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De novo design of synthetic prion domains.


ABSTRACT: Prions are important disease agents and epigenetic regulatory elements. Prion formation involves the structural conversion of proteins from a soluble form into an insoluble amyloid form. In many cases, this structural conversion is driven by a glutamine/asparagine (Q/N)-rich prion-forming domain. However, our understanding of the sequence requirements for prion formation and propagation by Q/N-rich domains has been insufficient for accurate prion propensity prediction or prion domain design. By focusing exclusively on amino acid composition, we have developed a prion aggregation prediction algorithm (PAPA), specifically designed to predict prion propensity of Q/N-rich proteins. Here, we show not only that this algorithm is far more effective than traditional amyloid prediction algorithms at predicting prion propensity of Q/N-rich proteins, but remarkably, also that PAPA is capable of rationally designing protein domains that function as prions in vivo.

SUBMITTER: Toombs JA 

PROVIDER: S-EPMC3340034 | biostudies-literature | 2012 Apr

REPOSITORIES: biostudies-literature

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De novo design of synthetic prion domains.

Toombs James A JA   Petri Michelina M   Paul Kacy R KR   Kan Grace Y GY   Ben-Hur Asa A   Ross Eric D ED  

Proceedings of the National Academy of Sciences of the United States of America 20120402 17


Prions are important disease agents and epigenetic regulatory elements. Prion formation involves the structural conversion of proteins from a soluble form into an insoluble amyloid form. In many cases, this structural conversion is driven by a glutamine/asparagine (Q/N)-rich prion-forming domain. However, our understanding of the sequence requirements for prion formation and propagation by Q/N-rich domains has been insufficient for accurate prion propensity prediction or prion domain design. By  ...[more]

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