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Danish dementia mice suggest that loss of function and not the amyloid cascade causes synaptic plasticity and memory deficits

机译:丹麦痴呆症小鼠提示功能丧失而非淀粉样蛋白级联反应会引起突触可塑性和记忆力减退

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摘要

According to the prevailing "amyloid cascade hypothesis," genetic dementias such as Alzheimer's disease and familial Danish dementia (FDD) are caused by amyloid deposits that trigger tauopathy, neurodegeneration, and behavioral/cognitive alterations. To efficiently reproduce amyloid lesions, murine models of human dementias invariably use transgenic expression systems. However, recent FDD transgenic models showed that Danish amyloidosis does not cause memory defects, suggesting that other mechanisms cause Danish dementia. We studied an animal knock-in model of FDD (FDDKI/+) genetically congruous with human cases. FDDKI/+ mice present reduced Bri2 levels, impaired synaptic plasticity and severe hippocampal memory deficits. These animals show no cerebral lesions that are reputed characteristics of human dementia, such as tangles or amyloid plaques. Bri2(+/-) mice exhibit synaptic and memory deficits similar to FDDKI/+ mice, and memory loss of FDDKI/+ mice is prevented by expression of WT BRI2, indicating that Danish dementia is caused by loss of BRI2 function. Together, the data suggest that clinical dementia in Danish patients occurs via a loss of function mechanism and not as a result of amyloidosis and tauopathy.
机译:根据流行的“淀粉样蛋白级联假说”,遗传性痴呆症,例如阿尔茨海默氏病和家族性丹麦痴呆症(FDD),是由触发tauopathy,神经变性和行为/认知改变的淀粉样蛋白沉积引起的。为了有效地复制淀粉样蛋白损伤,人类痴呆症的小鼠模型总是使用转基因表达系统。但是,最近的FDD转基因模型显示丹麦淀粉样变性病不会引起记忆缺陷,提示其他机制可导致丹麦痴呆症。我们研究了在基因上与人类病例相符的FDD(FDDKI / +)动物敲入模型。 FDDKI / +小鼠表现出降低的Bri2水平,受损的突触可塑性和严重的海马记忆缺陷。这些动物没有显示出人类痴呆症的特征性脑损伤,例如缠结或淀粉样斑块。 Bri2(+/-)小鼠表现出类似于FDDKI / +小鼠的突触和记忆缺陷,并且通过WT BRI2的表达防止FDDKI / +小鼠的记忆丧失,这表明丹麦痴呆症是由BRI2功能的丧失引起的。总之,数据表明丹麦患者的临床痴呆是通过功能机制丧失而不是淀粉样变性和tauopathy引起的。

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