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Genes & Development|October 3, 2009
A heritable switch in carbon source utilization driven by an unusual yeast prionJessica C S Brown, Susan LindquistCell|August 30, 2014
An evolutionarily conserved prion-like element converts wild fungi from metabolic specialists to generalistsDaniel F Jarosz, Alex K Lancaster, Jessica C S Brown, et al.Journal of Visualized Experiments : Jove|December 11, 2008
Interview: Protein folding and studies of neurodegenerative diseasesSusan LindquistThe Journal of Cell Biology|April 25, 2012
An intrinsically disordered yeast prion arrests the cell cycle by sequestering a spindle pole body componentSebastian Treusch, Susan LindquistJournal of Visualized Experiments : Jove|December 11, 2008
Screening for amyloid aggregation by Semi-Denaturing Detergent-Agarose Gel ElectrophoresisRandal Halfmann, Susan LindquistExpert Opinion on Therapeutic Targets|April 2, 2009
Inhibiting the transcription factor HSF1 as an anticancer strategyLuke Whitesell, Susan LindquistNature Reviews. Neuroscience|April 29, 2010
Modelling neurodegeneration in Saccharomyces cerevisiae: why cook with baker's yeast?Vikram Khurana, Susan LindquistScience (New York, N.Y.)|May 25, 2004
Hsp104 catalyzes formation and elimination of self-replicating Sup35 prion conformersJames Shorter, Susan LindquistScience (New York, N.Y.)|October 30, 2010
Epigenetics in the extreme: prions and the inheritance of environmentally acquired traitsRandal Halfmann, Susan LindquistThe EMBO Journal|October 4, 2008
Hsp104, Hsp70 and Hsp40 interplay regulates formation, growth and elimination of Sup35 prionsJames Shorter, Susan LindquistPageof 20