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Systematic Identification of Antiprion Drugs by High-Throughput Screening Based on Scanning for Intensely Fluorescent Targets

机译:高通量筛选基于强荧光靶标的高通量筛选对抗pr病毒药物的系统鉴定

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摘要

Conformational changes and aggregation of specific proteins are hallmarks of a number of diseases, like Alzheimer's disease, Parkinson's disease, and prion diseases. In the case of prion diseases, the prion protein (PrP), a neuronal glycoprotein, undergoes a conformational change from the normal, mainly alpha-helical conformation to a disease-associated, mainly beta-sheeted scrapie isoform (PrPSc), which forms amyloid aggregates. This conversion, which is crucial for disease progression, depends on direct PrPC/PrPSc interaction. We developed a high-throughput assay based on scanning for intensely fluorescent targets (SIFT) for the identification of drugs which interfere with this interaction at the molecular level. Screening of a library of 10,000 drug-like compounds yielded 256 primary hits, 80 of which were confirmed by dose response curves with half-maximal inhibitory effects ranging from 0.3 to 60 μM. Among these, six compounds displayed an inhibitory effect on PrPSc propagation in scrapie-infected N2a cells. Four of these candidate drugs share an N′-benzylidene-benzohydrazide core structure. Thus, the combination of high-throughput in vitro assay with the established cell culture system provides a rapid and efficient method to identify new antiprion drugs, which corroborates that interaction of PrPC and PrPSc is a crucial molecular step in the propagation of prions. Moreover, SIFT-based screening may facilitate the search for drugs against other diseases linked to protein aggregation.
机译:特定蛋白质的构象变化和聚集是许多疾病的标志,例如阿尔茨海默氏病,帕金森氏病和病毒病。就of病毒疾病而言,the蛋白(PrP)(一种神经元糖蛋白)经历了从正常的,主要是α-螺旋构象到与疾病相关的,主要是β-折叠的瘙痒病亚型(PrPSc)的构象变化,后者形成淀粉样蛋白聚集体。对于疾病进展至关重要的这种转换取决于直接的PrPC / PrPSc相互作用。我们基于对强荧光靶标(SIFT)的扫描,开发了一种高通量测定法,用于鉴定在分子水平上干扰这种相互作用的药物。筛选10,000种药物样化合物的文库可获得256个主要结果,其中80个通过剂量反应曲线得到证实,其最大抑制作用范围为0.3至60μM。在这些化合物中,有六种化合物对在瘙痒病感染的N2a细胞中的PrPSc繁殖表现出抑制作用。这些候选药物中的四种共有N'-亚苄基-苯并肼核心结构。因此,高通量体外测定法与已建立的细胞培养系统的结合提供了一种快速有效的方法来鉴定新的抗ion病毒药物,这证实了PrPC和PrPSc的相互作用是病毒繁殖中的关键分子步骤。此外,基于SIFT的筛选可能有助于寻找针对与蛋白质聚集有关的其他疾病的药物。

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