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Identification of a novel asthma susceptibility gene on chromosome 1qter and its functional evaluation.

机译:1qter染色体上一个新的哮喘易感基因的鉴定及其功能评估。

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Asthma is a multifactorial disease, in which the intricate interplay between genetic and environmental factors underlies the overall phenotype of the disease. Using a genome-wide scan for linkage in a population comprising of Danish families, we identified a novel linked locus on chromosome 1qter (LOD 3.6, asthma) and supporting evidence for this locus was identified for both asthma and atopic-asthma phenotypes in the GAIN (Genetics of Asthma International Network) families. The putative susceptibility gene was progressively localized to a 4.5 Mb region on chromosome 1q adjacent to the telomere, through a series of genotyping screens. Further screening using the pedigree-based association test (PBAT) identified polymorphisms in the OPN3 and CHML genes as being associated with asthma and atopic asthma after correcting for multiple comparisons. We observed that polymorphisms flanking the OPN3 and CHML genes wholly accounted for the original linkage in the Danish population and the genetic association wasalso confirmed in two separate studies involving the GAIN families. OPN3 and CHML are unique genes with no known function that are related to the pathophysiology of asthma. Significantly, analysis of gene expression at both RNA and protein levels, clearly demonstrated OPN3 expression in lung bronchial epithelia as well as immune cells, while CHML expression appeared minimal. Moreover, OPN3 down-regulation by siRNA knock-down in Jurkat cells suggested a possible role for OPN3 in modulation of T-cell responses. Collectively, these data suggest that OPN3 is an asthma susceptibility gene on 1qter, which unexpectedly may play a role in immune modulation.
机译:哮喘是一种多因素疾病,其中遗传因素和环境因素之间的复杂相互作用是该疾病总体表型的基础。使用全基因组扫描在丹麦家庭组成的人群中的连锁,我们在染色体1qter(LOD 3.6,哮喘)上鉴定了一个新的连锁基因座,并为GAIN中哮喘和特应性哮喘表型确定了该基因座的支持证据(哮喘国际网络遗传学)家族。通过一系列的基因分型筛选,推定的易感基因逐渐位于邻近端粒的1q染色体上的4.5 Mb区域。在校正多重比较后,使用基于谱系的关联测试(PBAT)进行的进一步筛选将OPN3和CHML基因中的多态性确定为与哮喘和特应性哮喘有关。我们观察到,OPN3和CHML基因两侧的多态性完全构成了丹麦人群中的原始连锁,并且在涉及GAIN家族的两项独立研究中也证实了遗传关联。 OPN3和CHML是与哮喘的病理生理学相关的未知功能的独特基因。重要的是,在RNA和蛋白质水平上的基因表达分析清楚地证明了OPN3在肺支气管上皮细胞和免疫细胞中的表达,而CHML的表达则最小。此外,在Jurkat细胞中通过siRNA敲低OPN3下调提示OPN3在调节T细胞反应中可能发挥作用。总体而言,这些数据表明OPN3是1qter上的哮喘易感基因,其可能出乎意料地在免疫调节中起作用。

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