Institute of Neuropathology, University of Zurich, Zurich, Switzerland.
German Center for Neurodegenerative Diseases (DZNE), Tübingen, Germany.
PLoS Pathog. 2021 Oct 27;17(10):e1010013. doi: 10.1371/journal.ppat.1010013. eCollection 2021 Oct.
The cellular prion protein PrPC is necessary for prion replication, and its reduction greatly increases life expectancy in animal models of prion infection. Hence the factors controlling the levels of PrPC may represent therapeutic targets against human prion diseases. Here we performed an arrayed whole-transcriptome RNA interference screen to identify modulators of PrPC expression. We cultured human U251-MG glioblastoma cells in the presence of 64'752 unique siRNAs targeting 21'584 annotated human genes, and measured PrPC using a one-pot fluorescence-resonance energy transfer immunoassay in 51'128 individual microplate wells. This screen yielded 743 candidate regulators of PrPC. When downregulated, 563 of these candidates reduced and 180 enhanced PrPC expression. Recursive candidate attrition through multiple secondary screens yielded 54 novel regulators of PrPC, 9 of which were confirmed by CRISPR interference as robust regulators of PrPC biosynthesis and degradation. The phenotypes of 6 of the 9 candidates were inverted in response to transcriptional activation using CRISPRa. The RNA-binding post-transcriptional repressor Pumilio-1 was identified as a potent limiter of PrPC expression through the degradation of PRNP mRNA. Because of its hypothesis-free design, this comprehensive genetic-perturbation screen delivers an unbiased landscape of the genes regulating PrPC levels in cells, most of which were unanticipated, and some of which may be amenable to pharmacological targeting in the context of antiprion therapies.
细胞朊病毒蛋白 PrPC 是朊病毒复制所必需的,其减少大大增加了朊病毒感染动物模型的预期寿命。因此,控制 PrPC 水平的因素可能代表了针对人类朊病毒病的治疗靶点。在这里,我们进行了一个排列的全转录组 RNA 干扰筛选,以鉴定 PrPC 表达的调节剂。我们在存在 64752 种针对 21584 个注释人类基因的独特 siRNA 的情况下培养人 U251-MG 神经胶质瘤细胞,并在 51128 个微孔板孔的每个孔中使用一锅式荧光共振能量转移免疫测定法测量 PrPC。该筛选产生了 743 种 PrPC 的候选调节剂。当下调时,其中 563 种候选物降低了 PrPC 的表达,而 180 种候选物增强了 PrPC 的表达。通过多个二次筛选对候选物进行递归消耗,产生了 54 种新的 PrPC 调节剂,其中 9 种被 CRISPR 干扰证实是 PrPC 生物合成和降解的稳健调节剂。这 9 个候选物中的 6 个候选物的表型在使用 CRISPRa 进行转录激活时发生反转。RNA 结合的转录后抑制因子 Pumilio-1 通过降解 PRNP mRNA 被鉴定为 PrPC 表达的有效限制因子。由于其无假设设计,这种全面的遗传干扰筛选提供了一个无偏见的细胞中调节 PrPC 水平的基因图谱,其中大多数是意外的,其中一些可能适用于抗朊病毒治疗中的药理学靶向。