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Articles related to 18757753 [Unique ID], provided by the PubMed system
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Chang HY, Lin JY, Lee HC, et al. 
Strain-specific sequences required for yeast [PSI+] prion propagation. [Journal Article, Research Support, Non-U.S. Gov't]
Proc Natl Acad Sci U S A 2008 Sep 9; 105(36):13345-50.
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King CY, Diaz-Avalos R 
Protein-only transmission of three yeast prion strains. [Journal Article]
Nature 2004 Mar 18; 428(6980):319-23.
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Tanaka M, Chien P, Naber N, et al. 
Conformational variations in an infectious protein determine prion strain differences. [Journal Article]
Nature 2004 Mar 18; 428(6980):323-8.
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Diaz-Avalos R, King CY, Wall J, et al. 
Strain-specific morphologies of yeast prion amyloid fibrils. [Journal Article]
Proc Natl Acad Sci U S A 2005 Jul 19; 102(29):10165-70.
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Krishnan R, Lindquist SL 
Structural insights into a yeast prion illuminate nucleation and strain diversity. [Journal Article]
Nature 2005 Jun 9; 435(7043):765-72.
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Bradley ME, Liebman SW 
The Sup35 domains required for maintenance of weak, strong or undifferentiated yeast [PSI+] prions. [Journal Article]
Mol Microbiol 2004 Mar; 51(6):1649-59.
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Tanaka M, Weissman JS 
An efficient protein transformation protocol for introducing prions into yeast. [Journal Article]
Methods Enzymol 2006.:185-200.
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Shkundina IS, Kushnirov VV, Tuite MF, et al. 
The role of the N-terminal oligopeptide repeats of the yeast Sup35 prion protein in propagation and transmission of prion variants. [Journal Article]
Genetics 2006 Feb; 172(2):827-35.
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Tessier PM, Lindquist S 
Prion recognition elements govern nucleation, strain specificity and species barriers. [Journal Article, Research Support, N.I.H., Extramural, Research Support, Non-U.S. Gov't]
Nature 2007 May 31; 447(7144):556-61.
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