Theuns Jessie, Brouwers Nathalie, Engelborghs Sebastiaan, Sleegers Kristel, Bogaerts Veerle, Corsmit Ellen, De Pooter Tim, van Duijn Cornelia M, De Deyn Peter P, Van Broeckhoven Christine
Neurodegenerative Brain Diseases Group, Department of Molecular Genetics, University of Antwerp, Antwerpen, Belgium.
Am J Hum Genet. 2006 Jun;78(6):936-46. doi: 10.1086/504044. Epub 2006 Apr 10.
Genetic variations in promoter sequences that alter gene expression play a prominent role in increasing susceptibility to complex diseases. Also, expression levels of APP are essentially regulated by its core promoter and 5' upstream regulatory region and correlate with amyloid beta levels in Alzheimer disease (AD) brains. Here, we systematically sequenced the proximal promoter (-766/+204) and two functional distal regions (-2634/-2159 and -2096/-1563) of APP in two independent AD series with onset ages < or =70 years (Belgian sample, n=180; Dutch sample, n=111) and identified eight novel sequence variants. Three mutations (-118C-->A, -369C-->G, and -534G-->A) identified only in patients with AD showed, in vitro, a nearly twofold neuron-specific increase in APP transcriptional activity, similar to what is expected from triplication of APP in Down syndrome. These mutations either abolished (AP-2 and HES-1) or created (Oct1) transcription-factor binding sites involved in the development and differentiation of neuronal systems. Also, two of these clustered in the 200-bp region (-540/-340) of the APP promoter that showed the highest degree of species conservation. The present study provides evidence that APP-promoter mutations that significantly increase APP expression levels are associated with AD.
启动子序列中的遗传变异可改变基因表达,在增加对复杂疾病的易感性方面发挥着重要作用。此外,APP的表达水平主要受其核心启动子和5'上游调控区域的调节,且与阿尔茨海默病(AD)患者大脑中的β淀粉样蛋白水平相关。在此,我们对两个发病年龄≤70岁的独立AD系列样本(比利时样本,n = 180;荷兰样本,n = 111)中的APP近端启动子(-766/+204)以及两个功能性远端区域(-2634/-2159和-2096/-1563)进行了系统测序,共鉴定出8个新的序列变异。仅在AD患者中发现的3个突变(-118C→A、-369C→G和-534G→A)在体外实验中显示,APP转录活性在神经元中特异性增加了近两倍,类似于唐氏综合征中APP三倍体的预期效果。这些突变要么消除了(AP-2和HES-1),要么产生了(Oct1)参与神经系统发育和分化的转录因子结合位点。此外,其中两个突变聚集在APP启动子的200 bp区域(-540/-340),该区域显示出最高程度的物种保守性。本研究提供了证据表明,显著增加APP表达水平的APP启动子突变与AD相关。