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   A dominant-negative mutant inhibits multiple prion variants through a common mechanism  
   
نویسنده pei f. ,disalvo s. ,sindi s.s. ,serio t.r.
منبع plos genetics - 2017 - دوره : 13 - شماره : 10
چکیده    Prions adopt alternative,self-replicating protein conformations and thereby determine novel phenotypes that are often irreversible. nevertheless,dominant-negative prion mutants can revert phenotypes associated with some conformations. these observations suggest that,while intervention is possible,distinct inhibitors must be developed to overcome the conformational plasticity of prions. to understand the basis of this specificity,we determined the impact of the g58d mutant of the sup35 prion on three of its conformational variants,which form amyloids in s. cerevisiae. g58d had been previously proposed to have unique effects on these variants,but our studies suggest a common mechanism. all variants,including those reported to be resistant,are inhibited by g58d but at distinct doses. g58d lowers the kinetic stability of the associated amyloid,enhancing its fragmentation by molecular chaperones,promoting sup35 resolubilization,and leading to amyloid clearance particularly in daughter cells. reducing the availability or activity of the chaperone hsp104,even transiently,reverses curing. thus,the specificity of inhibition is determined by the sensitivity of variants to the mutant dosage rather than mode of action,challenging the view that a unique inhibitor must be developed to combat each variant. © 2017 pei et al.
آدرس the university of arizona,department of molecular and cellular biology,tucson,az, United States, brown university,department of molecular and cell biology,providence,ri,united states,southern illinois university edwardsville,department of biological sciences,edwardsville,il, United States, university of california,merced,applied mathematics,school of natural sciences,merced,ca, United States, the university of arizona,department of molecular and cellular biology,tucson,az,united states,the university of massachusetts amherst,department of biochemistry and molecular biology,amherst,ma, United States
 
     
   
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