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Genetic Dissection of the Amyloid Precursor Protein in Developmental Function and Amyloid Pathogenesis

机译:发育功能和淀粉样蛋白发病机制淀粉样蛋白前体蛋白的遗传解剖

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Proteolytic processing of the amyloid precursor protein (APP) generates large soluble APP derivatives, β-amyloid (Aβ) peptides, and APP intracellular domain. Expression of the extracellular sequences of APP or its Caenorhabditis elegans counterpart has been shown to be sufficient in partially rescuing the CNS phenotypes of the APP-deficient mice and the lethality of the apl-1 null C. elegans, respectively, leaving open the question as what is the role of the highly conserved APP intracellular domain? To address this question, we created an APP knock-in allele in which the mouse Aβ sequence was replaced by the human Aβ. A frameshift mutation was introduced that replaced the last 39 residues of the APP sequence. We demonstrate that the C-terminal mutation does not overtly affect APP processing and amyloid pathology. In contrast, crossing the mutant allele with APP-like protein 2 (APLP2)-null mice results in similar neuromuscular synapse defects and early postnatal lethality as compared with mice doubly deficient in APP and APLP2, demonstrating an indispensable role of the APP C-terminal domain in these development activities. Our results establish an essential function of the conserved APP intracellular domain in developmental regulation, and this activity can be genetically uncoupled from APP processing and Aβ pathogenesis.
机译:淀粉样前体蛋白(APP)的蛋白水解加工产生大量可溶性APP衍生物,β淀粉样蛋白(Aβ)肽和APP胞内结构域。 APP或其秀丽隐杆线虫对应的胞外序列的表达已被证明是足够在部分地拯救APP-缺陷小鼠的表型CNS和APL-1空线虫的致死率,分别留下开放的问题如什么是高度保守的APP胞内结构域的作用?为了解决这个问题,我们创建了一个APP敲入在小鼠Aβ序列被人Aβ替代等位基因。移码突变引入取代了APP序列的最后39个残基。我们表明,C末端突变不会过度影响APP加工和淀粉样病变。与此相反,穿越状APP蛋白2(APLP2)以类似于神经肌肉突触缺陷和出生后早期致死-null小鼠结果与小鼠相比在APP和APLP2双重缺陷,证明了APP的不可缺少的作用的突变体等位基因的C-末端域在这些开发活动。我们的研究结果建立在发育调控保守的APP胞内结构域的基本功能,而这项活动可以从APP加工和Aβ发病是遗传脱开。

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