Two distinct prions in fatal familial insomnia and its sporadic form

Author:

Takeuchi Atsuko1ORCID,Mohri Shirou1,Kai Hideaki1,Tamaoka Akira2,Kobayashi Atsushi3,Mizusawa Hidehiro4,Iwasaki Yasushi5,Yoshida Mari5,Shimizu Hiroshi6,Murayama Shigeo7,Kuroda Shigetoshi8,Morita Masanori9,Parchi Piero1011ORCID,Kitamoto Tetsuyuki1

Affiliation:

1. Department of Neurological Science, Tohoku University Graduate School of Medicine, Sendai 980-8575, Japan

2. Department of Neurology, Division of Clinical Medicine, Faculty of Medicine, University of Tsukuba, Tsukuba, Ibaraki 305-8576, Japan

3. Laboratory of Comparative Pathology, Graduate School of Veterinary Medicine, Hokkaido University, Sapporo 060-0818, Japan

4. The National Center Hospital, National Center of Neurology and Psychiatry, Tokyo 102-0076, Japan

5. Department of Neuropathology, Institute for Medical Science of Aging, Aichi Medical University, Nagakute, Aichi 480-1195, Japan

6. Department of Pathology, Brain Research Institute, University of Niigata, Niigata 951-8585, Japan

7. Department of Neurology and Neuropathology (The Brain Bank for Aging Research), Tokyo 173-0015, Japan

8. Zikei Hospital, Okayama 702-8508, Japan

9. Research and Development Division, Japan Blood Products Organization, Kobe 650-0047, Japan

10. Department of Experimental, Diagnostic and Specialty Medicine (DIMES), University of Bologna, Bologna 40126, Italy

11. IRCCS Istituto delle Scienze Neurologiche, Bologna 40123, Italy

Abstract

Abstract Fatal familial insomnia is a genetic prion disease, which is associated with the aspartic acid to asparagine substitution at codon 178 of the prion protein gene. Although the hallmark pathological feature is thalamic and olivary degeneration, there is a patient with an atypical fatal familial insomnia without the hallmark feature. The cause of the pathological variability is unclear. We analysed a Japanese fatal familial insomnia kindred and compared one atypical clinicopathological fatal familial insomnia phenotype case and typical fatal familial insomnia phenotype cases with transmission studies using multiple lines of knock-in mice and with protein misfolding cyclic amplification. We also analysed the transmissibility and the amplification properties of sporadic fatal insomnia. Transmission studies revealed that the typical fatal familial insomnia with thalamic and olivary degeneration showed successful transmission only using knock-in mice expressing human–mouse chimeric prion protein gene. The atypical fatal familial insomnia with spongiform changes showed successful transmission only using knock-in mice expressing bank vole prion protein gene. Two sporadic fatal insomnia cases with thalamic and olivary degeneration showed the same transmissibility as the typical fatal familial insomnia phenotype. Interestingly, one sporadic fatal insomnia case with thalamic/olivary degeneration and spongiform changes showed transmissibility of both the typical and atypical fatal familial insomnia phenotypes. Protein misfolding cyclic amplification could amplify both typical fatal familial insomnia cases and sporadic fatal insomnia cases but not the atypical fatal familial insomnia phenotype or other sporadic Creutzfeldt–Jakob disease subtypes. In addition to clinical findings and neuropathological features, the transmission properties and the amplification properties were different between the typical and atypical fatal familial insomnia phenotypes. It is suggested that two distinct prions were associated with the diversity in the fatal familial insomnia phenotype, and these two prions could also be detected in sporadic fatal insomnia.

Funder

Japan Society for the Promotion of Science

Scientific Research on Innovative Areas

Publisher

Oxford University Press (OUP)

Subject

General Earth and Planetary Sciences,General Environmental Science

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