4.6 Article

Selective incorporation of polyanionic molecules into hamster prions

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 282, 期 50, 页码 36341-36353

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AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M704447200

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资金

  1. NINDS NIH HHS [R01 NS055875, R01 NS046478, R01 NS046478-06, R01 NS055875-03] Funding Source: Medline

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The central pathogenic event of prion disease is the conformational conversion of a host protein, PrPC, into a pathogenic isoform, PrPSc. We previously showed that the protein misfolding cyclic amplification (PMCA) technique can be used to form infectious prion molecules de novo from purified native PrPC molecules in an autocatalytic process requiring accessory polyanions (Deleault, N. R., Harris, B. T., Rees, J. R., and Supattapone, S. (2007) Proc. Natl. Acad. Sci. U. S. A. 104, 9741-9746). Here we investigated the molecular mechanism by which polyanionic molecules facilitate infectious prion formation in vitro. In a PMCA reaction lacking PrPSc template seed, synthetic poly(A) RNA molecules induce hamster (Ha) PrPC to adopt a protease-sensitive, detergent-insoluble conformation reactive against antibodies specific for PrPSc. During PMCA, labeled nucleic acids form nuclease-resistant complexes with HaPrP molecules. Strikingly, purified HaPrP(C) molecules subjected to PMCA selectively incorporate an similar to 1 -2.5-kb subset of [P-32] poly(A) RNA molecules from a heterogeneous mixture ranging in size from similar to 0.1 to > 6 kb. Neuropathological analysis of scrapie-infected hamsters using the fluorescent dye acridine orange revealed that RNA molecules co-localize with large extracellular HaPrP aggregates. These findings suggest that polyanionic molecules such as RNA may become selectively incorporated into stable complexes with PrP molecules during the formation of native hamster prions.

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