The Spontaneous Appearance Rate of the Yeast Prion [PSI+] and Its Implications for the Evolution of the Evolvability Properties of the [PSI+] System
Overview
Affiliations
Epigenetically inherited aggregates of the yeast prion [PSI+] cause genomewide readthrough translation that sometimes increases evolvability in certain harsh environments. The effects of natural selection on modifiers of [PSI+] appearance have been the subject of much debate. It seems likely that [PSI+] would be at least mildly deleterious in most environments, but this may be counteracted by its evolvability properties on rare occasions. Indirect selection on modifiers of [PSI+] is predicted to depend primarily on the spontaneous [PSI+] appearance rate, but this critical parameter has not previously been adequately measured. Here we measure this epimutation rate accurately and precisely as 5.8 x 10(-7) per generation, using a fluctuation test. We also determine that genetic "mimics" of [PSI+] account for up to 80% of all phenotypes involving general nonsense suppression. Using previously developed mathematical models, we can now infer that even in the absence of opportunities for adaptation, modifiers of [PSI+] are only weakly deleterious relative to genetic drift. If we assume that the spontaneous [PSI+] appearance rate is at its evolutionary optimum, then opportunities for adaptation are inferred to be rare, such that the [PSI+] system is favored only very weakly overall. But when we account for the observed increase in the [PSI+] appearance rate in response to stress, we infer much higher overall selection in favor of [PSI+] modifiers, suggesting that [PSI+]-forming ability may be a consequence of selection for evolvability.
Collignon J, Naeimi W, Serio T, Sindi S Bull Math Biol. 2024; 87(1):12.
PMID: 39641894 PMC: 11624247. DOI: 10.1007/s11538-024-01379-w.
Schepers J, Carter Z, Kritsiligkou P, Grant C Antioxidants (Basel). 2023; 12(2).
PMID: 36829961 PMC: 9952077. DOI: 10.3390/antiox12020401.
Comment on Billant et al. p53, A Victim of the Prion Fashion. 2021, , 269.
Liebman S, Derkatch I, Park S, Park S Cancers (Basel). 2023; 15(1).
PMID: 36612305 PMC: 9818150. DOI: 10.3390/cancers15010309.
The human ribosome-associated complex suppresses prion formation in yeast.
Kelly C, Ahmed Y, Elghawy O, Pachon N, Fontanese M, Kim S Proteins. 2023; 91(6):715-723.
PMID: 36604744 PMC: 10159891. DOI: 10.1002/prot.26461.
The [PSI] prion modulates cytochrome oxidase deficiency caused by deletion of .
Saini P, Dawitz H, Aufschnaiter A, Bondarev S, Thomas J, Amblard A Mol Biol Cell. 2022; 33(14):ar130.
PMID: 36129767 PMC: 9727813. DOI: 10.1091/mbc.E21-10-0499.