首页> 外文期刊>The European Journal of Neuroscience >Microarray-assisted fine mapping of quantitative trait loci on chromosome 15 for susceptibility to seizure-induced cell death in mice
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Microarray-assisted fine mapping of quantitative trait loci on chromosome 15 for susceptibility to seizure-induced cell death in mice

机译:芯片辅助对15号染色体上的数量性状基因座进行精细定位的小鼠易诱发癫痫发作的细胞死亡

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Prior studies with crosses of the FVB/NJ (FVB; seizure-induced cell death-susceptible) mouse and the C57BL/6J (B6; seizure-induced cell death-resistant) mouse revealed the presence of a quantitative trait locus (QTL) on chromosome 15 that influenced susceptibility to kainic acid-induced cell death (Sicd2). In an earlier study, we confirmed that the Sicd2 interval harbors gene(s) conferring strong protection against seizure-induced cell death through the creation of the FVB.B6-Sicd2 congenic strain, and created three interval-specific congenic lines (ISCLs) that encompass Sicd2 on chromosome 15 to fine-map this locus. To further localise this Sicd2 QTL, an additional congenic line carrying overlapping intervals of the B6 segment was created (ISCL-4), and compared with the previously created ISCL-1-ISCL-3 and assessed for seizure-induced cell death phenotype. Whereas all of the ISCLs showed reduced cell death associated with the B6 phenotype, ISCL-4, showed the most extensive reduction in seizure-induced cell death throughout all hippocampal subfields. In order to characterise the susceptibility loci on Sicd2 by use of this ISCL and identify compelling candidate genes, we undertook an integrative genomic strategy of comparing exon transcript abundance in the hippocampus of this newly developed chromosome 15 subcongenic line (ISCL-4) and FVB-like littermates. We identified 10 putative candidate genes that are alternatively spliced between the strains and may govern strain-dependent differences in susceptibility to seizure-induced excitotoxic cell death. These results illustrate the importance of identifying transcriptomics variants in expression studies, and implicate novel candidate genes conferring susceptibility to seizure-induced cell death. It is clear that genetic factors play a role in determining susceptibility to seizure-induced cell death among strains of mice. Here, we used an integrative transcriptomic and genomic approach to identify novel candidate genes contributing to the trait of seizure-induced cell death in mice. We identified nine putative candidate genes that are alternatively spliced between the strains and may provide new insights into the neuropathological sequelae of epilepsy.
机译:先前对FVB / NJ(FVB;癫痫发作引起的细胞死亡易感)小鼠和C57BL / 6J(B6;癫痫发作引起的细胞死亡抗性)小鼠的杂交研究表明,在其上存在定量性状基因座(QTL)影响对海藻酸诱导的细胞死亡(Sicd2)易感性的15号染色体。在较早的研究中,我们证实了Sicd2间隔具有通过创建FVB.B6-Sicd2同系品系而赋予强大的抗癫痫发作诱导的细胞死亡保护的基因,并创建了三个间隔特定的同系品系(ISCL)包含在15号染色体上的Sicd2以精细定位此基因座。为了进一步定位此Sicd2 QTL,创建了一个附加的B6段重叠间隔的同系品系(ISCL-4),并与先前创建的ISCL-1-ISCL-3进行了比较,并评估了癫痫诱发的细胞死亡表型。尽管所有ISCL均显示出与B6表型相关的细胞死亡减少,ISCL-4在所有海马亚域中均最广泛地减少了癫痫发作诱导的细胞死亡。为了通过使用此ISCL表征Sicd2上的易感基因座并鉴定引人注目的候选基因,我们采取了整合基因组策略,比较了这种新近开发的15号染色体亚基因系(ISCL-4)和FVB-在海马中的外显子转录本丰度。像同窝仔。我们确定了10个推定的候选基因,这些候选基因在菌株之间交替剪接,并可能控制癫痫发作诱发的兴奋性毒性细胞死亡敏感性的菌株依赖性差异。这些结果说明了在表达研究中鉴定转录组学变体的重要性,并暗示赋予癫痫发作诱发的细胞死亡易感性的新候选基因。显然,遗传因素在确定小鼠品系中癫痫诱发的细胞死亡的易感性中起着作用。在这里,我们使用了整合的转录组学和基因组学方法来鉴定有助于小鼠癫痫发作诱导的细胞死亡特性的新型候选基因。我们确定了九个假定的候选基因,这些候选基因在菌株之间交替剪接,可能为癫痫的神经病理学后遗症提供新的见解。

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