Prions from Sporadic Creutzfeldt-Jakob Disease Patients Propagate as Strain Mixtures
MBIO
Authors: Cassard, Herve; Huor, Alvina; Espinosa, Juan-Carlos; Douet, Jean-Yves; Lugan, Severine; Aron, Naima; Vilette, Didier; Delisle, Marie-Bernadette; Marin-Moreno, Alba; Peran, Patrice; Beringue, Vincent; Maria Torres, Juan; Ironside, James W.; Andreoletti, Olivier
Abstract
Sporadic Creutzfeldt-Jakob disease (sCJD) cases are currently classified according to the methionine/valine polymorphism at codon 129 of the PRNP gene and the proteinase K-digested abnormal prion protein (PrPres) isoform identified by Western blotting (type 1 or type 2). Converging evidence led to the view that MM/MV1, VV/MV2, and VV1 and MM2 sCJD cases are caused by distinct prion strains. However, in a significant proportion of sCJD patients, both type 1 and type 2 PrPres were reported to accumulate in the brain, which raised questions about the diversity of sCJD prion strains and the coexistence of two prion strains in the same patient. In this study, a panel of sCJD brain isolates (n = 29) that displayed either a single or mixed type 1/type 2 PrPres were transmitted into human-PrP-expressing mice (tgHu). These bioassays demonstrated that two distinct prion strains (M1(CJD) and V2(CJD)) were associated with the development of sCJD in MM1/MV1 and VV2/MV2 patients. However, in about 35% of the investigated VV and MV cases, transmission results were consistent with the presence of both M1(CJD) and V2(CJD) strains, including in patients who displayed a "pure" type 1 or type 2 PrPres. The use of a highly sensitive prion in vitro amplification technique that specifically probes the V2(CJD) strain revealed the presence of the V2(CJD) prion in more than 80% of the investigated isolates, including isolates that propagated as a pure M1(CJD) strain in tgHu. These results demonstrate that at least two sCJD prion strains can be present in a single patient. IMPORTANCE sCJD occurrence is currently assumed to result from spontaneous and stochastic formation of a misfolded PrP nucleus in the brains of affected patients. This original nucleus then recruits and converts nascent PrPC into PrPSc, leading to the propagation of prions in the patient's brain. Our study demonstrates the coexistence of two prion strains in the brains of a majority of the 23 sCJD patients investigated. The relative proportion of these sCJD strains varied both between patients and between brain areas in a single patient. These findings strongly support the view that the replication of an sCJD prion strain in the brain of a patient can result in the propagation of different prion strain subpopulations. Beyond its conceptual importance for our understanding of prion strain properties and evolution, the sCJD strain mixture phenomenon and its frequency among patients have important implications for the development of therapeutic strategies for prion diseases.
Identification of novel risk loci and causal insights for sporadic Creutzfeldt-Jakob disease: a genome-wide association study
LANCET NEUROLOGY
Authors: Jones, Emma; Hummerich, Holger; Vir, Emmanuelle; Uphill, James; Dimitriadis, Athanasios; Speedy, Helen; Campbell, Tracy; Norsworthy, Penny; Quinn, Liam; Whitfield, Jerome; Linehan, Jacqueline; Jaunmuktane, Zane; Brandner, Sebastian; Jat, Parmjit; Nihat, Akin; Mok, Tze How; Ahmed, Parvin; Collins, Steven; Stehmann, Christiane; Sarros, Shannon; Kovacs, Gabor G.; Geschwind, Michael D.; Golubjatnikov, Aili; Frontzek, Karl; Budka, Herbert; Aguzzi, Adriano; Karamujic-Comic, Hata; van der Lee, Sven J.; Ibrahim-Verbaas, Carla A.; van Duijn, Cornelia M.; Sikorska, Beata; Golanska, Ewa; Liberski, Pawel P.; Calero, Miguel; Calero, Olga; Sanchez-Juan, Pascual; Salas, Antonio; Martinon-Torres, Federico; Bouaziz-Amar, Elodie; Haik, Stephane; Laplanche, Jean-Louis; Brandel, Jean-Phillipe; Amouyel, Phillipe; Lambert, Jean-Charles; Parchi, Piero; Bartoletti-Stella, Anna; Capellari, Sabina; Poleggi, Anna; Ladogana, Anna; Pocchiari, Maurizio; Aneli, Serena; Matullo, Giuseppe; Knight, Richard; Zafar, Saima; Zerr, Inga; Booth, Stephanie; Coulthart, Michael B.; Jansen, Gerard H.; Glisic, Katie; Blevins, Janis; Gambetti, Pierluigi; Safar, Jiri; Appleby, Brian; Collinge, John; Mead, Simon
Abstract
Background Human prion diseases are rare and usually rapidly fatal neurodegenerative disorders, the most common being sporadic Creutzfeldt-Jakob disease (sCJD). Variants in the PRNP gene that encodes prion protein are strong risk factors for sCJD but, although the condition has similar heritability to other neurodegenerative disorders, no other genetic risk loci have been confirmed. We aimed to discover new genetic risk factors for sCJD, and their causal mechanisms. Methods We did a genome-wide association study of sCJD in European ancestry populations (patients diagnosed with probable or definite sCJD identified at national CJD referral centres) with a two-stage study design using genotyping arrays and exome sequencing. Conditional, transcriptional, and histological analyses of implicated genes and proteins in brain tissues, and tests of the effects of risk variants on clinical phenotypes, were done using deep longitudinal clinical cohort data. Control data from healthy individuals were obtained from publicly available datasets matched for country. Findings Samples from 5208 cases were obtained between 1990 and 2014. We found 41 genome-wide significant single nucleotide polymorphisms (SNPs) and independently replicated findings at three loci associated with sCJD risk; within PRNP (rs1799990; additive model odds ratio [OR] 1.23 [95% CI 1.17-1.30], p=2.68 x 10(-15); heterozygous model p=1.01 x 10(-135)), STX6 (rs3747957; OR 1.16 [1.10-1.22], p=9.74 x 10(-9)), and GAL3ST1 (rs2267161; OR 1.18 [1.12-1.25], p=8.60 x 10(-10)). Follow-up analyses showed that associations at PRNP and GAL3ST1 are likely to be caused by common variants that alter the protein sequence, whereas risk variants in STX6 are associated with increased expression of the major transcripts in disease-relevant brain regions. Interpretation We present, to our knowledge, the first evidence of statistically robust genetic associations in sporadic human prion disease that implicate intracellular trafficking and sphingolipid metabolism as molecular causal mechanisms. Risk SNPs in STX6 are shared with progressive supranuclear palsy, a neurodegenerative disease associated with misfolding of protein tau, indicating that sCJD might share the same causal mechanisms as prion-like disorders. Copyright (C) 2020 Elsevier Ltd. All rights reserved.