Prions are self-perpetuating aggregated proteins that are not limited to mammalian systems but also exist in lower eukaryotes including yeast. While much work has focused around chaperones involved in prion maintenance, including Hsp104, little is known about factors involved in the appearance of prions. De novo appearance of the [PSI+] prion, which is the aggregated form of the Sup35 protein, is dramatically enhanced by transient overexpression of SUP35 in the presence of the prion form of the Rnq1 protein, [PIN+]. When fused to GFP and overexpressed in [ps−] [PIN+] cells, Sup35 forms fluorescent rings, and cells with these rings bud off [PSI+] daughters. We investigated the effects of over 400 gene deletions on this de novo induction of [...
Prions are self-perpetuating proteinaceous agents that are associated with degenerative neurological...
Multiple yeast prions have been identified that result from the structural conversion of proteins in...
Mammalian and fungal prions arise de novo; however, the mechanism is poorly understood in molecular ...
Prions are self-perpetuating aggregated proteins that are not limited to mammalian systems but also ...
Prions are self-perpetuating aggregated proteins that are not limited to mammalian systems but also ...
AbstractPrions are self-propagating protein conformations. Recent research brought insight into prio...
Many proteins can misfold into beta-sheet-rich, self-seeding polymers (amyloids). Prions are excepti...
AbstractThe yeast prion [PSI+] results from self-propagating aggregates of Sup35p. De novo formation...
Polyglutamine expansion causes diseases in humans and other mammals. One example is Huntington’s dis...
Prions are infectious proteins that are autocatalyzing (formed by altering a regular protein into th...
AbstractThe yeast [PSI+] factor propagates by a prion-like mechanism involving self-replicating Sup3...
Poly-Q expanded exon 1 of huntingtin (Q103) fused to GFP is toxic to yeast cells containing endogeno...
Prions are aggregates of misfolded proteins that have acquired an amyloid-like structure and abilit...
© 2012 Gong et al. This is an open-access article distributed under the terms of the Creative Common...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2011.This electronic versi...
Prions are self-perpetuating proteinaceous agents that are associated with degenerative neurological...
Multiple yeast prions have been identified that result from the structural conversion of proteins in...
Mammalian and fungal prions arise de novo; however, the mechanism is poorly understood in molecular ...
Prions are self-perpetuating aggregated proteins that are not limited to mammalian systems but also ...
Prions are self-perpetuating aggregated proteins that are not limited to mammalian systems but also ...
AbstractPrions are self-propagating protein conformations. Recent research brought insight into prio...
Many proteins can misfold into beta-sheet-rich, self-seeding polymers (amyloids). Prions are excepti...
AbstractThe yeast prion [PSI+] results from self-propagating aggregates of Sup35p. De novo formation...
Polyglutamine expansion causes diseases in humans and other mammals. One example is Huntington’s dis...
Prions are infectious proteins that are autocatalyzing (formed by altering a regular protein into th...
AbstractThe yeast [PSI+] factor propagates by a prion-like mechanism involving self-replicating Sup3...
Poly-Q expanded exon 1 of huntingtin (Q103) fused to GFP is toxic to yeast cells containing endogeno...
Prions are aggregates of misfolded proteins that have acquired an amyloid-like structure and abilit...
© 2012 Gong et al. This is an open-access article distributed under the terms of the Creative Common...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2011.This electronic versi...
Prions are self-perpetuating proteinaceous agents that are associated with degenerative neurological...
Multiple yeast prions have been identified that result from the structural conversion of proteins in...
Mammalian and fungal prions arise de novo; however, the mechanism is poorly understood in molecular ...