Proceedings of the National Academy of Sciences · 2010 · 118 citations · 29 references
Four protein-based genetic determinants or prions-[SWI(+)], [MCA], [OCT(+)], and [MOT3(+)]-are recent additions to the list of well-known Saccharomyces cerevisiae prions, [PSI(+)], [URE3], and [PIN(+)]. A rapid expansion of this list may indicate that many yeast proteins can convert into heritable prion forms and underscores a problem of prion input into cellular physiology. Here, we prove that the global transcriptional regulator Sfp1 can become a prion corresponding to the prion-like determinant [ISP(+)] described earlier. We show that SFP1 deletion causes an irreversible [ISP(+)] loss, whereas increased SFP1 expression induces [ISP(+)] appearance. Cells that display the [ISP(+)] phenotype contain the aggregated form of Sfp1. Indeed, these aggregates demonstrate a nuclear location. We also show that the phenotypic manifestation of Sfp1 prionization differs from the manifestation of SFP1 deletion. These properties and others distinguish [ISP(+)] from yeast prions described to date.
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Heiner Jacob · Bioelectrochemistry and Bioenergetics · 1988 · 4.9K citations
Prions Affect the Appearance of Other Prions
Irina L. Derkatch, Michael E. Bradley, Joo Y. Hong et al. · Cell · 2001 · 566 citations · Full text
Melissa D. Michelitsch, Jonathan S. Weissman · Proceedings of the National Academy of Sciences · 2000 · 471 citations · Full text
Glutamine/asparagine-rich Regions, Genetics, Glycobiology +17