首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Screening a library of potential prion therapeutics against cellular prion proteins and insights into their mode of biological activities by surface plasmon resonance.
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Screening a library of potential prion therapeutics against cellular prion proteins and insights into their mode of biological activities by surface plasmon resonance.

机译:筛选针对细胞病毒蛋白的潜在病毒治疗剂文库,并通过表面等离振子共振深入了解其生物活性模式。

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The conversion of cellular prion protein (PrP(C)) to the protease resistant isoform (PrP(Sc)) is considered essential for the progression of transmissible spongiform encephalopathies (TSEs). A potential therapeutic strategy for preventing the accumulation of PrP(Sc) is to stabilize PrP(C) through the direct binding of a small molecule to make conversion less energetically favourable. Using surface plasmon resonance (SPR)-based technology we have developed a procedure, based on direct binding, for the screening of small molecules against PrP(C) immobilized on a sensor chip. In this paper we report some problems associated with the immobilization of PrP(C) onto the sensor surface for conducting drug screening and how these problems were overcome. We demonstrated that the conformational change of PrP(C) on the chip surface leads to increased exposure of the C-terminal which was observed by the increase in quinacrine binding over time, and loss of heparin binding to the N-terminal. In addition, we also report the results of the successful screening of a library of 47 compounds of known activity in cell line or cell free conversion studies for direct binding to three forms of PrP(C) (huPrP(C), t-huPrP(C) and moPrP(C)). These results show the usefulness of this technique for the identification of PrP(C) binding ligands and to gain some insight as to their potential mode of action.
机译:细胞病毒蛋白(PrP(C))向蛋白酶抗性同工型(PrP(Sc))的转化被认为对可传播的海绵状脑病(TSE)的发展至关重要。防止PrP(Sc)积累的潜在治疗策略是通过小分子的直接结合来稳定PrP(C),从而使转化在能量上不利。使用基于表面等离振子共振(SPR)的技术,我们开发了一种基于直接结合的程序,用于筛选针对固定在传感器芯片上的PrP(C)的小分子。在本文中,我们报告了与PrP(C)固定到传感器表面进行药物筛选相关的一些问题,以及如何克服这些问题。我们证明,芯片表面上PrP(C)的构象变化会导致C端暴露增加,这可以通过奎纳克林结合量随时间的增加而观察到,而肝素与N端结合的损失也可以观察到。此外,我们还报告了在细胞系或无细胞转化研究中成功筛选47种已知活性化合物的文库,以直接结合三种形式的PrP(C)(huPrP(C),t-huPrP( C)和moPrP(C))。这些结果表明该技术对于鉴定PrP(C)结合配体的有用性,并获得有关其潜在作用方式的一些见识。

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