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Prion-dependent proteome remodeling in response to environmental stress is modulated by prion variant and genetic background

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DataCite Commons2020-08-27 更新2024-07-27 收录
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https://tandf.figshare.com/articles/Prion-dependent_proteome_remodeling_in_response_to_environmental_stress_is_modulated_by_prion_variant_and_genetic_background/7731218
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A number of fungal proteins are capable of adopting multiple alternative, self-perpetuating prion conformations. These prion variants are associated with functional alterations of the prion-forming protein and thus the generation of new, heritable traits that can be detrimental or beneficial. Here we sought to determine the extent to which the previously-reported ZnCl<sub>2</sub>-sensitivity trait of yeast harboring the [<i>PSI</i><sup>+</sup>] prion is modulated by genetic background and prion variant, and whether this trait is accompanied by prion-dependent proteomic changes that could illuminate its physiological basis. We also examined the degree to which prion variant and genetic background influence other prion-dependent phenotypes. We found that ZnCl<sub>2</sub> exposure not only reduces colony growth but also limits chronological lifespan of [<i>PSI</i><sup>+</sup>] relative to [<i>psi</i><sup>−</sup>] cells. This reduction in viability was observed for multiple prion variants in both the S288C and W303 genetic backgrounds. Quantitative proteomic analysis revealed that under exposure to ZnCl<sub>2</sub> the expression of stress response proteins was elevated and the expression of proteins involved in energy metabolism was reduced in [<i>PSI</i><sup>+</sup>] relative to [<i>psi</i><sup>−</sup>] cells. These results suggest that cellular stress and slowed growth underlie the phenotypes we observed. More broadly, we found that prion variant and genetic background modulate prion-dependent changes in protein abundance and can profoundly impact viability in diverse environments. Thus, access to a constellation of prion variants combined with the accumulation of genetic variation together have the potential to substantially increase phenotypic diversity within a yeast population, and therefore to enhance its adaptation potential in changing environmental conditions.
提供机构:
Taylor & Francis
创建时间:
2019-02-18
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