Westmark Cara J, Westmark Pamela R, Beard Ashley M, Hildebrandt Sharon M, Malter James S
Department of Pathology & Laboratory Medicine, Waisman Center for Developmental Disabilities, University of Wisconsin Madison, WI 53705, USA.
Int J Clin Exp Pathol. 2008 Jan 1;1(2):157-68.
Alzheimer's disease and Fragile X syndrome both display synaptic phenotypes, and based on recent studies, likely share dendritic over expression of amyloid precursor protein (APP) and beta-amyloid (Abeta). In order to create a mouse model to specifically study the effects of APP and Abeta at synapses, we crossed Tg2576, which over-express human APP with the Swedish mutation (hAPPsw), with fmr-1 KO mice. The progeny, named FRAXAD, displayed increased mortality (23% by 30 days of age) compared to Tg2576 (3%) and WT and fmr-1 KO littermate controls (0%) consistent with a developmental defect. By 60 days of age, both the Tg2576 and FRAXAD mice approached a 40% mortality rate compared to 0% for WT and fmr-1 KO littermates. To understand the mechanism underlying increased mortality in APP over-expressing mice, we assessed seizure thresholds in response to pentylenetetrazol (PTZ). Both the Tg2576 and FRAXAD mice had a lower threshold to PTZ-induced seizures (average seizure score of >/=4.0) in comparison to nontransgenic littermates (average seizure score 1.9-2.9). Seizures are a major phenotype of AD, FXS, Down syndrome, autism and epilepsy, and these data suggested that developmental over-expression of dendritic APP or Abeta increased seizure susceptibility.
阿尔茨海默病和脆性X综合征均表现出突触表型,并且基于最近的研究,它们可能共同存在淀粉样前体蛋白(APP)和β-淀粉样蛋白(Aβ)在树突中的过度表达。为了创建一个专门研究APP和Aβ在突触处作用的小鼠模型,我们将过度表达带有瑞典突变的人类APP(hAPPsw)的Tg2576小鼠与fmr - 1基因敲除小鼠进行杂交。其后代名为FRAXAD,与Tg2576小鼠(3%)以及野生型和fmr - 1基因敲除同窝对照小鼠(0%)相比,显示出死亡率增加(到30日龄时为23%),这与发育缺陷一致。到60日龄时,与野生型和fmr - 1基因敲除同窝小鼠0%的死亡率相比,Tg2576和FRAXAD小鼠的死亡率均接近40%。为了了解APP过度表达小鼠死亡率增加的潜在机制,我们评估了对戊四氮(PTZ)反应的癫痫发作阈值。与非转基因同窝小鼠相比(平均癫痫发作评分为1.9 - 2.9),Tg2576和FRAXAD小鼠对PTZ诱导的癫痫发作阈值较低(平均癫痫发作评分≥4.0)。癫痫发作是阿尔茨海默病、脆性X综合征、唐氏综合征、自闭症和癫痫的主要表型,这些数据表明树突状APP或Aβ的发育性过度表达增加了癫痫易感性。