Prions are composed solely of the disease-causing prion protein (PrPSc) that is formed from the cellular isoform PrPC by a posttranslational process. Here we report that short phosphorothioate DNA (PS-DNA) oligonucleotides diminished the levels of both PrPC and PrPSc in prion-infected neuroblastoma (ScN2a) cells. The effect of PS-DNA on PrP levels was independent of the nucleotide sequence. The effective concentration (EC50) of PS-DNA required to achieve half-maximal diminution of PrPSc was approximately 70 nM, whereas the EC50 of PS-DNA for PrPC was more than 50-fold greater. This finding indicated that diminished levels of PrPSc after exposure to PS-DNA are unlikely to be due to decreased PrPC levels. Bioassays in transgenic mice demonstrated a substantial diminution in the prion infectivity after ScN2a cells were exposed to PS-DNAs. Whether PS-DNA will be useful in the treatment of prion disease in people or livestock remains to be established.
Phosphorothioate oligonucleotides reduce PrP levels and prion infectivity in cultured cells.
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作者:Karpuj Marcela V, Giles Kurt, Gelibter-Niv Sagit, Scott Michael R, Lingappa Vishwanath R, Szoka Francis C, Peretz David, Denetclaw Wilfred, Prusiner Stanley B
| 期刊: | Molecular Medicine | 影响因子: | 6.400 |
| 时间: | 2007 | 起止号: | 2007 Mar-Apr;13(3-4):190-8 |
| doi: | 10.2119/2006â00073.Karpuj | ||
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