model of glomerulonephritis observed in systemic lupus erythematosus (SLE). Linkage studies have successfully identified disease-susceptibility intervals; however, extracting the identity of the susceptibility gene(s) in such regions is the crucial next step. Congenic mouse strains present a defined genetic resource that is highly amenable to microarray analysis. We have performed microarray analysis using a series of chromosome 1 BXSB congenic mice with partially overlapping disease-susceptibility intervals. Simultaneous comparison of the four congenic lines allowed the identification of expression differences associated with both the initiation and progression of disease. Thus, we have identified a number of novel SLE disease gene candidates and have confirmed the identity of Ifi202 as a disease candidate in the BXSB strain. Sequencing of the promoter regions of Gas5 has revealed polymorphisms in the BXSB strain, which may account for the differential expression profile. Furthermore, the combination of the microarray results with the different phenotypes of these mice has allowed the identification of a number of expression differences that do not necessarily map to the congenic interval, but may be implicated in disease pathways.Genes and Immunity (2006) 7, 250-263. doi:10.1038/sj.gene.6364294; published online 16 March 2006.
机译:BXSB小鼠品系是在系统性红斑狼疮(SLE)中观察到的肾小球肾炎的重要模型。连锁研究成功地确定了疾病易感性区间;然而,在这些区域提取敏感基因的身份是至关重要的下一步。同系小鼠品系提供了明确的遗传资源,非常适合微阵列分析。我们已经使用一系列具有部分重叠疾病易感性区间的1号染色体BXSB同基因小鼠进行了微阵列分析。同时比较四个同系系可以鉴定与疾病的发生和发展相关的表达差异。因此,我们鉴定了许多新的SLE疾病基因候选者,并确认了Ifi202作为BXSB菌株中的候选疾病的身份。 Gas5启动子区域的测序已揭示BXSB菌株中的多态性,这可能解释了差异表达谱。此外,将微阵列结果与这些小鼠的不同表型结合起来,可以鉴定出许多表达差异,这些差异不一定映射到同基因区间,但可能与疾病途径有关.Genes and Immunity(2006)7 250-263。 doi:10.1038 / sj.gene.6364294;在线发布于2006年3月16日。

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