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Genome-editing applications of CRISPR–Cas9 to promote in vitro studies of Alzheimer’s disease

机译:CRISPR–Cas9的基因组编辑应用可促进阿尔茨海默氏病的体外研究

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Genetic variations play an important role in the clinical presentation and progression of Alzheimer’s disease (AD), especially early-onset Alzheimer’s disease. Hundreds of mutations have been reported with the majority resulting from alterations in β-amyloid precursor protein ( APP ), presenilin 1 ( PSEN1 ), or presenilin 2 ( PSEN2 ) genes. The roles of these mutations in the pathogenesis of AD have been classically confirmed or refuted through functional studies, where the mutations are cloned, inserted into cell lines, and monitored for changes in various properties including cell survival, amyloid production, or Aβ42/40 ratio. However, these verification studies tend to be expensive, time consuming, and inconsistent. Recently, the clustered regularly interspaced short palindromic repeats-CRISPR-associated protein?9 (CRISPR–Cas9) system was developed, which improves sequence-specific gene editing in cell lines, organs, and animals. CRISPR–Cas9 is a promising tool for the generation of models of human genetic diseases and could facilitate the establishment of new animal AD models and the observation of dynamic bioprocesses in AD. Here, we recapitulated the history of CRISPR technology, recent progress, and, especially, its potential applications in AD-related genetic, animal modeling, and functional studies.
机译:遗传变异在阿尔茨海默氏病(AD)(尤其是早发性阿尔茨海默氏病)的临床表现和进展中起着重要作用。据报道有数百种突变,其中大多数是由β-淀粉样蛋白前体蛋白(APP),早老素1(PSEN1)或早老素2(PSEN2)基因的改变引起的。这些突变在AD发病机理中的作用已通过功能研究得到经典证实或驳斥,其中将突变克隆,插入细胞系并监测各种特性的变化,包括细胞存活,淀粉样蛋白生成或Aβ42/ 40比。但是,这些验证研究往往很昂贵,耗时且不一致。最近,开发了簇状规则间隔的短回文重复序列-CRISPR-相关蛋白?9(CRISPR–Cas9)系统,该系统改善了细胞系,器官和动物的序列特异性基因编辑。 CRISPR–Cas9是用于人类遗传疾病模型生成的有前途的工具,可以促进新动物AD模型的建立和AD动态生物过程的观察。在这里,我们概述了CRISPR技术的历史,最新进展,尤其是其在与AD相关的遗传,动物模型和功能研究中的潜在应用。

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