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   Genesis of mammalian prions: From non-infectious amyloid fibrils to a transmissible prion disease  
   
نویسنده makarava n. ,kovacs g.g. ,savtchenko r. ,alexeeva i. ,budka h. ,rohwer r.g. ,baskakov i.v.
منبع plos pathogens - 2011 - دوره : 7 - شماره : 12
چکیده    The transmissible agent of prion disease consists of a prion protein in its abnormal,β-sheet rich state (prp sc),which is capable of replicating itself according to the template-assisted mechanism. this mechanism postulates that the folding pattern of a newly recruited polypeptide chain accurately reproduces that of a prp sc template. here we report that authentic prp sc and transmissible prion disease can be generated de novo in wild type animals by recombinant prp (rprp) amyloid fibrils,which are structurally different from prp sc and lack any detectable prp sc particles. when induced by rprp fibrils,a long silent stage that involved two serial passages preceded development of the clinical disease. once emerged,the prion disease was characterized by unique clinical,neuropathological,and biochemical features. the long silent stage to the disease was accompanied by significant transformation in neuropathological properties and biochemical features of the proteinase k-resistant prp material (prpres) before authentic prp sc evolved. the current work illustrates that transmissible prion diseases can be induced by prp structures different from that of authentic prp sc and suggests that a new mechanism different from the classical templating exists. this new mechanism designated as deformed templating postulates that a change in the prp folding pattern from the one present in rprp fibrils to an alternative specific for prp sc can occur. the current work provides important new insight into the mechanisms underlying genesis of the transmissible protein states and has numerous implications for understanding the etiology of neurodegenerative diseases. © 2011 makarava et al.
آدرس center for biomedical engineering and technology,university of maryland,baltimore,md, United States, institute of neurology,medical university of vienna,vienna, Austria, center for biomedical engineering and technology,university of maryland,baltimore,md, United States, medical research service,veterans affairs medical center,university of maryland,baltimore,md, United States, institute of neurology,medical university of vienna,vienna, Austria, medical research service,veterans affairs medical center,university of maryland,baltimore,md, United States, center for biomedical engineering and technology,university of maryland,baltimore,md,united states,department of anatomy and neurobiology,university of maryland,baltimore,md, United States
 
     
   
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