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PLOS ONE  2014 

Distinct Transmissibility Features of TSE Sources Derived from Ruminant Prion Diseases by the Oral Route in a Transgenic Mouse Model (TgOvPrP4) Overexpressing the Ovine Prion Protein

DOI: 10.1371/journal.pone.0096215

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Abstract:

Transmissible spongiform encephalopathies (TSEs) are a group of fatal neurodegenerative diseases associated with a misfolded form of host-encoded prion protein (PrP). Some of them, such as classical bovine spongiform encephalopathy in cattle (BSE), transmissible mink encephalopathy (TME), kuru and variant Creutzfeldt–Jakob disease in humans, are acquired by the oral route exposure to infected tissues. We investigated the possible transmission by the oral route of a panel of strains derived from ruminant prion diseases in a transgenic mouse model (TgOvPrP4) overexpressing the ovine prion protein (A136R154Q171) under the control of the neuron-specific enolase promoter. Sources derived from Nor98, CH1641 or 87V scrapie sources, as well as sources derived from L-type BSE or cattle-passaged TME, failed to transmit by the oral route, whereas those derived from classical BSE and classical scrapie were successfully transmitted. Apart from a possible effect of passage history of the TSE agent in the inocula, this implied the occurrence of subtle molecular changes in the protease-resistant prion protein (PrPres) following oral transmission that can raises concerns about our ability to correctly identify sheep that might be orally infected by the BSE agent in the field. Our results provide proof of principle that transgenic mouse models can be used to examine the transmissibility of TSE agents by the oral route, providing novel insights regarding the pathogenesis of prion diseases.

References

[1]  Prusiner SB, Groth DF, Bolton DC, Kent SB, Hood LE (1984) Purification and structural studies of a major scrapie prion protein. Cell 38: 127–134. doi: 10.1016/0092-8674(84)90533-6
[2]  Hoinville LJ (1996) A review of the epidemiology of scrapie in sheep. Rev Sci Tech 15: 827–852.
[3]  Miller MW, Williams ES (2003) Prion disease: horizontal prion transmission in mule deer. Nature 425: 35–36. doi: 10.1038/425035a
[4]  Wilesmith JW, Ryan JB, Atkinson MJ (1991) Bovine spongiform encephalopathy: epidemiological studies on the origin. Vet Rec 128: 199–203. doi: 10.1136/vr.128.9.199
[5]  Burger D, Hartsough GR (1965) Encephalopathy of mink. II. Experimental and natural transmission. J Infect Dis 115: 393–399. doi: 10.1093/infdis/115.4.393
[6]  Ghani AC, Donnelly CA, Ferguson NM, Anderson RM (2002) The transmission dynamics of BSE and vCJD. C R Biol 325: 37–47. doi: 10.1016/s1631-0691(02)01389-6
[7]  Hope J, Wood SC, Birkett CR, Chong A, Bruce ME, et al. (1999) Molecular analysis of ovine prion protein identifies similarities between BSE and an experimental isolate of natural scrapie, CH1641. J Gen Virol 80 (Pt 1): 1–4.
[8]  Benestad SL, Sarradin P, Thu B, Schonheit J, Tranulis MA, et al. (2003) Cases of scrapie with unusual features in Norway and designation of a new type, Nor98. Vet Rec 153: 202–208. doi: 10.1136/vr.153.7.202
[9]  Casalone C, Zanusso G, Acutis P, Ferrari S, Capucci L, et al. (2004) Identification of a second bovine amyloidotic spongiform encephalopathy: molecular similarities with sporadic Creutzfeldt-Jakob disease. Proc Natl Acad Sci U S A 101: 3065–3070. doi: 10.1073/pnas.0305777101
[10]  Biacabe AG, Laplanche JL, Ryder S, Baron T (2004) Distinct molecular phenotypes in bovine prion diseases. EMBO Rep 5: 110–115. doi: 10.1038/sj.embor.7400054
[11]  Biacabe AG, Morignat E, Vulin J, Calavas D, Baron TG (2008) Atypical bovine spongiform encephalopathies, France, 2001–2007. Emerg Infect Dis 14: 298–300. doi: 10.3201/eid1402.071141
[12]  de Pedro-Cuesta J, Glatzel M, Almazan J, Stoeck K, Mellina V, et al. (2006) Human transmissible spongiform encephalopathies in eleven countries: diagnostic pattern across time, 1993-2002. BMC Public Health 6: 278.
[13]  Outram GW, Fraser H, Wilson DT (1973) Scrapie in mice. Some effects on the brain lesion profile of ME7 agent due to genotype of donor, route of injection and genotype of recipient. J Comp Pathol 83: 19–28.
[14]  Mould DL, Dawson AM, Smith W (1967) Determination of the dosage-response curve of mice inoculated with scrapie. J Comp Pathol 77: 387–391. doi: 10.1016/0021-9975(67)90023-0
[15]  Crozet C, Flamant F, Bencsik A, Aubert D, Samarut J, et al. (2001) Efficient transmission of two different sheep scrapie isolates in transgenic mice expressing the ovine PrP gene. J Virol 75: 5328–5334. doi: 10.1128/jvi.75.11.5328-5334.2001
[16]  Baron T, Biacabe AG (2007) Molecular behaviors of “CH1641-like” sheep scrapie isolates in ovine transgenic mice (TgOvPrP4). J Virol 81: 7230–7237. doi: 10.1128/jvi.02475-06
[17]  Bencsik A, Philippe S, Debeer S, Crozet C, Calavas D, et al. (2007) Scrapie strain transmission studies in ovine PrP transgenic mice reveal dissimilar susceptibility. Histochem Cell Biol 127: 531–539. doi: 10.1007/s00418-007-0276-8
[18]  Baron T, Bencsik A, Biacabe AG, Morignat E, Bessen RA (2007) Phenotypic similarity of transmissible mink encephalopathy in cattle and L-type bovine spongiform encephalopathy in a mouse model. Emerg Infect Dis 13: 1887–1894. doi: 10.3201/eid1312.070635
[19]  Arsac JN, Betemps D, Morignat E, Feraudet C, Bencsik A, et al. (2009) Transmissibility of atypical scrapie in ovine transgenic mice: major effects of host prion protein expression and donor prion genotype. PLoS One 4: e7300. doi: 10.1371/journal.pone.0007300
[20]  Nicot S, Baron TG (2009) Strain-specific proteolytic processing of the prion protein in prion diseases of ruminants transmitted in ovine transgenic mice. J Gen Virol 91: 570–574. doi: 10.1099/vir.0.014464-0
[21]  Crozet C, Lezmi S, Flamant F, Samarut J, Baron T, et al. (2007) Peripheral circulation of the prion infectious agent in transgenic mice expressing the ovine prion protein gene in neurons only. J Infect Dis 195: 997–1006. doi: 10.1086/512085
[22]  Baron T, Bencsik A, Morignat E (2010) Prions of ruminants show distinct splenotropisms in an ovine transgenic mouse model. PLoS One 5: e10310. doi: 10.1371/journal.pone.0010310
[23]  Baron T, Crozet C, Biacabe AG, Philippe S, Verchere J, et al. (2004) Molecular analysis of the protease-resistant prion protein in scrapie and bovine spongiform encephalopathy transmitted to ovine transgenic and wild-type mice. J Virol 78: 6243–6251. doi: 10.1128/jvi.78.12.6243-6251.2004
[24]  Arsac JN, Andreoletti O, Bilheude JM, Lacroux C, Benestad SL, et al. (2007) Similar biochemical signatures and prion protein genotypes in atypical scrapie and Nor98 cases, France and Norway. Emerg Infect Dis 13: 58–65. doi: 10.3201/eid1301.060393
[25]  Crozet C, Bencsik A, Flamant F, Lezmi S, Samarut J, et al. (2001) Florid plaques in ovine PrP transgenic mice infected with an experimental ovine BSE. EMBO Rep 2: 952–956. doi: 10.1093/embo-reports/kve204
[26]  Race R, Oldstone M, Chesebro B (2000) Entry versus blockade of brain infection following oral or intraperitoneal scrapie administration: role of prion protein expression in peripheral nerves and spleen. J Virol 74: 828–833. doi: 10.1128/jvi.74.2.828-833.2000
[27]  Stack M, Gonzalez L, Jeffrey M, Martin S, Macaldowie C, et al. (2009) Three serial passages of bovine spongiform encephalopathy in sheep do not significantly affect discriminatory test results. J Gen Virol 90: 764–768. doi: 10.1099/vir.0.005983-0
[28]  Stack MJ, Chaplin MJ, Clark J (2002) Differentiation of prion protein glycoforms from naturally occurring sheep scrapie, sheep-passaged scrapie strains (CH1641 and SSBP1), bovine spongiform encephalopathy (BSE) cases and Romney and Cheviot breed sheep experimentally inoculated with BSE using two monoclonal antibodies. Acta Neuropathol 104: 279–286.
[29]  Vulin J, Biacabe AG, Cazeau G, Calavas D, Baron T (2011) Molecular typing of protease-resistant prion protein in transmissible spongiform encephalopathies of small ruminants, France, 2002–2009. Emerg Infect Dis 17: 55–63. doi: 10.3201/eid1701.100891
[30]  Migliore S, Esposito E, Pirisinu L, Marcon S, Di Bari M, et al. (2012) Effect of PrP genotype and route of inoculation on the ability of discriminatory Western blot to distinguish scrapie from sheep bovine spongiform encephalopathy. J Gen Virol 93: 450–455. doi: 10.1099/vir.0.035469-0
[31]  Torres JM, Espinosa JC, Aguilar-Calvo P, Herva ME, Relano-Gines A, et al. (2014) Elements modulating the prion species barrier and its passage consequences. PLoS One 9: e89722. doi: 10.1371/journal.pone.0089722
[32]  Langevin C, Andreoletti O, Le Dur A, Laude H, Beringue V (2011) Marked influence of the route of infection on prion strain apparent phenotype in a scrapie transgenic mouse model. Neurobiol Dis 41: 219–225. doi: 10.1016/j.nbd.2010.09.010
[33]  Vickery CM, Beck KE, Simmons MM, Hawkins SA, Spiropoulos J (2013) Disease characteristics of bovine spongiform encephalopathy following inoculation into mice via three different routes. Int J Exp Pathol 94: 320–328. doi: 10.1111/iep.12036
[34]  Yokoyama T, Masujin K, Schmerr MJ, Shu Y, Okada H, et al. (2010) Intraspecies prion transmission results in selection of sheep scrapie strains. PLoS One 5: e15450. doi: 10.1371/journal.pone.0015450
[35]  Espinosa JC, Andreoletti O, Castilla J, Herva ME, Morales M, et al. (2007) Sheep-passaged bovine spongiform encephalopathy agent exhibits altered pathobiological properties in bovine-PrP transgenic mice. J Virol 81: 835–843. doi: 10.1128/jvi.01356-06
[36]  Padilla D, Beringue V, Espinosa JC, Andreoletti O, Jaumain E, et al. (2011) Sheep and goat BSE propagate more efficiently than cattle BSE in human PrP transgenic mice. PLoS Pathog 7: e1001319. doi: 10.1371/journal.ppat.1001319
[37]  Plinston C, Hart P, Chong A, Hunter N, Foster J, et al. (2010) Increased susceptibility of human-PrP transgenic mice to bovine spongiform encephalopathy infection following passage in sheep. J Virol 85: 1174–1181. doi: 10.1128/jvi.01578-10
[38]  Fraser JR (1996) Infectivity in extraneural tissues following intraocular scrapie infection. J Gen Virol 77 (Pt 10): 2663–2668. doi: 10.1099/0022-1317-77-10-2663
[39]  Siso S, Chianini F, Eaton SL, Witz J, Hamilton S, et al. (2012) Disease phenotype in sheep after infection with cloned murine scrapie strains. Prion 6: 174–183. doi: 10.4161/pri.18990
[40]  Bruce ME (1985) Agent replication dynamics in a long incubation period model of mouse scrapie. J Gen Virol 66 (Pt 12): 2517–2522. doi: 10.1099/0022-1317-66-12-2517
[41]  Foster JD, Dickinson AG (1988) The unusual properties of CH1641, a sheep-passaged isolate of scrapie. Vet Rec 123: 5–8. doi: 10.1136/vr.123.1.5
[42]  Simmons MM, Moore SJ, Konold T, Thurston L, Terry LA, et al. (2011) Experimental oral transmission of atypical scrapie to sheep. Emerg Infect Dis 17: 848–854. doi: 10.3201/eid1705.101654
[43]  Mestre-Frances N, Nicot S, Rouland S, Biacabe AG, Quadrio I, et al. (2012) Oral transmission of L-type bovine spongiform encephalopathy in primate model. Emerg Infect Dis 18: 142–145. doi: 10.3201/eid1801.111092
[44]  Nicot S, Baron T (2010) Strain-specific barriers against bovine prions in hamsters. J Virol 85: 1906–1908. doi: 10.1128/jvi.01872-10

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