Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology, Baldiri Reixac 10-12, 08028 Barcelona, Spain. Electronic address: https://twitter.com/@mseumaar.
Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology, Baldiri Reixac 10-12, 08028 Barcelona, Spain.
Curr Opin Genet Dev. 2022 Aug;75:101941. doi: 10.1016/j.gde.2022.101941. Epub 2022 Jun 28.
Yeast genetics made it possible to derive the first fundamental insights into prion composition, conformation, and propagation. Fast-forward 30 years and the same model organism is now proving an extremely powerful tool to comprehensively explore the impact of mutations in prion sequences on their function, toxicity, and physical properties. Here, we provide an overview of novel multiplexed strategies where deep mutagenesis is combined to a range of tailored selection assays in yeast, which are particularly amenable for investigating prions and prion-like sequences. By mimicking evolution in a flask, these multiplexed approaches are revealing mechanistic insights on the consequences of prion self-assembly, while also reporting on the structure prion sequences adopt in vivo.
酵母遗传学使人们能够首次深入了解朊病毒的组成、构象和传播。30 年后,同样的模式生物现在正被证明是一种极其强大的工具,可以全面探索朊病毒序列突变对其功能、毒性和物理性质的影响。在这里,我们提供了一种新的多重策略概述,其中深度诱变与一系列针对酵母的定制选择测定相结合,这些测定特别适用于研究朊病毒和朊病毒样序列。通过在瓶中模拟进化,这些多重方法揭示了朊病毒自我组装后果的机制性见解,同时还报告了朊病毒序列在体内采用的结构。