A Simple In Vitro Assay for Assessing the Efficacy, Mechanisms and Kinetics of Anti-Prion Fibril Compounds
收藏DataCite Commons2020-08-28 更新2024-07-27 收录
下载链接:
https://tandf.figshare.com/articles/A_Simple_In_Vitro_Assay_for_Assessing_the_Efficacy_Mechanisms_and_Kinetics_of_Anti-Prion_Fibril_Compounds/7097693/1
下载链接
链接失效反馈官方服务:
资源简介:
Prion diseases are caused by the conversion of normal cellular prion proteins (PrP) into lethal prion aggregates. These prion aggregates are composed of proteinase K (PK) resistant fibrils and comparatively PK-sensitive oligomers. Currently there are no anti-prion pharmaceuticals available to treat or prevent prion disease. Methods of discovering anti-prion molecules rely primarily on relatively complex cell-based, tissue slice or animal-model assays that measure the effects of small molecules on the formation of PK-resistant prion fibrils. These assays are difficult to perform and do not detect the compounds that directly inhibit oligomer formation or alter prion conversion kinetics. We have developed a simple cell-free method to characterize the impact of anti-prion fibril compounds on both the oligomer and fibril formation. In particular, this assay uses shaking-induced conversion (ShIC) of recombinant PrP in a 96-well format and resolution enhanced native acidic gel electrophoresis (RENAGE) to generate, assess and detect PrP fibrils in a high throughput fashion. The end-point PrP fibrils from this assay can be further characterized by PK analysis and negative stain transmission electron microscopy (TEM). This cell-free, gel-based assay generates metrics to assess anti-prion fibril efficacy and kinetics. To demonstrate its utility, we characterized the action of seven well-known anti-prion molecules: Congo red, curcumin, GN8, quinacrine, chloropromazine, tetracycline, and TUDCA (taurourspdeoxycholic acid), as well as four suspected anti-prion compounds: trans-resveratrol, rosmarinic acid, myricetin and ferulic acid. These findings suggest that this <i>in vitro</i> assay could be useful in identifying and comprehensively assessing novel anti-prion fibril compounds.
提供机构:
Taylor & Francis
创建时间:
2018-09-18



