Centre for Prions and Protein Folding Diseases, University of Alberta, Edmonton, Alberta, Canada.
Biomaterials. 2012 Oct;33(28):6808-22. doi: 10.1016/j.biomaterials.2012.06.004. Epub 2012 Jun 28.
Quinacrine and related heterocyclic compounds have antiprion activity. Since the infectious pathogen of prion diseases is composed of multimeric PrP(Sc) assemblies, we hypothesized that this antiprion property could be enhanced by attaching multiple quinacrine-derived chloroquinoline or acridine moieties to a scaffold. In addition to exploring Congo red dye and tetraphenylporphyrin tetracarboxylic acid scaffolds, which already possess intrinsic prion-binding ability; trimesic acid was used in this role. In practice, Congo red itself could not be modified with chloroquinoline or acridine units, and a modified dicarboxyl analog was also unreactive. The latter also lacked antiprion activity in infected cultured cells. While addition of chloroquinoline to a tetraphenylporphyrin tetracarboxylic acid scaffold resulted in some reduction of PrP(Sc), moieties attached to a trimesic acid scaffold exhibited sub-micromolar IC(50)'s as well as a toxicity profile superior to quinacrine. Antiprion activity of these molecules was influenced by the length, polarity, and rigidity associated with the variable linear or cyclic polyamine tethers, and in some instances was modulated by host-cell and/or strain type. Unexpectedly, several compounds in our series increased PrP(Sc) levels. Overall, inhibitory and enhancing properties of these multivalent compounds offer new avenues for structure-based investigation of prion biology.
吖啶和相关杂环化合物具有抗朊病毒活性。由于朊病毒疾病的感染病原体是由多聚体 PrP(Sc) 组装体组成的,因此我们假设通过将多个吖啶衍生的氯喹啉或吖啶部分连接到支架上,可以增强这种抗朊病毒特性。除了探索已经具有内在朊病毒结合能力的刚果红染料和四苯基卟啉四羧酸骨架外;三羧酸也在这个作用中被使用。实际上,刚果红本身不能用氯喹啉或吖啶单元修饰,而且经过修饰的二羧酸类似物也没有反应性。后者在感染的培养细胞中也缺乏抗朊病毒活性。虽然将氯喹啉添加到四苯基卟啉四羧酸支架中会导致 PrP(Sc) 的一些减少,但连接到三羧酸支架上的部分表现出亚微摩尔 IC(50)和优于奎宁的毒性特征。这些分子的抗朊病毒活性受到与可变线性或环状多胺连接物相关的长度、极性和刚性的影响,在某些情况下还受到宿主细胞和/或菌株类型的调节。出乎意料的是,我们系列中的几种化合物增加了 PrP(Sc) 水平。总体而言,这些多价化合物的抑制和增强特性为基于结构的朊病毒生物学研究提供了新的途径。